Reagent preparation assembly
11819852 · 2023-11-21
Assignee
Inventors
Cpc classification
B01L3/523
PERFORMING OPERATIONS; TRANSPORTING
B01L2400/0683
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/044
PERFORMING OPERATIONS; TRANSPORTING
B01L3/52
PERFORMING OPERATIONS; TRANSPORTING
B01L2200/16
PERFORMING OPERATIONS; TRANSPORTING
Y10T29/49826
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B01F33/50112
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01F33/501
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A reagent preparation assembly includes a body and a reaction chamber adjacent the body, the reaction chamber includes a reagent therein, such as a lyophilized reagent. An access port extends into the reaction chamber, and the access port is configured to receive an instrument. A seal extends across a portion of the reaction chamber and the access port. A reconstitution assembly is movably coupled with the body. The reconstitution assembly includes a plunger, a syringe and a piston. The plunger is movably coupled with the body. The syringe is selectively engaged with the plunger. The syringe includes a solution reservoir containing a solution, and movement of the syringe pierces the seal. The piston is selectively engaged with the plunger, and the piston is movably coupled within the syringe. Movement of the piston pushes the solution into the reaction chamber.
Claims
1. A reagent preparation assembly, comprising: a reaction chamber configured to hold a reagent therein; a body coupled with the reaction chamber, the body including a syringe passage extending toward the reaction chamber; an access port configured to receive an instrument, wherein the access port is in communication with the reaction chamber; a reconstitution assembly coupled with the body, the reconstitution assembly including: a syringe moveably coupled with the body and located in the syringe passage, wherein the syringe includes: a solution reservoir configured to hold a solution therein; a syringe orifice in communication with the solution reservoir, wherein the body is engaged along the syringe proximate the syringe orifice; a plunger moveable between initial, intermediate, and solution moving positions, wherein: in the initial position the syringe orifice is closed by the body; in the intermediate position the plunger is displaced relative to the initial position, the syringe is displaced within the syringe passage, and the syringe orifice is displaced relative to the body and exposed to the reaction chamber; and in the solution moving position, the plunger is displaced relative to the intermediate position, and displacement of the plunger displaces the solution from the solution reservoir and through the syringe orifice into the reaction chamber.
2. The reagent preparation assembly of claim 1, wherein the reaction chamber includes a well for reception of a reagent mixture including the reagent and the solution.
3. The reagent preparation assembly of claim 2, wherein the well tapers toward a trough beneath the access port.
4. The reagent preparation assembly of claim 1, wherein the reaction chamber tapers from a first location proximate the syringe toward a second location proximate the access port.
5. The reagent preparation assembly of claim 1, further comprising a seal extending across the syringe passage.
6. The reagent preparation assembly of claim 5, wherein the seal is a syringe seal, and further comprising an access seal extending across the access port, wherein the syringe seal is separate from the access seal.
7. The reagent preparation assembly of claim 5, wherein a vent path extends out of the syringe passage to an exterior of the reagent preparation assembly.
8. The reagent preparation assembly of claim 1, wherein the plunger includes a deflectable tongue and a plunger post, and the deflectable tongue is movable between a syringe engaging configuration and a piston engaging configuration, wherein: in the syringe engaging configuration, the tongue is engaged with the syringe and movement of the plunger moves the syringe, and in the piston engaging configuration, the tongue is disengaged from the syringe and the plunger post is engaged with a piston, and movement of the plunger moves the piston relative to the syringe.
9. The reagent preparation assembly of claim 8, wherein the body includes a camming surface configured to engage with the tongue, and movement of the tongue over the camming surface disengages the tongue from the syringe.
10. The reagent preparation assembly of claim 1, wherein: the body includes a gasket; the syringe is slidably coupled along the gasket; and the gasket seals around the syringe.
11. The reagent preparation assembly of claim 1, wherein the syringe includes a piercing surface configured to pierce a seal extending across the syringe passage.
12. The reagent preparation assembly of claim 11, wherein in the solution moving position the seal is pierced by the syringe.
13. The reagent preparation assembly of claim 1, wherein the plunger is configured to moves continuously from the initial position to the intermediate position and from the intermediate position to the solution moving position with movement of the plunger relative to the body.
14. The reagent preparation assembly of claim 1, wherein in the intermediate position the plunger is engaged with the syringe and in the solution moving position the plunger is engaged with a piston.
15. The reagent assembly of claim 14, wherein in the solution moving position the plunger is disengaged with the syringe.
16. The reagent assembly of claim 14, wherein a deflectable tongue engages the plunger with the syringe in the intermediate position and the deflectable tongue is disengaged with the syringe in the solution moving position.
17. The reagent assembly of claim 16, wherein the body includes a camming surface, and movement of the plunger between the intermediate position and the solution moving position moves the deflectable tongue over the camming surface to disengage the deflectable tongue from the syringe.
18. A reagent preparation assembly, comprising: a reaction chamber configured to hold a reagent therein; a body coupled with the reaction chamber, the body including a syringe passage extending toward the reaction chamber; an access port configured to receive an instrument, wherein the access port is in communication with the reaction chamber; a reconstitution assembly coupled with the body, the reconstitution assembly including: a syringe moveably coupled with the body and located in the syringe passage, wherein the syringe includes a solution reservoir configured to hold a solution therein; a plunger moveable between at least a first position and a second position, wherein: in the first position the plunger is engaged with the syringe, and the plunger is configured to displace the syringe within the syringe passage; and in the second position the plunger is engaged with a piston and displacement of the plunger displaces the solution from the solution reservoir into the reaction chamber.
19. The reagent preparation assembly of claim 18, wherein: the syringe includes a syringe orifice in communication with the solution reservoir; the body is engaged along the syringe proximate the syringe orifice; and the plunger is moveable between a third position and one or more of the first position and the second position, and in the third position the syringe orifice is closed by the body and the plunger is displaced relative to one or more of the first position or the second position.
20. The reagent preparation assembly of claim 19, wherein the plunger is disengaged from the syringe in the third position.
21. The reagent preparation assembly of claim 20, wherein the plunger is configured to move from the third position to the first position, and from the first position to the second position.
22. The reagent preparation assembly of claim 20, wherein: in the first position the syringe orifice is closed by the body; in the second position the syringe is displaced within the syringe passage, and the syringe orifice is displaced relative to the body and exposed to the reaction chamber; and in the solution moving position displacement of the plunger displaces the solution from the solution reservoir and through the syringe orifice into the reaction chamber.
23. The reagent preparation assembly of claim 18, wherein the plunger includes a deflectable tongue and a plunger post, and the deflectable tongue is movable between a syringe engaging configuration and a piston engaging configuration, wherein: in the syringe engaging configuration, the tongue is engaged with the syringe and movement of the plunger moves the syringe, and in the piston engaging configuration, the tongue is disengaged from the syringe and the plunger post is engaged with the piston, and movement of the plunger moves the piston relative to the syringe.
24. The reagent preparation assembly of claim 23, wherein the body includes a camming surface configured to engage with the tongue, and movement of the tongue over the camming surface disengages the tongue from the syringe.
25. A reagent preparation assembly, comprising: a reaction chamber configured to hold a reagent therein; a body coupled with the reaction chamber, the body including: a syringe passage extending toward the reaction chamber; and a camming surface; an access port configured to receive an instrument, wherein the access port is in communication with the reaction chamber; a reconstitution assembly coupled with the body, the reconstitution assembly including: a syringe moveably coupled with the body and located in the syringe passage, wherein the syringe includes a solution reservoir configured to hold a solution therein; a plunger having a deflectable tongue configured to selectively engage with the camming surface of the body, wherein the plunger is moveable between at least a first position and a second position, wherein: in the first position the deflectable tongue is engaged with the syringe, and the plunger is configured to displace the syringe within the syringe passage; in the second position the plunger is engaged with a piston and displacement of the plunger displaces the solution from the solution reservoir into the reaction chamber; and wherein movement of the plunger between the first position and the second position moves the deflectable tongue over the camming surface to disengage the deflectable tongue from the syringe.
26. The reagent preparation assembly of claim 25, wherein the plunger includes a plunger post, and the deflectable tongue is movable between a syringe engaging configuration and a piston engaging configuration, wherein: in the syringe engaging configuration, the tongue is engaged with the syringe and movement of the plunger moves the syringe, and in the piston engaging configuration, the tongue is disengaged from the syringe and the plunger post is engaged with the piston, and movement of the plunger moves the piston relative to the syringe.
27. The reagent preparation assembly of claim 26, wherein the body includes the camming surface configured to engage with the tongue, and movement of the tongue over the camming surface disengages the tongue from the syringe.
28. The reagent preparation assembly of claim 25, wherein: the syringe includes a syringe orifice in communication with the solution reservoir; the body is engaged along the syringe proximate the syringe orifice; and the plunger is moveable between a third position, and in the third position the syringe orifice is closed by the body.
29. The reagent preparation assembly of claim 28, wherein the plunger is disengaged from the syringe in the third position.
30. The reagent preparation assembly of claim 29, wherein the plunger is configured to move from the third position to the first position, and from the first position to the second position.
31. The reagent preparation assembly of claim 29, wherein: in the first position the syringe orifice is closed by the body; in the second position the syringe is displaced within the syringe passage, and the syringe orifice is displaced relative to the body and exposed to the reaction chamber; and in a solution moving position displacement of the plunger displaces the solution from the solution reservoir and through the syringe orifice into the reaction chamber.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) A more complete understanding of the present subject matter may be derived by referring to the detailed description and claims when considered in connection with the following illustrative Figures. In the following Figures, like reference numbers refer to similar elements and steps throughout the Figures.
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(17) Elements and steps in the Figures are illustrated for simplicity and clarity and have not necessarily been rendered according to any particular sequence. For example, steps that may be performed concurrently or in different order are illustrated in the Figures to help to improve understanding of examples of the present subject matter.
DESCRIPTION OF THE DRAWINGS
(18) In the following detailed description, reference is made to the accompanying drawings which form a part hereof, and in which is shown by way of illustration specific examples in which the subject matter may be practiced. These examples are described in sufficient detail to enable those skilled in the art to practice the subject matter, and it is to be understood that other examples may be utilized and that structural changes may be made without departing from the scope of the present subject matter. Therefore, the following detailed description is not to be taken in a limiting sense, and the scope of the present subject matter is defined by the appended claims and their equivalents.
(19) While the devices and methods presented in the detailed description describe devices for non-therapeutic uses, non-pharmaceutical uses and the like, the devices and methods are applicable to at least some pharmaceutical applications that do not require administration to a subject by injection with a syringe needle. It is also within the scope of the devices and methods described herein that a syringe needle and medicaments are usable with the same. For instance, the access port includes a self-sealing septum. Additionally, the reagents described below include, but are not limited to, lyophilized reagents, liquid reagents, powder reagents and the like. Further, the solutions described below include, but are not limited to, liquid solutions such as, saline, distilled water, tap water, pH buffered water, chemical solutions capable of breaking down the reagents and the like. In another example, the solutions include, but are not limited to, biological or environmental samples in a liquid form or suspended within a liquid, such as blood, urine, fecal matter, saliva, perspiration, soil, ground water, fresh water, salt water, explosives, explosive residues, toxins and the like.
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(21) Referring now to
(22) Referring now to
(23) The reagent preparation assembly 100 includes the reaction chamber 410 positioned beneath the body 102. In one example, the body 102 includes the structural housing of the assembly 100 including the reaction chamber 410. The gasket 420 is interposed between the body 102 and the reaction chamber 410. In one example, the cap 108 is crimped at a crimp 422 around the body 102, gasket 420 and the reaction chamber 410. The crimp 422 tightly engages the body, gasket and the reaction chamber 410 and substantially prevents the ingress of moisture and atmosphere into the reaction chamber 410 containing a reagent 408. In another example a desiccant 430 is held within the cap 108 to absorb moisture within the cap.
(24) In the example shown in
(25) Referring again to the reaction chamber 410, in the example shown in
(26) Referring now to
(27) As shown in
(28) In the example shown in
(29) Referring now to
(30) Referring now to
(31) As shown, the syringe 400 fills a portion of the reaction chamber 410 thereby limiting the space devoted to reconstitution of the reagent 408 with the solution 406. Reconstitution is thereby localized within a well of the reaction chamber 410 directly or substantially underlying the access port 106 to facilitate easy drawing of the reagent mixture into an instrument such as a pipette when positioned within the access port 106. The tapered surface 428 (e.g., beveled edge) further diverts the reagent mixture to the well portion of the reaction chamber 410 to retain the mixture until withdrawn by an instrument.
(32) As previously described, as the piston 402 moves the solution 406 into the reaction chamber 410 gas is displaced from the reaction chamber 410. The gas travels through the vent path 506 and out the access port 106 (e.g., exterior to the assembly 100) to equalize pressure within the reaction chamber 410 and thereby substantially prevent any likelihood of premature opening of the access seal 418. Optionally, the reagent preparation assembly 100 is without a vent path 506 and pressure is allowed to buildup within the reaction chamber 410. In one example, where the assembly 100 is without a vent path 506 the overpressure is minimal and not strong enough to break the access seal 418. In yet another example, a hydrophobic membrane elsewhere on the reaction chamber 410 or body 102 allows for the passage of gas from the reaction chamber and prevents the passage of the solution or reagent mixture.
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(35) Referring first to
(36) The tapering reaction chamber 902 forms a well 908 that tapers toward a trough 910 positioned substantially beneath the access port 106. As previously described, tapering the well toward the area underneath the access port 106 facilitates delivery of an instrument tip such as a pipette tip to the bottom of the well 908 to ensure drawing of substantially all or a portion of the reagent mixture formed within the reaction chamber 902. As shown in
(37) Referring now to
(38) The reagent preparation assembly 900 further includes a vent path 914 shown in
CONCLUSION
(39) The reagent preparation assemblies described herein provide storage and reconstitution assemblies that are easy to use for a variety of diagnostic, life science research and testing purposes. Each assembly includes a specified amount of solution to mx with the loaded reagent (or reagents). The solution and reagent held in separate reservoirs and isolated until reconstitution is desired. The assemblies are storable for long periods of time and immediately usable. Additionally, because the assemblies include measured amounts of solution that reconstitute the reagent (or reagents) without leaving excess solution, a reagent solution having a specified concentration is consistently formed. Multiple aliquots, for instance 5 or more, are created at a desired time for immediate use without retaining or generating large volumes of a reagent mixture and storing the same. The attendant issues of storing larger volumes of a reagent mixture are thereby avoided including, spoilage, dilution, contamination and the like.
(40) The all-in-one assemblies places the solution, the reagent, the mixing device and an access port in a single housing and thereby substantially eliminates user based variables that may negatively impact the quality and function of a reagent. The assemblies eliminate many measuring and handling steps so that high level manufacturing quality standards for the reagent are carried forward and maintained during preparation of the reagent. Proper preparation of the reagent with the assemblies described herein is thereby not dependent on the skill, experience, competency or technique of the user. Having the specified amount (one or more aliquots) and concentration of the reagent mixture ensures a testing or diagnostic scheme is accurately performed and provides the technician with a confident diagnostic or test result.
(41) Further, the tapered well of the assemblies substantially ensures the solution and the reagent mix in a localized area within the reaction chamber. Moreover, the reagent mixture is retained substantially beneath the access port to ensure instruments extending into the reaction chamber have ready access to the mixture. Pooling or spreading of the reagent mixture in disparate areas of the reaction chamber is thereby avoided. Moreover, the positioning of the syringe within the reaction chamber partially fills the reaction chamber and further minimizes the displacement of the reagent mixture from the trough of the well. A technician is thereby able to readily and accurately withdraw each of the one or more doses from the reaction chamber with little or no portion of the reagent mixture retained in an inaccessible portion of the chamber.
(42) The example assemblies described above include diagnostic and testing solutions and reagents. Each of the assemblies previously described and claimed herein is similarly applicable for use in therapeutic and pharmaceutical applications, such as drug reconstitution, administration and the like. To the extent reagents, mixtures and preparation assemblies are described and claimed herein, therapeutic and pharmaceutical reagents, mixtures and devices are similarly considered within the scope of the description, figures and the claims.
(43) In the foregoing description, the subject matter has been described with reference to specific exemplary examples. However, it will be appreciated that various modifications and changes may be made without departing from the scope of the present subject matter as set forth herein. The description and figures are to be regarded in an illustrative manner, rather than a restrictive one and all such modifications are intended to be included within the scope of the present subject matter. Accordingly, the scope of the subject matter should be determined by the generic examples described herein and their legal equivalents rather than by merely the specific examples described above. For example, the steps recited in any method or process example may be executed in any order and are not limited to the explicit order presented in the specific examples. Additionally, the components and/or elements recited in any apparatus example may be assembled or otherwise operationally configured in a variety of permutations to produce substantially the same result as the present subject matter and are accordingly not limited to the specific configuration recited in the specific examples.
(44) Benefits, other advantages and solutions to problems have been described above with regard to particular examples; however, any benefit, advantage, solution to problems or any element that may cause any particular benefit, advantage or solution to occur or to become more pronounced are not to be construed as critical, required or essential features or components.
(45) As used herein, the terms “comprises”, “comprising”, or any variation thereof, are intended to reference a non-exclusive inclusion, such that a process, method, article, composition or apparatus that comprises a list of elements does not include only those elements recited, but may also include other elements not expressly listed or inherent to such process, method, article, composition or apparatus. Other combinations and/or modifications of the above-described structures, arrangements, applications, proportions, elements, materials or components used in the practice of the present subject matter, in addition to those not specifically recited, may be varied or otherwise particularly adapted to specific environments, manufacturing specifications, design parameters or other operating requirements without departing from the general principles of the same.
(46) The present subject matter has been described above with reference to examples. However, changes and modifications may be made to the examples without departing from the scope of the present subject matter. These and other changes or modifications are intended to be included within the scope of the present subject matter, as expressed in the following claims.
(47) It is to be understood that the above description is intended to be illustrative, and not restrictive. Many other examples will be apparent to those of skill in the art upon reading and understanding the above description. It should be noted that examples discussed in different portions of the description or referred to in different drawings can be combined to form additional examples of the present application. The scope of the subject matter should, therefore, be determined with reference to the appended claims, along with the full scope of equivalents to which such claims are entitled.