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首页> 外文期刊>Photodiagnosis and Photodynamic Therapy >Successive applications of Antimicrobial Photodynamic Therapy effects the susceptibility of Candida albicans grown in medium with or without fluconazole
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Successive applications of Antimicrobial Photodynamic Therapy effects the susceptibility of Candida albicans grown in medium with or without fluconazole

机译:抗菌光动力治疗的连续应用对中念珠菌种植的念珠菌(念珠菌)的敏感性

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Antimicrobial Photodynamic Therapy (aPDT) was introduced as a therapy due to resistance that microorganisms have developed to conventional drugs. The study aimed to evaluate the potential of successive applications of aPDT in effecting Candida albicans susceptibility and also whether the presence of fluconazole effected the recovery of the fungi in the culture medium. Planktonic cultures and biofilm were subjected to successive applications of Photodithazine-mediated (25 mg/L) LED-associated aPDT (660 nm, 34 mW/cm(2)). Plating was performed on Sabouraud Dextrose Agar supplemented or not with fluconazole to recover colony-forming units per milliliter (CFU/mL). Surviving cells were recovered, recultivated, and again exposed to the treatment. The treatments were performed until not enough colonies were available for recultivation and continuation of the protocol. The complete inactivation of the fungus was obtained after three and five applications for planktonic culture and biofilm, respectively. A reduction of 6.3 log(10) was observed after third applications in the planktonic cultures grown on medium without fluconazole, while there was a 7 log(10) reduction of these cultures grown on fluconazole medium. However, a reduction of 6.1 log(10) occurred for biofilms after fifth applications for cultures grown on medium without fluconazole, while a reduction of 6.7 log(10) was observed for cultures grown on medium with the antifungal. Thus, aPDT was potentiated by fluconazole. C. albicans in planktonic and biofilm cultures are susceptible to successive applications of PDZ-mediated aPDT, and tolerance to aPDT is higher in the biofilm.
机译:引入抗微生物光动力学治疗(APDT)作为由于耐药到常规药物的抗性而导致的治疗。该研究旨在评估APDT在念珠菌敏感性敏感性方面的连续应用的潜力以及氟康唑是否存在于培养基中的真菌的回收。对氏菌培养物和生物膜进行逐次应用光标介导(25mg / L)LED相关APDT(660nm,34mW / cm(2))。在补充或不含氟康唑的Sabourauct葡萄糖琼脂上进行电镀,以回收每毫升(CFU / mL)的菌落形成单位。回收存活细胞,重新推进,并再次暴露于治疗。进行治疗,直至没有足够的菌落可用于重新改造和延续方案。在浮游培养和生物膜的三个和五种申请之后获得真菌的完全失活。在没有氟康唑的培养基上生长的浮游培养物中的第三次应用后,观察到6.3对数(10)的减少,而在氟康唑介质上生长的这些培养物还原这些培养物的7个log(10)。然而,在没有氟康唑的培养基上生长的培养物的第五次应用后,生物膜发生了6.1个log(10)的减少,而在用抗真菌的培养基上生长的培养物,观察到6.7对数(10)的减少。因此,APDT由氟康唑增强。 C.在浮游和生物膜培养物中的古代本身易于连续应用PDZ介导的APDT,并且在生物膜中对APDT的耐受性更高。

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