寄主与寄生病原体之间的代谢串扰。

Diana Moreira, Jérôme Estaquier, Anabela Cordeiro-da-Silva, Ricardo Silvestre
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引用次数: 5

摘要

一个包含寄主内在因素和微环境的复杂网络调节着寄主与寄主之间的相互作用。因此,这两种因素所施加的营养压力决定了宿主-寄生虫的生态位。为了在宿主和恶劣的营养环境中生存和繁殖,寄生虫调节不同的营养感知途径来破坏宿主的代谢途径。这种机制能够改变不同营养物质/代谢物的通量,使它们被寄生虫利用。除了这种营养策略外,清除营养物质,特别是宿主脂肪酸,是满足寄生虫营养需求的关键机制,最终决定了宿主的代谢景观。宿主-寄生虫代谢偶联导致的宿主代谢改变当然可以被认为是提高诊断和发展未来治疗的重要靶点。事实上,代谢被认为是这种复杂相互作用中的一个关键因素,其调节对最终的感染结果至关重要。
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Metabolic Crosstalk Between Host and Parasitic Pathogens.

A complex network that embraces parasite-host intrinsic factors and the microenvironment regulated the interaction between a parasite and its host. Nutritional pressures exerted by both elements of this duet thus dictate this host-parasite niche. To survive and proliferate inside a host and a harsh nutritional environment, the parasites modulate different nutrient sensing pathways to subvert host metabolic pathways. Such mechanism is able to change the flux of distinct nutrients/metabolites diverting them to be used by the parasites. Apart from this nutritional strategy, the scavenging of nutrients, particularly host fatty acids, constitutes a critical mechanism to fulfil parasite nutritional requirements, ultimately defining the host metabolic landscape. The host metabolic alterations that result from host-parasite metabolic coupling can certainly be considered important targets to improve diagnosis and also for the development of future therapies. Metabolism is in fact considered a key element within this complex interaction, its modulation being crucial to dictate the final infection outcome.

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来源期刊
Experientia supplementum (2012)
Experientia supplementum (2012) Medicine-Medicine (all)
CiteScore
3.30
自引率
0.00%
发文量
24
期刊最新文献
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