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首页> 外文期刊>Photodiagnosis and Photodynamic Therapy >Evidence of hypericin photoinactivation of E. faecalis: From planktonic culture to mammalian cells selectivity up to biofilm disruption
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Evidence of hypericin photoinactivation of E. faecalis: From planktonic culture to mammalian cells selectivity up to biofilm disruption

机译:粪便粪菌的验证证据:从氏菌培养到哺乳动物细胞选择性直至生物膜中断

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摘要

Antimicrobial Photodynamic Therapy (aPDT) is an alternative for microbiological inactivation. The aPDT is a method that uses a photosensitizer (PS) excited by visible light at the appropriate wavelength and the molecular oxygen present in the tissues resulting in the production of reactive oxygen species, which causes oxidative damage to biological molecules. This study aimed to perform an in vitro experimental sequence for photoinactivation of E. faecalis using Hypericin (HY) from planktonic culture to selectivity assays using mammalian cells up to biofilm. The results show that E. faecalis rapidly absorb HY. The levels of inactivation of E. faecalis reached up to 99% in planktonic culture. Transmission and Scanning Electron Microscopy demonstrate the remarkable morphological alterations resulting from photooxidation being the loss of membrane integrity assessed by fluorescence microscopy combined with a LIVE/DEAD (TM) kit. HY did not present cytotoxicity to the fibroblasts cell at the used conditions proving to be a selective molecule. Finally, 60% of photoinactivation was observed in the biofilm of E. faecalis when subject to HY-aPDT. These outcomes show the advantages of sequential in vitro experiments besides showing that HY is a potential PS for clinical trials due to its selectivity and photodynamic effect. This study also draws attention to the benefits of using methodologies that can evidence the antimicrobial effect beyond the typical constellation of cell death.
机译:抗微生物光动力学治疗(APDT)是微生物灭活的替代方案。 APDT是一种方法,该方法使用在适当波长的可见光下通过可见光和组织中存在的分子氧产生的光敏剂(PS),导致反应性氧物质的产生,这导致生物分子氧化损伤。该研究旨在使用从浮鳞培养物中使用Hypericin(Hy)对E. Faecalis的Photopactivation的体外实验顺序。使用哺乳动物细胞到生物膜的选择性测定。结果表明,E.粪便迅速吸收HY。氏鳞醛植物的灭活水平占浮游文化的99%。传输和扫描电子显微镜证明了光氧化导致的显着形态改变,这是通过荧光显微镜评估的膜完整性的损失与活/死(TM)试剂盒进行评估。 HY在证明是选择性分子的使用条件下,未对成纤维细胞细胞提出细胞毒性。最后,当通过-APDT受到E.eCeecalis的生物膜,观察到60%的光灭活。这些结果表明,由于其选择性和光动力学效应,HY是临床试验的潜在PS的顺序体外实验的优点。本研究还提请注意使用方法可以证明除典型的细胞死亡星座之外的抗微生物效应的益处。

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