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Cerebrospinal Fluid Amino Acid Profiling of Pediatric Cases with Tuberculous Meningitis

机译:小儿结核性脑膜炎病例的脑脊液氨基酸谱分析

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摘要

>Background: In Africa, tuberculosis is generally regarded as persisting as one of the most devastating infectious diseases. The pediatric population is particularly vulnerable, with infection of the brain in the form of tuberculous meningitis (TBM) being the most severe manifestation. TBM is often difficult to diagnose in its early stages because of its non-specific clinical presentation. Of particular concern is that late diagnosis, and subsequent delayed treatment, leads to high risk of long-term neurological sequelae, and even death. Using advanced technology and scientific expertise, we are intent on further describing the biochemistry behind this devastating neuroinflammatory disease, with the goal of improving upon its early diagnosis.>Method: We used the highly sensitive analytical platform of gas chromatography-mass spectrometry (GC-MS) to analyze amino acid profiles of cerebrospinal fluid (CSF) collected from a cohort of 33 South African pediatric TBM cases, compared to 34 controls.>Results: Through the use of a stringent quality assurance procedure and various statistical techniques, we were able to confidently identify five amino acids as being significantly elevated in TBM cases, namely, alanine, asparagine, glycine, lysine, and proline. We found also in an earlier untargeted metabolomics investigation that alanine can be attributed to increased CSF lactate levels, and lysine as a marker of lipid peroxidation. Alanine, like glycine, is an inhibitory neurotransmitter in the brain. Asparagine, as with proline, is linked to the glutamate-glutamine cycle. Asparagine is associated with the removal of increased nitrites in the brain, whereas elevated proline coincides with the classic biochemical marker of increased CSF protein in TBM. All five discriminatory amino acids are linked to ammonia due to increased nitrites in TBM.>Conclusion: A large amount of untapped biochemical information is present in CSF of TBM cases, of which amino acid profiling through GC-MS has potential in aiding in earlier diagnosis, and hence crucial earlier treatment.
机译:>背景:在非洲,结核病被普遍认为是最具有破坏性的传染病之一。小儿特别容易受到伤害,最严重的表现是结核性脑膜炎(TBM)形式的脑部感染。由于其非特异性的临床表现,TBM常常在早期难以诊断。特别令人担忧的是,晚期诊断和随后的延迟治疗会导致长期神经系统后遗症甚至死亡的高风险。我们致力于利用先进的技术和科学的专业知识,进一步描述这种破坏性神经炎性疾病背后的生物化学,以期改善其早期诊断。>方法:我们使用了气相色谱仪的高灵敏度分析平台质谱(GC-MS)分析34例南非儿科TBM患者队列中收集的脑脊液(CSF)氨基酸谱,与34例对照进行比较。>结果:严格的质量保证程序和各种统计技术,使我们能够自信地鉴定出TBM病例中显着升高的5种氨基酸,即丙氨酸,天冬酰胺,甘氨酸,赖氨酸和脯氨酸。我们还在较早的非靶向代谢组学研究中发现,丙氨酸可归因于脑脊液乳酸水平的升高,而赖氨酸是脂质过氧化的标志。丙氨酸与甘氨酸一样,是大脑中的一种抑制性神经递质。与脯氨酸一样,天冬酰胺与谷氨酸-谷氨酰胺循环有关。天冬酰胺与大脑中亚硝酸盐增加的清除相关,而脯氨酸的升高与TBM中CSF蛋白增加的经典生化标志相吻合。由于TBM中亚硝酸盐的增加,所有五个歧视性氨基酸都与氨相关。>结论: TBM病例的CSF中存在大量未开发的生化信息,其中通过GC-MS分析的氨基酸具有有助于早期诊断,因此至关重要的早期治疗。

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