Literature DB >> 27635669

Multiplatform serum metabolic phenotyping combined with pathway mapping to identify biochemical differences in smokers.

Manuja R Kaluarachchi1, Claire L Boulangé1, Isabel Garcia-Perez1, John C Lindon1, Emmanuel F Minet2.   

Abstract

AIM: Determining perturbed biochemical functions associated with tobacco smoking should be helpful for establishing causal relationships between exposure and adverse events.
RESULTS: A multiplatform comparison of serum of smokers (n = 55) and never-smokers (n = 57) using nuclear magnetic resonance spectroscopy, UPLC-MS and statistical modeling revealed clustering of the classes, distinguished by metabolic biomarkers. The identified metabolites were subjected to metabolic pathway enrichment, modeling adverse biological events using available databases. Perturbation of metabolites involved in chronic obstructive pulmonary disease, cardiovascular diseases and cancer were identified and discussed.
CONCLUSION: Combining multiplatform metabolic phenotyping with knowledge-based mapping gives mechanistic insights into disease development, which can be applied to next-generation tobacco and nicotine products for comparative risk assessment.

Entities:  

Keywords:  biomarker; metabonomics/metabolomics; xenobiotics

Mesh:

Substances:

Year:  2016        PMID: 27635669     DOI: 10.4155/bio-2016-0108

Source DB:  PubMed          Journal:  Bioanalysis        ISSN: 1757-6180            Impact factor:   2.681


  11 in total

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6.  Multi-omics systems toxicology study of mouse lung assessing the effects of aerosols from two heat-not-burn tobacco products and cigarette smoke.

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7.  Pathway Analysis of Global Metabolomic Profiles Identified Enrichment of Caffeine, Energy, and Arginine Metabolism in Smokers but Not Moist Snuff Consumers.

Authors:  Gang Liu; Douglas P Lee; Eckhardt Schmidt; G L Prasad
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Review 10.  Approaches to Integrating Metabolomics and Multi-Omics Data: A Primer.

Authors:  Takoua Jendoubi
Journal:  Metabolites       Date:  2021-03-21
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