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Hydrogels for Biomedical Applications: Their Characteristics and the Mechanisms behind Them

机译:用于生物医学的水凝胶:其特性及其背后的机理

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Hydrogels are hydrophilic, three-dimensional networks that are able to absorb large quantities of water or biological fluids, and thus have the potential to be used as prime candidates for biosensors, drug delivery vectors, and carriers or matrices for cells in tissue engineering. In this critical review article, advantages of the hydrogels that overcome the limitations from other types of biomaterials will be discussed. Hydrogels, depending on their chemical composition, are responsive to various stimuli including heating, pH, light, and chemicals. Two swelling mechanisms will be discussed to give a detailed understanding of how the structure parameters affect swelling properties, followed by the gelation mechanism and mesh size calculation. Hydrogels prepared from natural materials such as polysaccharides and polypeptides, along with different types of synthetic hydrogels from the recent reported literature, will be discussed in detail. Finally, attention will be given to biomedical applications of different kinds of hydrogels including cell culture, self-healing, and drug delivery.
机译:水凝胶是亲水的三维网络,能够吸收大量的水或生物流体,因此有潜力被用作组织工程中生物传感器,药物输送载体以及细胞载体或基质的主要候选物。在这篇重要的综述文章中,将讨论克服其他类型生物材料的局限性的水凝胶的优势。水凝胶取决于其化学成分,对各种刺激有反应,包括加热,pH,光和化学物质。将讨论两种溶胀机理,以详细了解结构参数如何影响溶胀特性,然后是胶凝机理和筛孔尺寸计算。将详细讨论由天然材料如多糖和多肽制备的水凝胶,以及来自最近报道的文献的不同类型的合成水凝胶。最后,将关注不同种类水凝胶的生物医学应用,包括细胞培养,自我修复和药物递送。

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