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A genome-wide screen for tolerance to rose bengal photodynamic therapy and its use in onychomycosis treatment

机译:全基因组筛选玫瑰玫瑰光动力疗法的耐受性及其在甲癣治疗中的应用

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The clinical use of photodynamic therapy (PDT) with rose bengal (RB) is emerging as an effective t reatment for a rangeof applications given its non-invasive and localised mode of delivery. In particular, rose bengal PDT has shownpromising antifungal action in vitro. While focus has largely been on the physical and chemical impacts of PDT on thecell, an understanding of the role of genetics underpinning the cellular response is still limited. We have, therefore,reported a screen of the entire non-essential gene library of the model organism, Saccharomyces cerevisiae, using rosebengal PDT to ascertain the key genetic pathways affecting fungal tolerance to PDT. We also investigated the dosage ofPDT required to eradicate Trichophyton rubrum spores, the main causative organism of onychomycosis infection.Following this, we conducted a pilot patient study of six patients (seven toenails) for the treatment of onychomycosisusing rose bengal PDT (140 μM RB and ~763 J/cm~2 green light), where the clinical treatment protocol was developed onthe basis of the in vitro outcomes. The key biochemical pathways identified by the genetic screen as having alteredtolerance to PDT included ergosterol biosynthesis, vacuolar acidification, and purine/S-adenosyl-L-methioninebiosynthesis. The subsequent pilot patient study saw the complete cure of onychomycosis for all pat ients within three tofive treatment sessions in the absence of pain or other local side effects. The outcome of the genetic screen for tolerancemay thus inform the development of efficient clinical treatments using rose bengal PDT.
机译:鉴于玫瑰红(RB)的无创和局部递送模式,光动力疗法(PDT)的临床应用正在成为一系列应用的有效治疗手段。特别地,玫瑰孟加拉PDT在体外显示出有希望的抗真菌作用。尽管注意力主要集中在PDT对\ r \ n细胞的物理和化学影响上,但对遗传学对细胞应答的基础作用的理解仍然有限。因此,我们使用玫瑰花PDT确定了影响真菌对PDT耐性的关键遗传途径,从而报告了模型生物酿酒酵母的整个非必需基因库的屏幕。我们还调查了根除毛癣菌感染的主要致病菌红毛癣菌孢子所需的剂量。\ r \ n在此之后,我们对6例患者(七只脚趾甲)进行了先导性患者研究,以治疗甲癣。使用玫瑰孟加拉PDT(140μMRB和〜763 J / cm〜2绿灯),其中临床治疗方案是根据体外结果制定的。经遗传筛选鉴定为对PDT耐受的关键生化途径包括麦角固醇的生物合成,液泡酸化和嘌呤/ S-腺苷-L-蛋氨酸的生物合成途径。随后的初步患者研究发现,在没有疼痛或其他局部副作用的情况下,三至五个疗程内所有患者的甲癣完全治愈。耐受性的基因筛查结果可能为玫瑰玫瑰PDT有效临床治疗的发展提供信息。

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    School of Aerospace, Mechanical and Mechatronic Engineering, J07, University of Sydney,Sydney, NSW, Australia;

    School of Science and Health, Western Sydney University, Campbelltown, NSW, Australia;

    School of Medicine, University of Pavia, Pavia, Italy;

    School of Medicine, University of Siena, Siena, Italy;

    School of Materials Science and Engineering, University of New South Wales, Sydney, NSW, Australia;

    School of Aerospace, Mechanical and Mechatronic Engineering, J07, University of Sydney,Sydney, NSW, Australia;

    School of Aerospace, Mechanical and Mechatronic Engineering, J07, University of Sydney,Sydney, NSW, Australia;

    School of Science and Health, Western Sydney University, Campbelltown, NSW, Australia a.lauto@westernsydney.edu.au;

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