姜黄素纳米药物制剂在囊性纤维化中的治疗应用。

IF 4.4 3区 医学 Q2 ENGINEERING, BIOMEDICAL Progress in Biomaterials Pub Date : 2022-12-01 Epub Date: 2022-07-29 DOI:10.1007/s40204-022-00198-3
Cristina Quispe, Jesús Herrera-Bravo, Khushbukhat Khan, Zeeshan Javed, Prabhakar Semwal, Sakshi Painuli, Senem Kamiloglu, Miquel Martorell, Daniela Calina, Javad Sharifi-Rad
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引用次数: 17

摘要

姜黄衍生的姜黄素的医学应用早已为人类所知。它在治疗“囊性纤维化”方面的潜力也得到了评估。这种常染色体隐性遗传病是由囊性纤维化跨膜传导调节因子(CFTR)突变引起的,涉及氯离子分泌受损,导致厚粘稠粘液分泌过多,严重并发症包括气道阻塞、慢性肺部感染和炎症反应。这篇叙述性综述旨在强调姜黄素纳米制剂在治疗囊性纤维化中的潜在疗效。最近的研究表明,姜黄素作用于质膜上的局部突变CFTR离子通道。临床前研究也表明,姜黄素纳米制剂在治疗囊性纤维化方面有很好的效果。在此背景下,本文将重点介绍姜黄素的一般生物活性、制剂类型和相关研究,从而为CF的治疗开辟新的前景。
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Therapeutic applications of curcumin nanomedicine formulations in cystic fibrosis.

Medicinal applications of turmeric-derived curcumin have been known to mankind for long ages. Its potential in managing "cystic fibrosis" has also been evaluated. This autosomal recessive genetic disease is caused by mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) which involves an impaired secretion of chloride ions and leads to hypersecretion of thick and sticky mucus and serious complications including airway obstruction, chronic lung infection, and inflammatory reactions. This narrative review aims to highlight the available evidence for the efficacy of curcumin nanoformulations in its potential treatment of cystic fibrosis. Recent research has shown that curcumin acts on the localized mutant CFTR ion channel at the plasma membrane. Preclinical studies have also shown that curcumin nanoformulations have promising effects in the treatment of cystic fibrosis. In this context, the purpose of this narrative review is to highlight the general bioactivity of curcumin, the types of formulations and related studies, thus opening new therapeutic perspectives for CF.

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来源期刊
Progress in Biomaterials
Progress in Biomaterials MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
9.60
自引率
4.10%
发文量
35
期刊介绍: Progress in Biomaterials is a multidisciplinary, English-language publication of original contributions and reviews concerning studies of the preparation, performance and evaluation of biomaterials; the chemical, physical, biological and mechanical behavior of materials both in vitro and in vivo in areas such as tissue engineering and regenerative medicine, drug delivery and implants where biomaterials play a significant role. Including all areas of: design; preparation; performance and evaluation of nano- and biomaterials in tissue engineering; drug delivery systems; regenerative medicine; implantable medical devices; interaction of cells/stem cells on biomaterials and related applications.
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