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在恰加斯病中,宿主-克氏锥虫-环境相互作用的小分子介质。

Small molecule mediators of host-T. cruzi-environment interactions in Chagas disease.

机构信息

Department of Chemistry and Biochemistry, University of Oklahoma, Norman, Oklahoma, United States of America.

Department of Biomedical Sciences, School of Allied Health Sciences, College of Health and Allied Sciences, University of Cape Coast, Cape Coast, Ghana.

出版信息

PLoS Pathog. 2024 Mar 8;20(3):e1012012. doi: 10.1371/journal.ppat.1012012. eCollection 2024 Mar.

Abstract

Small molecules (less than 1,500 Da) include major biological signals that mediate host-pathogen-microbiome communication. They also include key intermediates of metabolism and critical cellular building blocks. Pathogens present with unique nutritional needs that restrict pathogen colonization or promote tissue damage. In parallel, parts of host metabolism are responsive to immune signaling and regulated by immune cascades. These interactions can trigger both adaptive and maladaptive metabolic changes in the host, with microbiome-derived signals also contributing to disease progression. In turn, targeting pathogen metabolic needs or maladaptive host metabolic changes is an important strategy to develop new treatments for infectious diseases. Trypanosoma cruzi is a single-celled eukaryotic pathogen and the causative agent of Chagas disease, a neglected tropical disease associated with cardiac and intestinal dysfunction. Here, we discuss the role of small molecules during T. cruzi infection in its vector and in the mammalian host. We integrate these findings to build a theoretical interpretation of how maladaptive metabolic changes drive Chagas disease and extrapolate on how these findings can guide drug development.

摘要

小分子(小于 1500Da)包括主要的生物信号,这些信号介导宿主-病原体-微生物组的通讯。它们还包括代谢的关键中间产物和关键细胞构建块。病原体具有独特的营养需求,这些需求限制了病原体的定植或促进组织损伤。与此同时,宿主代谢的一部分对免疫信号有反应,并受免疫级联调节。这些相互作用可以在宿主中引发适应性和失调性的代谢变化,微生物组衍生的信号也有助于疾病的进展。反过来,针对病原体的代谢需求或宿主失调性的代谢变化是开发传染病新疗法的重要策略。克氏锥虫是一种单细胞真核病原体,也是恰加斯病(一种与心脏和肠道功能障碍相关的被忽视的热带病)的病原体。在这里,我们讨论了小分子在克氏锥虫感染其载体和哺乳动物宿主过程中的作用。我们将这些发现整合起来,构建了一个关于失调性代谢变化如何驱动恰加斯病的理论解释,并推断这些发现如何指导药物开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bde2/10923493/cb9782191142/ppat.1012012.g001.jpg

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