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Bioresponsive hydrogel scaffolding systems for 3D constructions in tissue engineering and regenerative medicine

机译:用于组织工程和再生医学中3D构造的生物响应性水凝胶支架系统

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摘要

Among the diversity of scaffolding systems available, hydrogel remains a popular choice for tissue engineering applications. The current state-of-the-art bioresponsive hydrogels demand intricate designs in pursuit of acquiring desired timely responses, such as controlled release of biological factors, changes in mechanical properties and scaffold degradation, at the same rate as the natural extracellular matrix. In this review, a variety of bioresponsive hydrogels are discussed; in particular, bioactive and biodegradable hydrogels that facilitate cellular development and tissue morphogenesis are highlighted. Bioactive hydrogels are designed to deliver biomolecules such as cell-adhesive moieties and instructive ligands at close proximity to the cell for better uptake or exposure. Biodegradable hydrogels provide transient scaffolding support for therapeutic cell settlement while gradually degrading in response to physical or enzymatic stimuli. In addition, biomechanical stimuli from hydrogels can induce mutual constructive responses on cells and, hence, will also be covered in this review.
机译:在各种可用的脚手架系统中,水凝胶仍然是组织工程应用的流行选择。当前的最先进的生物响应性水凝胶需要复杂的设计,以寻求获得所需的及时响应,例如以与天然细胞外基质相同的速率获得生物因子的受控释放,机械性质的变化和支架降解。在这篇综述中,讨论了多种生物响应性水凝胶。特别地,突出了促进细胞发育和组织形态发生的生物活性和可生物降解的水凝胶。生物活性水凝胶旨在在细胞附近递送生物分子(例如细胞粘附部分和指导性配体),以更好地吸收或暴露。可生物降解的水凝胶为治疗性细胞沉降提供了短暂的支架支持,同时响应于物理或酶促刺激而逐渐降解。另外,来自水凝胶的生物力学刺激可以诱导细胞相互的建设性反应,因此,本综述也将涉及到。

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