摘要
许多疾病影响呼吸道,喷雾剂已被广泛认为是一种合适的非侵入性的传递方法。该方法使促使药物集中于肺部,因此该方法存在一些限制和副作用。由于存在障碍如特定的呼吸运动、粘液或表面活性剂的存在以及粘液纤毛清除,活性药物成分的气雾传导极具挑战。纳米药物如脂质体、胶束或纳米粒子能提高生物利用度,有利于细胞内的特定药物的渗透到肺组织。本文着重细胞阻碍与喷雾剂的设计、特征和对气道解剖的逐步适应。然后,喷雾制剂制剂目前得到了临床批准或者依据包囊药物正在进行临床试验。最后,对处于临床前研究的较合适的喷雾制剂进行了的详细说明。
关键词: Bysta纳米药物,雾化吸入,吸入,抗生素、化疗、质粒。
Current Gene Therapy
Title:Challenges and Successes Using Nanomedicines for Aerosol Delivery to the Airways
Volume: 16 Issue: 1
Author(s): P. Resnier, A. Mottais, Y. Sibiril T. Le Gall and T. Montier
Affiliation:
关键词: Bysta纳米药物,雾化吸入,吸入,抗生素、化疗、质粒。
摘要: Numerous diseases affect the respiratory tract and the aerosol administration has been widely considered as an adapted and non-invasive method for local delivery. This pathway induces a lung concentration and thus also limits, systemic side effects. However, aerosol delivery of active pharmaceutical ingredients represents a real challenge, due to numerous obstacles such as the specific respiratory movement, the presence of mucus or surfactant, and the mucociliary clearance. Nanomedicines, such as liposomes, micelles or nanoparticles, offer the possibility to increase bioavailability and favor intracellular penetration of specific drugs into lung tissue. This review focuses on the description of aerosol formulations and cellular barriers including design, characteristics and progressive adaptation to airways anatomy. Then, aerosolized formulations currently clinically approved, or in clinical trial are summarized according to the encapsulated drug. In a final section, promising aerosol formulations in pre-clinical studies are detailed.
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P. Resnier, A. Mottais, Y. Sibiril T. Le Gall and T. Montier , Challenges and Successes Using Nanomedicines for Aerosol Delivery to the Airways, Current Gene Therapy 2016; 16 (1) . https://dx.doi.org/10.2174/1566523216666160104142013
DOI https://dx.doi.org/10.2174/1566523216666160104142013 |
Print ISSN 1566-5232 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5631 |
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