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Assessment of in vitro cytotoxicity of imidazole ionic liquids and inclusion in targeted drug carriers containing violacein

机译:评估咪唑离子液体的体外细胞毒性及含有violachin的靶向药物携带者的含量

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Violacein (Viol) is a pigment produced by several Gram-negative bacteria with many bioactivities, such as anticancer, virucide, and antiparasitic. However, violacein is insoluble under physiological conditions preventing its potential therapeutic uses. Surface-active ionic liquids (SAILs) based on the cation 1-alkylimidazolium ( [C _(n) Him] ) with n = 10 to 16 alkyl carbon side chain lengths and acetate, bromide, methanesulfonate (S) or trifluoroacetate (F) as counterions were synthesized and screened to dissolve Viol in micellar aqueous media and for toxicological studies on the human lung carcinoma A549 cell line. Screening allowed the selection of 1.5 × 10 ~(?3) % (w/v) [C _(16) Him]-S because it combines low cytotoxicity with 71.5% cell viability and good interaction with 95.2% of the violacein kept in micellar solution for at least 48 h. [Viol-([C _(16) Him]-S)] complex was used to develop an efficient hybrid solid lipid nanoparticle (SLN) carrier based on myristyl myristate and poloxamer 188 and tailored with folate to target cancer cells. Cellular SLN uptake was evaluated with fluorescent DiOC _(18) on A549, HCT-116, and HeLa cell lines expressing or not the folate receptor. The results showed fivefold incorporation of Viol nanoparticles in HCT-116 and HeLa cell cultures, displaying a high level of folate receptor. Biophysical characterization of the hybrid solid lipid carrier containing Viol was performed by dynamic light scattering, Fourier transform infrared, X-ray diffraction and X-ray photoelectron spectroscopies, and by transmission electron and cryo-transmission microscopies.
机译:violapein(viol)是由几种革兰氏阴性细菌产生的颜料,具有许多生物活化,如抗癌,灭蚊剂和抗披啶。然而,violapein在生理条件下不溶于潜在的治疗用途。基于阳离子1-烷基咪唑鎓([C _(n)])的表面活性离子液体(帆),N = 10-16烷基碳侧链长度和乙酸盐,溴,甲磺酸盐(S)或三氟乙酸盐(F)作为抗衡离子被合成并筛选以溶解胶束含水介质和对人肺癌A549细胞系的毒理学研究。筛选允许选择1.5×10〜(?3)%(w / v)[c _(16)他],因为它将低细胞毒性与71.5%的细胞活力结合在一起,并且良好的相互作用与95.2%的vorveratein相结合胶束溶液至少为48小时。 [vir - ([C _(16)HIM] -S)]复合物用于开发基于肌细胞肌肌苷和泊洛沙姆188的高效杂化固体脂质纳米粒子(SLN)载体,并用叶酸甲酸盐定制以靶向癌细胞。在A549,HCT-116和Hela细胞系上用荧光DIOC _(18)评价细胞SLN吸收,表达或不表达叶酸受体。结果表明,HCT-116和HeLa细胞培养物中的柳纳米粒子掺入了五倍,显示出高水平的叶酸受体。通过动态光散射,傅里叶变换红外,X射线衍射和X射线光电子谱,以及通过透射电子和冷冻透射微观进行含量的杂交固体脂质载体的生物物理表征。

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