System for Recovering Autologous Thrombin
20210186812 ยท 2021-06-24
Inventors
Cpc classification
A61M2039/1077
HUMAN NECESSITIES
International classification
Abstract
A system is disclosed for recovering autologous thrombin from a blood product. The blood product is drawn into an injecting syringe and a clot is allowed to form. A discharge port of the injecting syringe is communicably connected to an intake port of an aspirating syringe through a hydrophilic filter assembly. The injecting and aspirating syringes are simultaneously operated to transmit blood product through the filter such that fibrous clotting material and red blood cells are removed by the filter and a concentrated, high-quality thrombin solution is recovered.
Claims
1. An autologous thrombin recovery system comprising: an injecting syringe including a supply receptacle for holding a blood product and having a discharge port formed therein, said injecting syringe further including a first piston assembly operatively interengaged with said supply receptacle; an aspirating syringe including a receiving receptacle having a fluid inlet port formed therein and a second piston assembly operatively engaged with said receiving receptacle; and a filter assembly operably interconnected between said injecting and aspirating syringes, said filter assembly including a fluid intake port for communicably connecting to said discharge port of said injecting receptacle and a fluid outlet port for communicably connecting to said inlet port of said aspirating syringe, said filter assembly further including a filter component disposed between and communicably interconnecting said intake and outlet ports of said filter assembly; said first piston assembly of said injecting syringe being driven through said supply receptacle of said injecting syringe and said second piston assembly being simultaneously retracted through said receiving receptacle of said aspirating syringe for transmitting the blood product from said supply receptacle of said injecting syringe through said filter component of said filter assembly such that constituent components of the blood product are removed by said filter component and a solution containing thrombin is collected in said receiving receptacle of said aspirating syringe.
2. The system of claim 1 in which said discharge port of said injecting syringe and said inlet port of said aspirating syringe include male luer ports.
3. The system of claim 2 in which said intake port of said filter assembly includes a female luer port.
4. The system of claim 3 in which said outlet port of said filter assembly includes a male luer port.
5. The system of claim 4 further including a connector fitting having a pair of female luer ports for communicably interconnecting to said male outlet port of said filter assembly and said male inlet port of said aspirating syringe respectively.
6. The system of claim 1 in which said injecting syringe includes a glass supply receptacle to promote coagulation of the blood.
7. The system of claim 1 in which said filter component includes a hydrophilic filter.
8. The system of claim 1 in which said filter component includes a pore size of approximately 0.2 microns.
9. The system of claim 1 in which said filter component includes pores having a size not greater than 0.45 microns apiece.
10. The system of claim 1 in which said filter component is adapted for removing at least one of the constituent blood components consisting of clotted material, fibrous material, one or more blood proteins and red blood cells.
11. The system of claim 1 in which the constituent components removed by said filter component include at least one of clotted material, fibrous material, one or more blood proteins, and red blood cells.
12. The system of claim 1 in which said thrombin solution includes plasma, platelet rich plasma and thrombin enzyme.
13. A method for recovering autologous thrombin from a blood product comprising the steps of: introducing a blood product into the receptacle of an injecting syringe; permitting a clot to form in the blood product; communicably interconnecting a discharge port of the injecting syringe to an inlet port of an aspirating syringe through a filter assembly; and simultaneously operating the injection and aspirating syringes to transmit the blood product through the filter assembly and remove constituent components of the blood product such that a thrombin solution is delivered to the receiving receptacle of the aspirating syringe.
14. The method of claim 13 in which the constituent components removed from the blood product include at least one of clotted material, fibrous material, one or more blood proteins, and red blood cells.
15. The method of claim 13 further including the step of agitating the blood product in the receptacle of the injecting syringe to promote formation of the clot in the blood product.
16. The method of claim 13 in which the blood product is transmitted through a hydrophilic filter of the filter assembly.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Other objects, features and advantages will occur from the following description of a preferred embodiment and the accompanying drawings, in which:
[0018]
[0019]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
[0020] There is shown in
[0021] Autologous thrombin solution is recovered from a patient undergoing a dental or orthopedic surgical procedure using a system comprising apparatus 10 depicted schematically in
[0022] Injecting syringe 12 also includes a discharge port 24, which preferably features a male luer port having a threaded connective tip 26 of the type that will be known to persons skilled in the art. Discharge port 24 is formed at the lower or distal end of supply receptacle 18 and communicably interconnected with an interior chamber of the receptacle. Tip 26 allows syringe 12 to be operatively interconnected to filter 16 in the manner described below.
[0023] Second syringe 14 comprises a receiving or aspirating syringe that may have a configuration or construction identical or similar to that of injecting syringe 12. In particular, syringe 14 includes a cylindrical fluid-receiving receptacle 28. Each of syringe receptacles 18 and 28 may have various capacities within the scope of this invention. Syringe 14 operatively supports a second piston assembly comprising a diaphragm, disc or piston 30 that is slidably and sealably mounted within the interior chamber of receptacle 28. A plunger 32 is operatively mounted to piston 30 and extends outwardly from the upper or proximal end of receptacle 28. Plunger 32 is pulled rearwardly or retractably to draw piston 30 through receptacle 28 so that aspiration is performed in the manner described more fully below.
[0024] Aspirating syringe 14 likewise includes a male luer port 34 that communicates with the interior chamber of receptacle 28 and is carried at the lower or distal end of that receptacle. Luer port 34 includes a threaded tip 36 that, again, allows syringe 14 to be operatively interconnected to filter assembly 16 in the manner described below. Port 34 thereby serves as an inlet port of aspirating syringe 14.
[0025] Syringes 12 and 14 are operatively interconnected by filter assembly 16. More specifically, the filter assembly includes a hydrophilic filter 38 featuring a pore size that is not larger than 0.45 microns. A particularly preferred pore size is 0.2 microns for most effectively performing the thrombin recovery process of this invention.
[0026] A filter intake port 40 is communicably connected to a first side of hydrophyllic filter 38 and a filter outlet port 42 is likewise communicably connected to the opposite side of filter 38. Filter intake port 40 preferably comprises a female luer-type connective port that is threadably or otherwise operatively interconnected to male discharge port 24 of injecting syringe 12. Filter outlet port 42 likewise preferably comprises a male luer port. An internal passageway 41 is formed in intake port 40 of filter assembly 16, which permits blood product to be transmitted from syringe 12 to filter component 38 as described more fully below. Filter assemblies featuring intake and outlet ports and an intervening filter, as specified herein, are conventionally available to persons skilled in the art. Such filter assemblies are used in IV circuits, for example, to vent and filter air and restrict contamination in an IV line. Alternatively, constructing such assemblies will be understood by such persons.
[0027] Male outlet 42 of filter assembly 16 is operatively and communicably interconnected to male inlet port 34 of syringe 14 by means of a coupler or connector fitting 44 having a pair of opposing and communicably interconnected female luer ports 46 and 48. Each port 46, 48 includes interior threads that are connected to corresponding threads on tips 43 and 36 of male luer ports 42 and 34 respectively. This allows the aspirating syringe 14 to be securely and communicably interconnected to filter assembly 16 through connector fitting 44. A central passageway 50 formed through fitting 44 allows filtered supernatant solution to be transmitted through the connector fitting between filter outlet 42 and syringe inlet port 34. Without connector fitting 44 featuring a pair of opposing and communicating female ports, the aspirating syringe would be unable to operatively interconnect with a filter assembly of the type represented by assembly 16. Preferably, respective receptacles 18 and 28 of syringes 12, 14 are permanently enclosed and liquids are introduced and discharged from the syringes by conventional injection and aspiration operations performed using the first and second piston assemblies respectively. Alternatively, it should be noted that, each syringe 12, 14 may include a cap or closure that is selectively opened and closed, as needed, to introduce and remove blood products and filtered thrombin solution to and from the syringes respectively when the system is used in accordance with this invention.
[0028] System 10 is employed to recover autologous thrombin from a patient in accordance with the following procedure. Initially, a sample of the patient's blood is drawn into receptacle 18 of syringe 12 and the syringe is capped. The blood can be drawn into the syringe in a standard manner or in alternative ways that are sterile and medically acceptable. The blood product B (
[0029] Receiving or aspirating syringe 14 is likewise operatively connected to outlet port 42 of filter assembly 16. In particular, the exteriorly threaded tip 36 of male inlet port 34 is interengaged with the interiorly threaded female port 48 of coupler 44. By the same token, interiorly threaded female port 46 of coupler fitting 44 is interengaged with exteriorly threaded tip 43 of filter outlet 42.
[0030] After the foregoing luer port interconnections are completed, syringes 12 and 14 are operated to transmit blood product B from receptacle 18 of syringe 12 through filter assembly 16 and into receptacle 28 of syringe 14. Specifically, plunger 22 is actuated or depressed from the position shown in
[0031] After filtration is completed, receiving syringe 14 is disengaged from coupler fitting 44. A concentrated autologous thrombin solution or supernatant remains in the receptacle of the receiving syringe. This supernatant is then retrieved from syringe 16 and mixed with either whole blood or PRP. The thrombin activates clotting and growth factors in the PRP that allow the mixture to be used effectively in a variety of dental and orthopedic surgical applications, including bone sealing, reinforcement, repair and reconstruction. The use of the patient's own PRP and thrombin achieves results that are far superior to those obtained using thrombin and PRP that are nonautogenous.
[0032] System 10 and the method of recovering autologous thrombin using that system provide for a number of advantages over the prior art. The disclosed system produces a thrombin solution that is far safer and more effective for use in dental and orthopedic surgical applications than are bovine thrombin products. Medical risks associated with mad cow disease are eliminated. The present invention enables very high-quality autologous thrombin solution to be obtained much faster, more efficiently and using less equipment, time and materials than has previously been involved. Centrifuging the blood product and related centrifuge equipment are not needed. Likewise, this system does not require the addition of calcium to compensate for the anticoagulation effects that normally result when a citrate solution is added to a PRP blood source.
[0033] By using a glass delivery syringe, the disclosed system also eliminates the use of glass powder for promoting clotting during the autologous thrombin recovery process. The highly concentrated and high-quality thrombin recovered using the apparatus and process of this invention provides for significantly improved surgical and orthopedic results. Bone regeneration, support and recovery are aided considerably. PRP growth factors and clotting are likewise significantly improved by the concentrated thrombin solution. This enables much better bone growth, healing, regeneration and support to be achieved. Various types of dental and orthopedic surgical procedures are thereby benefitted.
[0034] Accordingly, the present invention relates to a system and method for recovering autologous thrombin by using a hydrophilic filter that is communicably interconnected between a pair of injecting and aspirating syringes. The system is operated to effectively remove fibrous clotting material and red blood cells from a blood sample such that a concentrated and high-quality thrombin solution is recovered for use in PRP related dental and orthopedic surgical applications.
[0035] Although specific features of the invention are shown in some of the drawings and not others, this is for convenience only, as each feature may be combined with any and ail of the other features in accordance with this invention.