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首页> 外文期刊>Biomaterials >Binding and release of basic fibroblast growth factor from heparinized collagen matrices.
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Binding and release of basic fibroblast growth factor from heparinized collagen matrices.

机译:肝素化胶原蛋白基质中碱性成纤维细胞生长因子的结合和释放。

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Endothelial cell seeding is a promising method to improve the performance of small-diameter vascular grafts. Growth of endothelial cells seeded on the luminal surface of synthetic vascular grafts, coated with a matrix suitable for cell seeding (e.g. collagen), can be accelerated by local, sustained release of basic fibroblast growth factor (bFGF). In this study two potential matrices for in vivo endothelial cell seeding were studied with respect to bFGF binding and release: collagen crosslinked using N-(3-dimethylaminopropyl)-N'-ethylcarbodiimide (EDC) and N-hydroxysuccinimide (NHS), as well as heparinized EDC/NHS-crosslinked collagen. bFGF binding was determined after incubation of circular samples (10 mm diameter) with 0.25 ml bFGF solution for 90 min. Immobilization of increasing amounts of heparin, also using EDC and NHS, to crosslinked collagen containing 14 free primary amino groups per 1000 amino acid residues (E/N14C) resulted in binding of increasing amounts of bFGF. A plateau in bFGF binding was observed for heparinized E/N14C containing approximately 2.0-3.0 wt% of immobilized heparin which was obtained using a molar ratio of EDC to heparin-carboxylic acid groups of 0.4 during heparin immobilization (E/N14C-H(0.4)). At concentrations up to 840 ng bFGF/ml, 10% of the added bFGF bound to E/N14C, while binding of bFGF to E/N14C-H(0.4) amounted to 22%. Both E/N14C and E/N14C-H(0.4) pre-loaded with bFGF showed sustained bFGF release. A burst release of 30% in endothelial cell culture medium (CM) was observed for E/N14C during the first 6 h, compared to 2% release from E/N14C-H(0.4). After 28 days, the bFGF release from E/N14C and E/N14C-H(0.4) in CM amounted to 100 and 65%, respectively. Combined results of binding and release of bFGF indicate that compared to E/N14C, E/N14C-H(0.4) is the substrate of choice for bFGF pre-loading and subsequent endothelial cell seeding.
机译:内皮细胞播种是改善小直径血管移植物性能的一种有前途的方法。可以通过局部持续释放碱性成纤维细胞生长因子(bFGF)来加速接种在合成血管移植物腔表面的内皮细胞的生长,该内皮细胞涂有适合细胞播种的基质(例如胶原蛋白)。在这项研究中,针对bFGF的结合和释放,研究了两种潜在的体内内皮细胞植入基质:使用N-(3-二甲基氨基丙基)-N'-乙基碳二亚胺(EDC)和N-羟基琥珀酰亚胺(NHS)交联的胶原蛋白作为肝素化的EDC / NHS交联胶原蛋白。在将圆形样品(直径10 mm)与0.25 ml bFGF溶液温育90分钟后,确定bFGF结合。还使用EDC和NHS将增加量的肝素固定在每1000个氨基酸残基(E / N14C)包含14个游离伯氨基的交联胶原蛋白上,导致结合增加的bFGF。对于含有约2.0-3.0 wt%固定化肝素的肝素化E / N14C,观察到bFGF结合处于稳定状态,这是通过固定肝素时EDC与肝素-羧酸基团的摩尔比为0.4获得的(E / N14C-H(0.4 ))。在高达840 ng bFGF / ml的浓度下,添加的bFGF的10%结合到E / N14C,而bFGF与E / N14C-H(0.4)的结合达到22%。预装有bFGF的E / N14C和E / N14C-H(0.4)均显示持续的bFGF释放。在头6小时内,E / N14C在内皮细胞培养基(CM)中突然释放了30%,而从E / N14C-H(0.4)释放了2%。 28天后,从CM中的E / N14C和E / N14C-H(0.4)释放的bFGF分别达到100%和65%。 bFGF结合和释放的综合结果表明,与E / N14C相比,E / N14C-H(0.4)是bFGF预加载和随后内皮细胞接种的首选基质。

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