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402 results about "Transforming growth factor" patented technology

Transforming growth factor (sometimes referred to as Tumor growth factor, or TGF) is used to describe two classes of polypeptide growth factors, TGFα and TGFβ. The name "Transforming Growth Factor" is somewhat arbitrary, since the two classes of TGFs are not structurally or genetically related to one another, and they act through different receptor mechanisms. Furthermore, they do not always induce cellular transformation, and are not the only growth factors that induce cellular transformation.

Culture medium for preparing neural stem cells and application thereof

The invention relates to a culture medium for preparing neural stem cells and an application of the culture medium. The culture medium for preparing the neural stem cells comprises a culture medium suitable for the growth of stem cells, and a cell signal pathway inhibitor which is selected from at least one of the following agents: a GSK (Glaxo Smith Klein) inhibitor, an MEK (Methyl Ethyl Ketone) inhibitor, a TGF (Transforming Growth Factor)-beta inhibitor, a ROCK inhibitor and a BMP inhibitor. The somatic cells are cultured by using the culture medium, especially the somatic cells for expressing the transcription regulator are cultured, so as to effectively transdifferentiate the somatic cells into neutral stem cells and the transdifferentiation time is greatly shortened.
Owner:GUANGZHOU INST OF BIOMEDICINE & HEALTH CHINESE ACAD OF SCI

Regulation of transforming growth factor-beta (TGF-beta) gene expression in living cells via the application of specific and selective electric and electromagnetic fields

Methods and devices are described for the regulation of Transforming Growth actor (TGF)-β1, β2, and / or β3 protein gene expression in bone cells and other tissues via the capacitive coupling or inductive coupling of specific and selective electric fields to the bone cells or other tissues, where the specific and selective electric fields are generated by application of specific and selective electric and electromagnetic signals to electrodes or one or more coils or other field generating device disposed with respect to the bone cells or other tissues so as to facilitate the treatment of diseased or injured bone and other tissues. By gene expression is meant the up-regulation or down-regulation of the process whereby specific portions (genes) of the human genome (DNA) are transcribed into mRNA and subsequently translated into protein. Methods and devices are provided for the targeted treatment of injured or diseased bone and other tissue that include generating specific and selective electric and electromagnetic signals that generate fields in the target tissue optimized for increase of TGF-β1, β2, and / or β3 protein gene expression and exposing bone and other tissue to the fields generated by specific and selective signals so as to regulate TGF-β1, β2, and / or β3 protein gene expression in such tissue. The resulting methods and devices are useful for the targeted treatment of bone fractures, fractures at risk, delayed unions, nonunion of fractures, bone defects, spine fusions, osteonecrosis or avascular necrosis, as an adjunct to other therapies in the treatment of one or all of the above, in the treatment of osteoporosis, and in other conditions in which TGF-β1, β2, and / or β3 protein may be implicated.
Owner:THE TRUSTEES OF THE UNIV OF PENNSYLVANIA

Degradable wound repair material and preparation method thereof

InactiveCN103830768AGood biocompatibilityGood for degradation and absorptionAbsorbent padsBandagesWhite blood cellPancreatic hormone
The invention relates to a degradable wound repair material and a preparation method thereof. The degradable wound repair material includes a matrix component and an auxiliary component, wherein the matrix component includes a protein ingredient, and the auxiliary component includes at least one of an antibacterial agent and an active factor. Specifically, the antibacterial agent is a synthetic antibacterial drug, an inorganic antibacterial agent, an organic antibacterial agent, or a natural antibacterial agent, and the active factor is at least one of the following active factors: an epidermal growth factor, an FGF vascular endothelial growth factor, a platelet-derived growth factor, a platelet activating factor, an insulin-like growth factor, a tumor necrosis factor, interleukin, colony stimulating factor-1, various bone morphogenetic proteins or transforming growth factors. By loading the antibacterial agent and active factor component on the basis of the matrix component, the degradable wound repair material provided by the invention can have biological activity on the basis of meeting degradability, can better promote wound repair, and has good anti-infection properties during use.
Owner:SHENZHEN LANDO BIOMATERIALS

Regulation of transforming growth factor-beta (TGF-beta) gene expression in living cells via the application of specific and selective electric and electromagnetic fields

Methods and devices are described for the regulation of Transforming Growth actor (TGF)-β1, β2, and / or β3 protein gene expression in bone cells and other tissues via the capacitive coupling or inductive coupling of specific and selective electric fields to the bone cells or other tissues, where the specific and selective electric fields are generated by application of specific and selective electric and electromagnetic signals to electrodes or one or more coils or other field generating device disposed with respect to the bone cells or other tissues so as to facilitate the treatment of diseased or injured bone and other tissues. By gene expression is meant the up-regulation or down-regulation of the process whereby specific portions (genes) of the human genome (DNA) are transcribed into mRNA and subsequently translated into protein. Methods and devices are provided for the targeted treatment of injured or diseased bone and other tissue that include generating specific and selective electric and electromagnetic signals that generate fields in the target tissue optimized for increase of TGF-β1, β2, and / or β3 protein gene expression and exposing bone and other tissue to the fields generated by specific and selective signals so as to regulate TGF-β1, β2, and / or β3 protein gene expression in such tissue. The resulting methods and devices are useful for the targeted treatment of bone fractures, fractures at risk, delayed unions, nonunion of fractures, bone defects, spine fusions, osteonecrosis or avascular necrosis, as an adjunct to other therapies in the treatment of one or all of the above, in the treatment of osteoporosis, and in other conditions in which TGF-β1, β2, and / or β3 protein may be implicated
Owner:THE TRUSTEES OF THE UNIV OF PENNSYLVANIA
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