Abstract: This invention relates to methods for improved cell-based therapies for retinal degeneration and for differentiating human embryonic stem cells and human embryo-derived into retinal pigment epithelium (RPE) cells and other retinal progenitor cells.
Abstract: Methods are provided for detection of a target cell type within a cell population, and compositions are provided comprising cells and an indicator that indicates the number of cells of the target cell type in the cell population. Examples are provided in which these methods are used to detect human embryonic stem cells within a differentiated cell population with exquisite sensitivity. Differentiated cells produced from embryonic stem cells can be characterized by these methods before transplantation into a recipient, thereby providing further assurance of safety.
Abstract: Multilayer films comprised of polypeptide epitopes and a toll-like receptor ligand. The multilayer films are capable of eliciting an immune response in a host upon administration to the host. The multilayer films can include at least one designed peptide that includes one or more polypeptide epitopes from a virus, bacteria, fungus or parasite.
Abstract: Multilayer films comprise polypeptide epitopes from Plasmodium falciparum, specifically a circumsporozoite T1, B or T* epitope. The multilayer films are capable of eliciting an immune response in a host upon administration to the host. The multilayer films can include at least one designed peptide that includes one or more polypeptide epitopes from a Plasmodium protozoan.
Abstract: This disclosure provides the first description of hESC-derived cells transplanted into human patients. Results are reported for one patient with each of Stargardt's Macular Dystrophy (SMD) and Dry Age-Related Macular Degeneration (AMD). Controlled hESC differentiation resulted in near-100% pure RPE populations. Immediately after surgery, hyperpigmentation was visible at the transplant site in both patients, with subsequent evidence the cells had attached and integrated into the native RPE layer. No signs of inflammation or hyperproliferation were observed. The hESC-derived RPE cells have shown no signs of rejection or tumorigenicity at the time of this report. Visual measurements suggest improvement in both patients.
Abstract: The present invention generally relates to novel preparations of mesenchymal stromal cells (MSCs) derived from hemangioblasts, methods for obtaining such MSCs, and method sof treating a pathology using such MSCs. The methods of the present invention produce substantial numbers of MSCs having a potency-retaining youthful phenotype, which are useful in the treatment of pathologies.
Abstract: Disclosed are methods for expanding stem cells that use a unique combination of environmental factors and cell culture conditions to produce stem cells having enhanced proliferation and differentiation characteristics. Also disclosed are methods for enhancing the engraftment and/or migratory potential of stem cells for therapeutic uses. Stem cells having unique proliferation, differentiation, migratory and engraftment characteristics are also disclosed.
Abstract: Activated human embryos produced by therapeutic cloning can give rise to human totipotent and pluripotent stem cells from which autologous cells for transplantation therapy are derived. The present invention provides methods for producing activated human embryos that can be used to generate totipotent and pluripotent stem cells from which autologous cells and tissues suitable for transplantation can be derived. The ability to create autologous human embryos represents a critical step towards generating immune-compatible stem cells that can be used to overcome the problem of immune rejection in regenerative medicine. The activated human embryos produced by the present invention also provide model systems for identifying and analyzing the molecular mechanisms of epigenetic imprinting and the genetic regulation of embryogenesis and development.
Type:
Application
Filed:
October 16, 2012
Publication date:
April 25, 2013
Applicant:
ADVANCED CELL TECHNOLOGY, INC.
Inventors:
Jose Cibelli, Michael West, Keith Campbell
Abstract: A multi-well system is described which is comprised of a tray comprising a plurality of wells which may include thousands, tens of thousands or even hundreds of thousands of wells or more. Each of the wells has a unique address. The system includes a tray top comprised of a plurality of areas wherein each of the areas corresponds uniquely to each of the wells and includes a unique address. The system may include a second tray top also comprised of a plurality of areas with unique addresses which uniquely correspond to each of the wells. The areas on the tops have compounds bound to those areas which compounds bind to components present in the wells and are used to obtain specific material in each well for analysis.
Type:
Grant
Filed:
April 3, 2009
Date of Patent:
November 13, 2012
Assignee:
Single Cell Technology, Inc.
Inventors:
Chun-Nan Chen, James O. Bowlby, Jr., Richard Aleck Jorgensen
Abstract: This invention generally relates to a methods, devices and kits for screening single cells for the production of one or more biologically active agents of interest, such as a protein, nucleic acid, or a protein and the nucleic acid encoding same.
Type:
Grant
Filed:
April 3, 2009
Date of Patent:
November 13, 2012
Assignee:
Single Cell Technology, Inc.
Inventors:
Chun-Nan Chen, James O. Bowlby, Jr., Richard Aleck Jorgensen
Abstract: Methods for laser microdissection isolation of viable cells are provided. Cells of a desired type may be isolated from a diverse population, optionally with detection and exclusion of undesired cells. Desired cells may be isolated from a population that arose from differentiation of pluripotent cells, preferably embryonic stem cells or induced pluripotent stem cells, and undifferentiated stem cells may be detected and excluded from selection including the isolation of RPE cells sleeted based on morphology (e.g., characteristic mottled appearance) from a population of ES cells. The cells isolated by these methods, including RPE cells, may be essentially free of undifferentiated cells and thus suitable for use in cell-based therapies.
Abstract: Methods for obtaining pluripotent (embryonic stem) cells from parthenogenetic embryos, especially primates, are provided. These cells are useful for producing differentiated cells, tissues and organs, especially human and non-human primate cells, tissues and organs.
Type:
Grant
Filed:
May 27, 2011
Date of Patent:
September 25, 2012
Assignee:
Advanced Cell Technology, Inc.
Inventors:
James M. Robl, Jose Cibelli, Amy Burnside
Abstract: This invention relates to methods for improved cell-based therapies for retinal degeneration and for differentiating human embryonic stem cells and human embryo-derived into retinal pigment epithelium (RPE) cells and other retinal progenitor cells.
Abstract: The present invention provides a method of determining the optimal composition of a serum-free, eukaryotic cell culture medium supplement, using 2-level factorial design and the steepest ascent method. The invention further provides a method of making a serum-free eukaryotic cell culture medium supplement and the generated thereof. The invention further provides a method of making a serum-free, eukaryotic cell culture medium and the medium generated thereof. The invention further provides a kit containing the medium of the invention. The invention also provides a method of expanding CD34<+> hematopoietic cells and a composition comprising CD34<+> hematopoietic cells in a serum-free, eukaryotic cell culture medium of the invention.
Abstract: A cellular scaffold that is suitable for tissue regeneration, cell culture and in vitro assays. The invention relates to a layered cell scaffold that is seeded with mesenchymal and ectodermal cells. The layered cellular scaffold comprises an inoculum of mesenchymal cells and ectodermal cells positioned between two opposing scaffolds in a sandwich configuration. The layered cell scaffold provides a functional skin equivalent that is suitable for transplantation and in vitro cell-based assays.
Abstract: Multilayer films comprise polypeptide epitopes from RSV. The multilayer films are capable of eliciting an immune response in a host upon administration to the host. The multilayer films include at least one designed peptide that includes one or more polypeptide epitopes from RSV. Specifically, the multilayer films include two polypeptide epitopes from RSV, such as an epitope that elicits a specific T-cell response such as a cytotoxic T-cell response, and an epitope that elicits a specific antibody response.
Abstract: Methods for obtaining pluripotent (embryonic stem) cells from parthenogenetic embryos, especially primates, are provided. These cells are useful for producing differentiated cells, tissues and organs, especially human and non-human primate cells, tissues and organs.
Type:
Application
Filed:
May 27, 2011
Publication date:
December 1, 2011
Applicant:
Advanced Cell Technology, Inc.
Inventors:
James M. ROBL, Jose Cibelli, Amy Burnside
Abstract: Disclosed herein are polypeptide multilayer films wherein a therapeutic agent is covalently linked to a first layer polypeptide. An advantage of such attachment is that the linked therapeutic agent can be controllably released from the multilayer film into the environment of the film upon the addition of a suitable stimulus. An advantage of the disclosed films and methods is enablement of environmentally-stimulated release under specific conditions.
Abstract: Methods for obtaining pluripotent (embryonic stem) cells from parthenogenetic embryos, especially primates, are provided. These cells are useful for producing differentiated cells, tissues and organs, especially human and non-human primate cells, tissues and organs.
Type:
Grant
Filed:
February 27, 2003
Date of Patent:
May 31, 2011
Assignee:
Advanced Cell Technology, Inc.
Inventors:
James M. Robl, Jose Cibelli, Amy Burnside
Abstract: This invention relates to methods for improved cell-based therapies for retinal degeneration and for differentiating human embryonic stem cells and human embryo-derived into retinal pigment epithelium (RPE) cells and other retinal progenitor cells.