Vegad Udaykumar, Patel Megha, Khunt Dignesh, Zupančič Ožbej, Chauhan Sanjay, Paudel Amrit
Graduate School of Pharmacy, Gujarat Technological University, Ahmedabad, Gujarat, India.
Research Center Pharmaceutical Engineering GmbH (RCPE), Graz, Austria.
Front Bioeng Biotechnol. 2023 Sep 12;11:1270364. doi: 10.3389/fbioe.2023.1270364. eCollection 2023.
Over the past several decades, there has been significant growth in the design and development of more efficient and advanced biomaterials based on non-cellulosic biological macromolecules. In this context, hydrogels based on stimuli-responsive non-cellulosic biological macromolecules have garnered significant attention because of their intrinsic physicochemical properties, biological characteristics, and sustainability. Due to their capacity to adapt to physiological pHs with rapid and reversible changes, several researchers have investigated pH-responsive-based non-cellulosic polymers from various materials. pH-responsive hydrogels release therapeutic substances in response to pH changes, providing tailored administration, fewer side effects, and improved treatment efficacy while reducing tissue damage. Because of these qualities, they have been shown to be useful in a wide variety of applications, including the administration of chemotherapeutic drugs, biological material, and natural components. The pH-sensitive biopolymers that are utilized most frequently include chitosan, alginate, hyaluronic acid, guar gum, and dextran. In this review article, the emphasis is placed on pH stimuli-responsive materials that are based on biological macromolecules for the purposes of drug administration.
在过去几十年中,基于非纤维素生物大分子的更高效、更先进生物材料的设计与开发取得了显著进展。在此背景下,基于刺激响应性非纤维素生物大分子的水凝胶因其固有的物理化学性质、生物学特性和可持续性而备受关注。由于它们能够适应生理pH值并发生快速且可逆的变化,一些研究人员对来自各种材料的基于pH响应的非纤维素聚合物进行了研究。pH响应性水凝胶会根据pH变化释放治疗物质,可实现精准给药、减少副作用并提高治疗效果,同时减少组织损伤。由于这些特性,它们已被证明在多种应用中都很有用,包括化疗药物、生物材料和天然成分的给药。最常用的pH敏感生物聚合物包括壳聚糖、藻酸盐、透明质酸、瓜尔豆胶和葡聚糖。在这篇综述文章中,重点关注基于生物大分子的用于药物给药的pH刺激响应材料。
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