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首页> 外文期刊>Journal of proteome research >Metabolic profiling of lung granuloma in Mycobacterium tuberculosis infected guinea pigs: Ex vivo 1H magic angle spinning NMR studies
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Metabolic profiling of lung granuloma in Mycobacterium tuberculosis infected guinea pigs: Ex vivo 1H magic angle spinning NMR studies

机译:结核分枝杆菌感染的豚鼠肺肉芽肿的代谢谱:离体1H魔角旋转核磁共振研究

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摘要

A crucial and distinctive feature of tuberculosis infection is that Mycobacterium tuberculosis (Mtb) resides in granulomatous lesion at various stages of disease development and necrosis, an aspect that is little understood. We used a novel approach, applying high resolution magic angle spinning nuclear magnetic resonance spectroscopy (HRMAS NMR) directly to infected tissues, allowing us to study the development of tuberculosis granulomas in guinea pigs in an untargeted manner. Significant up-regulation of lactate, alanine, acetate, glutamate, oxidized and the reduced form of glutathione, aspartate, creatine, phosphocholine, glycerophosphocholine, betaine, trimethylamine N-oxide, myo-inositol, scyllo-inositol, and dihydroxyacetone was clearly visualized and was identified as the infection progressed. Concomitantly, phosphatidylcholine was down-regulated. Principal component analysis of NMR data revealed clear group separation between infected and uninfected tissues. These metabolites are suggestive of utilization of alternate energy sources by the infiltrating cells that generate much of the metabolites in the increasingly necrotic and hypoxic developing granuloma through the glycolytic, pentose phosphate, and tricarboxylic acid pathways. The most relevant changes seen are, surprisingly, very similar to metabolic changes seen in cancer during tumor development.
机译:结核感染的一个关键而独特的特征是结核分枝杆菌(Mtb)处于肉芽肿性病变中,处于疾病发展和坏死的各个阶段,这一方面鲜为人知。我们使用了一种新颖的方法,将高分辨率魔角旋转核磁共振波谱(HRMAS NMR)直接应用于受感染的组织,从而使我们能够以非针对性的方式研究豚鼠结核性肉芽肿的发展。乳酸,丙氨酸,乙酸,谷氨酸,氧化和还原形式的谷胱甘肽,天冬氨酸,肌酸,磷酸胆碱,甘油磷酸胆碱,甜菜碱,三甲胺N-氧化物,肌醇,鞘氨醇和二羟基丙酮的显着上调被确定为感染进展。同时,磷脂酰胆碱被下调。 NMR数据的主成分分析显示,受感染和未感染的组织之间存在明显的基团分离。这些代谢物提示浸润细胞利用替代能源,这些浸润细胞通过糖酵解,磷酸戊糖和三羧酸途径在越来越坏死和缺氧的肉芽肿中生成许多代谢物。令人惊讶的是,所见到的最相关的变化与肿瘤发展期间癌症中所见的代谢变化非常相似。

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