IP Library Patent Application 15551551
Patent Application
App. No. 15/551,551

USE OF A LAMININ FOR DIFFERENTIATING PLURIPOTENT CELLS INTO HEPATOCYTE LINEAGE CELLS

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Patent No.
US None
App. No.
15/551,551
Abstract

The invention relates to the use of a laminin (LN) as a matrix for hepatic differentiation. The invention also relates to a method for inducing hepatic differentiation comprising the steps of: (i) providing a population of human pluripotent cells, (ii) culturing the population on a support coated with a laminin in a endoderm induction medium to produce a population of human DE cells, (iii) culturing said population of human DE cells on a support coated with a laminin in a hepatic induction medium to produce a population of human hepatoblasts-like cells, and (iv) optionally culturing said population of human hepatoblasts-like cells on a support coated with a laminin in a hepatic maturation medium to produce a population of human hepatocyte-like cells. The invention further relates to a population of human hepatoblasts-like cells or human fetal hepatocyte-like cells obtained by the method of the invention. The invention further relates to a population of human hepatoblasts-like cells expressing HNF4α and expressing substantially AFP for use in a method of treatment of the human body.

Claims (26)

1 - 16 . (canceled)

17 . A process of hepatic differentiation, comprising contacting a population of pluripotent cells, a population of multipotent cells or a population of definitive endoderm (DE) cells with a laminin (LN).

18 . The process according to claim 17 , for inducing and/or improving the hepatic differentiation of the population of pluripotent cells, multipotent cells or DE cells into a population of hepatocyte lineage cells.

19 . The process according to claim 17 , wherein LN is selected from the group consisting of laminin-111 (LN-111), laminin-211 (LN-211), laminin-332 (LN-332), laminin-411 (LN-411), laminin-421 (LN-421), laminin-511 (LN-511) and laminin-521 (LN-521).

20 . The process according to claim 17 , wherein LN is human recombinant LN-111 or human recombinant LN-521 or a mixture thereof.

21 . The process according to claim 17 , comprising the steps of:

(i) providing a population of human DE cells,

(ii) culturing said population of human DE cells on a support coated with a LN in a hepatic induction medium to produce a population of human hepatoblast-like cells, and

(iii) optionally culturing said population of human hepatoblast-like cells on a support coated with a LN in a hepatic maturation medium to produce a population of hepatocyte-like cells, preferably human fetal hepatocyte-like cells.

22 . The process according to claim 21 , wherein the hepatic induction medium is a chemically defined medium comprising bone morphogenetic protein 4 (BMP4) and family growth factor (FGF10).

23 . The process according to claim 21 , wherein the hepatic maturation medium is a chemically defined medium comprising hepatic growth factor (HGF) and oncostatin M (OSM).

24 . The process according to claim 21 , wherein the hepatic induction medium and/or the endoderm induction medium further comprises a ROCK inhibitor and/or CHIR99021.

25 . The process according to claim 17 , comprising the steps of:

(i) providing a population of human pluripotent cells,

(ii) culturing the population on a support coated with a LN in an endoderm induction medium to produce a population of human DE cells,

(iii) culturing said population of human DE cells on a support coated with a LN in a hepatic induction medium to produce a population of human hepatoblast-like cells, and

(iv) optionally culturing said population of human hepatoblast-like cells on a support coated with a LN in a hepatic maturation medium to produce a population of hepatocyte-like cells, preferably human fetal hepatocyte-like cells.

26 . The process according to claim 25 , wherein the hepatic induction medium is a chemically defined medium comprising bone morphogenetic protein 4 (BMP4) and family growth factor (FGF10).

27 . The process according to claim 25 , wherein the hepatic maturation medium is a chemically defined medium comprising hepatic growth factor (HGF) and oncostatin M (OSM).

28 . The process according to claim 25 , wherein the endoderm induction medium is a chemically defined medium comprising at least Activin A and optionally WNT3A.

29 . The process according to claim 25 , wherein the hepatic induction medium and/or the endoderm induction medium further comprises a ROCK inhibitor and/or CHIR99021.

30 . A population of human hepatocyte-like cells obtained by a process of hepatic differentiation, wherein said process comprises contacting a population of pluripotent cells, a population of multipotent cells or a population of definitive endoderm (DE) cells with a laminin (LN).

31 . The population of human hepatocyte-like cells according to claim 30 , wherein said population expresses HNF4α and expresses substantially AFP.

32 . The population of human hepatocyte-like cells according to claim 30 , for use in a method of treatment of the human body.

33 . The population of human hepatocyte-like cells for use according to claim 32 , wherein said population is to be administered in the spleen.

34 . A population of human fetal hepatocyte-like cells obtained by a process of hepatic differentiation, wherein said process comprises contacting a population of pluripotent cells, a population of multipotent cells or a population of definitive endoderm (DE) cells with a laminin (LN).

Assignments (3)
MERGER Recorded Sep 7, 2023
From: UNIVERSITE DE NANTES
To: NANTES UNIVERSITE
Reel/Frame 064824/0596 →
LICENSE Recorded Mar 21, 2019
From: UNIVERSITÉ DE NANTES
To: OUEST VALORISATION
Reel/Frame 048669/0842 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2018
From: NGUYEN, TUAN HUY; FOURRIER, ANGÉLIQUE
To: INSERM (INSTITUT NATIONAL DE LA SANTÉ ET DE LA RECHERCHE MÉDICALE); UNIVERSITÉ DE NANTES
Reel/Frame 044929/0501 →