IP Library › Granted Patent US 11,540,756
Granted Patent B2
US 11,540,756 · App. 16/967,315 · Granted Jan 3, 2023

Biological fluid collection and stabilization system

Inventors: Adam Edelhauser (Kinnelon, NJ); Bradley M. Wilkinson (North Haledon, NJ)
Assignee: Becton, Dickinson and Company
A61B5/150755A61B5/157A61B5/150236A61B5/150259A61B5/150351A61B5/150992
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Quick Facts
Patent No.
US 11,540,756
App. No.
16/967,315
Filed
Aug 4, 2020
Granted
Jan 3, 2023
Kind
B2
Art Unit
3791
USPC
600/578
Abstract

A biological fluid collection system that receives a sample and provides flow-through blood stabilization technology and a precise sample dispensing function for point-of-care and near patient testing applications is disclosed. A biological fluid collection system of the present disclosure is able to effectuate distributed mixing of a sample stabilizer within a blood sample and dispense the stabilized sample in a controlled manner. In this manner, a biological fluid collection system of the present disclosure enables blood micro-sample management, e.g., passive mixing with a sample stabilizer and controlled dispensing, for point-of-care and near patient testing applications.

Claims (47)

1. A biological fluid collection system adapted to receive a sample, the biological fluid collection system comprising:

a mixer having a first mixer end and a second mixer end;

a sample stabilizer disposed within the mixer;

a syringe assembly having a collection chamber, the syringe assembly removably connectable with the second mixer end, the syringe assembly creates a vacuum that draws the sample through the mixer and into the collection chamber; and

a closure comprising:

a cap having a first cap end, a second cap end, and defining a cap channel therein, the cap having a pierceable self-sealing stopper within a portion of the cap channel and a cap connection portion at the second cap end; and

an adapter having a first adapter end, a second adapter end, and defining an adapter channel therein, the adapter having an adapter connection portion at the first adapter end,

wherein the cap connection portion is removably connectable with the adapter connection portion, and

wherein the second adapter end is removably connectable with the first mixer end of the mixer.

2. The biological fluid collection system of claim 1 , wherein:

with the cap connected to the adapter, the closure is connectable to a first blood collection device via the cap, and

with the cap disconnected from the adapter, the closure is connectable to a second blood collection device via the adapter.

3. The biological fluid collection system of claim 2 , wherein the first blood collection device is a tube holder.

4. The biological fluid collection system of claim 2 , wherein the second blood collection device is a line ending in a Luer connector.

5. The biological fluid collection system of claim 1 , wherein the syringe assembly comprises:

a barrel defining the collection chamber and having a first end, a second end, and a sidewall therebetween;

a stopper slidably disposed within the collection chamber of the barrel, the stopper sized relative to the collection chamber to provide sealing engagement with the sidewall of the barrel, the stopper transitionable between a first stopper position, in which the stopper is a first distance from the first end of the barrel, and a second stopper position, in which the stopper is a second distance from the first end of the barrel, the second distance greater than the first distance; and

a plunger having a first plunger end and a second plunger end, a portion of the first plunger end engaged with the stopper, wherein movement of the plunger away from the first end of the barrel moves the stopper to the second stopper position thereby creating the vacuum that draws the sample through the mixer and into the collection chamber.

6. The biological fluid collection system of claim 5 , wherein, with the syringe assembly connected to the mixer, the barrel is in fluid communication with the mixer.

7. The biological fluid collection system of claim 1 , wherein the mixer effectuates distributed mixing of the sample stabilizer within the sample.

8. The biological fluid collection system of claim 1 , wherein the mixer comprises:

a material including pores; and

the sample stabilizer within the pores of the material.

9. The biological fluid collection system of claim 8 , wherein the sample is configured to dissolve and mix with the dry anticoagulant powder while being drawn through the material by the syringe assembly.

10. The biological fluid collection system of claim 8 , wherein the material is an open cell foam.

11. The biological fluid collection system of claim 8 , wherein the sample stabilizer is a dry anticoagulant powder.

12. The biological fluid collection system of claim 1 , wherein the sample is a blood sample.

13. A biological fluid collection and testing system adapted to receive a sample, the biological fluid collection and testing system comprising:

a biological fluid collection device, comprising:

a mixer having a first mixer end and a second mixer end;

a sample stabilizer disposed within the mixer;

a syringe assembly having a collection chamber, the syringe assembly removably connectable with the second mixer end, the syringe assembly creates a vacuum that draws the sample through the mixer and into the collection chamber;

a closure comprising:

a cap having a first cap end, a second cap end, and defining a cap channel therein, the cap having a pierceable self-sealing stopper within a portion of the cap channel and a cap connection portion at the second cap end; and

an adapter having a first adapter end, a second adapter end, and defining an adapter channel therein, the adapter having an adapter connection portion at the first adapter end,

wherein the cap connection portion is removably connectable with the adapter connection portion, and

wherein the second adapter end is removably connectable with the first mixer end of the mixer; and

a testing device having a receiving port adapted to receive a portion of the syringe assembly for closed transfer of at least a portion of the sample from the syringe assembly to the testing device.

14. The biological fluid collection and testing system of claim 13 , wherein:

with the cap connected to the adapter, the closure is connectable to a first blood collection device via the cap, and

with the cap disconnected from the adapter, the closure is connectable to a second blood collection device via the adapter.

15. The biological fluid collection and testing system of claim 14 , wherein the first blood collection device is a tube holder.

16. The biological fluid collection and testing system of claim 14 , wherein the second blood collection device is a line ending in a Luer.

17. The biological fluid collection and testing system of claim 13 , wherein the syringe assembly comprises:

a barrel defining the collection chamber and having a first end, a second end, and a sidewall therebetween;

a stopper slidably disposed within the collection chamber of the barrel, the stopper sized relative to the collection chamber to provide sealing engagement with the sidewall of the barrel, the stopper transitionable between a first stopper position, in which the stopper is a first distance from the first end of the barrel, and a second stopper position, in which the stopper is a second distance from the first end of the barrel, the second distance greater than the first distance; and

a plunger having a first plunger end and a second plunger end, a portion of the first plunger end engaged with the stopper, wherein movement of the plunger away from the first end of the barrel moves the stopper to the second stopper position thereby creating the vacuum that draws the sample through the mixer and into the collection chamber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2020
From: EDELHAUSER, ADAM; WILKINSON, BRADLEY M.
To: BECTON DICKINSON AND COMPANY
Reel/Frame 053397/0398 →
Continuity (2)
Provisional Application 62626904 · Feb 6, 2018
Related Publication 20200359953A1 · Nov 19, 2020