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电子烟对HIV感染者肺部和全身代谢组的影响。

Effects of E-Cigarettes on the Lung and Systemic Metabolome in People with HIV.

作者信息

Zaparte Aline, Christopher Courtney J, Arnold Connie, Richey Lauren, Castille Adairre, Mistretta Kyle, Taylor Christopher M, Lin Huiyi, Nelson Steve, Kirwan John P, Apolzan John W, Campagna Shawn R, Welsh David A

机构信息

Department of Internal Medicine, Louisiana State University Health Sciences Center, New Orleans, LA 70112, USA.

Department of Chemistry, University of Tennessee, 1420 Circle Drive, Knoxville, TN 37996, USA.

出版信息

Metabolites. 2024 Aug 6;14(8):434. doi: 10.3390/metabo14080434.

Abstract

The popularity of e-cigarettes (vaping) has soared, creating a public health crisis among teens and young adults. Chronic vaping can induce gut inflammation and reduce intestinal barrier function through the production of the proinflammatory molecule hydrogen sulfide (HS). This is particularly concerning for people with HIV (PWH) as they already face impaired immune function and are at a higher risk for metabolic dysregulation, diabetes, and chronic liver disease. Furthermore, PWH experience unhealthy behaviors, making it crucial to understand the systemic metabolic dysregulation and pathophysiological mechanisms associated with vaping in this population. Here, we employed liquid chromatography-mass spectrometry (LC-MS)-based metabolomics to investigate the upper respiratory, circulation, and gut metabolic profiles of PWH who vape (n = 7) and smoke combustible tobacco/marijuana (n = 6) compared to control participants who did not vape or smoke (n = 10). This hypothesis-generating exploratory study revealed systemic alterations in purine, neurotransmitter, and vitamin B metabolisms and tissue-specific changes in inflammatory pathways and cryptic sulfur cycling associated with vaping and combustible tobacco/marijuana smoking in PWH. In addition, this study provides the first link between microbial-derived metabolite 2,3-dihydroxypropane-1-sulfonate (DHPS) and vaping/smoking (tobacco and marijuana)-induced metabolic dyshomeostasis in the gut. These findings highlight the importance of identifying the full biological and clinical significance of the physiological changes and risks associated with vaping.

摘要

电子烟(雾化)的 popularity 急剧飙升,在青少年和年轻成年人中引发了一场公共卫生危机。长期雾化可通过产生促炎分子硫化氢(HS)诱导肠道炎症并降低肠道屏障功能。这对于感染艾滋病毒的人(PWH)来说尤其令人担忧,因为他们已经面临免疫功能受损,并且患代谢失调、糖尿病和慢性肝病的风险更高。此外,PWH 存在不健康行为,因此了解该人群中与雾化相关的全身代谢失调和病理生理机制至关重要。在此,我们采用基于液相色谱 - 质谱(LC - MS)的代谢组学方法,研究了雾化的 PWH(n = 7)和吸食可燃烟草/大麻的 PWH(n = 6)与不雾化或不吸烟的对照参与者(n = 10)相比的上呼吸道、循环和肠道代谢谱。这项产生假设的探索性研究揭示了 PWH 中与雾化和吸食可燃烟草/大麻相关的嘌呤、神经递质和维生素 B 代谢的全身改变以及炎症途径和隐秘硫循环的组织特异性变化。此外,本研究首次揭示了微生物衍生代谢物 2,3 - 二羟基丙烷 - 1 - 磺酸盐(DHPS)与肠道中雾化/吸烟(烟草和大麻)诱导的代谢失调之间的联系。这些发现凸显了确定与雾化相关的生理变化和风险的全部生物学和临床意义的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26b4/11356516/53d1c8f99bc0/metabolites-14-00434-g001.jpg

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