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阐明纳米颗粒在皮肤脂质基质中的集体转运:一项分子动力学研究。

Elucidating collective translocation of nanoparticles across the skin lipid matrix: a molecular dynamics study.

作者信息

Badhe Yogesh, Sharma Pradyumn, Gupta Rakesh, Rai Beena

机构信息

Physical Science Research Area, Tata Research Development and Design Centre, TCS Research 54B, Hadapsar Industrial Estate Pune - 411013 India

Tata Consultancy Services Life Sciences Noida India.

出版信息

Nanoscale Adv. 2023 Feb 3;5(7):1978-1989. doi: 10.1039/d2na00241h. eCollection 2023 Mar 28.

Abstract

The top layer of skin, the stratum corneum, provides a formidable barrier to the skin. Nanoparticles are utilized and further explored for personal and health care applications related to the skin. In the past few years, several researchers have studied the translocation and permeation of nanoparticles of various shapes, sizes, and surface chemistry through cell membranes. Most of these studies focused on a single nanoparticle and a simple bilayer system, whereas skin has a highly complex lipid membrane architecture. Moreover, it is highly unlikely that a nanoparticle formulation applied on the skin will not have multiple nanoparticle-nanoparticle and skin-nanoparticle interactions. In this study, we have utilized coarse-grained MARTINI molecular dynamics simulations to assess the interactions of two types (bare and dodecane-thiol coated) of nanoparticles with two models (single bilayer and double bilayer) of skin lipid membranes. The nanoparticles were found to be partitioned from the water layer to the lipid membrane as an individual entity as well as in the cluster form. It was discovered that each nanoparticle reached the interior of both single bilayer and double bilayer membranes irrespective of the nanoparticle type and concentration, though coated particles were observed to efficiently traverse across the bilayer when compared with bare particles. The coated nanoparticles also created a single large cluster inside the membrane, whereas the bare nanoparticles were found in small clusters. Both the nanoparticles exhibited preferential interactions with cholesterol molecules present in the lipid membrane as compared to other lipid components of the membrane. We have also observed that the single membrane model exhibited unrealistic instability at moderate to higher concentrations of nanoparticles, and hence for translocation study, a minimum double bilayer model should be employed.

摘要

皮肤的最外层,即角质层,为皮肤提供了强大的屏障。纳米颗粒被用于与皮肤相关的个人护理和医疗保健应用,并得到了进一步探索。在过去几年中,几位研究人员研究了各种形状、大小和表面化学性质的纳米颗粒通过细胞膜的转运和渗透。这些研究大多集中在单个纳米颗粒和简单的双层系统上,而皮肤具有高度复杂的脂质膜结构。此外,应用于皮肤的纳米颗粒制剂极不可能不存在多种纳米颗粒 - 纳米颗粒以及皮肤 - 纳米颗粒相互作用。在本研究中,我们利用粗粒度的MARTINI分子动力学模拟来评估两种类型(裸纳米颗粒和十二烷硫醇包覆纳米颗粒)的纳米颗粒与两种皮肤脂质膜模型(单层膜和双层膜)之间的相互作用。发现纳米颗粒以单个实体以及簇的形式从水层分配到脂质膜中。结果发现,无论纳米颗粒的类型和浓度如何,每个纳米颗粒都能到达单层膜和双层膜的内部,不过与裸纳米颗粒相比,包覆纳米颗粒被观察到能更有效地穿过双层膜。包覆纳米颗粒还在膜内形成了一个大的簇,而裸纳米颗粒则以小簇的形式存在。与膜中的其他脂质成分相比,两种纳米颗粒都与脂质膜中存在的胆固醇分子表现出优先相互作用。我们还观察到,在中等至高浓度的纳米颗粒下,单层膜模型表现出不切实际的不稳定性,因此对于转运研究,应采用至少双层膜模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab15/10044770/f7839a2df7cf/d2na00241h-f1.jpg

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