Inhalation of concentrated ambient PM2.5 promotes inactivation of telomerase reverse transcriptase, telomere shortening, and senescence of multiple cell types in mice.
Daniel Gomes, Jingjing Zhao, Marina V Malovichko, Petra Haberzettl, Daniel J Conklin, Timothy E O'Toole
{"title":"Inhalation of concentrated ambient PM2.5 promotes inactivation of telomerase reverse transcriptase, telomere shortening, and senescence of multiple cell types in mice.","authors":"Daniel Gomes, Jingjing Zhao, Marina V Malovichko, Petra Haberzettl, Daniel J Conklin, Timothy E O'Toole","doi":"10.1093/toxsci/kfaf045","DOIUrl":null,"url":null,"abstract":"<p><p>Although some prior studies have identified an association between exposure to fine air-borne particulate matter (PM2.5) and indices of aging, the extent of these associations and their underlying mechanisms are uncertain. In this study, we exposed male C57BL/6J mice to filtered air and concentrated ambient PM2.5 (CAP) and assessed 2 common hallmarks of aging, telomere shortening and a senescent phenotype. Of the cell types examined, peripheral blood mononuclear cells (PBMNCs), endothelial progenitor cells (EPCs), and bone marrow-derived c-kit+ cells, all 3 demonstrated shortened telomeres when isolated from CAP-exposed mice as compared with cells derived from filtered air controls. We found that telomere attrition in PBMNCs and EPCs was mitigated in those CAP-exposed mice receiving water supplemented with the antioxidant, carnosine, and was reversible in PBMNCs, but not EPCs, when CAP-exposed mice were allowed to recover in normal air conditions. Telomere attrition in these cell types appeared to result from the attenuated catalytic activity of telomerase reverse transcriptase (Tert). PBMNCs and EPCs obtained from CAP-exposed mice also displayed increased β-galactosidase activity and expression of genes characteristic of the senescence-activated secretory phenotype. Of PBMNC subtypes, the increase of β-galactosidase activity was greatest in CD8+ T-cells. Our results suggest that the pro-aging effects of PM2.5 impact multiple cell types, including bone marrow stem cells, and that telomere attrition resulted from attenuated Tert activity. The aging and senescence of multiple cell types, including bone marrow stem cells, may underlie the diverse pathological outcomes of PM2.5 exposure.</p>","PeriodicalId":23178,"journal":{"name":"Toxicological Sciences","volume":" ","pages":"147-157"},"PeriodicalIF":4.1000,"publicationDate":"2025-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC12198680/pdf/","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Toxicological Sciences","FirstCategoryId":"3","ListUrlMain":"https://doi.org/10.1093/toxsci/kfaf045","RegionNum":3,"RegionCategory":"医学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q2","JCRName":"TOXICOLOGY","Score":null,"Total":0}
引用次数: 0
Abstract
Although some prior studies have identified an association between exposure to fine air-borne particulate matter (PM2.5) and indices of aging, the extent of these associations and their underlying mechanisms are uncertain. In this study, we exposed male C57BL/6J mice to filtered air and concentrated ambient PM2.5 (CAP) and assessed 2 common hallmarks of aging, telomere shortening and a senescent phenotype. Of the cell types examined, peripheral blood mononuclear cells (PBMNCs), endothelial progenitor cells (EPCs), and bone marrow-derived c-kit+ cells, all 3 demonstrated shortened telomeres when isolated from CAP-exposed mice as compared with cells derived from filtered air controls. We found that telomere attrition in PBMNCs and EPCs was mitigated in those CAP-exposed mice receiving water supplemented with the antioxidant, carnosine, and was reversible in PBMNCs, but not EPCs, when CAP-exposed mice were allowed to recover in normal air conditions. Telomere attrition in these cell types appeared to result from the attenuated catalytic activity of telomerase reverse transcriptase (Tert). PBMNCs and EPCs obtained from CAP-exposed mice also displayed increased β-galactosidase activity and expression of genes characteristic of the senescence-activated secretory phenotype. Of PBMNC subtypes, the increase of β-galactosidase activity was greatest in CD8+ T-cells. Our results suggest that the pro-aging effects of PM2.5 impact multiple cell types, including bone marrow stem cells, and that telomere attrition resulted from attenuated Tert activity. The aging and senescence of multiple cell types, including bone marrow stem cells, may underlie the diverse pathological outcomes of PM2.5 exposure.
期刊介绍:
The mission of Toxicological Sciences, the official journal of the Society of Toxicology, is to publish a broad spectrum of impactful research in the field of toxicology.
The primary focus of Toxicological Sciences is on original research articles. The journal also provides expert insight via contemporary and systematic reviews, as well as forum articles and editorial content that addresses important topics in the field.
The scope of Toxicological Sciences is focused on a broad spectrum of impactful toxicological research that will advance the multidisciplinary field of toxicology ranging from basic research to model development and application, and decision making. Submissions will include diverse technologies and approaches including, but not limited to: bioinformatics and computational biology, biochemistry, exposure science, histopathology, mass spectrometry, molecular biology, population-based sciences, tissue and cell-based systems, and whole-animal studies. Integrative approaches that combine realistic exposure scenarios with impactful analyses that move the field forward are encouraged.