Department of Pharmacognosy, School of Pharmaceutical Sciences, Siksha 'O' Anusandhan (Deemed to be University), Bhubaneswar, Odisha, India.
Department of Pharmacognosy, School of Pharmaceutical Sciences, Siksha 'O' Anusandhan (Deemed to be University), Bhubaneswar, Odisha, India.
Int J Biol Macromol. 2021 Dec 15;193(Pt B):2140-2152. doi: 10.1016/j.ijbiomac.2021.11.045. Epub 2021 Nov 13.
Large surface area, rich vascularisation, well defined mucous membrane, balanced pH and relatively low enzymatic activity makes vagina a suitable site for drugs associated with women's health issues like Urinary tract infection (UTI) and vaginal infections. Therapeutic performance of intravaginal dosage forms largely depends on the properties of polymers and drugs. Chitosan (CS) because of its unique physical, chemical, pharmaceutical and biopharmaceutical properties have received a great deal of attention as an essential component in vaginal drug delivery systems. Further the presence of free amino and hydroxyl groups on the chitosan skeleton allows easy derivatization under mild conditions to meet specific application requirements. Moreover, CS-based nanopharmaceuticals like nanoparticles, nanofiber, nanogel, nanofilm, liposomes and micelles are widely studied to improve therapeutic performance of vaginal formulations. However, susceptibility of CS to the acidic pH of vagina, poor loading of hydrophobic drugs, rapid mucosal turn over are the key issues need to be addressed for successful outcomes. In this review, we have discussed the application of CS and CS derivatives in vaginal drug delivery and also highlight the recent progress in chitosan based nanocarrier platforms in terms of their limitations and potentials.
大面积、丰富的血管化、清晰的黏膜、平衡的 pH 值和相对较低的酶活性使得阴道成为与女性健康问题相关的药物(如尿路感染 (UTI) 和阴道感染)的合适部位。阴道给药剂型的治疗性能在很大程度上取决于聚合物和药物的性质。壳聚糖 (CS) 因其独特的物理、化学、药学和生物制药特性,已作为阴道给药系统的重要组成部分受到广泛关注。此外,壳聚糖骨架上的游离氨基和羟基基团允许在温和条件下进行轻松衍生化,以满足特定的应用要求。此外,基于 CS 的纳米药物,如纳米粒子、纳米纤维、纳米凝胶、纳米膜、脂质体和胶束,已被广泛研究以提高阴道制剂的治疗性能。然而,CS 对阴道酸性 pH 值的敏感性、疏水性药物的载药量低、快速的黏膜代谢等问题是成功的关键。在这篇综述中,我们讨论了 CS 及其衍生物在阴道给药中的应用,并强调了基于 CS 的纳米载体平台在其局限性和潜力方面的最新进展。