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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Balanced electrostatic blending approach - An alternative to chemical crosslinking of Thai silk fibroin/gelatin scaffold
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Balanced electrostatic blending approach - An alternative to chemical crosslinking of Thai silk fibroin/gelatin scaffold

机译:平衡的静电混合方法-泰国丝素蛋白/明胶支架化学交联的替代方法

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摘要

In tissue engineering, chemical crosslinking is widely used for conjugating two or more biomaterials to mainly control biodegradability and strength. For example, Thai silk fibroin/gelatin scaffold will offer mechanical strength from Thai silk fibroin and cell attraction from gelatin. However, chemical crosslinking requires crosslinking agent which could potentially pose negative impact from remaining trace amount of chemicals especially in medical application. Here we present an alternative approach to chemical crosslinking-a balance electrostatic blending approach. In this approach, two opposite charge biomaterials were selected for blending, with different ratios. Both materials were bound together with electrostatic force. The maximum binding was achieved when mixture electric potential approaches zero. In this work, we compared this approach with traditionally chemical crosslinking in terms of physical appearance, binding effectiveness, mechanical strength (in dry/wet conditions), in vitro biodegradation, and cell proliferation. We found that 50/50 weight ratio of Thai silk fibroin/gelatin scaffold had almost comparable properties to chemical crosslinked scaffold. It has similar appearance, binding effectiveness, and affinity for cell proliferation. For mechanical properties, even this approach yields lower dry compressive modulus compared with chemical crosslinking. But in wet condition, the compressive modulus from both methods is similar. However, the biodegradation time of non-crosslinked scaffolds is slightly faster than that of chemical crosslinked ones. These results demonstrate that a balance electrostatic approach is an alternative approach to chemical crosslinking when there is a concern of remaining trace amount of crosslinking agent in medical application.
机译:在组织工程中,化学交联被广泛用于缀合两种或更多种生物材料以主要控制生物降解性和强度。例如,泰国丝素蛋白/明胶支架将提供泰国丝素蛋白的机械强度和明胶的细胞吸引力。但是,化学交联需要交联剂,这可能会因残留痕量的化学药品而造成负面影响,特别是在医疗应用中。在这里,我们提出了一种化学交联的替代方法-平衡静电混合法。在这种方法中,选择了两种不同电荷的相反电荷生物材料进行混合。两种材料都通过静电力结合在一起。当混合电位接近零时达到最大结合。在这项工作中,我们在物理外观,结合效果,机械强度(在干/湿条件下),体外生物降解和细胞增殖方面将这种方法与传统的化学交联进行了比较。我们发现,泰国丝素蛋白/明胶支架的重量比为50/50,其化学性质几乎与化学交联支架相当。它具有相似的外观,结合效果和对细胞增殖的亲和力。对于机械性能,即使这种方法与化学交联相比也产生较低的干压缩模量。但是在潮湿条件下,两种方法的压缩模量相似。但是,非交联支架的生物降解时间比化学交联支架的生物降解时间稍快。这些结果表明,当担心在医疗应用中残留痕量的交联剂时,平衡静电方法是化学交联的另一种方法。

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