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Limitations and Opportunities in Topical Drug Delivery: Interaction Between Silica Nanoparticles and Skin Barrier

机译:局部药物递送的限制和机遇:二氧化硅纳米粒子与皮肤屏障之间的相互作用

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摘要

The first limiting barrier for the transport in the skin is the stratum corneum; different strategies have been developed to overcome this barrier, including chemical enhancers. However, these penetration enhancers have limitations, including toxic adverse effects. In this context, research into nanomaterials has provided new tools to increase the residence time of drugs by generating a reservoir, increasing the specificity of drugs and reducing their adverse effects, and improving the penetration of drugs that are difficult to formulate. Silica nanoparticles have been proposed as suitable nanocarriers for skin delivery. Unfortunately, the mechanisms involved in the interaction, transport and fate of silica nanoparticles in the skin have not been fully investigated. This paper reviews significant findings about the interaction between silica-based nanocarriers and the skin. First, this review focuses on the properties and functions of the skin, the skin penetration properties of silica nanoparticles, their synthesis strategies and their toxicity. Finally, advances and evidence on the application of silica nanocarriers in skin drug delivery are provided, in which the use of nanoparticles increases the stability and solubility of the bioactive compound, enhancing its performance, act as penetrator enhancer and improving controlled release. Thus, improving the treatment of some skin disorders.
机译:皮肤中运输的第一个限制屏障是Stratum Corneum;已经开发出不同的策略来克服这种障碍,包括化学增强剂。然而,这些渗透性增强剂具有局限性,包括毒性不利影响。在这种情况下,进入纳米材料的研究提供了新的工具,通过产生储层来增加药物的停留时间,增加药物的特异性并降低其不利影响,并改善难以制定的药物的渗透。已提出二氧化硅纳米颗粒作为皮肤递送的合适纳米载体。遗憾的是,尚未完全研究涉及皮肤中二氧化硅纳米粒子的相互作用,运输和命运的机制。本文审查了关于基于二氧化硅的纳米载体和皮肤相互作用的重要发现。首先,本综述侧重于皮肤的性质和功能,二氧化硅纳米粒子的皮肤渗透性能,它们的合成策略及其毒性。最后,提供了关于硅氧化硅纳米载体在皮肤输出中施加的进展和证据,其中使用纳米颗粒的使用增加了生物活性化合物的稳定性和溶解度,增强其性能,充当渗透剂增强剂并改善控制释放。因此,改善了一些皮肤病的治疗。

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