纤维素纳米颗粒:用于药物输送

Masarat Bashir, Asma-Un-Nisa, Dar Junaid Bashir, N. Ganie, K. A. Dar, S. F. I. Qadri, Tariq A. Sofi, Mehak Mohi-ud-Din
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摘要

家蚕(Bombyx mori.L.)会感染多种疾病,即草病、花叶病、蕈蚊病和蚜虫病。在所有这些疾病中,草履虫病会给该行业造成重大经济损失,也是蚕丝生产率低下的主要原因之一。它是由一种被称为蚕核多角体病毒(BmNPV)的病毒引起的。鲩鱼病对蚕的影响很大,因为它会导致蚕丝产量下降,给养蚕户造成经济损失。在印度,50%以上的蚕茧作物损失是由 BmNPV 造成的[1],在克什米尔山谷,损失率约为 28-32%[2]。从蚕(Bombyx mori L.)茧中提取的蚕丝是一种天然纤维蛋白,因其重量轻、机械强度高、柔韧性好且富有光泽而闻名,是纺织业的理想原料。此外,从驯化家蚕的蚕茧中提取的纤维蛋白也因其卓越的机械性能、高度的生物相容性、生物可降解性、不敏感性和制备灵活性而日益受到关注[3]。蚕丝纤维素的这些特性促成了纤维素纳米颗粒(FNP's)的制备,它可用于封装不同类型的治疗化合物,如蛋白质、疫苗、酶等。纤维素已被美国食品和药物管理局(FDA)批准为生物材料,并被广泛应用于缝合线、组织再生、涂层设备和药物输送系统等众多医疗领域[4]。有研究表明,SF 衍生的姜黄素纳米粒子对乳腺癌细胞具有更高的疗效,并且作为一种可生物降解系统,具有通过局部、持续和长期给药治疗体内乳腺肿瘤的潜力[5]。因此,纤维素涂层纳米粒子可有效用于疾病治疗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fibroin Nanoparticles: Use in Drug Delivery
The silkworm Bombyx mori.L. is infected by various diseases viz; grasserie, flacherie, muscardine, and pebrine. Among all these diseases the grasserie causes major economic loss to the industry and is one of the main reasons for low silk productivity. It is caused by a virus known as Bombyx mori nucleopolyhedro virus (BmNPV). The impact of grasserie disease on silkworms is significant as it leads to reduced silk production and can result in economic losses for sericulture farmers. In India greater than 50% of silk cocoon crop loss is due to BmNPV [1] and in Kashmir valley, the loss is about 28-32% [2]. Silk obtained from the cocoons of silkworm Bombyx mori L. is a natural fibrous protein well known for being lightweight, having high mechanical strength, good flexibility, and luster making it ideal for the textile industry. In addition, fibroin extracted from the cocoons of domesticated silkworm Bombyx mori L. has gained growingly interest due to its excellent mechanical properties and high biocompatibility, biodegradability, inexpensiveness, and preparation flexibility [3]. These properties of silk fibroin lead to the formulation of fibroin nanoparticles (FNP’-s) which can be used to encapsulate different types of therapeutic compounds like proteins, vaccines, enzymes, etc. Fibroin has been approved as a biomaterial by the Food and Drug Administration (FDA) and has been popularly used in numerous medical applications such as sutures, tissue regeneration, coating devices, and drug delivery systems [4]. It has been studied that SF-derived curcumin nanoparticles show higher efficacy against breast cancer cells and have the potential to treat in vivo breast tumors by local, sustained, and long-term therapeutic delivery as a biodegradable system [5]. Therefore, fibroin-coated nanoparticles can be used effectively for disease management.
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