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基于多糖的水凝胶药物递送系统(DDS)的发展:最新进展

Development of a Polysaccharide-Based Hydrogel Drug Delivery System (DDS): An Update.

作者信息

Pushpamalar Janarthanan, Meganathan Puviarasi, Tan Hui Li, Dahlan Nuraina Anisa, Ooi Li-Ting, Neerooa Bibi Noorheen Haleema Mooneerah, Essa Raahilah Zahir, Shameli Kamyar, Teow Sin-Yeang

机构信息

School of Science, Monash University Malaysia, Jalan Lagoon Selatan, Bandar Sunway, Subang Jaya 47500, Malaysia.

Monash-Industry Palm Oil Education and Research Platform (MIPO) & Tropical Medicine and Biology Platform (TMB), Monash University Malaysia, Jalan Lagoon Selatan, Bandar Sunway, Subang Jaya 47500, Malaysia.

出版信息

Gels. 2021 Sep 27;7(4):153. doi: 10.3390/gels7040153.

Abstract

Delivering a drug to the target site with minimal-to-no off-target cytotoxicity is the major determinant for the success of disease therapy. While the therapeutic efficacy and cytotoxicity of the drug play the main roles, the use of a suitable drug delivery system (DDS) is important to protect the drug along the administration route and release it at the desired target site. Polysaccharides have been extensively studied as a biomaterial for DDS development due to their high biocompatibility. More usefully, polysaccharides can be crosslinked with various molecules such as micro/nanoparticles and hydrogels to form a modified DDS. According to IUPAC, hydrogel is defined as the structure and processing of sols, gels, networks and inorganic-organic hybrids. This 3D network which often consists of a hydrophilic polymer can drastically improve the physical and chemical properties of DDS to increase the biodegradability and bioavailability of the carrier drugs. The advancement of nanotechnology also allows the construction of hydrogel DDS with enhanced functionalities such as stimuli-responsiveness, target specificity, sustained drug release, and therapeutic efficacy. This review provides a current update on the use of hydrogel DDS derived from polysaccharide-based materials in delivering various therapeutic molecules and drugs. We also highlighted the factors that affect the efficacy of these DDS and the current challenges of developing them for clinical use.

摘要

将药物以最小至无脱靶细胞毒性的方式递送至靶位点是疾病治疗成功的主要决定因素。虽然药物的治疗效果和细胞毒性起主要作用,但使用合适的药物递送系统(DDS)对于在给药过程中保护药物并在期望的靶位点释放药物很重要。由于其高生物相容性,多糖作为用于开发DDS的生物材料已被广泛研究。更有用的是,多糖可以与各种分子如微/纳米颗粒和水凝胶交联以形成改性的DDS。根据国际纯粹与应用化学联合会(IUPAC)的定义,水凝胶是指溶胶、凝胶、网络和无机 - 有机杂化物的结构和加工。这种通常由亲水性聚合物组成的三维网络可以极大地改善DDS的物理和化学性质,以提高载体药物的生物降解性和生物利用度。纳米技术的进步还允许构建具有增强功能(如刺激响应性、靶向特异性、药物持续释放和治疗效果)的水凝胶DDS。本综述提供了关于基于多糖材料的水凝胶DDS在递送各种治疗性分子和药物方面的最新应用情况。我们还强调了影响这些DDS疗效的因素以及将其开发用于临床的当前挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66ac/8544468/9868d9768c3a/gels-07-00153-g001.jpg

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