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Retention of insulin-like growth factor I bioactivity during the fabrication of sintered polymeric scaffolds

机译:在烧结聚合物支架制造过程中保留胰岛素样生长因子I的生物活性

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摘要

The use of growth factors in tissue engineering offers an added benefit to cartilage regeneration. Growth factors, such as insulin-like growth factor I (IGF-I), increase cell proliferation and can therefore decrease the time it takes for cartilage tissue to regrow. In this study, IGF-I was released from poly(lactic-co-glycolic acid) (PLGA) scaffolds that were designed to have a decreased burst release often associated with tissue engineering scaffolds. The scaffolds were fabricated from IGF-I-loaded PLGA microspheres prepared by a double emulsion (W_1/O/W_2) technique. The microspheres were then compressed, sintered at 49 ?C and salt leached. The bioactivity of soluble IGF-I was verified after being heat treated at 37, 43, 45, 49 and 60 ?C. Additionally, the bioactivity of IGF-I was confirmed after being released from the sintered scaffolds. The triphasic release lasted 120 days resulting in 20%, 55% and 25% of the IGF-I being released during days 1-3, 4-58 and 59-120, respectively. Seeding bone marrow cells directly onto the IGF-I-loaded scaffolds showed an increase in cell proliferation, based on DNA content, leading to increased glycosaminoglycan production. The present results demonstrated that IGF-I remains active after being incorporated into heat-treated scaffolds, further enhancing tissue regeneration possibilities.
机译:在组织工程中使用生长因子为软骨再生提供了额外的好处。诸如胰岛素样生长因子I(IGF-1)之类的生长因子会增加细胞增殖,因此可以减少软骨组织再生所需的时间。在这项研究中,IGF-I是从聚乳酸-乙醇酸共聚物(PLGA)支架中释放出来的,该支架被设计成通常与组织工程支架相关的爆裂释放减少。所述支架由通过双重乳液(W_1 / O / W_2)技术制备的IGF-I负载的PLGA微球制备。然后将微球压缩,在49°C下烧结,并浸出盐。在37、43、45、49和60°C的温度下进行热处理后,验证了可溶性IGF-I的生物活性。另外,从烧结支架中释放出IGF-1后,其生物活性得到了证实。三次释放持续120天,导致分别在1-3、4-58和59-120天释放了20%,55%和25%的IGF-1。将骨髓细胞直接接种到装有IGF-I的支架上,基于DNA含量显示细胞增殖增加,从而导致糖胺聚糖产量增加。本结果表明,将IGF-1掺入到热处理的支架中后仍保持活性,从而进一步提高了组织再生的可能性。

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