首页> 外文期刊>Acta biomaterialia >Fragmin/protamine microparticles to adsorb and protect HGF and to function as local HGF carriers in vivo
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Fragmin/protamine microparticles to adsorb and protect HGF and to function as local HGF carriers in vivo

机译:Fragmin /鱼精蛋白微粒可吸附和保护HGF,并在体内充当局部HGF载体

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摘要

The clinical efficacy of hepatocyte growth factor (HGF) in tissue repair can be greatly enhanced by high affinity, biocompatible drug carriers that maintain the bioactivity and regulate release at the target site. We produced 0.5-3.0 μm fragmin (low molecular weight heparin)/protamine microparticles (F/P MPs) as carriers for the controlled release of HGF. F/P MPs immobilized more than 3 μg of HGF per mg of MPs and gradually released the absorbed HGF into the medium with a half-release time of approximately 5 days. Compared with HGF alone, HGF-containing F/P MPs substantially enhanced the mitogenic effect of HGF on cultured human microvascular endothelial cells, by prolonging the biological half-life, and its conjugation to F/P MPs protected HGF from heat and proteolytic inactivation. F/P MPs disappeared 8 days after subcutaneous injection in mice, suggesting that they are rapidly biodegraded. Furthermore, the number of large (diameter ≥200 μm or containing ≥100 erythrocytes) and medium (diameter 20-200 μm or containing 10-100 erythrocytes) lumen capillaries 8 days after injection of HGF-containing F/P MPs was significantly higher than that after injection of HGF or F/P MPs alone. Furthermore, the number of small (diameter ≤20 μm or containing 1-10 erythrocytes) lumen capillaries was significantly higher 4 days after injection of HGF-containing F/P MPs. This increased angiogenic activity of HGF in vivo is probably due to both sustained local release and protection against biodegradation by the F/P MPs. Thus, F/P MPs may be useful and safe HGF carriers that facilitate cell proliferation and vascularization at sites of tissue damage.
机译:肝细胞生长因子(HGF)在组织修复中的临床功效可通过高亲和力,生物相容性药物载体来大大增强,该载体可保持生物活性并调节目标部位的释放。我们生产了0.5-3.0μm的弗拉明(低分子量肝素)/鱼精蛋白微粒(F / P MP)作为载体,用于HGF的控释。 F / P MP固定化每毫克MP超过3μgHGF,并以大约5天的半释放时间逐渐将吸收的HGF释放到培养基中。与单独的HGF相比,含HGF的F / P MP通过延长生物半衰期来显着增强HGF对培养的人微血管内皮细胞的促有丝分裂作用,其与F / P MP的结合可保护HGF免受热和蛋白水解失活的影响。小鼠皮下注射后8天,F / P MP消失,表明它们已被快速生物降解。此外,注射含HGF的F / P MPs 8天后,大(直径≥200μm或含有≥100个红细胞)和中等(直径20-200μm或含有10-100个红细胞)内腔毛细血管的数量明显高于仅注射HGF或F / P MP后的剂量。此外,注射含HGF的F / P MP后4天,小(直径≤20μm或含有1-10个红细胞)管腔毛细血管的数量明显增加。 HGF体内这种血管生成活性的增加可能是由于持续的局部释放和针对F / P MP的生物降解保护所致。因此,F / P MPs可能是有用且安全的HGF载体,可促进组织损伤部位的细胞增殖和血管形成。

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