IP Library Granted Patent US 8,357,113
Granted Patent B2
US 8,357,113 · App. 12/562,730 · Granted Jan 22, 2013

Systems and methods for performing peritoneal dialysis

Inventors: Robert W. Childers (Trinity, FL); David S. Brown (Gurnee, IL); Ramesh Wariar (Tampa, FL); Sujatha Karoor (Lake Bluff, IN); Shahid Din (Palm Harbor, FL); Leo Martis (Long Grove, IL); Cody Buckmann (Columbus, OH); Paul Soltys (Holmdel, NJ)
Assignees: Baxter International Inc.; Baxter Healthcare S.A.
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Quick Facts
Patent No.
US 8,357,113
App. No.
12/562,730
Granted
Jan 22, 2013
Kind
B2
Abstract

A regenerative peritoneal dialysis system includes a dialysis fluid loop; a filter located in the dialysis fluid loop, a first portion of the dialysis fluid sent to the filter rejected by the filter and returned upstream of the filter, a second portion of the dialysis fluid sent to the filter forming permeate, the permeate being rich in urea; and a urea removing apparatus located in the dialysis fluid loop downstream from the filter to receive the permeate and absorb urea from the permeate.

Claims (31)

1. A regenerative peritoneal dialysis system comprising:

a patient loop for fluid communication with a patient;

a regeneration loop in fluid communication with the patient loop;

a filter located in the regeneration loop, a first portion of fluid sent to the filter rejected by the filter and returned upstream of the filter, a second portion of the fluid sent to the filter forming permeate, the permeate being rich in urea; and

a cartridge located in the regeneration loop so as to receive the permeate, the cartridge including a medium configured to absorb urea from the permeate.

2. The regenerative peritoneal dialysis system of claim 1 , wherein the medium is a sorbent material configured to absorb urea, a reverse osmosis medium or an electrooxidation medium.

3. The regenerative peritoneal dialysis system of claim 1 , wherein the filter is a nanofilter.

4. The regenerative peritoneal dialysis system of claim 1 , wherein the regeneration loop communicates fluidly with the patient loop via a solution container.

5. The regenerative peritoneal dialysis system of claim 4 , wherein the solution container receives the rejected first portion of fluid returned upstream of the filter.

6. The regenerative peritoneal dialysis system of claim 4 , wherein fluid exiting the cartridge is returned to the solution container.

7. The regenerative peritoneal dialysis system of claim 1 , wherein the patient fluid loop includes a cleaning cartridge having at least one of: (i) activated charcoal and (ii) an anion exchange.

8. The regenerative peritoneal dialysis system of claim 7 , wherein the cleaning cartridge is located upstream of a fluid communication junction between the patient loop and the regeneration loop.

9. The regenerative peritoneal dialysis system of claim 1 , wherein the patient fluid loop includes a filter.

10. The regenerative peritoneal dialysis system of claim 9 , wherein the filter is located downstream of a fluid communication junction between the patient loop and the generation loop.

11. The regenerative peritoneal dialysis system of claim 1 , wherein fluid flow rate through the regeneration loop is greater than through the patient loop.

12. A regenerative peritoneal dialysis system comprising:

a dialysis fluid loop;

a filter located in the dialysis fluid loop, a first portion of the dialysis fluid sent to the filter rejected by the filter and returned upstream of the filter, a second portion of the dialysis fluid sent to the filter forming permeate, the permeate being rich in urea; and

a urea removing apparatus located in the dialysis fluid loop downstream from the filter to receive the permeate and absorb urea from the permeate.

13. The regenerative peritoneal dialysis system of claim 12 , wherein the urea removing apparatus is one of: a sorbent apparatus, a reverse osmosis apparatus and an electrooxidation apparatus.

14. The regenerative peritoneal dialysis system of claim 12 , wherein the filter is a nanofilter.

15. The regenerative peritoneal dialysis system of claim 12 , wherein the dialysis fluid loop is a regeneration loop placed in fluid communication with a patient loop for fluid communication with a patient.

16. The regenerative peritoneal dialysis system of claim 15 , wherein the first portion of the dialysis fluid rejected by the filter is returned to a fluid communication junction between the regeneration loop and the patient loop.

17. A regenerative peritoneal dialysis system comprising:

a patient circuit;

a regeneration circuit;

a solution container fluidly connecting the patient circuit and the regeneration circuit such that fluids from the circuits are mixed directly; and

a urea removal apparatus located in the regeneration loop.

18. The regenerative peritoneal dialysis system of claim 17 , wherein the urea removal apparatus includes a filter and a urea absorber, the filter permeating a urea rich fluid to the urea absorber.

19. The regenerative peritoneal dialysis system of claim 17 , wherein the patient loop includes at least one of: an activated charcoal medium, an anion exchanger and a filter located in the patient loop.

20. The regenerative peritoneal dialysis system of claim 17 , wherein fluid flow rate through the regeneration loop is greater than through the patient loop.

Assignments (2)
CHANGE OF CORPORATE ADDRESS Recorded Dec 18, 2012
From: BAXTER HEALTHCARE S.A.
To: BAXTER HEALTHCARE S.A.
Reel/Frame 029495/0498 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2009
From: CHILDERS, ROBERT W.; BROWN, DAVID S.; WARIAR, RAMESH; KAROOR, SUJATHA; DIN, SHAHID; MARTIS, LEO; BUCHMANN, CODY; SOLTYS, PAUL
To: BAXTER INTERNATIONAL INC.; BAXTER HEALTHCARE S.A.
Reel/Frame 023260/0351 →
Continuity (3)
Continuation 10623316 · Jul 17, 2003
Provisional Application 60397131 · Jul 19, 2002
Related Publication 20100010429A1 · Jan 14, 2010