基于葡聚糖的肺部疾病给药方法:综述。

Manisha Kumari, Sanyam Sharma, Navjot Kanwar, Subh Naman, Ashish Baldi
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摘要

肺结核、囊性纤维化、慢性阻塞性肺病、哮喘、肺癌和肺部炎症等呼吸系统疾病是当今世界最普遍的疾病之一。右旋糖酐是一种由肠道黏液产生菌(Leuconostoc mesenteroides)形成的外多糖,其衍生物被研究用于多种治疗用途。与其他多糖相比,葡聚糖具有多种优势,如粘液溶解作用、气道水合作用、抗炎特性和放射保护作用,因此,以葡聚糖为基础的给药系统可以成为治疗多种呼吸系统疾病的创新策略。葡聚糖是一种具有生物相容性、柔性亲水性、可生物降解、无味、无臭、无致突变性、水溶性和无毒的可食用聚合物,以葡聚糖为基础的给药系统已被广泛应用于治疗领域,尤其是肺部和呼吸系统疾病。本文全面论述了葡聚糖的各种衍生物,以及它们在给药方面的特性和广泛的治疗效果,特别强调了以葡聚糖为基础的配方在治疗呼吸系统疾病和相关病症方面的作用。所提供的信息将为制剂科学家提供一个平台,作为设计肺部和呼吸系统疾病治疗方法的重要考虑因素。本文将以肺部疾病为重点,深入介绍基于葡聚糖的给药系统在呼吸系统疾病中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dextran-based Drug Delivery Approaches for Lung Diseases: A Review.

Respiratory disorders, such as tuberculosis, cystic fibrosis, chronic obstructive pulmonary disease, asthma, lung cancer, and pulmonary inflammation, are among the most prevalent ailments in today's world. Dextran, an exopolysaccharide formed by Leuconostoc mesenteroides (slimeproducing bacteria), and its derivatives are investigated for several therapeutic utilities. Dextranbased drug delivery system can become an innovative strategy in the treatment of several respiratory ailments as it offers numerous advantages, such as mucolytic action, airway hydration, antiinflammatory properties, and radioprotective effect as compared to other polysaccharides. Being biocompatible, flexible hydrophilic nature, biodegradable, tasteless, odourless, non-mutagenic, watersoluble and non-toxic edible polymer, dextran-based drug delivery systems have been explored for a wide range of therapeutic applications, especially in lungs and respiratory diseases. The present article comprehensively discusses various derivatives of dextran with their attributes to be considered for drug delivery and extensive therapeutic benefits, with a special emphasis on the armamentarium of dextran-based formulations for the treatment of respiratory disorders and associated pathological conditions. The information provided will act as a platform for formulation scientists as important considerations in designing therapeutic approaches for lung and respiratory diseases. With an emphasis on lung illnesses, this article will offer an in-depth understanding of dextran-based delivery systems in respiratory illnesses.

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