Biopolymer conjugation with phytochemicals and applications

Q2 Physics and Astronomy Physical Sciences Reviews Pub Date : 2023-09-06 DOI:10.1515/psr-2022-0190
Anchal Rana, Sonal Bhardwaj, Nandita Sharma
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Abstract

Abstract Sustainable and intelligent solutions are required to address the issues brought about by anthropogenic activity and the restricted availability of resources. Every nation is attempting to use each product from a natural resource in a necessary way in light of the current rise in environmental awareness. The bio-based biopolymers can be made from bacteria, animals, or plants. Biopolymers are a diverse class of compounds that are either produced by biological systems or synthesized from biological resources. Biopolymers are categorized as biodegradable and nonbiodegradable. Based on origin, they are further classified as being either bio based or fossil fuel based. Recently, biopolymers have gained immense recognition in different areas of biomedical field such as wound healing, burn dressing, tissue engineering, and fungal infection. These biodegradable polymer composites are effective at containing and releasing bioactive medications, such as probiotics, enzymes, pharmaceuticals, and nutraceuticals. Moreover, medicinal plants, a rich source of phytochemicals have been extensively used for their various therapeutic activities since ancient times and are being steadily providing the basis in modern drug delivery systems. There has been a lot of interest in the detection, separation, and use of dietary phytochemicals that may enhance human health and act as natural pigments, antioxidants, or antimicrobials well-being by preventing chronic illnesses like cancer, diabetes, obesity, and cardiovascular disorders. However, the delivery of these compounds for enhanced efficacy requires a rational approach. Therefore, the present chapter discuss about various sources of biopolymer, challenges, their construction mechanism, and their conjugation with phytochemicals as well as their applications.
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生物聚合物与植物化学物的偶联及其应用
人为活动和资源有限所带来的问题需要可持续和智能的解决方案。鉴于当前环境意识的提高,每个国家都在试图以必要的方式使用每种自然资源的产品。生物基生物聚合物可以由细菌、动物或植物制成。生物聚合物是一类由生物系统产生或由生物资源合成的化合物。生物聚合物分为可生物降解和不可生物降解。根据来源,它们进一步分为生物燃料和化石燃料。近年来,生物聚合物在伤口愈合、烧伤敷料、组织工程、真菌感染等生物医学领域得到了广泛的应用。这些可生物降解的聚合物复合材料在含有和释放生物活性药物方面是有效的,比如益生菌、酶、药物和营养保健品。此外,药用植物作为植物化学物质的丰富来源,自古以来就被广泛用于各种治疗活动,并不断为现代给药系统提供基础。人们对膳食植物化学物质的检测、分离和使用非常感兴趣,这些化学物质可以增强人类健康,作为天然色素、抗氧化剂或抗菌剂,预防癌症、糖尿病、肥胖和心血管疾病等慢性疾病。然而,为了提高疗效,这些化合物的递送需要一种合理的方法。因此,本章讨论了生物聚合物的各种来源、挑战、它们的构建机制、它们与植物化学物质的结合以及它们的应用。
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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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