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首页> 外文期刊>Tissue engineering, Part A >Silk-fibrin/hyaluronic acid composite gels for nucleus pulposus tissue regeneration.
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Silk-fibrin/hyaluronic acid composite gels for nucleus pulposus tissue regeneration.

机译:硅纤维蛋白/透明质酸复合凝胶,用于核浆组织再生。

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摘要

Scaffold designs are critical for in vitro culture of tissue-engineered cartilage in three-dimensional environments to enhance cellular differentiation for tissue engineering and regenerative medicine. In the present study we demonstrated silk and fibrin/hyaluronic acid (HA) composite gels as scaffolds for nucleus pulposus (NP) cartilage formation, providing both biochemical support for NP outcomes as well as fostering the retention of size of the scaffold during culture due to the combined features of the two proteins. Passage two (P2) human chondrocytes cultured in 10% serum were encapsulated within silk-fibrin/HA gels. Five study groups with fibrin/HA gel culture (F/H) along with varying silk concentrations (2% silk gel only, fibrin/HA gel culture with 1% silk [F/H+1S], 1.5% silk [F/H+1.5S], and 2% silk [F/H+2S]) were cultured in serum-free chondrogenic defined media (CDM) for 4 weeks. Histological examination with alcian blue showed a defined chondrogenic area at 1 week in all groups that widened homogenously until 4 weeks. In particular, chondrogenic differentiation observed in the F/H+1.5S had no reduction in size throughout the culture period. The results of biochemical and molecular biological evaluations supported observations made during histological examination. Mechanical strength measurements showed that the silk mixed gels provided stronger mechanical properties for NP tissue than fibrin/HA composite gels in CDM. This effect could potentially be useful in the study of in vitro NP tissue engineering as well as for clinical implications for NP tissue regeneration.
机译:脚手架设计对于三维环境中组织工程软骨的体外培养至关重要,以增强组织工程和再生医学的细胞分化。在本研究中,我们证明了丝绸和纤维蛋白/透明质酸(HA)复合凝胶作为细胞核牙髓(NP)软骨形成的支架,为NP结果提供了生物化学支持,以及培养由于培养期间支架的尺寸保持尺寸两种蛋白质的组合特征。通过在10%血清中培养的两种(p2)人软骨细胞包封在丝纤维蛋白/ ha凝胶中。五种研究组,具有纤维蛋白/ ha凝胶培养(f / h)以及不同的丝浓度(仅限2%的丝绸凝胶,纤维蛋白/ ha凝胶培养,1%丝[f / h + 1s],1.5%丝[f / h + 1.5s]和2%丝[F / H + 2S])在无血清软骨内限定的培养基(CDM)中培养4周。与Alcian Blue的组织学检查在均匀均匀扩大到4周的所有群体中均为1周的细胞内的细胞内区域。特别地,在F / H + 1.5s中观察到的软骨性分化在整个培养期内没有降低尺寸。生物化学和分子生物学评估结果支持在组织学检查期间进行的观察结果。机械强度测量表明,丝混合凝胶为NP组织的机械性能较强,而不是CDM中的纤维蛋白/ HA复合凝胶。这种效果可能在体外NP组织工程研究中有助于研究NP组织再生的临床意义。

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