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Hydrogels for the Application of Articular Cartilage Tissue Engineering: A Review of Hydrogels

机译:水凝胶在关节软骨组织工程中的应用:水凝胶综述

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The treatment of articular cartilage damage is a major task in the medical science of orthopedics. Hydrogels possess the ability to form multifunctional cartilage grafts since they possess polymeric swellability upon immersion in an aqueous phase. Polymeric hydrogels are capable of physiological swelling and greasing, and they possess the mechanical behavior required for use as articular cartilage substitutes. The chondrogenic phenotype of these materials may be enhanced by embedding living cells. Artificial hydrogels fabricated from biologically derived and synthesized polymeric materials are also used as tissue-engineering scaffolds; with their controlled degradation profiles, the release of stimulatory growth factors can be achieved. In order to make use of these hydrogels, cartilage implants were formulated in the laboratory to demonstrate the bionic mechanical behaviors of physiological cartilage. This paper discusses developments concerning the use of polymeric hydrogels for substituting injured cartilage tissue and assisting tissue growth. These gels are designed with consideration of their polymeric classification, mechanical strength, manner of biodegradation, limitations of the payload, cellular interaction, amount of cells in the 3D hydrogel, sustained release for the model drug, and the different approaches for incorporation into adjacent organs. This article also summarizes the different advantages, disadvantages, and the future prospects of hydrogels.
机译:关节软骨损伤的治疗是骨科医学的主要任务。水凝胶具有形成多功能软骨移植物的能力,因为它们在浸入水相时具有聚合物可溶胀性。聚合水凝胶具有生理溶胀和润滑作用,并且具有用作关节软骨替代物所需的机械性能。这些材料的软骨形成表型可以通过嵌入活细胞来增强。由生物衍生和合成的高分子材料制成的人工水凝胶也可用作组织工程支架;由于它们具有受控的降解特性,因此可以实现刺激性生长因子的释放。为了利用这些水凝胶,在实验室中配制了软骨植入物以证明生理性软骨的仿生力学行为。本文讨论了有关使用聚合物水凝胶替代受损的软骨组织并协助组织生长的进展。设计这些凝胶时要考虑到它们的聚合物分类,机械强度,生物降解方式,有效载荷的限制,细胞相互作用,3D水凝胶中的细胞数量,模型药物的持续释放以及掺入相邻器官的不同方法。本文还总结了水凝胶的不同优点,缺点和未来前景。

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