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姜黄中的非姜黄素类化合物及其在癌症治疗和抗癌药物传递制剂中的潜力。

Non-Curcuminoids from Turmeric and Their Potential in Cancer Therapy and Anticancer Drug Delivery Formulations.

机构信息

R&D Centre, Aurea Biolabs (P) Ltd., Kolenchery, Cochin, Kerala 682311, India.

Department of Biosciences and Bioengineering, Indian Institute of Technology, Guwahati 781 039, India.

出版信息

Biomolecules. 2019 Jan 2;9(1):13. doi: 10.3390/biom9010013.

Abstract

Over the past decades curcuminoids have been extensively studied for their biological activities such as antiulcer, antifibrotic, antiviral, antibacterial, antiprotozoal, antimutagenic, antifertility, antidiabetic, anticoagulant, antivenom, antioxidant, antihypotensive, antihypocholesteremic, and anticancer activities. With the perception of limited toxicity and cost, these compounds forms an integral part of cancer research and is well established as a potential anticancer agent. However, only few studies have focused on the other bioactive molecules of turmeric, known as non-curcuminoids, which are also equally potent as curcuminoids. This review aims to explore the comprehensive potency including the identification, physicochemical properties, and anticancer mechanism inclusive of molecular docking studies of non-curcuminoids such as turmerones, elemene, furanodiene (FN), bisacurone, germacrone, calebin A (CA), curdione, and cyclocurcumin. An insight into the clinical studies of these curcumin-free compounds are also discussed which provides ample evidence that favors the therapeutic potential of these compounds. Like curcuminoids, limited solubility and bioavailability are the most fragile domain, which circumscribe further applications of these compounds. Thus, this review credits the encapsulation of non-curcuminoid components in diverse drug delivery systems such as co-crystals, solid lipid nanoparticles, liposomes, microspheres, polar-non-polar sandwich (PNS) technology, which help abolish their shortcomings and flaunt their ostentatious benefits as anticancer activities.

摘要

在过去的几十年里,姜黄素因其生物活性如抗溃疡、抗纤维化、抗病毒、抗菌、抗原生动物、抗突变、抗生育、抗糖尿病、抗凝、抗蛇毒、抗氧化、抗高血压、降胆固醇和抗癌活性而被广泛研究。由于认为其毒性和成本有限,这些化合物已成为癌症研究的一个组成部分,并被确立为一种潜在的抗癌药物。然而,只有少数研究集中在姜黄的其他生物活性分子上,这些分子被称为非姜黄素,它们与姜黄素一样有效。本综述旨在探讨其综合效力,包括鉴定、物理化学性质和抗癌机制,包括分子对接研究,如姜酮、榄香烯、呋喃二烯 (FN)、双枯酮、姜烯、姜酮 A (CA)、莪术二酮和环姜黄素。还讨论了这些无姜黄素化合物的临床研究,这些研究提供了充分的证据,证明了这些化合物的治疗潜力。与姜黄素一样,溶解度和生物利用度有限是最脆弱的领域,这限制了这些化合物的进一步应用。因此,本综述认为,将非姜黄素成分封装在各种药物输送系统中,如共晶、固体脂质纳米粒、脂质体、微球、微球、极性-非极性夹层 (PNS) 技术等,可以克服它们的缺点,展示其作为抗癌活性的华丽益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76a9/6358877/610b65d184fb/biomolecules-09-00013-g001.jpg

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