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中文摘要
翻译
描述(由申请人提供):侵袭性真菌感染,如隐球菌病、念珠菌病和曲霉病,在过去二十年中急剧出现,并且与非常差的预后相关。尽管在改进分子和遗传工具以研究其发展和进展方面取得了重大进展,但迫切需要研究提供更好的早期诊断工具。最终,这些工具将大大有助于侵袭性真菌病的管理。近年来,我们的实验室一直致力于解剖真菌致病的分子机制,重点研究生物活性脂质在这一过程中的作用,无论是在机制和翻译水平。我们在我们的小鼠模型中发现,称为葡糖神经酰胺(GlcCer)的真菌脂质分子是新型隐球菌(Cn)侵袭性的重要调节剂,新型隐球菌是一种环境真菌,一旦吸入,就会引起隐球菌病,隐球菌病是一种侵袭性真菌疾病,可在易感人类受试者中导致危及生命的脑膜脑炎。特别地,我们发现,与野生型细胞相反,不产生GlcCer的Cn细胞包含在肺肉芽肿内,并且不能扩散到中枢神经系统(CNS)。因此,宿主保持健康,没有任何脑膜脑炎的临床体征。有趣的是,野生型细胞产生的隐球菌GlcCer激发宿主抗体应答,并且在野生型Cn细胞从肺传播到血流之前和脑膜脑炎发展之前,可以在小鼠血清中检测到针对GlcCer的IgM。基于这些观察结果,我们假设GlcCer是Cn离开肺并感染脑所必需的,并且针对真菌GlcCer的血清IgM的检测可用作隐球菌病的早期诊断方法。因此,为了解决这一假设,我们提出了以下目标:1)确定GlcCer在隐球菌病发展中的作用;和2)确定抗GlcCer抗体用于预测免疫受损受试者中的播散性隐球菌病的价值。这些研究将使用我们开发的ELISA检测进行。重要的是,因为GlcCer也由念珠菌属和曲霉属产生,本研究结果不仅为隐球菌病的早期诊断提供了新的方法,而且为念珠菌病和曲霉病的早期诊断提供了新的手段。公共卫生相关性侵袭性真菌感染,例如隐球菌病、念珠菌病和曲霉病,在免疫功能低下的受试者中急剧出现。该项目旨在开发一种新的诊断方法,预测真菌感染的侵袭性,以便实施适当的治疗策略。这将对人类健康产生巨大影响,因为侵袭性真菌疾病的预后非常差。
英文摘要
DESCRIPTION (provided by applicant): Invasive fungal infections, such as cryptococcosis, candidiasis and aspergillosis, have dramatically emerged in the last two decades and are associated with very poor prognosis. Although significant progress has been made to improve molecular and genetic tools to study their development and progression, studies to provide better tools for an early diagnosis are urgently needed. Ultimately, these tools will significantly help in the management of invasive mycoses. In recent years, our laboratory has centered on dissecting molecular mechanisms of fungal pathogenesis, focusing on the study of the role of bioactive lipids in this process both at a mechanistic and at a translational level. We discovered in our mouse model that a fungal lipid molecule called glucosylceramide (GlcCer) is an essential regulator of the invasiveness of Cryptococcus neoformans (Cn), an environmental fungus that, once inhaled, causes cryptococcosis, an invasive fungal disease which can lead to life-threatening meningo- encephalitis in susceptible human subjects. In particular, we found that, in contrast to wild-type cells, Cn cells that do not produce GlcCer are contained within lung granulomas and cannot disseminate to the central nervous system (CNS). As a result, the host remains healthy without any clinical sign(s) of meningo- encephalitis. Interestingly, cryptococcal GlcCer produced by wild-type cells elicits a host antibody response, and IgM against GlcCer can be detected in mouse sera prior to the dissemination of wild-type Cn cells from the lung to the bloodstream and prior to the development of the meningo-encephalitis. Based on these observations, we hypothesize that GlcCer is required for Cn to leave the lung and infect the brain and that the detection of serum IgM against fungal GlcCer can be used as an early diagnostic method of cryptococcosis. Thus, to address this hypothesis we propose the following aims: 1) to determine the role of GlcCer in the in the development of cryptococcosis; and 2) to determine the value of anti-GlcCer antibody for the prediction of disseminated cryptococcosis in immunocompromised subjects. These studies will be performed using an ELISA test that we have developed. Importantly, because GlcCer is also produced by Candida and Aspergillus spp., the results from these studies not only could provide a new method for the early diagnosis of cryptococcosis but could also prompt new means for the early diagnosis of candidiasis and aspergillosis. PUBLIC HEALTH RELEVANCE Invasive fungal infections, such as cryptococcosis, candidiasis and aspergillosis, have dramatically emerged in immunocompromised subjects. This project aims to develop a new diagnostic method that would predict the invasiveness of fungal infections so that appropriate treatment strategies can be implemented. This will have a dramatic effect on human health as invasive fungal diseases have very poor prognosis.
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BLRD Research Career Scientist Award Application
  • 批准号:
    10514630
  • 项目类别:
  • 资助金额:
    $0.0万
  • 财政年份:
    2020
  • 负责人:
    Maurizio Del Poeta
  • 依托单位:
BLRD Research Career Scientist Award Application
  • 批准号:
    10337032
  • 项目类别:
  • 资助金额:
    $0.0万
  • 财政年份:
    2020
  • 负责人:
    Maurizio Del Poeta
  • 依托单位:
Sphingosine-1-phosphate and cryptococcosis
10th International Conference on Cryptococcus and Cryptococcosis
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