Morán M Carmen, Tozar Tatiana, Simon Agota, Dinache Andra, Smarandache Adriana, Andrei Ionut Relu, Boni Mihai, Pascu Mihail Lucian, Cirisano Francesca, Ferrari Michele
Departament de Fisiologia, Facultat de Farmàcia, Universitat de Barcelona, Avda. Joan XXIII s/n, 08028 Barcelona, Spain; Institut de Nanociència i Nanotecnologia-IN(2)UB, Universitat de Barcelona, Avda. Joan XXIII s/n, 08028 Barcelona, Spain.
National Institute for Laser, Plasma and Radiation Physics, 077125 Magurele, Romania; Faculty of Physics, University of Bucharest, 077125 Magurele, Romania.
Colloids Surf B Biointerfaces. 2016 Jan 1;137:91-103. doi: 10.1016/j.colsurfb.2015.06.041. Epub 2015 Jun 26.
Phenothiazine derivatives are non-antibiotics with antimicrobial, fungistatic and fungicidal effects. We exposed to a high energy UV laser beam phenothiazines solutions in water at 20mg/mL concentration to increase antibacterial activity of resulting mixtures. Compared to previous results obtained on bacteria, more research is needed about UV laser irradiated phenothiazines applications on cancer cell cultures to evidence possible anticancerous properties. Evaluation of the safety of the newly obtained photoproducts in view of use on humans is also needed. Due to expensive animal testing in toxicology and pressure from general public and governments to develop alternatives to in vivo testing, in vitro cell-based models are attractive for preliminary testing of new materials. Cytotoxicity screening reported here shows that laser irradiated (4h exposure time length) chlorpromazine and promazine are more efficient against some cell cultures. Interaction of laser irradiated phenothiazines with fabrics show that promethazine and chlorpromazine have improved wetting properties. Correlation of these two groups of properties shows that chlorpromazine appears to be more recommended for applications on tissues using fabrics as transport vectors. The reported results concern stability study of phenothiazines water solutions to know the time limits within which they are stable and may be used.
吩噻嗪衍生物是具有抗菌、抑菌和杀菌作用的非抗生素。我们将浓度为20mg/mL的吩噻嗪水溶液暴露于高能紫外激光束下,以增强所得混合物的抗菌活性。与之前在细菌上获得的结果相比,关于紫外激光照射吩噻嗪在癌细胞培养中的应用,还需要更多研究来证明其可能的抗癌特性。鉴于要用于人体,还需要评估新获得的光产物的安全性。由于毒理学中动物试验成本高昂,以及公众和政府对开发体内试验替代方法的压力,基于细胞的体外模型对于新材料的初步测试很有吸引力。此处报道的细胞毒性筛选表明,激光照射(暴露时间为4小时)的氯丙嗪和丙嗪对某些细胞培养更有效。激光照射吩噻嗪与织物的相互作用表明,异丙嗪和氯丙嗪具有改善的润湿性。这两组特性的相关性表明,氯丙嗪似乎更推荐用于以织物作为传输载体的组织应用。报道的结果涉及吩噻嗪水溶液的稳定性研究,以了解其稳定且可使用的时间限制。