IP Library Granted Patent US 6,942,879
Granted Patent B2
US 6,942,879 · App. 10/316,000 · Granted Sep 13, 2005

Bioartificial filtration device for filtering blood to mimic kidney function

Assignee: The Regents of the University of Michigan
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 6,942,879
App. No.
10/316,000
Granted
Sep 13, 2005
Kind
B2
Abstract

A novel cell seeded hollow fiber bioreactor is described as a potential bioartificial kidney. Endothelial cells along with pericyte, vascular smooth muscle, and/or mesangial cells or any mesenchymally derived support cells are seeded along a hollow fiber in a perfused bioreactor to reproduce the ultrafiltration function and transport function of the kidney. Maintenance of tissue specific function and ultrastructure suggest that this bioreactor provides an economical device for treating renal failure.

Claims (37)

1. A bioartificial filtration device which is capable of filtering blood, comprising:

a bundle of semipermeable hollow fibers having an internal surface and an external surface in a chamber defined by a housing, wherein internal surfaces and/or external surfaces of the hollow fibers are coated with:

(i) a layer of non-immortalized renal endothelial cells, non-immortalized renal epithelial cells, or a mixture thereof, and

(ii) pericytes, vascular smooth muscle cells, or a mixture thereof, wherein

the coated hollow fibers are capable of filtering blood when blood is passed through the hollow fibers,

opposite ends of the hollow fibers are connected to a blood inlet and a blood outlet, and

the housing comprises a filtrate outlet that is in fluid communication with the external surfaces of the hollow fibers.

2. The bioartifical filtration device of claim 1 , wherein internal surfaces of the hollow fibers are coated with (i) and (ii).

3. The bioartifical filtration device of claim 1 , wherein external surfaces of the hollow fibers are coated with (i) and (ii).

4. The bioartifical filtration device of claim 1 , wherein internal surfaces and external surfaces of the hollow fibers are coated with (i) and (ii).

5. The bioartifical filtration device of claim 1 , wherein the pericytes, vascular smooth muscle cells, or a mixture thereof (ii) are present in the layer (i).

6. The bioartifical filtration device of claim 1 , wherein the pericytes, vascular smooth muscle cells, or a mixture thereof (ii) are present in a separate layer from the layer (i).

7. The bioartifical filtration device of claim 1 , wherein the layer (i) comprises the renal endothelial cells.

8. The bioartifical filtration device of claim 6 , wherein the layer (i) comprises the renal epithelial cells.

9. The bioartifical filtration device of claim 6 , wherein the layer (i) comprises a mixture of the renal endothelial cells and the renal epithelial cells.

10. The bioartifical filtration device of claim 6 , wherein the layer (i) comprises renal tubule epithelial cells.

11. The bioartifical filtration device of claim 1 , wherein the layer (i) also contains the pericytes, vascular smooth muscle cells, or mixture thereof.

12. The bioartifical filtration device of claim 1 , wherein the pericytes are mesangial cells.

13. The bioartifical filtration device of claim 1 , which comprises the pericytes.

14. The bioartifical filtration device of claim 1 , which comprises mesangial cells.

15. The bioartifical filtration device of claim 1 , which comprises the vascular smooth muscle cells.

16. The bioartifical filtration device of claim 1 , wherein the surfaces of the hollow fibers coated with (i) and (ii) are pre-coated with an extracellular matrix layer.

17. The bioartifical filtration device of claim 16 , wherein the extracellular matrix layer contains at least one of Type I collagen, Type IV collagen, laminin, proteoglycan, or fibronectin.

18. The bioartifical filtration device of claim 1 , comprising 100 to 10,000 of the hollow fibers.

19. The bioartifical filtration device of claim 18 , wherein the hollow fibers have an ultrafiltration coefficient of greater than 20 mL/hr, Torr, m 2 .

20. The bioartifical filtration device of claim 18 , wherein the hollow fibers have a molecular weight cutoff which is less than 60,000 g/ mol.

21. The bioartifical filtration device of claim 18 , wherein the hollow fibers are microporous.

22. The bioartifical filtration device of claim 18 , wherein the surfaces of the hollow fibers coated with (i) and (ii) are pre-coated with an extracellular matrix layer.

23. The bioartifical filtration device of claim 19 , wherein (ii) are pericytes.

24. The bioartifical filtration device of claim 19 , wherein (ii) are mesangial cells.

25. The bioartifical filtration device of claim 19 , wherein (ii) are vascular smooth muscle cells.

26. The bioartifical filtration device of claim 1 , wherein the pericytes, vascular smooth muscle cells, or a mixture thereof (ii) are renal cells.

27. A method of purifying blood, comprising:

passing blood from a subject into the bioartificial filtration device of claim 1 , wherein the blood passes through the hollow fibers to produce purified blood, and

returning the purified blood to the subject.

28. The method of claim 27 , wherein the subject is an animal.

29. The method of claim 27 , wherein the subject is a human.

Continuity (5)
Continuation 0979432800 · Feb 28, 2001
Continuation 0956033100 · Apr 28, 2000
Continuation 0894122800 · Sep 30, 1997
Provisional Application 6002749500 · Sep 30, 1996
Related Publication 20030119184A1 · Jun 26, 2003