首页> 外文期刊>Biomaterials >Accelerated tissue regeneration through incorporation of basic fibroblast growth factor-impregnated gelatin microspheres into artificial dermis.
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Accelerated tissue regeneration through incorporation of basic fibroblast growth factor-impregnated gelatin microspheres into artificial dermis.

机译:通过将碱性成纤维细胞生长因子浸渍的明胶微球掺入人造真皮中来加速组织再生。

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摘要

The objective of this study was to evaluate the effect of incorporation of basic fibroblast growth factor (bFGF)-impregnated gelatin microspheres into an artificial dermis on the regeneration of dermis-like tissues. When used in the free form in vivo, bFGF cannot induce sufficient wound healing activity, because of its short half-life. Therefore, sustained release of bFGF was achieved by impregnation into biodegradable gelatin microspheres. A radioisotope study revealed that incorporation of bFGF-impregnated gelatin microspheres significantly prolonged in vivo retention of bFGF in the artificial dermis. Artificial dermis with incorporated bFGF-impregnated gelatin microspheres or bFGF in solution was implanted into full-thickness skin defects on the back of guinea pigs (1.5 cm x 1.5 cm) (n = 4). Incorporation of bFGF into the artificial dermis accelerated fibroblast proliferation and capillary formation in a dose-dependent manner. However, the accelerated effects were more significant with the incorporation of bFGF-impregnated gelatin microspheres than with free bFGF at doses of 50 microg or higher. We conclude that the gelatin microsphere is a promising tool to accelerate bFGF-induced tissue regeneration in artificial dermis.
机译:这项研究的目的是评估将碱性成纤维细胞生长因子(bFGF)浸渍的明胶微球掺入人造真皮中对真皮样组织再生的影响。当以游离形式在体内使用时,bFGF由于其半衰期短而不能诱导足够的伤口愈合活性。因此,通过浸入可生物降解的明胶微球中可实现bFGF的持续释放。放射性同位素研究表明,掺入bFGF的明胶微球的加入显着延长了bFGF在人造真皮中的体内滞留时间。将溶液中掺有bFGF浸渍的明胶微球或bFGF的人工真皮植入到豚鼠背部全层皮肤缺损处(1.5 cm x 1.5 cm)(n = 4)。将bFGF掺入到人造真皮中,以剂量依赖的方式加速了成纤维细胞的增殖和毛细血管的形成。但是,掺入bFGF浸渍的明胶微球所产生的加速作用比剂量为50微克或更高剂量的游离bFGF更为明显。我们得出的结论是,明胶微球是加速bFGF诱导的人工真皮中组织再生的有前途的工具。

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