C12N2501/335

DIFFERENTIATION OF HUMAN EMBRYONIC STEM CELLS
20180258402 · 2018-09-13 · ·

The present invention provides methods to promote the differentiation of pluripotent stem cells and the products related to or resulting from such methods. In particular, the present invention provides an improved method for the formation of pancreatic hormone expressing cells and pancreatic hormone secreting cells. In addition, the present invention also provides methods to promote the differentiation of pluripotent stem cells without the use of a feeder cell layer and the products related to or resulting from such methods. The present invention also provides methods to promote glucose-stimulated insulin secretion in insulin-producing cells derived from pluripotent stem cells.

DIFFERENTIATING INDUCED PLURIPOTENT STEM CELLS INTO GLUCOSE-RESPONSIVE, INSULIN-SECRETING PROGENY

This document provides methods and materials related to differentiating iPS cells into glucose-responsive, insulin-secreting progeny. For example, methods and material for using indolactam V (ILV) and glucagon like peptide-1 (GLP-1) to produce glucose-responsive, insulin-secreting progeny from iPS cells are provided.

Method for preparing endocrine aggregate of insulin-producing beta cells from human pluripotent stem cells

The present invention prepared insulin-producing endocrine cells by inducing the differentiation of human embryonic stem cells or human induced pluripotent stem cells into definitive endoderm (DE), pancreatic endoderm (PE), endocrine progenitors (EP), and endocrine cells (EC) stepwise in that order. Particularly, the present invention established the conditions for the formation of an insulin producing endocrine aggregate (EA) from the endocrine cells. Especially in this invention, it was confirmed that the endocrine aggregate has the cell proliferation potential at a significant level and has the increased insulin productivity as well as the activity of inhibiting cell necrosis and apoptosis. Therefore, the method for preparing the endocrine aggregate of insulin-producing beta cells from human pluripotent stem cells can be effectively used for the examination of the medicinal effect of the conventional antidiabetic agents and of the novel antidiabetic drugs.

Differentiation of human embryonic stem cells
09969982 · 2018-05-15 · ·

The present invention provides methods to promote the differentiation of pluripotent stem cells and the products related to or resulting from such methods. In particular, the present invention provides an improved method for the formation of pancreatic hormone expressing cells and pancreatic hormone secreting cells. In addition, the present invention also provides methods to promote the differentiation of pluripotent stem cells without the use of a feeder cell layer and the products related to or resulting from such methods. The present invention also provides methods to promote glucose-stimulated insulin secretion in insulin-producing cells derived from pluripotent stem cells.

Differentiating induced pluripotent stem cells into glucose-responsive, insulin-secreting progeny

This document provides methods and materials related to differentiating iPS cells into glucose-responsive, insulin-secreting progeny. For example, methods and material for using indolactam V (ILV) and glucagon like peptide-1 (GLP-1) to produce glucose-responsive, insulin-secreting progeny from iPS cells are provided.

COMPOSITIONS AND METHODS FOR DIFFERENTIATING STEM CELLS INTO CELL POPULATIONS COMPRISING BETA-LIKE CELLS
20180087033 · 2018-03-29 ·

Methods, kits, compositions, and systems are provided for culturing pluripotent stem cells to produce populations of cells comprising beta-like cells (e.g., pancreatic lineage, glucose-responsive, and/or insulin-producing). In particular, culture conditions are provided that result in the generation of beta-like cells from a starting culture of human pluripotent stem cells.

CULTURE MEDIUM FOR EPITHELIAL STEM CELLS AND ORGANOIDS COMPRISING THE STEM CELLS

The invention relates to a method for culturing epithelial stem cells, isolated tissue fragments comprising the epithelial stem cells, or adenoma cells, and culturing the cells or fragments in the presence of a Bone Morphogenetic Protein (BMP) inhibitor, a mitogenic growth factor, and a Wnt agonist when culturing epithelial stem cells and isolated tissue fragments. The invention further relates to a cell culture medium comprising a BMP inhibitor, a mitogenic growth factor, and a Wnt agonist, to the use of the culture medium, and to crypt-villus organoids, gastric organoids, pancreatic organoids, liver organoids, colon organoids, Barrett's Esophagus organoids, adenocarcinoma organoids and colon carcinoma organoids that are formed in the culture medium.

PRODUCTION OF INSULIN PRODUCING CELLS
20180044641 · 2018-02-15 ·

The invention provides methods for differentiating stem cells along the pancreatic lineage as well as large scale culture methods. The present invention further provides pancreatic progenitor cells derived from stern cells to provide pancreatic cells to a subject.

Methods of using PDX1-positive pancreatic endoderm cells and endocrine precursor cells

Disclosed herein are cell cultures and enriched cell populations of endocrine precursor cells, immature pancreatic hormone-expressing cells and mature pancreatic hormone-expressing cells. Also disclosed herein are methods of producing such cell cultures and cell populations.

GENERATION OF HUMAN PLURIPOTENT STEM CELL DERIVED FUNCTIONAL BETA CELLS SHOWING A GLUCOSE-DEPENDENT MITOCHONDRIAL RESPIRATION AND TWO-PHASE INSULIN SECRETION RESPONSE
20240417693 · 2024-12-19 · ·

The invention provides for methods of differentiating pancreatic endocrine cells into pancreatic beta cells expressing PDX1, NKX6.1, MAFA, UCN3 and SLC2A. These pancreatic beta cells may be obtained by step-wise differentiation of pluripotent stem cells. The pancreatic beta cells exhibit glucose-dependent mitochondrial respiration and glucose-stimulated insulin secretion similar to islet cells.