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Fabrication of homobifunctional crosslinker stabilized collagen for biomedical application

机译:均双功能交联剂稳定的胶原蛋白在生物医学中的制备

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Collagen biopolymer has found widespread application in the field of tissue engineering owing to its excellent tissue compatibility and negligible immunogenicity. Mechanical strength and enzymatic degradation of the collagen necessitates the physical and chemical strength enhancement. One such attempt deals with the understanding of crosslinking behaviour of EGS (ethylene glycol-bis (succinic acid N-hydroxysuccinimide ester)) with collagen to improve the physico-chemical properties. The incorporation of a crosslinker during fibril formation enhanced the thermal and mechanical stability of collagen. EGS crosslinked collagen films exhibited higher denaturation temperature (T-d) and the residue left after thermogravimetric analysis was about 16 +/- 5.2%. Mechanical properties determined by uniaxial tensile tests showed a threefold increase in tensile strength and Young's modulus at higher concentration (100 mu M). Water uptake capacity reduced up to a moderate extent upon crosslinking which is essential for the transport of nutrients to the cells. Cell viability was found to be 100% upon treatment with 100 mu M EGS whereas only 30% viability could be observed with glutaraldehyde. Rheological studies of crosslinked collagen showed an increase in shear stress and shear viscosity at 37 degrees C. Crosslinking with EGS resulted in the formation of a uniform fibrillar network. Trinitrobenzene sulfonate (TNBS) assay confirmed that EGS crosslinked collagen by forming a covalent interaction with epsilon-amino acids of collagen. The homobifunctional crosslinker used in this study enhanced the effectiveness of collagen as a biomaterial for biomedical application.
机译:胶原蛋白生物聚合物因其出色的组织相容性和可忽略的免疫原性而在组织工程领域中得到广泛应用。胶原的机械强度和酶促降解需要增强物理和化学强度。一种这样的尝试涉及对EGS(乙二醇-双(琥珀酸N-羟基琥珀酰亚胺酯))与胶原的交联行为的理解,以改善物理化学性质。在原纤维形成过程中交联剂的加入增强了胶原蛋白的热和机械稳定性。 EGS交联的胶原膜表现出更高的变性温度(T-d),热重分析后残留的残留物约为16 +/- 5.2%。通过单轴拉伸试验确定的机械性能表明,在较高浓度(100μM)下,拉伸强度和杨氏模量增加了三倍。交联时吸水能力降低到中等程度,这对于营养物质向细胞的运输至关重要。用100μMEGS处理后发现细胞活力为100%,而戊二醛只能观察到30%活力。交联胶原蛋白的流变学研究表明,在37摄氏度时剪切应力和剪切粘度增加。与EGS交联导致形成均匀的原纤维网络。三硝基苯磺酸盐(TNBS)分析证实EGS通过与胶原的ε-氨基酸形成共价相互作用而使胶原交联。在这项研究中使用的同双功能交联剂提高了胶原蛋白作为生物医学应用生物材料的有效性。

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