IP Library Granted Patent US 9,821,105
Granted Patent B2
US 9,821,105 · App. 12/166,063 · Granted Nov 21, 2017

Nanoclay sorbents for dialysis

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Quick Facts
Patent No.
US 9,821,105
App. No.
12/166,063
Granted
Nov 21, 2017
Kind
B2
Abstract

Dialysis is enhanced by using nanoclay sorbents to better absorb body wastes in a flow-through system. The nanoclay sorbents, using montmorillonite, bentonite, and other clays, absorb significantly more ammonium, phosphate, and creatinine, and the like, than conventional sorbents. The montmorillonite, the bentonite, and the other clays may be used in wearable systems, such as a wearable peritoneal dialysis system, in which a dialysis fluid is circulated through a filter with the nanoclay sorbents. Waste products are absorbed by the montmorillonite, the bentonite, and the other clays and the dialysis fluid is recycled to a patient's peritoneum. Using an ion-exchange capability of the montmorillonite, the bentonite, and the other clays, waste ions in the dialysis fluid are replaced with desirable ions, such as calcium, magnesium, and bicarbonate. The nanoclay sorbents are also useful for refreshing a dialysis fluid used in hemodialysis and thus reducing a quantity of the dialysis fluid needed for the hemodialysis.

Claims (31)

1. A wearable system for removing body wastes from a peritoneal dialysis fluid, comprising:

a closed fluid loop for circulating the peritoneal dialysis fluid to and from a peritoneum of a patient;

at least one pump attached to the loop for circulating the peritoneal dialysis fluid into and out of the peritoneum and through the fluid loop;

a replaceable cartridge housing connected to the closed fluid loop, the housing having a first end including an inlet, and a second end including an outlet;

a filter with nanoclay particles, the filter attached to the fluid loop for removing the body wastes from the peritoneal dialysis fluid, wherein the nanoclay particles comprise a processed clay having at least one dimension from 1 nm to 200 nm, and wherein the nanoclay particles have been chemically enhanced with an acid to increase an acidity such that urea uptake is increased; and

a drain container connected to the closed fluid loop for removing an excess fluid.

2. The wearable system according to claim 1 , further comprising an access device for providing inflow and outflow to and from the peritoneum.

3. The wearable system according to claim 1 , wherein the processed clay is selected from the group consisting of expanded clays, exfoliated clays, intercalated clays, and substituted clays.

4. The wearable system according to claim 1 , wherein the processed clay is selected from the group consisting of processed montmorillonite clay, processed bentonite clay, processed kaolin, processed talc, and processed vermiculite.

5. The wearable system according to claim 1 , further comprising a sensor for measuring the urea or a urea by-product in the peritoneal dialysis fluid.

6. A wearable system for removing body wastes from a peritoneal dialysis fluid, comprising:

a catheter having an inflow lumen and an outflow lumen in communication with a peritoneal cavity of a patient;

a fluid circuit for circulating the peritoneal dialysis fluid to and from the peritoneal cavity;

a quantity of the peritoneal dialysis fluid within the fluid circuit;

at least one pump attached to the fluid circuit for circulating the peritoneal dialysis fluid into and out of the peritoneal cavity and through the fluid circuit;

a replaceable cartridge housing coupled to the fluid circuit, the housing having a first end including an inlet, and a second end including an outlet;

a filter with processed nanoclay particles, the filter coupled to the fluid circuit for removing the body wastes from the peritoneal dialysis fluid, wherein the processed nanoclay particles comprise a processed clay having at least one dimension from 1 nm to 200 nm, and wherein the processed nanoclay particles have been chemically enhanced with an acid to increase an acidity such that urea uptake is increased; and

a discharge path coupled to the fluid circuit allowing the peritoneal dialysis fluid to be drained after a treatment period.

7. The wearable system according to claim 6 , wherein the processed clay is selected from the group consisting of processed montmorillonite clay, processed bentonite clay, processed kaolin, processed talc, and processed vermiculite.

8. The wearable system according to claim 6 , wherein the replaceable cartridge housing further comprises at least one of carbon, charcoal, and a zirconium compound.

9. The wearable system according to claim 6 , wherein the processed clay is a cationic ion exchange compound.

10. The wearable system according to claim 6 , further comprising a controller and a connector block for controlling flows of the peritoneal dialysis fluid within the fluid circuit.

11. A wearable replaceable cartridge, comprising:

a housing having a first end including an inlet and a second end including an outlet, the housing suitable for wearing by a person; and

a filter with nanoclay particles for removing at least one body waste from a fluid, wherein the nanoclay particles comprise a processed clay having at least one dimension from 1 nm to 200 nm, wherein the nanoclay particles have been chemically enhanced with an acid to increase an acidity such that urea uptake is increased.

12. The wearable replaceable cartridge of claim 11 , wherein the fluid comprises a peritoneal dialysis fluid.

13. The wearable replaceable cartridge of claim 11 , wherein the processed clay comprises at least one of a smectite, a kaolin, an illite, a chlorite, an attapulgite, and a combination of one or more thereof.

14. The wearable replaceable cartridge of claim 11 , wherein the processed clay comprises swellable nanoclays selected from the group consisting of smectite nanoclays, sepiolite nanoclays, zeolite nanoclays, palygorskite nanoclays, and mixtures thereof.

15. The wearable replaceable cartridge of claim 11 , wherein the processed clay comprises a layered clay selected from the group consisting of a montmorillonite, a bentonite, a pyrophyllite, a hectorite, a saponite, a sauconite, a nontronite, a talc, a beidellite, a volchonskoite, a stevensite, and a vermiculite.

16. The wearable replaceable cartridge of claim 11 , further comprising at least one of carbon, charcoal and activated charcoal.

17. The wearable replaceable cartridge of claim 11 , further comprising a sensor for detecting ammonia or an ammonia by-product in a dialysis fluid used in removing the at least one body waste.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2025
From: BAXTER HEALTHCARE SA
To: VANTIVE HEALTH GMBH
Reel/Frame 073433/0500 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2025
From: BAXTER INTERNATIONAL INC.
To: VANTIVE US HEALTHCARE LLC
Reel/Frame 074041/0750 →
SECURITY INTEREST Recorded Jan 31, 2025
From: VANTIVE US HEALTHCARE LLC; GAMBRO RENAL PRODUCTS, INC.
To: ARES CAPITAL CORPORATION
Reel/Frame 070076/0701 →
CHANGE OF ASSIGNEE ADDRESS Recorded Oct 17, 2017
From: BAXTER HEALTHCARE S.A.
To: BAXTER HEALTHCARE S.A.
Reel/Frame 044217/0732 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2008
From: YEH, ROSA H.; XIE, WEI; YANG, HSINJIN E.; LING, MICHAEL T. K.; LO, YING-CHENG
To: BAXTER INTERNATIONAL INC.; BAXTER HEALTHCARE S.A.
Reel/Frame 021186/0562 →