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Metal-organic frameworks: A novel platform for combined advanced therapies

机译:金属有机框架:结合先进疗法的新型平台

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Different strategies have been developed to overcome limitations of traditional pharmacological treatments (biodegradation, low specificity, toxicity, side effects). Remarkably, the use of nanoplatforms as Drug Delivery Systems (DDS) to control the dose and the delivery kinetics of active ingredients (Als) stands out as promising new generation of personalized therapies. Among other proposed materials, Metal-Organic Frameworks (MOFs) offer multiple versatilities for the accommodation of AIs: adaptable structure based on organic ligands and inorganic clusters as building units (BUs), that can be AIs themselves; accessible porosity and large surface areas; availability of functionalization sites; and biodegradability, among others. It is of great importance that MOFs, selected as bioplatforms, are biocompatible and do not exhibit toxicity. Even there are plenty of studies and reviews that explored the use of MOFs as DDS, they often include a single AI. In contrast, we wanted to focus on this review on MOF bioplatforms that exhibit advanced combined therapies. These advanced therapies could be achieved by: i) the co-encapsulation and simultaneous or sequential release of two or more AIs (e.g. drugs, metals, gases, biomolecules), ii) effective drug delivery at a target site after external triggered stimulus (near infrared-NIR, magnetic field), iii) monitoring administration towards a specific target (bioimaging), iv) combined AIs delivery and diagnosis (theranosis), and v) detection of different analytes (biosensors). All the promising combined advanced therapies based on MOFs bioplatforms herein reported open the path for the development of more efficient treatments. (C) 2019 Elsevier B.V. All rights reserved.
机译:为了克服传统药物治疗的局限性(生物降解,低特异性,毒性,副作用),已经开发出不同的策略。值得注意的是,使用纳米平台作为药物递送系统(DDS)来控制活性成分(Als)的剂量和递送动力学是有前途的新一代个性化疗法。在其他提议的材料中,金属有机框架(MOF)为容纳AI提供了多种功能:基于有机配体和无机簇作为建筑单元(BU)的适应性结构,可以是AI本身;可达到的孔隙率和较大的表面积;功能化站点的可用性;以及生物降解性等。被选为生物平台的MOF具有生物相容性且不显示毒性,这一点非常重要。即使有大量研究和评论探讨了将MOF用作DDS,但它们通常都包含单个AI。相比之下,我们想将重点放在具有先进综合疗法的MOF生物平台上。这些先进的疗法可以通过以下方式实现:i)两种或两种以上AI(例如药物,金属,气体,生物分子)的共包封和同时或顺序释放; ii)外部触发刺激后在目标部位有效递送药物(近红外),iii)监视对特定目标的管理(生物成像),iv)结合AI的传递和诊断(治疗),v)检测不同的分析物(生物传感器)。据报道,基于MOFs生物平台的所有有前途的联合先进疗法都为开发更有效的疗法开辟了道路。 (C)2019 Elsevier B.V.保留所有权利。

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