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基于层层递药系统的细胞相互作用取决于材料性质和细胞类型。

Cellular interaction of a layer-by-layer based drug delivery system depending on material properties and cell types.

机构信息

Institute for Medical Physics and Biophysics, Medical Faculty, University of Leipzig, Leipzig, Germany.

Division of Nuclear Solid State Physics, Faculty of Physics and Geosciences, University of Leipzig, Leipzig, Germany.

出版信息

Int J Nanomedicine. 2018 Apr 5;13:2079-2091. doi: 10.2147/IJN.S153701. eCollection 2018.

Abstract

BACKGROUND

Drug delivery systems (DDS) and their interaction with cells are a controversial topic in the development of therapeutic concepts and approaches. On one hand, DDS are very useful for protected and targeted transport of defined dosages of active agents. On the other hand, their physicochemical properties such as material, size, shape, charge, or stiffness have a huge impact on cellular uptake and intracellular processing. Additionally, even identical DDS can undergo a completely diverse interaction with different cell types. However, quite often in in vitro DDS/cell interaction experiments, those aspects are not considered and DDS and cells are randomly chosen.

METHODS AND RESULTS

Hence, our investigations provide an insight into layer-by-layer designed microcarriers with modifications of only some of the most important parameters (surface charge, stiffness, and applied microcarrier/cell ratio) and their influence on cellular uptake and viability. We also considered the interaction of these differently equipped DDS with several cell types and investigated professional phagocytes (neutrophil granulocytes; macrophages) as well as non-professional phagocytes (epithelial cells) under comparable conditions. We found that even small modifications such as layer-by-layer (LbL)-microcarriers with positive or negative surface charge, or LbL-microcarriers with solid core or as hollow capsules but equipped with the same surface properties, show significant differences in interaction and viability, and several cell types react very differently to the offered DDS.

CONCLUSION

As a consequence, the properties of the DDS have to be carefully chosen with respect to the addressed cell type with the aim to efficiently transport a desired agent.

摘要

背景

药物输送系统(DDS)及其与细胞的相互作用是治疗概念和方法发展中的一个有争议的话题。一方面,DDS 非常有助于保护和靶向输送定义剂量的活性剂。另一方面,其物理化学性质,如材料、大小、形状、电荷或刚性,对细胞摄取和细胞内处理有巨大影响。此外,即使是相同的 DDS,也可能与不同的细胞类型发生完全不同的相互作用。然而,在体外 DDS/细胞相互作用实验中,这些方面往往没有被考虑,DDS 和细胞是随机选择的。

方法和结果

因此,我们的研究深入了解了仅对一些最重要的参数(表面电荷、刚性和应用的微载体/细胞比)进行修饰的层层设计的微载体及其对细胞摄取和活力的影响。我们还考虑了这些不同装备的 DDS 与几种细胞类型的相互作用,并在类似条件下研究了专业吞噬细胞(中性粒细胞;巨噬细胞)以及非专业吞噬细胞(上皮细胞)。我们发现,即使是微小的修饰,如带正电荷或负电荷的层层(LbL)微载体,或具有实心核或空心胶囊但具有相同表面性质的 LbL 微载体,在相互作用和活力方面也会显示出显著差异,并且几种细胞类型对提供的 DDS 反应非常不同。

结论

因此,必须根据所涉及的细胞类型仔细选择 DDS 的特性,以有效地输送所需的药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f71/5896659/461e5608280c/ijn-13-2079Fig1.jpg

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