IP Library Granted Patent US 10,767,164
Granted Patent B2
US 10,767,164 · App. 15/841,004 · Granted Sep 8, 2020

Microenvironments for self-assembly of islet organoids from stem cells differentiation

Inventors: Sha Jin (Vestal, NY); Kaiming Ye (Vestal, NY); Huanjing Bi (Binghamton, NY)
Assignee: The Research Foundation for The State University of New York
C12N5/0677A61L27/14A61L27/3633A61L27/3695C12N5/0647C12N5/0696A61L2430/34C12N2501/117C12N2501/16C12N2501/599C12N2533/54C12N2533/90
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Quick Facts
Patent No.
US 10,767,164
App. No.
15/841,004
Granted
Sep 8, 2020
Kind
B2
Abstract

Human pluripotent stem cells (hPSCs) are promising cell source to produce therapeutic endocrine cells for diabetes treatment. A gel solution made by decellularized tissue-specific extracellular matrix (dpECM) significantly promotes three-dimensional (3D) islet-like organogenesis during induced hPSC differentiation into endocrine lineages. Islet organoids are self-organized even in a two-dimensional (2D) culture mode. Cells derived from hPSCs differentiated on such ECM coated substrates exhibit similar cellular composition to native pancreatic islets. These cells express islet signature markers insulin, PDX-1, C-peptide, MafA, glucagon, somatostatin, and pancreatic polypeptide, and secrete more insulin in response to glucose level compared to a traditional matrix substrate (Matrigel). The dpECM facilitates generating more C-peptide+/glucagon− cells rather than C-peptide+/glucagon+ cells. Remarkably, dpECM also facilitated intra-organoid vascularity by generating endothelial cells and pericytes. Furthermore, dpECM niches also induced intra-organoid microvascularization during pancreatic differentiation.

Claims (24)

1. A synthetic pancreatic organoid, comprising:

at least one cross-linked collagen-containing surface, coated with osmotically processed acellular tissue-specific matrix extracted from a mammalian organ without use of detergent, and cell growth factors comprising collagen, mucopolysaccharides, and basement membrane factors; and

stem cells cultured and induced into differentiation on the surface, having at least two differentiated pancreatic cell types.

2. The synthetic pancreatic organoid according to claim 1 ,

wherein the osmotically processed acellular tissue-specific matrix comprises a pancreas tissue-specific matrix, and

wherein the at least two differentiated pancreatic cell types comprise:

about 50-70% pancreatic beta cells,

about 20-30% pancreatic alpha cells,

about 10% pancreatic delta cells, and

less than 5% pancreatic polypeptide cells.

3. The synthetic pancreatic organoid according to claim 2 , wherein the pancreatic beta cells, pancreatic alpha cells, pancreatic delta cells, and pancreatic polypeptide cells are derived from human pluripotent stem cells.

4. The synthetic pancreatic organoid according to claim 3 , wherein the pancreas tissue-specific matrix is derived from a non-human mammal.

5. The synthetic pancreatic organoid according to claim 1 , wherein the acellular tissue-specific matrix is osmotically processed for cellular removal by cycles of different osmotic tension.

6. The synthetic pancreatic organoid according to claim 1 , wherein the acellular tissue-specific matrix has a residual DNA content of less than 1% of the DNA of the tissue from which it is derived.

7. A synthetic pancreatic organoid, comprising:

a cross-linked collagen-containing surface,

a coating on the cross-linked collagen-containing surface, comprising an osmotically processed acellular tissue-specific matrix, extracted from a mammalian pancreas, and cell growth factors comprising collagen, mucopolysaccharides, and basement membrane factors, and

a plurality of differentiated pancreatic cell types, derived from stem cells cultured and induced into differentiation on the surface.

8. The synthetic pancreatic organoid according to claim 7 , wherein the plurality of differentiated cell types are induced to differentiate by a process comprising sequentially incubating the stem cells in:

RPMI 1640 containing B27, 50 ng/ml activin A and 0.5-1 mM sodium butyrate,

RPMI 1640 containing B27, 250 μM ascorbic acid, 50 ng/ml keratinocyte growth factor, 50 ng/ml Noggin, 1 μM retinoic acid, 300 nM (−)-indolactam V, and 100 nM LDN193189,

DME/F12 containing B27, 1 μM RA, 200 nM LDN, 300 nM ILV, 1 μM 3,3′,5-Triiodo-L-thyronine sodium salt, 10 μM ALK5 inhibitor II, and 10 μg/ml heparin, supplemented with glucose to a final concentration of 20 mM,

RPMI 1640 containing B27, 1 μM T3, 10 μM ALKi, 1 mM N-acetyl cysteine, 0.5 μM R428, 10 μM trolox, 100 nM γ-secretase inhibitor XX, 10 μM zinc sulfate, 10 mM nicotinamide, and 10 μg/ml HP, supplemented with glucose to a final concentration of 20 mM glucose, and

CMRL supplement containing 10% fetal bovine serum, 1 μM T3, 10 μM ALKi, 0.5 μM R428, and 10 mM Nic.

Assignments (2)
CONFIRMATORY LICENSE Recorded Feb 27, 2018
From: STATE UNIVERSITY OF NEW YORK, BINGHAMTON
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 045450/0712 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2017
From: JIN, SHA, DR.; YE, KAIMING, DR.; BI, HUANJING, DR.
To: THE RESEARCH FOUNDATION FOR THE STATE UNIVERSITY OF NEW YORK
Reel/Frame 044426/0010 →
Continuity (2)
Provisional Application 62479095 · Mar 30, 2017
Related Publication 20180282699A1 · Oct 4, 2018