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201 results about "Autologous cell" patented technology

Methods and compositions for organ and tissue functionality

Materials and methods for treating tissue defects in human or animal tissues using implantable cells are described. Further, culture techniques and factors for enhancing these procedures, and cell survival and adaptation are described. Many of the tissue defects may be treated with autologous cells, while applications involving non-autologous cells or stem cells are also described.
Owner:DASK TECH

Compositions and methods for the augmentation and repair of defects in tissue

InactiveUS20070065415A1Improve successful adaptationBiocidePeptide/protein ingredientsRepair tissueCultured cell
Compositions and methods of treating a defect in a patient are disclosed, including expanding a culture of autologous cells in vitro to form cultured cells, collecting the cultured cells for introduction into the patient, and depositing the cultured cells with ancillary proteins.
Owner:DASK TECH

Methods and compositions for printing biologically compatible nanotube composites of autologous tissue

A method of carrying out an autologous tissue implant in a subject in need thereof is carried out by: (a) forming an autologous tissue implant from autologous cells collected from a subject (e.g., by ink-jet printing, the autologous cells and the scaffold, separately or together), and then (b) implanting the autologous tissue implant in said subject.
Owner:WAKE FOREST UNIV HEALTH SCI INC

Nonexpansion Protocol for Autologous Cell-Based Therapies

The present application describes various applications of the non-expansion protocol for the preparation of an injectable autologous cell mixture of the present invention that can be used to prevent symptoms in a number of indications. Cells are isolated from surgically derived tissue and are at least partially disaggregated from each other. The heterologous cell mixture is mixed with growth factors, differentiation agents, extracellular matrix proteins and / or microspheres and injected into the patient without cell expansion. The harvesting of tissue, cell isolation, and injection are performed within a single surgical procedure lasting only minutes to hours.
Owner:BOSTON SCI SCIMED INC

Augmentation and repair of spincter defects with cells including adipocytic cells

An embodiment of the invention includes methods for the long-term augmentation and / or repair of skin defects (scars, skin laxness, skin thinning, and skin augmentation), cellulite, breast tissue, wounds and burns, urological and gastroesophageal sphincter structures, hernias, periodontal disease and disorders, tendon and ligament tears and baldness, by the injection or direct surgical placement / implantation of autologous cultured cells and / or cultured cell-produced extracellular matrix that is derived from connective tissue, dermis, fascia, lamina propria, stroma, adipose tissue, muscle, tendon, ligament or the hair follicle. The corrective application is done on tissue proximal or within the area of the defect. The method involves retrieving viable cells from the subject, a neonate or human fetus. Alternatively, the corrective application involves the cells placed in a matrix, preferably comprised of autologous extracellular matrix constituents as a three-dimensional structure or as a suspension, prior to placement into a position with respect to the subject's defect. In a further embodiment, the preferable autologous extracellular matrix constituents are collected from culture and placed in a position with respect to the subject's defect.
Owner:KLEINSEK DONALD +1

Method for efficiently separating and expanding mesenchymal stem cells in human umbilical cord blood

The invention relates to an optimal method for efficiently separating and expanding mesenchymal stem cells in umbilical cord blood in cell therapy. The fact that the mesenchymal stem cells with higher differentiative capacity and smaller immunological rejection are contained in the umbilical cord blood has been proved. The establishment of an umbilical cord blood bank provides a basis for achieving transplantation of autologous cells. However, since the content of the mesenchymal stem cells in the umbilical cord blood is very low (only 0.5 to 30 mesenchymal stem cells are contained in 1*108 mononuclear cells), how to efficiently separate and expand the mesenchymal stem cells becomes a problem hindering the transformation of the mesenchymal stem cells in the umbilical cord blood to the clinical application. At present, in most situations, the mesenchymal stem cells in the umbilical cord blood are separated in virtue of adsorption capacity of the mesenchymal stem cells in a culture vessel, but the success ratio is low, and the characteristics of stem cells are difficult to maintain in an expanding process. The method comprises the steps of coating the culture vessel with protein components, adding multiple growth factors in the culture vessel in a coordination manner, and building the expansion environment of the mesenchymal stem cells in the umbilical cord blood, so as to achieve the efficient separation and expansion of the mesenchymal stem cells.
Owner:夏亮
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