期刊简介

本刊的办刊方针为理论与实践相结合,提高与普及相结合,以宣传全面康复为宗旨,反映康复医学等方面的重大进展,促进学术交流。同时,不断增加社区康复内容。杂志以专题为特色,具有较好的可读性。

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  • 杂志名称:中国康复理论与实践杂志
  • 主管单位:中国康复研究中心院刊;中国康复研究中心学刊
  • 主办单位:中国残疾人联合会
  • 国际刊号:11-3759/R
  • 国内刊号:11-3759/R
  • 出版周期:月刊
期刊荣誉:国家科技部中国科技论文统计源期刊期刊收录:国家图书馆馆藏, 维普收录(中), 万方收录(中), 上海图书馆馆藏, 北大核心期刊(中国人文社会科学核心期刊), 知网收录(中), CSCD 中国科学引文数据库来源期刊(含扩展版), 统计源核心期刊(中国科技论文核心期刊)
中国康复理论与实践杂志2002年第05期

关键词:growth factor, biodegradable hydrogels, neovascularization, review
摘要:I INTRODUCTIONTissue engineering has increasingly attracted as a promising new technology to assist tissue regeneration at body defects as well as biological functions of damaged or injured organs. There are three factors necessary for tissue engineering: growth factors, cells, and materials for scaffolding. Since among them is growth factor of protein or glycoprotein, which is susceptible to proteolysis and denaturation, if the growth factor is administered in solution form into the body, one cannot always expect the biological function. Therefore, it is of prime necessity to develop dosage forms for in vivo prolongation of the biological activity. One possible way is to incorporate a growth factor into an appropriate matrix for achieving controlled release of the factor at the site of action over a long time period. Numerous studies have been performed on protein release by taking advantage of polymer matrices[1-5],but there is a problem before us in the protein release technology, i.e., loss in the biological activity of protein released. It has been demonstrated that this activity loss mainly results from protein denaturation and deactivation during a formulation process with a polymer matrix. When exposed to harsh environmental changes, such as heating and exposure to sonication and organic solvents, protein is generally denatured, losing its biological activity[6-8]. Therefore, it is required to contrive a new formulation method for growth factor release under mild conditions to minimize protein deactivation. From this viewpoint, hydrogel is a preferable candidate for a release matrix because of its biosafety and inertness toward protein[9]. However, it should be noted that the period of protein release from hydrogels is mostly as short as a day because of their diffusion-controlled characteristics[1,2,9,10].