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Collagen Tissue Engineering: Development of Novel Biomaterials and Applications

机译:胶原组织工程:新型生物材料的开发和应用

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Scientific investigations involving collagen have inspired tissue engineering and design of biomaterials since collagen fibrils and their networks primarily regulate and define most tissues. The collagen networks form a highly organized, three-dimensional architecture to entrap other ingredients. Biomaterials are expected to function as cell scaffolds to replace native collagen-based extracellular matrix. The composition and properties of biomaterials used as scaffold for tissue engineering significantly affect the regeneration of neo-tissues and influence the conditions of collagen engineering. The complex scenario of collagen characteristics, types, fibril arrangement, and collagen structure-related functions (in a variety of connective tissues including bone, cartilage, tendon, skin and cornea) are addressed in this review. Discussion will focus on nanofibrillar assemblies and artificial synthetic peptides that mimic either the fibrillar structure or the elemental components of type I collagen as illustrated by their preliminary applications in tissue engineering. Conventional biomaterials used as scaffolds in engineering collagen-containing tissues are also discussed. The design of novel biomaterials and application of conventional biomaterials will facilitate development of additional novel tissue engineering bioproducts by refining the currently available techniques. The field of tissue engineering will ultimately be advanced by increasing control of collagen in native tissue and by continual manipulation of biomaterials.Abbreviations: DBM, demineralized bone matrix; ECM, extracellular matrix; GAG, glycosaminoglycans; HA, hydroxyapatite; PA, peptide-amphiphile; PGA, polyglycolide
机译:由于胶原蛋白原纤维及其网络主要调节和定义大多数组织,因此涉及胶原蛋白的科学研究已激发了生物材料的组织工程和设计。胶原蛋白网络形成了高度组织的三维结构,可以捕获其他成分。预计生物材料将充当细胞支架,以取代天然的基于胶原的细胞外基质。用作组织工程支架的生物材料的组成和性质会显着影响新组织的再生并影响胶原工程的条件。这篇综述探讨了胶原蛋白特性,类型,原纤维排列以及与胶原蛋白结构相关的功能(在各种结缔组织中,包括骨骼,软骨,腱,皮肤和角膜)的复杂情况。讨论将集中于模仿原纤维在组织工程中的应用所说明的纳米原纤维组装体和模拟I型胶原的原纤维结构或元素成分的人工合成肽。还讨论了在工程化的含胶原组织中用作支架的常规生物材料。新型生物材料的设计和常规生物材料的应用将通过改进当前可用技术来促进其他新型组织工程生物产品的开发。最终,将通过增强对天然组织中胶原蛋白的控制以及对生物材料的不断操作来推动组织工程领域的发展。 ECM,细胞外基质; GAG,糖胺聚糖; HA,羟基磷灰石; PA,两亲肽; PGA,聚乙交酯

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