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Antimicrobial and immunomodulatory responses of photodynamic therapy in Galleria mellonella model

机译:Galleria Mellonella模型光动力疗法的抗微生物和免疫调节响应

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New therapeutics are urgently needed for infectious diseases, especially for the fungal infection like Fonsecaea monophora. Photodynamic therapy has been showing antimicrobial activity on some pathogens. The combination of antimicrobial medicines and photodynamic therapy (PDT) might be a practical approach. However, whether the treatment of PDT could do benefits to the host immunity remains poorly documented. In this study, Galleria mellonella larvae were employed as a model organism to evaluate the activity of PDT, and also to investigate the regulation of humoral immunity by PDT. Photosensitizer 5-aminolevulinic acid (ALA) was applied to the G. mellonella infection model. It was found that ALA-mediated PDT was non-toxic to G. mellonella, and could extend the median survival of infected larvae from 3?days to 5.5?days. We observed that larval hemocytes inhibited the growth of Candida albicans and Staphylococcus aureus, without any contribution by ALA-PDT. Furthermore, the application of ALA-PDT demonstrated the immunomodulation of larval innate immunity as increased hemocyte density counting, cell morphological transformation, and sensitivity to pathogens. G. mellonella could be considered as a useful model to study the immunoregulation of PDT. This model revealed that ALA-PDT positively defense against infections through inducing humoral immune responses of larvae.
机译:感染性疾病迫切需要新的治疗方法,特别是对于像FoneCaea monophora这样的真菌感染。光动力疗法一直显示出一些病原体的抗微生物活性。抗微生物药物和光动力治疗(PDT)的组合可能是一种实用的方法。然而,PDT的治疗是否可以对宿主免疫力做好益处仍然有穷的记录。在本研究中,Galleria Mellonella幼虫被用作模型生物,以评估PDT的活性,并研究PDT的体液免疫调节。将光敏剂5-氨基乙酰丙酸(ALA)应用于G. mellonella感染模型。结果发现,Ala介导的PDT对G. Mellonella无毒,并且可以将感染幼虫的中位存活延伸到3.天至5.5?天。我们观察到幼虫血细胞抑制念珠菌蛋白和金黄色葡萄球菌的生长,而没有ALA-PDT的任何贡献。此外,Ala-PDT的应用证明了幼虫先天免疫的免疫调节,随着血液细胞密度计数,细胞形态转化和对病原体的敏感性增加。 G. Mellonella可以被认为是研究PDT的免疫调节的有用模型。该模型揭示了Ala-PDT通过诱导幼虫的体液免疫应答来积极地防御感染。

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