Genetic Variability Impacts Genotoxic and Transcriptome Responses in the Human Colon after the Consumption of Processed Red Meat Products and Those with Added Phytochemical Extracts

Author:

DeBenedictis Julia N.1,Baars Esther1,Ochoteco-Asensio Juan1ORCID,van Breda Simone G.1ORCID,de Kok Theo M.1

Affiliation:

1. Toxicogenomics Department, GROW School of Oncology & Reproduction, Faculty of Health, Medicine & Life Sciences, Maastricht University, 6211 LK Maastricht, The Netherlands

Abstract

The PHYTOME study investigated the effect of consuming processed meat products on outcomes related to colorectal cancer risk without testing the impact of genetic variability on these responses. This research aims to elucidate the genetic impact on apparent total N-nitroso compound (ATNC) excretion, colonic DNA adduct formation, ex vivo-induced DNA damage, and gene expression changes in colon biopsies of healthy participants. Through a systematic literature review, candidate polymorphisms were selected and then detected using TaqMan and PCR analysis. The effect of genotype on study outcomes was determined via a linear mixed model and analysis of variance. Machine learning was used to evaluate relative allele importance concerning genotoxic responses, which established a ranking of the most protective alleles and a combination of genotypes (gene scores). Participants were grouped by GSTM1 genotype and differentially expressed genes (DEGs), and overrepresented biological pathways were compared between groups. Stratifying participants by ten relevant genes revealed significant variations in outcome responses. After consumption of processed red meat, variations in NQO1 and COMT impacted responses in ATNC levels (µmol/L) (+9.56 for wildtype vs. heterozygous) and DNA adduct levels (pg/µg DNA) (+1.26 for variant vs. wildtype and +0.43 for variant vs. heterozygous), respectively. After phytochemicals were added to the meat, GSTM1 variation impacted changes in DNA adduct levels (−6.12 for deletion vs. wildtype). The gene scores correlated with these responses and DEGs were identified by GSTM1 genotype. The altered pathways specific to the GSTM1 wildtype group included ‘metabolism’, ‘cell cycle’, ‘vitamin D receptor’, and ‘metabolism of water-soluble vitamins and co-factors’. Genotype impacted both the potential genotoxicity of processed red meat and the efficacy of protective phytochemical extracts.

Funder

FP7 EU-project PHYTOME

Publisher

MDPI AG

Subject

Food Science,Nutrition and Dietetics

Reference94 articles.

1. Klusek, J., Nasierowska-Guttmejer, A., Kowalik, A., Wawrzycka, I., Chrapek, M., Lewitowicz, P., Radowicz-Chil, A., Klusek, J., and Głuszek, S. (2019). The Influence of Red Meat on Colorectal Cancer Occurrence Is Dependent on the Genetic Polymorphisms of S-Glutathione Transferase Genes. Nutrients, 11.

2. Cicero, A.F.G., and Rizzo, M. (2021). Nutraceuticals and Cardiovascular Disease: An Evidence-Based Approach for Clinical Practice, Springer International Publishing.

3. World Health Organization (2015). IARC Monographs Evaluate Consumption of Red Meat and Processed Meat and Cancer Risk, International Agency of Research on Cancer.

4. IARC Red Meat and Processed Meat [Internet] (2023, September 13). IARC Monographs on the Evaluation of Carcinogenic Risks to Humans. Available online: https://monographs.iarc.who.int/wp-content/uploads/2018/08/14-002.pdf.

5. Ingested nitrate, disinfection by-products, and risk of colon and rectal cancers in the Iowa Women’s Health Study cohort;Jones;Environ. Int.,2019

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