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Dicationic Alkylammonium Bromide Gemini Surfactants. Membrane Perturbation and Skin Irritation

机译:阳离子型烷基溴化铵双子表面活性剂。膜扰动和皮肤刺激

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摘要

Dicationic alkylammonium bromide gemini surfactants represent a class of amphiphiles potentially effective as skin permeation enhancers. However, only a limited number of studies has been dedicated to the evaluation of the respective cytotoxicity, and none directed to skin irritation endpoints. Supported on a cell viability study, the cytotoxicity of gemini surfactants of variable tail and spacer length was assessed. For this purpose, keratinocyte cells from human skin (NCTC 2544 cell line), frequently used as a model for skin irritation, were employed. The impact of the different gemini surfactants on the permeability and morphology of model vesicles was additionally investigated by measuring the leakage of calcein fluorescent dye and analyzing the NMR spectra of 31P, respectively. Detail on the interaction of gemini molecules with model membranes was also provided by a systematic differential scanning calorimetry (DSC) and molecular dynamics (MD) simulation. An irreversible impact on the viability of the NCTC 2544 cell line was observed for gemini concentrations higher than 25 mM, while no cytotoxicity was found for any of the surfactants in a concentration range up to 10 mM. A higher cytotoxicity was also found for gemini surfactants presenting longer spacer and shorter tails. The same trend was obtained in the calorimetric and permeability studies, with the gemini of longest spacer promoting the highest degree of membrane destabilization. Additional structural and dynamical characterization of the various systems, obtained by 31P NMR and MD, provide some insight on the relationship between the architecture of gemini surfactants and the respective perturbation mechanism.
机译:二阳离子烷基溴化铵双子表面活性剂代表一类两亲物,它们可能有效地促进皮肤渗透。然而,仅有限数量的研究致力于评估各自的细胞毒性,并且没有针对皮肤刺激终点的研究。在细胞活力研究的支持下,评估了尾巴和间隔区长度可变的双子表面活性剂的细胞毒性。为此,使用了经常用作皮肤刺激模型的人皮肤角质形成细胞(NCTC 2544细胞系)。通过测量钙黄绿素荧光染料的渗漏并分析31P的NMR光谱,进一步研究了不同双子表面活性剂对模型囊泡的渗透性和形态的影响。通过系统的差示扫描量热法(DSC)和分子动力学(MD)模拟,还提供了关于双子座分子与模型膜相互作用的详细信息。对于浓度超过25 mM的双子星,观察到对NCTC 2544细胞系生存力的不可逆影响,而对于浓度最高为10 mM的任何表面活性剂,均未发现细胞毒性。还发现具有更长间隔物和较短尾巴的双子表面活性剂具有更高的细胞毒性。在量热法和渗透率研究中也获得了相同的趋势,间隔最长的双子座促进了最大程度的膜失稳。通过31P NMR和MD获得的各种系统的其他结构和动力学特征,可提供一些关于双子表面活性剂的结构与相应的扰动机制之间关系的见解。

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