• This record comes from PubMed

Leukocyte telomere length is not affected by long-term occupational exposure to nano metal oxides

. 2019 Nov 29 ; 57 (6) : 741-744. [epub] 20190328

Language English Country Japan Media print-electronic

Document type Comparative Study, Journal Article

The aim of this study was to ascertain whether long-term occupational exposure to nanoparticles would affect relative leukocyte telomere length (LrTL). We analysed occupational exposure to size-resolved aerosol particles, with special emphasis on nanoparticles at two workshops: i/ the production of nanocomposites containing metal oxides; ii/ laboratory to test experimental exposure of nano-CuO to rodents. Thirty five exposed researchers (age 39.5 ± 12.6 yr; exposure duration 6.0 ± 3.7 yr) and 43 controls (40.4 ± 10.5 yr) were examined. LrTL did not significantly (p=0.14) differ between the exposed researchers (0.92 ± 0.13) and controls (0.86 ± 0.15). In addition, no significant correlation (r=-0.22, p=0.22) was detected between the duration of occupational exposure and LrTL. The results remained non-significant after multiple adjustments for age, sex and smoking status. Our pilot results suggest that relative leukocyte telomere length is not affected by occupational exposure to nanoparticles.

See more in PubMed

Khanna P, Ong C, Bay BH, Baeg GH. (2015) Nanotoxicity: an interplay of oxidative stress, inflammation and cell death. Nanomaterials (Basel) 5, 1163–80. PubMed PMC

Pelclova D, Zdimal V, Kacer P, Fenclova Z, Vlckova S, Syslova K, Navratil T, Schwarz J, Zikova N, Barosova H, Turci F, Komarc M, Pelcl T, Belacek J, Kukutschova J, Zakharov S. (2016) Oxidative stress markers are elevated in exhaled breath condensate of workers exposed to nanoparticles during iron oxide pigment production. J Breath Res 10, 016004. PubMed

Pelclova D, Zdimal V, Fenclova Z, Vlckova S, Turci F, Corazzari I, Kacer P, Schwarz J, Zikova N, Makes O, Syslova K, Komarc M, Belacek J, Navratil T, Machajova M, Zakharov S. (2016) Markers of oxidative damage of nucleic acids and proteins among workers exposed to TiO2 (nano) particles. Occup Environ Med 73, 110–8. PubMed

Pelclova D, Zdimal V, Kacer P, Zikova N, Komarc M, Fenclova Z, Vlckova S, Schwarz J, Makeš O, Syslova K, Navratil T, Turci F, Corazzari I, Zakharov S, Bello D. (2017) Markers of lipid oxidative damage in the exhaled breath condensate of nano TiO2 production workers. Nanotoxicology 11, 52–63. PubMed

Blackburn EH, Epel ES, Lin J. (2015) Human telomere biology: a contributory and interactive factor in aging, disease risks, and protection. Science 350, 1193–8. PubMed

Müezzinler A, Zaineddin AK, Brenner H. (2013) A systematic review of leukocyte telomere length and age in adults. Ageing Res Rev 12, 509–19. PubMed

Dlouha D, Pitha J, Lanska V, Hubacek JA. (2012) Association between FTO 1st intron tagging variant and telomere length in middle aged females. 3PMFs study. Clin Chim Acta 413, 1222–5. PubMed

Dlouha D, Maluskova J, Kralova Lesna I, Lanska V, Hubacek JA. (2014) Comparison of the relative telomere length measured in leukocytes and eleven different human tissues. Physiol Res 63 Suppl 3, S343–50. PubMed

Dlouhá D, Vančura V, Vymětalová J, Hubáček JA, Lánská V, Málek I. (2016) Can leukocyte telomere length predict survival time in heart transplant recipients over a minimal follow-up of 20 years? Folia Biol (Praha) 62, 188–93. PubMed

Zhang X, Lin S, Funk WE, Hou L. (2013) Environmental and occupational exposure to chemicals and telomere length in human studies. Occup Environ Med 70, 743–9. PubMed

Sohaebuddin SK, Thevenot PT, Baker D, Eaton JW, Tang L. (2010) Nanomaterial cytotoxicity is composition, size, and cell type dependent. Part Fibre Toxicol 7, 22. PubMed PMC

Glass DC, Mazhar M, Xiang S, Dean P, Simpson P, Priestly B, Plebanski M, Abramson M, Sim MR, Dennekamp M. (2017) Immunological effects among workers who handle engineered nanoparticles. Occup Environ Med 74, 868–76. PubMed

Find record

Citation metrics

Loading data ...

Archiving options

Loading data ...