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应用于天然活性化合物的现代药物递送策略。

Modern drug delivery strategies applied to natural active compounds.

作者信息

Puglia Carmelo, Lauro Maria Rosaria, Tirendi Giorgia Giusy, Fassari Giuseppina Emanuela, Carbone Claudia, Bonina Francesco, Puglisi Giovanni

机构信息

a Department of Drug Sciences , University of Catania , Catania , Italy.

b Department of Pharmacy , University of Salerno , Fisciano , Italy.

出版信息

Expert Opin Drug Deliv. 2017 Jun;14(6):755-768. doi: 10.1080/17425247.2017.1234452. Epub 2016 Sep 19.

Abstract

Colloidal drug delivery systems (CDDSs) are innovative carriers that have been studied in pharmaceutical field from many years to overcome unfavorable physical and chemical features of synthetic drugs. Recently the use of CDDS as carriers for phytochemicals has seen an exponential increase which, in some cases, has led to the rediscovery of ancient and forgotten natural molecules. Area covered: This article focuses on the main features of CDDS, particularly micro- and nanoemulsions, vesicular carriers and micro- and nanoparticles, loaded with natural active compounds. A detailed review of the literature is presented, introducing the importance of these systems in terms of their capability to optimize the stability of phytochemicals, their absorption through biological membranes and their bioavailability. Expert opinion: The delivery of phytochemicals is problematic due to poor solubility, poor permeability, low bioavailability, instability in biological milieu and extensive first-pass metabolism. Global research efforts investigating nanotechnology have attempted to overcome these limitations rediscovering and, in some cases, 'discovering ex novo' unexpected virtues and benefits associated to these compounds. The 'nanotechnological approach' can definitely enhance the pharmacokinetics and therapeutic index of natural active compounds and improve their performance in therapy.

摘要

胶体药物递送系统(CDDSs)是一种创新型载体,多年来一直在药学领域进行研究,以克服合成药物不利的物理和化学特性。最近,将CDDS用作植物化学物质载体的应用呈指数级增长,在某些情况下,这导致了一些古老且被遗忘的天然分子的重新发现。涵盖领域:本文重点关注负载天然活性化合物的CDDS的主要特性,特别是微乳和纳米乳、囊泡载体以及微纳米颗粒。对相关文献进行了详细综述,介绍了这些系统在优化植物化学物质稳定性、促进其透过生物膜吸收以及提高其生物利用度方面的重要性。专家观点:由于溶解度差、渗透性差、生物利用度低、在生物环境中不稳定以及广泛的首过代谢,植物化学物质的递送存在问题。全球对纳米技术的研究努力试图克服这些限制,重新发现并在某些情况下“重新发现全新的”与这些化合物相关的意外优点和益处。“纳米技术方法”肯定可以提高天然活性化合物的药代动力学和治疗指数,并改善它们在治疗中的性能。

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