Patent classifications
C12N2501/148
METHOD FOR PRODUCING SOMATIC CELL, SOMATIC CELL, AND COMPOSITION
The present invention addresses the problem of providing: a method for producing brown adipocytes, osteoblasts, cartilage cells, neural cells, or cardiac cells from somatic cells without performing artificial gene transfer; brown adipocytes, osteoblasts, cartilage cells, neural cells, or cardiac cells; or a composition including a combination of chemical substances that can be used for the aforementioned production method. An example of the present invention is a method for producing brown adipocytes, osteoblasts, cartilage cells, neural cells, or cardiac cells including a step for culturing somatic cells in the presence or absence of an inhibitor or activator selected from the group consisting of an ALK5 inhibitor, an ALK6 inhibitor, an AMPK inhibitor, a cAMP activator, an ALK2 inhibitor, an ALK3 inhibitor, a GSK3 inhibitor, and an Erk inhibitor.
GENERATION OF CANCER STEM CELLS AND USE THEREOF
Methods, kits and compositions for generating cancer stem cells are provided.
CHEMICALLY DEFINED MEDIUM FOR THE CULTURE OF CANCER STEM CELL (CSC) CONTAINING CELL POPULATIONS
The present invention relates to a chemically defined medium for eukaryotic cell culture, comprising water, at least one carbon source, one or more vitamins, one or more salts, one or more growth factors, one or more fatty acids, one or more buffer components, selenium and one or more further trace elements and its use in the culture of cancer stem cells, in particular tumorsphere culture of cancer stem cells.
Methods of treating neurodegenerative conditions
The invention relates generally to methods of treating spasticity, rigidity, or muscular hyperactivity conditions by introducing a portion of an expanded population of neural stem cells into an area of a recipient spinal cord.
BIOCOMPATIBLE CONDITIONED CELL MEDIUM COMPOSITIONS AND USES THEREOF
The present invention is drawn, in part, to biocompatible compositions comprising a biocompatible polymer matrix and conditioned cell medium comprising i) a cell culture medium and ii) one or more agents synthesized by and secreted from one or more cells cultured in the cell culture medium, as well as therapeutic uses thereof, particularly in modulating bone and/or gum tissue growth.
MESODERM AND DEFINITIVE ENDODERM CELL POPULATIONS
The present invention provides cell populations that are enriched for mesendoderm and mesoderm, and cell populations that are enriched for endoderm. The cell populations of the invention are useful for generating cells for cell replacement therapy. The present invention further provides a method of generating hepatocytes, cell populations enriched for hepatocytes, and a method of hepatocyte replacement therapy.
METHOD FOR INDUCING DIFFERENTIATION OF AIRWAY EPITHELIAL CELLS
This invention provides a method for stably producing airway epithelial cells from pluripotent stem cells. Specifically, the invention relates to a method for producing airway epithelial cells from pluripotent stem cells comprising steps: (1) culturing pluripotent stem cells in a medium containing activin A and a GSK3 inhibitor; (2) culturing the cells obtained in Step (1) in a medium containing a BMP inhibitor and a TGF inhibitor; (3) culturing the cells obtained in Step (2) in a medium containing BMP4, retinoic acid, and a GSK3 inhibitor; (5) subjecting the cells obtained after Step (3) to three-dimensional culture in a medium containing a GSK3 inhibitor, FGF10, and a ROCK inhibitor; and (6) subjecting the proximal airway epithelial progenitor cells obtained in Step (5) to three-dimensional culture in a medium containing a ROCK inhibitor.
CELL CULTURE PLATFORM FOR SINGLE CELL SORTING AND ENHANCED REPROGRAMMING OF IPSCS
The invention provides cell culture conditions for culturing stem cells, including feeder-free conditions for generating and culturing human induced pluripotent stem cells (iPSCs). More particularly, the invention provides a culture platform that allows long-term culture of pluripotent cells in a feeder-free environment; reprogramming of cells in a feeder-free environment; single-cell dissociation of pluripotent cells; cell sorting of pluripotent cells; maintenance of an undifferentiated status; improved efficiency of reprogramming; and generation of a nave pluripotent cell.
METHODS OF TREATING ISCHEMIC SPASTICITY
The invention relates generally to methods of treating spasticity, rigidity, or muscular hyperactivity conditions by introducing a portion of an expanded population of neural stem cells into an area of a recipient spinal cord.
Cell culture medium and method for generation of epithelial organoids from epithelial stem cells
The present invention provides a cell culture for obtaining an epithelial organoid, the cell culture comprising i) epithelial stem cells, or tissue fragments comprising said epithelial stem cells, ii) a basal medium for animal or human cells, iii) a Bone Morphogenetic Protein (BMP) inhibitor, iv) a mitogenic growth factor selected from the group consisting of epidermal growth factor (EGF), transforming growth factor-alpha (TGF-alpha), basic fibroblast growth factor (bFGF), brain-derived neurotrophic factor (BDNF) and keratinocyte growth factor (KGF), v) at least one soluble culture enhancer, wherein said at least one culture enhancer induces correct polarization of the cells in said cell culture within the developing organoid such as a laminin/entactin complex or entactin, and vi) a Wnt agonist if said epithelial stem cells, or tissue fragments comprising said epithelial stem cells are healthy cells, wherein said at least one soluble culture enhancer in said cell culture is a laminin/entactin complex in a concentration between 0.2 mg/ml and 3.4 mg/ml. A cell culture medium, an in-vitro method for obtaining an epithelial organoid, and an epithelial organoid obtained by said method are also disclosed.