General overview of biopolymers: structure and properties

Q2 Physics and Astronomy Physical Sciences Reviews Pub Date : 2023-04-03 DOI:10.1515/psr-2022-0214
Vasuki Sasikanth, B. Meganathan, T. Rathinavel, Sindhu Seshachalam, Harini Nallappa, Brindha Gopi
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Abstract

Abstract Biopolymers are synthesized from a biological origin under natural phenomenon especially during their growth cycle, in the form of polymeric substances that portrays excellent properties such as flexibility, tensile strength, steadiness, reusability, and so on. The amalgamated form of two or more biopolymers leads to the formation of “biocomposites” with novel applications. Several mechanisms were identified for the effective production of biopolymers from diverse life forms such as microbial origin plant and animal origin. Based on their origin, biopolymer differs in their structure and functions. Biopolymers are preferred over chemically synthesized polymers due to their biodegradability and their impact on the environment. Biopolymers play a pivotal role in pharmaceutical industries. The biopolymers could be employed for, the administration of medicine as well as regenerative medicine to reach minimal immunogenicity and maximum pharmacological expressivity in a treated individual. Based on their properties biopolymers were exclusively used in medical devices, cosmaceuticals, and confectionaries, it is also used as additives in food industries, bio-sensors, textile industries, and wastewater treatment plants. Ecological support is of utmost concern nowadays due to the ever-expanding ramification over the planet by usage of plastic as packaging material, turning up scientists and researchers to focus on biodegradable biopolymer utilization. The miscibility-structural-property relation between every biopolymer must be focused on to improve the better environment. Specific biopolymers are designed for the betterment of agrarian and commoners of society. Advanced structural modifications, properties of biopolymers, and applications of biopolymers to achieve a greener environment were discussed in this chapter.
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生物聚合物概述:结构和性质
摘要生物聚合物是在自然现象下,特别是在其生长周期中,以生物来源合成的具有柔韧性、抗拉强度、稳定性、可重复使用等优异性能的高分子物质。两种或多种生物聚合物的合并形式导致形成具有新应用的“生物复合材料”。从微生物源植物和动物源等不同的生命形式中确定了几种有效生产生物聚合物的机制。生物聚合物的来源不同,其结构和功能也不同。由于生物可降解性和对环境的影响,生物聚合物比化学合成的聚合物更受欢迎。生物聚合物在制药工业中发挥着关键作用。该生物聚合物可用于药物管理以及再生医学,以在治疗个体中达到最小的免疫原性和最大的药理学表达性。基于它们的特性,生物聚合物被专门用于医疗器械、药妆和糖果,它也被用作食品工业、生物传感器、纺织工业和废水处理厂的添加剂。由于使用塑料作为包装材料对地球的影响不断扩大,生态支持是当今最受关注的问题,这使得科学家和研究人员将重点放在可生物降解的生物聚合物的利用上。为了改善环境,必须关注各种生物聚合物之间的混相-结构-性能关系。特定的生物聚合物是为改善农民和社会平民而设计的。本章讨论了先进的结构修饰、生物聚合物的性质以及生物聚合物在实现绿色环境中的应用。
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来源期刊
Physical Sciences Reviews
Physical Sciences Reviews MULTIDISCIPLINARY SCIENCES-
CiteScore
2.40
自引率
0.00%
发文量
173
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