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Titlebook: Biological Matrices and Tissue Reconstruction; G. Björn Stark,Raymund Horch,Eszter TÁczos Conference proceedings 1998Latest edition Spring

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期刊全称Biological Matrices and Tissue Reconstruction
影响因子2023G. Björn Stark,Raymund Horch,Eszter TÁczos
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图书封面Titlebook: Biological Matrices and Tissue Reconstruction;  G. Björn Stark,Raymund Horch,Eszter TÁczos Conference proceedings 1998Latest edition Spring
影响因子C.A. VACANTI The loss or failure of an organ or tissue is one of the most frequent, devastating, and costly problems in human health care. Advances in the medical sciences have enabled physicians to restore lost functions in their patients through or­ gan transplantation, reconstructive surgery with autogenous tissue transfer, or the implantation of alloplastic materials. Although only recently termed "Tissue Engineering" [1], the use of biological andlor synthetic materials in conjunction with cells to create biologic substitutes to serve as functional tis­ sue replacements has been explored by modern scientists for several decades. The concept of generating functional tissue from an organ biopsy was de­ scribed very early in the literature: "The Lord God cast a deep sleep on the man, and while he was asleep, he took out one of his ribs and closed up its place with flesh. The Lord God then built up into a woman the rib that he had taken from the man" [2]. Review of history further reveals that, according to legend, the first homotransplantation of an entire limb was performed by Saints Damian and Cosmas, as depicted by the artist Fra Angelico.
Pindex Conference proceedings 1998Latest edition
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Characterization of Biomaterials for Tissue Repair6] described independently from one another the use of fibrin tampons to accelerate local hemostasis. Harvey studied the resorption of fibrin and discovered that xenogenous fibrin produces a foreign body reaction [26]. During the Second World War Cohn and colleagues [11] developed plasma fractionati
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Properties of Different Tissue Sealantsompared the biochemical properties and the influence on living cells of different fibrinogen-based tissue adhesives [5]. Considering the essential role of fibroblast proliferation in wound healing [8], we performed tests with human fibroblasts.
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Genetically Modified Fibroblasts-Fibrin-Glue-Suspension for in vivo Drug Delivery of Epidermal Growte controlled modification of cells to secrete the continuous localized production of polypeptides into the surrounding tissues. The purpose of this experimental study was to demonstrate the successful transplantation of . liposomally transfected human fibroblasts expressing the human Epidermal Growt
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Stimulation of Growth and Proliferation of Human Cultured Keratinocytes by KGF-transfected Cells ,he establishment of two stably KGF-transfected, immortalized cell lines, Ha-CaT-keratinocytes and KMST-6-fibroblasts, by liposome mediated gene transfer. Transfection effectivity, gene integration and configuration of the transgenic protein was investigated by ELISA, DANN-PCR and .-Gal-staining. Mos
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Genetically Modified Human Keratinocyte Clone Secretes EGFuman allogenic epidermal keratinocytes as a hEGF secretary tissue for wound healing? Human epidermal keratinocyte can grow in serum-free medium and sub-cultured in vitro. In the present experiment, cDNA encoding the human kidney EGF signal peptide and EGF was inserted in-frame into pBK-CMV plasmid.
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