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Evaluation of mesoporous silica nanoparticles for oral drug delivery - current status and perspective of MSNs drug carriers

机译:介孔二氧化硅纳米粒子的评价口服药物——现状和交付角度msn药物载体

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The oral pathway is considered as the most common method for drug administration, although many drugs, especially the highly pH-and/or enzymatic biodegradable peptide drugs, are very difficult to formulate and achieve a good intestinal absorption. Efficient systematic absorption of an active substance, delivered via oral ingestion, is only achievable if the drug (1) is substantially present as a solution in the gastrointestinal tract, (2) is able to penetrate through the intestinal mucus, (3) overcomes the different gastrointestinal barriers, and (4) provides an effective therapeutic dose. Therefore, optimization of oral bioavailability of poorly-soluble drugs still remains a significant challenge for the pharmaceutical industry. Even though numerous conventional drug carriers have successfully solved some of the issues related to oral delivery of poorly-soluble drugs, only few of them met commercialization requirements. These drawbacks have led the scientific world to reconsider its approaches toward targeted drug delivery systems and researchers started looking for alternative vectorized carriers. In this area, nanoparticle-based materials have several significant advantages over free and non-formulated drugs. For example, nanosized porous silica carriers allow for more sustained and controlled drug release or improved oral bioavailability. Thus, in the present review, we will highlight the most important features of nanostructured silica drug carriers, such as particle size, particle shape, surface roughness or surface functionalization, and underline the key advantages of these nanosupports. In particular, this article will discuss recent progress and challenges in the area of mesoporous silica nanocarriers used for oral drug delivery. Additional emphasis will be set on the biological and chemical features of the gastrointestinal tract as well as currently tested nanoformulations and strategies to avoid drug degradation in the gastrointestinal environment.
机译:口服途径被认为是最常见的方法药物管理局,尽管许多药物,尤其是高ph值和/或酶可生物降解的多肽药物,是非常困难的制定和实现良好的肠道吸收。活性物质,通过口服摄入,只是如果药物(1)是可实现的实质性的解决方案胃肠道,(2)能够穿透通过肠道粘液,(3)克服了不同的胃肠障碍,(4)提供了一个有效的治疗剂量。因此,优化口服生物利用度poorly-soluble药物仍然是一个制药的重大挑战行业。航空公司已经成功地解决了一些与口服poorly-soluble交付有关的问题药物,其中只有少数商业化要求。科学世界重新考虑其方法靶向药物输送系统研究人员开始寻找替代方案矢量化。nanoparticle-based材料有几个显著的优势,超过免费non-formulated药物。多孔二氧化硅载体允许更为持久和药物控制释放或提高口语生物利用度。将突出最重要的特征纳米二氧化硅药物载体,如粒子大小、粒子形状、表面粗糙度或表面功能化,突显了这些nanosupports的关键优势。特别的,本文将讨论最近的在介孔的面积进展和挑战硅人们用于口服给药。额外的重点将生物的胃肠道和化学特性束以及目前测试nanoformulations和策略以避免药物胃肠道环境退化。

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