IP Library Granted Patent US 10,159,980
Granted Patent B2
US 10,159,980 · App. 14/909,470 · Granted Dec 25, 2018

Systems and methods for recovering blood cells, in a controlled environment, for storage

Inventor: Michael C. Cordisco (Brookfield, CT)
Assignee: All Cell Recovery LLC
B01L3/508A61B90/98A61M1/0281B01D33/70B01D35/30B01D36/04B01F11/0002B01F11/0088G01N33/5094A61B2090/0805B01L2300/04B01L2300/0663B01L2300/0681B01L2300/18B01L2400/0403
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Quick Facts
Patent No.
US 10,159,980
App. No.
14/909,470
Granted
Dec 25, 2018
Kind
B2
Abstract

Systems, apparatus, methods, and articles of manufacture provide for resuspending and/or collecting blood and/or other types of cells in solution. In one embodiment, cells may be recovered from used surgical sponges and/or other types of surgical articles (e.g., and stored for later use).

Claims (58)

1. A cell recovery and storage system comprising:

an agitator device comprising a first connector;

a sterile, single-use soaking tub comprising a second connector connected to a bottom portion of the soaking tub,

the second connector having a passageway configured for receiving suspension solution through the second connector, and

the second connector being configured for rotatably coupling with the first connector of the agitator device;

a filter bag configured to be at least partially disposed in an interior of the soaking tub;

a fluid intake system comprising inlet tubing connected to the soaking tub via the passageway of the second connector;

a fluid output system comprising outlet tubing connected to the soaking tub via the passageway of the second connector; and

at least one cell collection device connected to the fluid output system for collecting cells resuspended in suspension solution.

2. The cell recovery and storage system of claim 1 , wherein a drawstring of the filter bag is slidably attached to the filter bag in a substantially helical configuration.

3. The cell recovery and storage system of claim 1 , further comprising a lid for closing an opening of the soaking tub.

4. The cell recovery and storage system of claim 1 , the soaking tub further comprising at least one fin.

5. The cell recovery and storage system of claim 1 , wherein the fluid intake system comprises at least one flow control valve.

6. The cell recovery and storage system of claim 1 , wherein the fluid output system comprises at least one flow control valve.

7. The cell recovery and storage system of claim 1 , further comprising:

an RFID sensor connected to at least one of the soaking tub and the agitator device.

8. The cell recovery and storage system of claim 7 , wherein the RFID sensor is in communication with a controller device configured to receive information from the RFID sensor.

9. The cell recovery and storage system of claim 8 , wherein the information comprises a count of articles detected by the RFID sensor.

10. The cell recovery and storage system of claim 1 , further comprising at least one of:

an IV bag spike,

a flow sensor, and

a temperature sensor.

11. The cell recovery and storage system of claim 1 , the fluid output system comprising at least one of:

a hematocrit sensor configured to measure a hematocrit value for the suspension solution removed from the soaking tub,

a flow sensor configured to measure a volume of the suspension solution removed from the soaking tub, and

an air detector configured to detect air in the suspension solution removed from the soaking tub.

12. The cell recovery and storage system of claim 1 , wherein the soaking tub comprises at least one of:

a fill sensor,

a filter, and

a first wall and second wall inside the first wall, the second wall including at least one opening for allowing fluid to pass through the second wall from the interior of the soaking tub.

13. The cell recovery and storage system of claim 1 , wherein the agitator device comprises at least one of:

a motor,

a power supply, and

a drive shaft.

14. The cell recovery and storage system of claim 1 , further comprising:

a cabinet configured for housing the agitator device and the soaking tub, the cabinet including an opening for receiving the soaking tub into the cabinet, and

a lid for controlling access to at least one of: the agitator device and the soaking tub.

15. The cell recovery and storage system of claim 1 , wherein the second connector comprises a channel configured to secure at least one of:

the inlet tubing,

the outlet tubing, and

a y-type tubing connection connected to the inlet tubing and to the outlet tubing.

16. The cell recovery and storage system of claim 1 , further comprising:

a heater configured to heat the suspension solution.

17. The cell recovery and storage system of claim 1 , further comprising:

a controller device configured to:

control operation of the fluid intake system to transmit suspension solution into the soaking tub,

control operation of the agitator device, and

control operation of the fluid output system to remove from the soaking tub the suspension solution.

18. The cell recovery and storage system of claim 17 , the controller device being further configured to:

receive a signal from a fill sensor configured to detect fluid in the soaking tub, the signal indicating detection of the suspension solution; and

terminate operation of the fluid intake system in response to receiving the signal.

19. The cell recovery and storage system of claim 17 , the controller device being further configured to:

receive a signal from at least one of a flow sensor and an air detector; and

terminate removal of the suspension solution from the soaking tub via the fluid output system in response to receiving the signal.

20. The cell recovery and storage system of claim 17 , further comprising a user control panel for controlling, via the controller device, one or more of:

operation of the fluid intake system,

operation of the agitator device, and

operation of the fluid output system.

Continuity (4)
Continuation In Part 14300316 · Jun 10, 2014
Continuation In Part 14060663 · Oct 23, 2013
Provisional Application 61861953 · Aug 2, 2013
Related Publication 20160199831A1 · Jul 14, 2016