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Titlebook: Biologically Modified Polymeric Biomaterial Surfaces; E. Piskin Book 1992 Elsevier Science Publishers Ltd 1992 biomaterial.spectroscopy.su

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期刊全称Biologically Modified Polymeric Biomaterial Surfaces
影响因子2023E. Piskin
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图书封面Titlebook: Biologically Modified Polymeric Biomaterial Surfaces;  E. Piskin Book 1992 Elsevier Science Publishers Ltd 1992 biomaterial.spectroscopy.su
影响因子gap always exists between the material performance generation of new molecules along with the release during in-vivo animal tests and clinical situations, of substances from a multitude of cells. The plasma because of the difference in individual reactions proteins (including coagulation and complement proteins), the blood cells deposited on the material between one animal and another and humans. Likewise, sophisticated in-vitro and in-vivo models surface or circulating in the blood stream and their are being developed to study living body responses. released substances take part in the dynamic process of fibrinolysis and thrombus formation. Progress has been achieved in culturing mammalian cells, particularly human cells, which has lead to new in-vitro models to study cell-biomaterial Tissue response interactions. These techniques are discussed in the other chapters of this volume. Materials implanted in tissues always generate a response. The major tissue response in the extra­ BIOLOGICAL MODIFICATION vascular system is an inflammatory process, which may be induced chemically or physically. Many Surfaces of polymeric biomaterials may be modified proteins and cells are involved in
Pindex Book 1992
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Adsorption, Retention and Biologic Activity of Proteins Adsorbed on Gas Discharge Treated Surfaces,sis antibodies in an immunoassay and (c) horseradish peroxidase (HRP) as a model enzyme biosensor. In some cases, the protein adsorbed to the treated surface retains greater activity and/or greater stability when compared to the untreated control surface. We also discuss the possible mechanism(s) of these interesting and unusual effects.
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Some Model Surfaces Made by RF Plasma Aimed for the Study of Biocompatibility,nd before ignition was almost linearly related to the increase of refractive index of the polymer films, irrespective of the monomer used. Adsorption of plasma proteins on different surfaces were different.
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Human Cell Culture and Characterization of Cell/Biomaterial Interface,human cells to study the interface between a cell system and a potential biomaterial partly allows a prediction to be made of the in-vivo performance of a new biomaterial. In-vitro evaluation of the cytocompatibility of potential biomaterial by using human cells may give further information.
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Knowledge Generation and Protectionhuman cells to study the interface between a cell system and a potential biomaterial partly allows a prediction to be made of the in-vivo performance of a new biomaterial. In-vitro evaluation of the cytocompatibility of potential biomaterial by using human cells may give further information.
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