Advances in polysaccharide-based materials for biomedical and pharmaceutical applications: A comprehensive review.

IF 4.3 3区 医学 Q2 CHEMISTRY, MEDICINAL
Jiahao Li, Hanan Hassan Ahmed, Ali M Hussein, Mandeep Kaur, Mohammed Khaleel Jameel, Harpreet Kaur, Umida Tillaeva, Ali Fawzi Al-Hussainy, Hayder Naji Sameer, Huda Ghassan Hameed, Ameer Hassan Idan, Fahad Alsaikhan, Asghar Narmani, Bagher Farhood
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Abstract

Polysaccharides, the most abundant biopolymers in nature, have attracted the attention of researchers and clinicians due to its practicality in biomedical and pharmaceutical sciences. These biomaterials have high bioavailability and play structural and functional roles in living organisms. Polysaccharides are classified into several groups based on their origin, including plant polysaccharides and marine polysaccharides (like chitosan, hyaluronic acid, dextran, alginates, etc.) with specific applications. These biopolymers possess unique physicochemical (such as surface functional groups, solubility, and stability), mechanical (like mechanical strength and tensile), and biomedical (such as antioxidant activity, biocompatibility, biodegradability, renewability, and non-immunogenicity) characteristics which have made them excellent platforms for a wide variety of biomedical and pharmaceutical applications. Ease of extraction and different preparation approaches are mentioned as other potential properties of polysaccharides that further improved their practicality in biomedical sciences. They have high drug/bioactive encapsulation capacity and sustained/controlled release manner in in vivo microenvironments. The anti-inflammatory and immunomodulation, stimuli-responsive drug/bioactive release, and passive and active drug/bioactive delivery are considered the potential features of these biopolymers in pharmaceutical sciences. Polysaccharides have indicated practical applications in biomedical sciences, including biosensors, tissue engineering, implantation, wound healing, vascular grafting, and vaccines. This review highlights the advances of polysaccharide-based materials in biomedical and pharmaceutical sciences.

多糖是自然界中最丰富的生物聚合物,因其在生物医学和制药科学中的实用性而备受研究人员和临床医生的关注。这些生物材料具有很高的生物利用率,在生物体内发挥着结构和功能作用。多糖按其来源可分为几类,包括植物多糖和海洋多糖(如壳聚糖、透明质酸、葡聚糖、藻酸盐等),它们都有特定的用途。这些生物聚合物具有独特的物理化学(如表面官能团、溶解性和稳定性)、机械(如机械强度和拉伸性)和生物医学(如抗氧化活性、生物相容性、生物降解性、可再生性和非免疫原性)特性,使其成为各种生物医学和制药应用的绝佳平台。多糖的其他潜在特性还包括易于提取和不同的制备方法,这些特性进一步提高了多糖在生物医学科学中的实用性。多糖在体内微环境中具有较高的药物/生物活性封装能力和持续/可控释放方式。抗炎和免疫调节、刺激响应式药物/生物活性释放、被动和主动药物/生物活性递送被认为是这些生物聚合物在制药科学中的潜在特点。多糖已在生物医学科学中得到实际应用,包括生物传感器、组织工程、植入、伤口愈合、血管移植和疫苗。本综述重点介绍了多糖类材料在生物医学和制药科学中的应用进展。
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来源期刊
Archiv der Pharmazie
Archiv der Pharmazie 医学-化学综合
CiteScore
7.90
自引率
5.90%
发文量
176
审稿时长
3.0 months
期刊介绍: Archiv der Pharmazie - Chemistry in Life Sciences is an international journal devoted to research and development in all fields of pharmaceutical and medicinal chemistry. Emphasis is put on papers combining synthetic organic chemistry, structural biology, molecular modelling, bioorganic chemistry, natural products chemistry, biochemistry or analytical methods with pharmaceutical or medicinal aspects such as biological activity. The focus of this journal is put on original research papers, but other scientifically valuable contributions (e.g. reviews, minireviews, highlights, symposia contributions, discussions, and essays) are also welcome.
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