海藻酸盐移植技术的现状与进展

S. Rodriguez, Rahul Tuli, A. Wheeler, Amy N. Nguyen, J. Luong, Reza Mohammadi, M. Alexander, J. Lakey
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引用次数: 9

摘要

几乎每个行业都对多功能且具有生物相容性的生物材料有很高的需求,生物和生物医学工程严重依赖于常见的生物材料,如海藻酸盐聚合物。藻酸盐是一种非常常见的物质,存在于各种海洋植物中,可以很容易地通过廉价无害的方法提取和纯化。海藻酸盐聚合物的一个关键特征包括由于其惰性但功能性的化学成分而易于操作的物理性质。海藻酸盐的多功能性、聚合物的长期稳定性和生物相容性等因素使得海藻酸盐技术受到了科学界和工业界的广泛关注。虽然也用于食品工业制造和标准牙科手术,但本章将重点讨论海藻酸盐技术在再生细胞移植和药物输送系统中的临床和非临床应用。此外,我们概述了植入海藻酸盐水凝胶后引起的免疫系统反应。还分析了免疫细胞对外来物质的反应性的后果,如炎症和异物反应(FBR),并对当前和未来潜在的规避对海藻酸盐基装置的严重免疫反应的策略进行了回顾和建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current Perspective and Advancements of Alginate-Based Transplantation Technologies
Versatile yet biocompatible bio-materials are in high demand in nearly every industry, with biological and biomedical engineering relying heavily on common biomaterials like alginate polymers. Alginate is a very common substance found in various marine plants which can easily be extracted and purified through cheap nonhazardous methods. A key characteristic of alginate polymers includes easily manipulatable physical properties due to its inert but functional chemical composition. Factors including its functional versatility, long-term polymer stability and biocompatibility have caused alginate-based technologies to draw major attention from both the scientific and industrial communities alike. While also used in food industry manufacturing and standard dental procedures, this chapter will focus on a discussion of the both clinical and nonclinical use of alginate-based technologies in transplantation for regenerative cell and drug delivery systems. In addition, we overview the immune system response prompted following implantation of alginate hydrogels. Consequences of immune cell reactivity to foreign materials, such as inflammation and the foreign body response (FBR), are also analyzed and current and future strategies for potential circumvention of severe immune responses toward alginate-based devices are reviewed and suggested.
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