Specific uptake mechanisms of well-tolerated thermoresponsive polyglycerol-based nanogels in antigen-presenting cells of the skin

被引:18
|
作者
Edlich, Alexander [1 ]
Gerecke, Christian [1 ]
Giulbudagian, Michael [2 ]
Neumann, Falko [2 ]
Hedtrich, Sarah [5 ]
Schaefer-Korting, Monika [5 ]
Ma, Nan [3 ,4 ]
Calderon, Marcelo [2 ]
Kleuser, Burkhard [1 ]
机构
[1] Univ Potsdam, Inst Nutr Sci, Potsdam, Germany
[2] Free Univ Berlin, Inst Chem & Biochem, Berlin, Germany
[3] Helmholtz Zentrum Geesthacht, Inst Biomat Sci, Teltow, Germany
[4] Helmholtz Zentrum Geesthacht, Berlin Brandenburg Ctr Regenerat Therapies, Teltow, Germany
[5] Free Univ Berlin, Inst Pharm, Berlin, Germany
关键词
Dendritic cells; Drug delivery systems; Nanogel; Nanoparticle; Nanoparticle uptake; Nanotoxicology; OXIDATIVE DNA-DAMAGE; DRUG-DELIVERY; SILVER NANOPARTICLES; MACROPINOCYTOSIS; PROTEIN; POLYMERIZATION; NANOCARRIERS; ENDOCYTOSIS; TOXICITY; VACCINES;
D O I
10.1016/j.ejpb.2016.12.016
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Engineered nanogels are of high value for a targeted and controlled transport of compounds due to the ability to change their chemical properties by external stimuli. As it has been indicated that nanogels possess a high ability to penetrate the stratum corneum, it cannot be excluded that nanogels interact with dermal dendritic cells, especially in diseased skin. In this study the potential crosstalk of the thermore-sponsive nanogels (tNGs) with the dendritic cells of the skin was investigated with the aim to determine the immunotoxicological properties of the nanogels. The investigated tNGs were made of dendritic polyglycerol (dPG) and poly(glycidyl methyl ether-co-ethyl glycidyl ether) (p(GME-co-EGE)), as polymer conferring thermoresponsive properties. Although the tNGs were taken up, they displayed neither cytotoxic and genotoxic effects nor any induction of reactive oxygen species in the tested cells. Interestingly, specific uptake mechanisms of the tNGs by the dendritic cells were depending on the nanogels cloud point temperature (Tcp), which determines the phase transition of the nanoparticle. The study points to caveolae-mediated endocytosis as being the major tNGs uptake mechanism at 37 degrees C, which is above the Tcp of the tNGs. Remarkably, an additional uptake mechanism, beside caveolae-mediated endocytosis, was observed at 29 degrees C, which is the Tcp of the tNGs. At this temperature, which is characterized by two different states of the tNGs, macropinocytosis was involved as well. In summary, our study highlights the impact of thermoresponsivity on the cellular uptake mechanisms which has to be taken into account if the tNGs are used as a drug delivery system. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:155 / 163
页数:9
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