Acceleration Voltage and Spot Size of Advanced Bio Material in Nano scale

D. Srivani, Gurram Vasanth
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Abstract

Hydrogels, films, micro/nanofibers, and particles, which have recently emerged as advanced biomaterials, have great potential for use as cell/drug carriers for localised drug delivery and as biomimetic scaffolds for future regenerative therapies. Biological properties such as biocompatibility, biodegradability, immunogenicity of biomaterials, and current application strategies are discussed. Finally, the final remarks and prospects for such advanced biomaterials are discussed. This article discusses stem cell biology, biomaterials, and technological approaches, as well as the design of biomaterials and devices used in vivo and in vitro. Generating new functional liver substitutes, improving bone repair processes, neurogenesis, groundbreaking models of cardiac fibrosis, and developing novel venous valve prostheses are some of the specific topics covered. This interdisciplinary approach emphasises how various properties of biomaterials and devices play a role in promoting Nano materials to Modern Technology.
纳米尺度下先进生物材料的加速电压和光斑尺寸
水凝胶、薄膜、微/纳米纤维和颗粒是近年来出现的先进生物材料,它们在作为细胞/药物载体用于局部药物递送和作为未来再生治疗的仿生支架方面具有巨大的潜力。讨论了生物材料的生物相容性、生物可降解性、免疫原性等生物学特性以及目前的应用策略。最后,对这类先进生物材料的发展进行了展望。本文讨论了干细胞生物学、生物材料和技术方法,以及体内和体外使用的生物材料和设备的设计。产生新的功能性肝脏替代品,改善骨修复过程,神经发生,开创性的心脏纤维化模型,以及开发新型静脉瓣膜假体是一些具体的主题。这种跨学科的方法强调生物材料和器件的各种特性如何在促进纳米材料的现代技术中发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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