SYSTEMS, DEVICES AND METHODS FOR RECONSTITUTING THERAPEUTIC POWDERS, MIXING PRECURSOR SOLUTIONS, AND EXPRESSING SEALANTS FOR CONTROLLING BLEEDING AND SEALING FLUID AND AIR LEAKS
20230309977 ยท 2023-10-05
Inventors
- Jianxin Guo (Livingston, NJ, US)
- Sridevi N. Dhanaraj (Raritan, NJ, US)
- Salim Ghodbane (Piscataway, NJ, US)
Cpc classification
A61M5/3137
HUMAN NECESSITIES
A61M5/2448
HUMAN NECESSITIES
A61M5/19
HUMAN NECESSITIES
A61M5/31596
HUMAN NECESSITIES
International classification
A61M5/19
HUMAN NECESSITIES
A61M5/24
HUMAN NECESSITIES
Abstract
A sealant delivery system includes a syringe assembly having side-by-side syringes and a vial assembly having side-by-side vials. A first vial is aligned with a distal end of a first syringe and has a vial opening at the proximal end thereof that is closed by a first sealing membrane. A second vial is aligned with a distal end of a second syringe and has a second vial opening at the proximal end thereof that is closed by a second sealing membrane. The vial assembly includes a first piercing element moveable between a retracted position and an extended position for piercing the first sealing membrane to provide fluid communication between the first fluid chamber and the first vial, and a second piercing element moveable between a retracted position and an extended position for piercing the second sealing membrane to provide fluid communication between the second fluid chamber and the second vial.
Claims
1. A sealant delivery system comprising: a syringe assembly including side-by-side first and second syringes, said first syringe having a first fluid chamber and said second syringe having a second fluid chamber; a vial assembly coupled to a distal end of said syringe assembly, said vial assembly including side-by-side first and second vials; said first vial having a proximal end that is aligned with a distal end of said first syringe, said first vial including a first vial opening at the proximal end thereof that is closed by a first sealing membrane; said second vial having a proximal end that is aligned with a distal end of said second syringe, said second vial including a second vial opening at the proximal end thereof that is closed by a second sealing membrane; said vial assembly including a first piercing element located between the distal end of said first syringe and the proximal end of said first vial, said first piercing element having a first piercing spike projecting from a distal end thereof, said first piercing element being moveable between a retracted position in which said first piercing spike is located on a proximal side of said first sealing membrane and an extended position in which said first piercing spike passes through said first sealing element for piercing said first sealing membrane to provide first fluid communication between said first fluid chamber of said first syringe and said first vial; and said vial assembly including a second piercing element located between the distal end of said second syringe and the proximal end of said second vial, said second piercing element having a second piercing spike projecting from a distal end thereof, said second piercing element being moveable between a retracted position in which said second piercing spike is located on a proximal side of said second sealing membrane and an extended position in which said second piercing spike passes through said second sealing element for piercing said second sealing membrane to provide second fluid communication between said second fluid chamber of said second syringe and said second vial.
2. The sealant delivery system as claimed in claim 1; further comprising: said first piercing element defines a first fluid pathway extending along the length thereof for providing the first fluid communication between said first fluid chamber of said first syringe and said first vial; and said second piercing element defines a second fluid pathway extending along the length thereof for providing the second fluid communication between said second fluid chamber of said second syringe and said second vial.
3. The sealant delivery system as claimed in claim 2, wherein said first and second fluid pathways are isolated from one another, and wherein said syringe assembly and said vial assembly may only be connected together in one configuration for ensuring that said first syringe is always matched with said first vial and said second syringe is always matched with said second vial.
4. The sealant delivery system as claimed in claim 1, further comprising: a first liquid disposed within said first fluid chamber of said first syringe; a first powdered reactive component disposed within said first vial, wherein said first liquid and said first powdered reactive component are configured for being mixed together for reconstituting said first powdered reactive component to form a first therapeutic solution; a second liquid disposed within said second fluid chamber of said second syringe; a second powdered reactive component disposed within said second vial, wherein said second liquid and said second powdered reactive component are configured for being mixed together for reconstituting said second powdered reactive component to form a second therapeutic solution.
5. The sealant delivery system as claimed in claim 1, wherein said vial housing further comprises: a first guide channel extending between a proximal end and a distal end of said vial housing, wherein said first piercing element is disposed in said first guide channel and is configured for moving between the retracted position and the extended position; a second guide channel extending between the proximal end and the distal end of said vial housing, wherein said second piercing element is disposed in said second guide channel and is configured for moving between the retracted position and the extended position.
6. The sealant delivery system as claimed in claim 5, wherein said vial housing further comprises: a first proximal projection extending into said first guide channel that is adapted to contact said first piercing element for holding said first piercing element in the retracted position; a first distal projection extending into said first guide channel that is adapted to contact said first piercing element for holding said first piercing element in the extended position; a second proximal projection extending into said second guide channel that is adapted to contact said second piercing element for holding said second piercing element in the retracted position; a second distal projection extending into said first guide channel that is adapted to contact said first piercing element for holding said first piercing element in the extended position.
7. The sealant delivery system as claimed in claim 6, further comprising: said first piercing element including a first resilient flange adapted to sequentially engage said first proximal projection and said first distal projection of said vial housing when moving said first piercing element within said first guide channel from the retracted position to the extended position; said second piercing element including a second resilient flange adapted to sequentially engage said second proximal projection and said second distal projection of said vial housing when moving said second piercing element within said second guide channel from the retracted position to the extended position.
8. The sealant delivery system as claimed in claim 1, further comprising: said first piercing element having a central opening at a proximal end thereof; said first syringe having a first dispensing tip projecting from the distal end thereof that is inserted into the central opening at the proximal end of said first piercing element; said second piercing element having a central opening at a proximal end thereof; said second syringe having a second dispensing tip projecting from the distal end thereof that is inserted into the central opening at the proximal end of said second piercing element.
9. The sealant delivery system as claimed in claim 4, wherein said syringe assembly further comprises: a dual barrel plunger including a first plunger rod inserted into a proximal end of said first syringe and a second plunger rod inserted into a proximal end of said second syringe; a thumb tab interconnecting proximal ends of said first and second plunger rods; said dual barrel plunger being moveable toward a distal end of said syringe assembly for forcing said first liquid into said first vial and forcing said second liquid into said second vial.
10. A vial assembly comprising: a vial assembly housing having a proximal end and a distal end, said vial assembly housing having side-by-side first and second guide channels that extend between the proximal and distal ends of said vial assembly housing; a first vial secured to said vial assembly housing, said first vial having a proximal end that is aligned with said first guide channel and a first vial opening at the proximal end thereof that is closed by a first sealing membrane; a first piercing element disposed within said first guide channel and being moveable between a retracted position in which said first piercing element is located on a proximal side of said first sealing membrane and an extended position in which said first piercing element passes through said first sealing element for piercing said first sealing membrane; a second vial secured to said vial assembly housing, said second vial having a proximal end that is aligned with said second guide channel and a second vial opening at the proximal end thereof that is closed by a second sealing membrane; and a second piercing element disposed within said second guide channel and being moveable between a retracted position in which said second piercing element is located on a proximal side of said second sealing membrane and an extended position in which said second piercing element passes through said second sealing element for piercing said second sealing membrane.
11. The vial assembly as claimed in claim 10, further comprising: said first piercing element having a proximal end and a distal end, a central opening located at the proximal end of said first piercing element that defines a first fluid pathway that extends along the length of said first piercing element, and a first piercing spike that projects from the distal end of said first piercing element; and said second piercing element having a proximal end and a distal end, a central opening located at the proximal end of said second piercing element that defines a second fluid pathway that extends along the length of said second piercing element, and a second piercing spike that projects from the distal end of said second piercing element.
12. The vial assembly as claimed in claim 11, wherein said first and second fluid pathways are isolated from one another.
13. The vial assembly as claimed in claim 10, wherein said vial housing further comprises: a first proximal projection extending into said first guide channel that is adapted to contact said first piercing element for holding said first piercing element in the retracted position; a first distal projection extending into said first guide channel that is adapted to contact said first piercing element for holding said first piercing element in the extended position; a second proximal projection extending into said second guide channel that is adapted to contact said second piercing element for holding said second piercing element in the retracted position; a second distal projection extending into said second guide channel that is adapted to contact said second piercing element for holding said second piercing element in the extended position.
14. The sealant delivery system as claimed in claim 13, further comprising: said first piercing element including a first resilient flange adapted to sequentially engage said first proximal projection and said first distal projection of said vial assembly housing when moving said first piercing element within said first guide channel from the retracted position to the extended position; said second piercing element including a second resilient flange adapted to sequentially engage said second proximal projection and said second distal projection of said vial assembly housing when moving said second piercing element within said second guide channel from the retracted position to the extended position.
15. A sealant delivery system including said vial assembly as claimed in claim 11, said sealant delivery system comprising: a syringe assembly including side-by-side first and second syringes, said first syringe having a first fluid chamber and said second syringe having a second fluid chamber; a distal end of said syringe assembly being coupled with the proximal end of said vial assembly housing so that a distal end of said first syringe is aligned with the central opening at the proximal end of said first piercing element and a distal end of said second syringe is aligned with the central opening at the proximal end of said second piercing element.
16. The sealant delivery system as claimed in claim 15, further comprising: said first syringe having a first dispensing tip projecting from a distal end thereof that is in fluid communication with said first fluid compartment of said first syringe, wherein said first dispensing tip is inserted into the central opening at the proximal end of said first piercing element for providing fluid communication between said first fluid chamber and said first fluid pathway extending along the length of said first piercing element; said second syringe having a second dispensing tip projecting from a distal end thereof that is in fluid communication with said second fluid compartment of said second syringe, wherein said second dispensing tip is inserted into the central opening at the proximal end of said second piercing element for providing fluid communication between said second fluid chamber and said second fluid pathway extending along the length of said second piercing element.
17. The sealant delivery system as claimed in claim 16, further comprising: a first liquid disposed in said first fluid chamber of said first syringe and a first powdered reactive component disposed in said first vial of said vial assembly, wherein when said first piercing element is moved into the extended position said first fluid pathway provides fluid communication between said first fluid chamber and said first vial; a second liquid disposed in said second fluid chamber of said second syringe and a second powdered reactive component disposed in said second vial of said vial assembly, wherein when said second piercing element is moved into the extended position said second fluid pathway provides fluid communication between said second fluid chamber and said second vial;
18. A sealant delivery system comprising: a syringe assembly including side-by-side first and second syringes, said first syringe having a first fluid chamber containing a first liquid and said second syringe having a second fluid chamber containing a second fluid; a vial assembly coupled to a distal end of said syringe assembly, said vial assembly including side-by-side first and second vials; said first vial containing a first powdered reactive component, said first vial having a proximal end that is aligned with a distal end of said first syringe and a first vial opening at the proximal end thereof that is closed by a first sealing membrane; said second vial containing a second powdered component, said second vial having a proximal end that is aligned with a distal end of said second syringe and a second vial opening at the proximal end thereof that is closed by a second sealing membrane; said vial assembly including a first piercing element located between the distal end of said first syringe and said first sealing membrane, said first piercing element being moveable between a retracted position in which said first piercing element is located on a proximal side of said first sealing membrane and an extended position in which said first piercing element pierces said first sealing membrane to provide fluid communication between said first fluid chamber and said first vial; and said vial assembly including a second piercing element located between the distal end of said second syringe and said second sealing membrane, said second piercing element being moveable between a retracted position in which said second piercing element is located on a proximal side of said second sealing membrane and an extended position in which said second piercing element pierces said second sealing membrane to provide fluid communication between said second fluid chamber and said second vial.
19. The sealant delivery system as claimed in claim 18, wherein said syringe assembly further comprises: a dual barrel plunger including a first plunger rod inserted into a proximal end of said first syringe and a second plunger rod inserted into a proximal end of said second syringe; a tab interconnecting proximal ends of said first and second plunger rods; said dual barrel plunger being moveable toward a distal end of said syringe assembly for forcing said first liquid into said first vial for reconstituting said first powdered reactive component to generate a first therapeutic solution and forcing said second liquid into said second vial for reconstituting said second powdered reactive component to generate a second therapeutic solution.
20. The sealant delivery system as claimed in claim 18, wherein said vial housing further comprises: side-by-side first and second guide channels that extend between proximal and distal ends of said vial assembly housing; a first proximal projection extending into said first guide channel that is adapted to contact said first piercing element for holding said first piercing element in the retracted position; a first distal projection extending into said first guide channel that is adapted to contact said first piercing element for holding said first piercing element in the extended position; a second proximal projection extending into said second guide channel that is adapted to contact said second piercing element for holding said second piercing element in the retracted position; a second distal projection extending into said second guide channel that is adapted to contact said second piercing element for holding said second piercing element in the extended position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0144] Referring to
[0145] Referring to
[0146] In one embodiment, the syringe assembly 102 preferably includes a first plunger 118A secured to a distal end of the first plunger rod 114A, and a second plunger 1188 secured to a distal end of the second plunger rod 114B, The first and second plungers 118A, 118B preferably have outer perimeters that form fluid-tight seals with inner surfaces of first and second syringe barrels, as will be described in more detail herein.
[0147] In one embodiment; the syringe assembly 102 preferably includes a syringe assembly housing 120 including a first housing part 122A and a second housing part 122B that are configured for being connected together. In one embodiment, the first and second housing parts 122A, 122B may be snap-fit together.
[0148] In one embodiment, the syringe assembly housing 120 is preferably adapted to hold a first syringe 124A and a second syringe 124B. The first and second syringes 124A, 124B are preferably configured for containing fluids (e.g., a diluent; a buffer solution; a catalyst; an initiator; an activation fluid, etc.) that are mixed with the reactive powder components disposed within the respective first and second vials of the vial assembly 104 (
[0149] In one embodiment, the first syringe 124A is configured to receive a distal end of the first plunger rod 114A and the first plunger 118A that is secured to the distal end of the first plunger rod. In one embodiment, the second syringe 124B is configured to receive a distal end of the second plunger rod 114B and the second plunger 118B that is secured to the distal end of the second plunger rod.
[0150] Referring to
[0151] In one embodiment, the syringe assembly 102 preferably includes first and second end caps 128A, 128B that are adapted to be releasably secured over the first and second dispensing tips 126A, 126B located at distal ends of the respective first and second syringes 124A, 124B.
[0152] In one embodiment, after the first and second end caps 128A, 128B are removed from the respective first and second dispensing tips 126A, 128B of the first and second syringes 124A, 124B, the thumb tab 116 may be depressed in the direction DIR1 (
[0153] Referring to
[0154] In one embodiment, the distal end of the dual barrel plunger 112 is preferably assembled with the proximal ends of the respective first and second syringes 124A, 124B so that the first plunger 118A and the distal end of the first plunger rod 114A are inserted into the proximal end of the first syringe 124A and the second plunger 118B and the distal end of the second plunger rod 114B are inserted into the proximal end of the second syringe 124B.
[0155] In one embodiment, the first end cap 128A is preferably secured over the first dispensing tip 126A of the first syringe 124A, and the second end cap 128B is preferably secured over the second dispensing tip 126B of the second syringe 124B. The end caps may remain over the dispensing tips during storage and prior to use, and may be removed from covering the end caps immediately prior to use during a surgical procedure.
[0156] In one embodiment, the first and second end caps 128A, 128B may be removed from the distal end 110 of the syringe assembly 102 for exposing the dispensing tips 126A, 126B located at the distal ends of the respective first and second syringes 124A, 124B. In one embodiment, the thumb tab 116 of the dual barrel plunger 112 may be depressed in the distal direction DIR1 toward the distal end 110 of the syringe assembly 102 for dispensing and/or expressing the first and second liquids (e.g., a diluent; a buffer solution; a catalyst; an initiator; an activation fluid, etc.) contained within the first and second fluid chambers 130A, 130B of the respective first and second syringes 124A, 124B. In one embodiment, the first and second liquids are utilized for reconstituting and mixing the powder components that are contained within the first and second vials of the vial assembly 104 (
[0157] As will be described in more detail herein, in one embodiment, after the activation fluids have been initially forced into the vials of the vial assembly, the thumb tab 116 and the dual barrel plunger 112 may be retracted in the proximal direction designated DIR2 for drawing solutions and/or mixtures of the activation fluids and the powdered reactive components back into the fluid chambers 130A, 130B of the respective first and second syringes 124A, 124B for further mixing together of the activation fluids and the powdered reactive components.
[0158] Certain types of therapeutic components must be stored in a powdered form because they will rapidly react and/or lose their effectiveness once they are mixed into a liquid or a solution. These therapeutic components are required to be reconstituted with a liquid (e.g., a diluent; a buffer solution; a catalyst; an initiator; an activation fluid, etc.) before they may be used on a patient. The first and second liquids in the syringes may be used to activate the reactive powdered components contained within the vial assembly to form a tissue sealant or a hemostat that may be sprayed and/or expressed onto tissue. In one embodiment, the first liquid is used to reconstitute a first reactive powder component (e.g., fibrinogen in powder form; a reactive synthetic powder; a crosslinker, etc.), and the second liquid is used to reconstitute a second reactive powder component (e.g., thrombin in powder form; a reactive synthetic powder; a crosslinker, etc.).
[0159] Referring to
[0160] In one embodiment, the first and second piercing elements 140A, 140B are moveable between retracted and extended positions. In one embodiment, the first and second piercing elements move independently of one another. In one embodiment, the first and second piercing elements move simultaneously with one another.
[0161] The vial assembly 104 is designed to maintain the first and second reactive powdered components isolated from one another during storage of the vial assembly and prior to use of the powdered components for forming a therapeutic solution (e.g., a tissue sealant; a hemostat; a sealant for sealing air leaks during lung surgery).
[0162] Referring to
[0163] In one embodiment, the vial assembly 104 preferably includes a first powder vial 138A having a proximal end 144A with a first vial opening 146A, and a first sealing membrane 148A that covers and/or seals the first vial opening 146A. During storage and prior to use, the first sealing membrane 148A preferably maintains a first powder (e.g., a first powdered reactive component) that is disposed within the first powder vial 138A in a dry state. The vial assembly 104 preferably includes a first sealing ring 150A having a central opening 152A that is configured to receive a first piercing spike 154A that projects from a distal end of the first piercing element 140A. In one embodiment, the vial assembly 104 includes a first O-ring 156A that is inserted into an opening at a proximal end of the first piercing element 140A, and a first O-ring retainer 158A that preferably retains the first O-ring 156A within the openings at the proximal end of the first piercing element 140A.
[0164] In one embodiment, the vial assembly 104 preferably includes a second powder vial 188B having a proximal end 144B with a second vial opening 146B, and a second sealing membrane 148B that covers and/or seals the second vial opening 146B. During storage and prior to use, the second sealing membrane 148B preferably maintains a second powder (e.g., a second powdered reactive component) that is disposed within the second powder vial 138B in a dry state. The vial assembly 104 preferably includes a second sealing ring 150B having a central opening 152B that is configured to receive a second septum piercing spike 154B that projects from a distal end of the second piercing element 140B. In one embodiment, the vial assembly 104 includes a second O-ring 156B that is inserted into an opening at a proximal end of the second piercing element 140B, and a second O-ring retainer 158B that preferably retains the second O-ring 156B within the opening at the proximal end of the second piercing element 140B.
[0165] In one embodiment, the first and second housing parts 142A, 142B of the vial housing 132 are molded components that have guide channels 145A, 145B that extend side-by-side between the proximal and distal ends of the vial housing 132. The guide channels 145A, 145B are preferably configured to receive the respective first and second piercing elements 140A, 140B for guiding the sliding movement of the first and second piercing elements between the retracted and extended positions. When the first and second piercing elements 140A, 140B are disposed within the vial housing 132, the first and second piercing elements 140A, 140B may slide and/or move between a retracted position and an extended position. In one embodiment, when the first and second piercing elements are in the extended position, the first and second piercing spikes 154A, 154B pierce the respective first and second sealing membranes 140A, 140B that seal the first and second vial openings 146A, 146B of the respective first and second vials 138A, 138B.
[0166] Referring to
[0167] In one embodiment, the vial assembly 104 preferably includes the second vial 138B secured to the distal end 136 of the vial assembly housing 132. The second sealing membrane 148B covers and/or seals the second vial opening 140B located at the proximal end 144B of the second vial 138B. The second piercing element 140B is assembled with the vial assembly housing 132 so that the second piercing spike 154B of the second piercing element 140B is aligned with the second sealing membrane 148B that covers and/or seals the second vial opening 146B of the second vial 138B.
[0168] In one embodiment, the vial assembly housing 132 preferably includes first proximal projections 162A for locking and/or holding the first piercing element 140A is the retracted position and first distal projections 163A for locking and/or holding the first piercing element in the extended position. In one embodiment, the first piercing element 140A preferably includes first resilient flanges 164A that are adapted to selectively engage the first proximal projections 162A and the first distal projections 163A. In one embodiment, when the first piercing element 140A is in the retracted position shown in
[0169] In one embodiment, the vial assembly housing 132 preferably includes second proximal projections 162B for locking and/or holding the second piercing element 140B in the retracted position and second distal projections 163B for locking and/or holding the second piercing element 140B in the extended position. In one embodiment, the second piercing element 140B preferably includes second resilient flanges 164B that are adapted to selectively engage the second proximal projections 162B and the second distal projections 163B. In one embodiment, when the second piercing element 140B is in the retracted position shown in
[0170] In one embodiment, when the first piercing element 140A is assembled with the vial assembly housing 132, the first piercing spike 154A is in alignment with the first sealing membrane 148A that seals the first vial opening 146A of the first vial 138A. When the first piercing element 140A is advanced into the extended position (
[0171] In one embodiment, when the second piercing element 140B is assembled with the vial assembly housing 132, the second piercing spike 154E is in alignment with the second sealing membrane 148B that seals the second vial opening 146B of the second vial 138B. When the second piercing element 140B is advanced into the extended position (
[0172] In one embodiment, the first piercing element 140A has an elongated conduit that defines a first fluid pathway that extends through both the first piercing element and the first piercing spike 154A for providing fluid communication between the first fluid chamber of the first syringe and the powder chamber 160A of the first vial 138A, which enables the first liquid to be used for reconstituting the first powder disposed within the first vial. In one embodiment, a first O-ring 156A is inserted into an opening at a proximal end of the first piercing element 140A and a first O-ring retainer 158A holds the first O-ring 156A within the proximal opening of the first piercing element 140A.
[0173] In one embodiment, the second piercing element 140B has an elongated conduit that defines a second fluid pathway that extends through both the second piercing element and the second piercing spike 154B for providing fluid communication between the second fluid chamber of the second syringe and the second powder chamber 160B of the second vial 138B, which enables the second liquid to be used for reconstituting the second powder (e.g., a second powdered reactive component) disposed within the second vial. In one embodiment, a second O-ring 156B is inserted into an opening at a proximal end of the second piercing element 140B and a second O-ring retainer 158B holds the second O-ring 156B within the proximal opening of the second piercing element 140B.
[0174] Referring to
[0175] In one embodiment, the second piercing element 140B is in the retracted position with the second piercing spike 154B located proximal to the second sealing membrane 148B. The second piercing element 140B includes the second resilient flanges 184B engaging the second proximal projections 162B of the vial housing 132 for holding the second piercing element 140B in the retracted position. The vial assembly 104 includes the second distal projections 163B that are adapted to engage the distal ends of the second resilient flanges 164B for holding the second piercing element 140B in the extended configuration, as will be described in more detail herein.
[0176] Referring to
[0177] Referring to
[0178] In one embodiment, the housing 172 preferably includes an H-connector 174 having a first hub 176A adapted to receive a first O-ring 178A and a first O-ring retainer 180A. In one embodiment, the first hub 176A, the first O-ring 178A, and the first O-ring retainer 180A are preferably in alignment with the first fluid pathway that provides fluid communication between the first fluid compartment 130A of the first syringe 124A (
[0179] In one embodiment, the H-connector 174 preferably includes a second hub 176B adapted to receive a second O-ring 178B and a second O-ring retainer 180B. In one embodiment, the second hub 176B, the second O-ring 178B, and the second O-ring retainer 180B are preferably in alignment with the second fluid pathway that provides fluid communication between the second fluid compartment 130B of the second syringe 124B (
[0180] In one embodiment, the sealant delivery assembly 106 preferably includes a cannula 182 (e.g., a rigid tube) that is adapted to receive first and second flexible tubes 184A, 184B. The cannula may be rigid and may be made of biocompatible materials such as metals and polymers. The first flexible tube 184A preferably has a proximal end that is in fluid communication with the first hub 176A of the H-connector 174. The second flexible tube 184B preferably has a proximal end that is in fluid communication with the second hub 176B of the H-connector 174.
[0181] In one embodiment, the sealant delivery assembly 106 desirably includes a malleable connector 186 that is secured to a distal end of the canula 182. The sealant delivery assembly 106 preferably includes a spray tip 188 that is secured to a distal end of the malleable connector 186. The spray tip 188 may contain a static mixer for mixing together first and second precursor solutions that are directed into the spray tip 188.
[0182] Referring to
[0183] Referring to
[0184] In one embodiment, the spray tip 188 preferably includes a spray tip housing 192 that contains a static mixer 194 having mixing fins 195. The first and second precursor solutions that are delivered to the spray tip 188 via the first and second flexible tubes 184A, 184B are preferably mixed together within the spray tip housing 194 by the mixing fins 195 of the static mixer 192. The mixed precursor solutions may be expressed and/or sprayed from the distal end of the sealant applicator via an expression opening 196 of a spray cap 197, which is located at the distal end 170 of the sealant delivery assembly 106. In one embodiment, the sealant delivery assembly 106 and the spray cap may include one or more structural features (e.g., swirl chambers) that are disclosed in commonly assigned U.S. Patent Application Publication No. 2021/0101162 to Trezza I I et al. (Attorney Docket No. ETH6050USNP1), the disclosure of which is hereby incorporated by reference herein.
[0185] Referring to
[0186] Referring to
[0187] Referring to
[0188] Referring to
[0189] Referring to
[0190]
[0191] During the stage shown in
[0192] In one embodiment, the first activation fluid within the first syringe 124A is mixed with the first powder in the first vial 138A by advancing and retracting the dual barrel plunger 112 in distal and proximal directions. As the first plunger rod 114A is advanced toward the distal end of the syringe housing 120, the first activation fluid within the first fluid chamber 130A of the first syringe 124A is forced into the first powder chamber 160A of the first vial 138A for reconstituting the first powder into a first therapeutic solution. Mien the first plunger rod 114A is retracted away from the distal end of the syringe housing 120, the first therapeutic solution of the first powder and the first activation fluid is drawn back into the first fluid chamber 130A of the first syringe 124A. The first plunger rod 114A may be repeatedly reciprocated back and forth between an extended position and a retracted position for thoroughly mixing the first activation fluid and the first powder to form the first precursor solution (e.g., a flowable liquid). In one embodiment, after the first precursor solution has been formed, the first plunger rod 114A is preferably fully retracted for drawing the entire volume of the first precursor solution into the first fluid chamber 130A of the first syringe 124A.
[0193] In one embodiment, the second activation fluid within the second syringe 124B is mixed with the second powder within the second vial 138B by advancing and retracting the dual barrel plunger 112 in distal and proximal directions. As the second plunger rod 114B is advanced toward the distal end of the syringe assembly housing 120, the second activation fluid within the second fluid chamber 130B of the second syringe 124B is forced into the second powder chamber 160B of the second vial 138B for reconstituting the second powder into a second therapeutic solution. When the second plunger rod 114B is retracted away from the distal end of the syringe assembly housing 120, the second therapeutic solution of the second powder and the second activation fluid is drawn back into the second fluid chamber 130B of the second syringe 124B. The second plunger rod 114B may be repeatedly reciprocated back and forth between an extended position and a retracted position for thoroughly mixing the second activation and the second powder to form the second precursor solution (e.g., a flowable liquid). In one embodiment, after the second precursor solution has been formed, the second plunger rod 114B is preferably fully retracted for drawing the entire volume of the second precursor solution into the second fluid chamber 130B of the second syringe 124B.
[0194] Referring to
[0195] After the sealant delivery assembly has been secured to the distal end of the syringe assembly housing, the first fluid chamber 130A of the first syringe 124A that contains the first precursor is preferably in fluid communication with the spray tip 188 via the first flexible tube 184A. The second fluid chamber 130B of the second syringe 124B that contains the second precursor is preferably in fluid communication with the spray tip 188 via the second flexible tube 184B.
[0196] In one embodiment, the dual barrel plunger 112 is depressed in the distal direction designated DIR1 to force the first and second precursor solutions from the first and second fluid chambers 130A, 130B of the respective first and second syringes 124A, 124B, whereupon the first and second precursor solutions flow through the respective first and second flexible tubes 184A, 184B until they reach the spray tip 188. Upon reaching the spray tip, the first and second precursor solutions are mixed together by the static mixer 194 (
[0197] Referring to
[0198] Referring to
[0199] In one embodiment, the syringe assembly 202 preferably includes a syringe end cap 228 that is releasably secured to the distal end of the syringe assembly housing 220 of the syringe assembly 202 for covering syringe dispensing tips that are in fluid communication with the respective syringe barrel cavities formed in the syringe assembly housing 220, as will be described in more detail herein.
[0200] Referring to
[0201] In one embodiment, the syringe end cap 228 may be disconnected from the distal end of the syringe assembly housing 220 for exposing the first and second dispensing tips 226A, 226B. After the syringe end cap 228 has been removed for exposing the dispensing tips 226A, 226B, the distal end of the syringe assembly housing may be assembled with a vial assembly or a sealant delivery assembly.
[0202] In one embodiment, the double barrel plunger 212 preferably includes a first plunger rod 214A having a distal end that is adapted to be connected with a first plunger 218A. The double barrel plunger 212 also includes a second plunger rod 214B having a distal end that is adapted to be connected with a second plunger 218B. In one embodiment, the distal end of the first plunger rod 214A with the first plunger 218A secured thereto is insertable into the first fluid chamber defined by the first syringe barrel cavity of the syringe assembly housing and the distal end of the second plunger rod 214B with the second plunger 218B secured thereto is inserted into the second fluid chamber defined by the second syringe barrel cavity of the syringe assembly housing.
[0203] Referring to
[0204] In one embodiment, during storage, the syringe assembly end cap 228 is preferably connected with the distal end of the syringe assembly housing 220 of the syringe assembly 202 for covering the first and second dispensing tips 226A, 228B that are in fluid communication with the respective first and second fluid chambers 230A, 230B.
[0205] Referring to
[0206] Referring to
[0207] Referring to
[0208] Referring to
[0209] In one embodiment, the syringe assembly 202 desirably includes the second syringe barrel cavity 224B having a second fluid chamber 230B that contains a second liquid that is used for reconstituting the second powder. The second dispensing tip 2268 at the distal end of the second syringe barrel cavity 224B is preferably in alignment with the second vial opening 246B of the second vial 238B. The second vial 238B preferably includes a second powder chamber 260B that contains a second powder, which will be reconstituted using the second liquid disposed within the second fluid chamber 230B of the second syringe barrel cavity 224B.
[0210] In one embodiment, by advancing and retracting the dual barrel plunger 112 in distal direction DIR1 and the proximal direction DIR2, the first liquid within the first fluid chamber 230A of the first syringe barrel cavity 224A is mixed with the first powder disposed within the first powder compartment 260A of the first vial 138A. As the first plunger rod 114A is advanced distally in the direction DIR1 toward the distal end of the syringe assembly housing 220, the first liquid within the first fluid chamber 230A of the first syringe barrel cavity 224A is forced into the first powder chamber 260A of the first vial 238A. When the first plunger rod 214A is retracted away from the distal end of the syringe assembly housing 220, a first precursor solution including the first powder and first liquid is drawn back into the first fluid chamber 230A of the first syringe barrel cavity 224A. The first plunger rod 214A may be repeatedly reciprocated back and forth between an extended position and a retracted position for thoroughly mixing the first liquid and the first powder component to form the first precursor solution (e.g., a flowable liquid). In one embodiment, after the first precursor solution has been generated, the first plunger rod 214A is preferably fully retracted for drawing the entire volume of the first precursor solution back into the first fluid chamber 230A of the first syringe barrel cavity 224A.
[0211] In one embodiment, the second liquid contained within the second syringe barrel cavity 224B may be mixed with the second powder disposed within the second powder component 260B of the second vial 138B by advancing and retracting the dual barrel plunger 112 in distal (DIR1) and proximal (DIR2) directions. As the second plunger rod 114B is advanced toward the distal end of the syringe assembly housing 220, the second liquid within the second fluid chamber 230B of the second syringe barrel cavity 224B is forced into the second powder chamber 260B of the second vial 2388 for reconstituting the second powder into a second precursor solution. When the second plunger rod 214B is retracted away from the distal end of the syringe assembly housing 220, the second precursor solution including the second powder and the second liquid is drawn back into the second fluid chamber 230B of the second syringe barrel cavity 224B. The second plunger rod 214B may be repeatedly reciprocated back and forth between an extended position and a retracted position for thoroughly mixing the second liquid and the second powder to form the second precursor solution (e.g., a flowable liquid). In one embodiment, after the second precursor solution has been formed, the second plunger rod 214B is preferably fully retracted for drawing the entire volume of the second precursor solution back into the second fluid chamber 230B of the second syringe barrel cavity 224B.
[0212] In one embodiment, the first and second precursor solutions may be mixed together to form a tissue sealant or hemostat that is applied on tissue during a surgical procedure, such as a minimally invasive surgical procedure.
[0213] Referring to
[0214] After the sealant delivery assembly 206 has been secured to the distal end of the syringe assembly housing 220, the first fluid chamber 230A of the first syringe barrel cavity 224A that contains the first precursor solution is preferably in fluid communication with the spray tip 288 via a first fluid pathway (e.g., the first flexible tube 184A shown in
[0215] Referring to
[0216] Referring to
[0217] In one embodiment, the spray tip 288 is coupled with the distal end of the canula 282 by the malleable connector 286. The malleable connector 286 enables the spray tip 288 to be positioned at different angles relative to the longitudinal axis A.sub.1 of the elongated canula 282 of the sealant delivery assembly 206.
[0218] Referring to
[0219] In one embodiment, the dual barrel plunger 212 is depressed in the distal direction designated DIR1 to force the first and second precursor solutions from the first and second fluid chambers 230A, 230B of the respective first and second syringe barrel cavities 224A, 224B (
[0220] In one embodiment, the sealant delivery system maintains the first and second precursor solutions isolated from one another until they are mixed together within the spray tip 288. Upon being mixed together within the spray tip 288, the first and second precursor solutions preferably react with one another to form a sealant or hemostat that controls bleeding. The sealant or hemostat is preferably sprayed onto tissue in fluid form, whereupon the interacting first and second precursor solutions cure, coagulate and/or gel to stop or control bleeding.
[0221] While the foregoing is directed to embodiments of the present invention, other and further embodiments of the invention may be devised without departing from the basic scope thereof, which is only limited by the scope of the claims that follow. For example, the present invention contemplates that any of the features shown in any of the embodiments described herein, or incorporated by reference herein, may be incorporated with any of the features shown in any of the other embodiments described herein, or incorporated by reference herein, and still fail within the scope of the present invention.