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Sister chromatid exchange frequency in workers exposed to high levels of ethylene oxide, in a hospital sterilization service

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Summary

Blood samples were taken from a group of 25 subjects professionally exposed to high levels of ethylene oxide (EO) during the past two years; the samples were compared to those from 22 control subjects, using sister chromatid exchange (SCE) methodology. The quantity of ethylene oxide inhaled during the two previous years was subsequently evaluated to fall between 500 and 5800 mg. When compared with the control group, the exposed group demonstrated a significant increase in the SCE rate. For certain individuals, the rate of increase rose 100% beyond the control mean. Smoking habits significantly influenced the data observed for the control group, but no significant differences in the SCE rate were found for the exposed group, regardless of smoking habits. Senior workers had the highest SCE mean levels. This observation indicated that the effect of exposure to EO was sufficient to produce a genetic reaction, was cumulative and in some cases persistent.

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References

  • Abrahams RH (1980) Recent studies with workers exposed to E.O. In: The safe use of E.O. Hima Report 80-4:27–211

    Google Scholar 

  • Appelgren LE, Eneroth G, Grant C (1978) Testing of E.O. mutagenicity using the micronucleus test in mice and rats. Acta Pharmacol Toxicol 43:69

    Google Scholar 

  • Ardito G, Lamberti L, Ansaldi E, Ponzetto P (1980) SCE in cigarette-smoking females and their newborns Mutat Res 78:209

    Google Scholar 

  • Bala Krishna, Murthy P (1979) Frequency of SCE in cigarette smokers. Hum Genet 52:343

    Google Scholar 

  • Brøgger A (1982) Application of SCE to public health. In: Progress and topics in cytogenetics, vol 2. Alan R Liss, NewYork NY, pp 655–673

    Google Scholar 

  • Carrano AV, Moore II DH (1982) The rationale and methodology for quantifying SCE in humans. In: Mutagenicity: new horizons in genetic toxicology, Ch. 10. Academic Press, New York, pp 268–299

    Google Scholar 

  • Carrano AV, Thompson LH, Lindl PA, Mindler JL (1978) Sister chromatid exchange as an indicator of mutagenesis. Nature (Loud) 271:551–553

    Google Scholar 

  • Crossen PE, Morgan WF (1980) S.C.E. in cigarette smokers. Hum Genet 53:425

    Google Scholar 

  • Deknudt G, Léonard AY, Ivanov B (1973) Chromosomes aberrations observed in male workers occupationally exposed to lead. Environ Physiol Biochem 3:132–138

    Google Scholar 

  • ECETOC (European Chemical Industry Ecology and Toxicology Center) (1982) Toxicity of E.O. and its relevance to man. ECETOC Bulletin, Technical Report no. 5

  • Ehrenberg L, Gustafsson A, Lundquist U (1959) The mutagenic effects of ionizing radiations and reactive ethylene derivatives in barley. Hereditas 45:351

    Google Scholar 

  • Ehrenberg L, Hallstrom (1967) Haematologic studies on persons occupationally exposed to ethylene oxide. In: Radiosterilisation of medical products. International Atomic Energy Agency SM/92/96/AIEA, Vienna, pp 327–334

    Google Scholar 

  • Ehrenberg L, Hussain S (1981) Genetic toxicity of some important epoxides. Mutat Res 86/1:1–113

    Google Scholar 

  • Ehrenberg L, Hiesche KD, Osterman-Golkar S (1974) Evaluation of genetic risk of alkylating agents: tissue dose on the mouse from air contaminated with ethylene oxide. Mutat Res 24:83–103

    Google Scholar 

  • Embree JW, Lyon JP, Hine CH (1977) The mutagenic potential of ethylene oxide using the dominant assay in rats. Toxicol Appl Pharmacol 40:261–267

    Google Scholar 

  • Garry VF, Hozier J (1979) Ethylene oxide: evidence of human chromosomal effects. Environ Mutatgenesis 1/4:375–382

    Google Scholar 

  • Generoso WM, Cain KT, Krishna M (1980) Heritable translocation and dominant lethal mutation induction with ethylene oxide in mice. Mutat Res 73:133–142

    Google Scholar 

  • Glazer ZR (1977) Special occupational hazard review with control recommendations for the use of E.O. as a sterilant in medical facilities. Niosh Publications, Rockville, Maryland, pp 1–58

    Google Scholar 

  • Ham RG (1963) An improved nutrient solution for diploid Chinese hamster and human cell lines. Exp Cell Res 29:515–526

    Google Scholar 

  • Hedner K, Hogstedt B, Kolnig, Mark Vendel E, Strombeek B, Mittelman F (1983) SCE and chromosomes aberrations in relation to smoking in 91 individuals. Hereditas 98:77–81

    Google Scholar 

  • Hogstedt B, Gulberg B, Hedner K, Kolnig AM, Mittelman F, Skerfving S, Widegren B (1983) Chromosomes aberrations and micronuclei in bone-marrow cells and peripheral blood lymphocytes in humans exposed to E.O. Hereditas 98:105–113

    Google Scholar 

  • Hollander DH, Tockman MS, Liang YW, Borgaonkar DS, Frost JK (1978) S.C.E. in the peripheral blood of cigarette smokers and in lung cancer patients and the effect of chemotherapy. Hum Genet 44:165

    Google Scholar 

  • Huscafvel-Rusianen K, Mäki-Paakkanen J, Norppa H, Sorsa M (1980) Smoking and sister chromatid exchange. Hereditas 92:247

    Google Scholar 

  • Jana MK, Roy K (1975) Effectiveness and efficiency of ethylmethanesulfonate and ethylene oxide for the induction of mutations in rice. Mutat Res 28:211–215

    Google Scholar 

  • Lambert B, Lindblad A (1978) Increased frequency of sister chromatid exchanges in cigarette smokers. Hereditas 88:147–149

    Google Scholar 

  • Lambert B, Berndtsson I, Lindsten J (1982) Smoking and sister chromatid exchange. In: Mutagen in our environment. Alan R Liss, New York, pp 401–414

    Google Scholar 

  • Laurent CH, Frederic J, Maréchal F (1983) Augmentation du taux d'échanges entre chromatides-sceurs chez les personnel exposées professionellement à l'oxyde d'éthylène. Ann Genet 26:138–142

    Google Scholar 

  • Lynch DW, Lewis JR, Moorman WJ (1982) Chronic inhalation toxicity of E.O. and propylene oxide in rats and monkeys. Preliminary report: 21st annual Society of Toxicology Meeting, Boston, Mass, February 22–26

  • Nand R, Rani R, Gosh PK (1979) Spontaneous sister chromatid exchanges in cultured human lymphocytes. Nucleus (Calcutta) 22:75–79

    Google Scholar 

  • Obe G, Vogt HJ, Madle S, Falning A, Heller WD (1982) Double blind study on the effect of cigarette smoking on the chromosomes of human peripheral blood lymphocytes in vivo. Mutat Res 92:309–319

    Google Scholar 

  • Parodi S, De Ferrari S, Ottagio L, Zunino A, Santi L (1982) Increase in SCE in the peripheral lymphocytes of cigarettes smokers. Tumori 68:287–289

    Google Scholar 

  • Perry P, Wolff S (1974) New Giemsa method for the differential staining of sister chromatids. Nature (Loud) 251:156–158

    Google Scholar 

  • Perry P, Evans HJ (1975) Cytological detection of mutagen-carcinogen exposure by S.C.E. Nature (Lond) 258:121–125

    Google Scholar 

  • Pfeiffer EH, Dunkelberg H (1980) Mutagenicity of ethylene oxide and propylene oxide and of the glycols and lyalolydrins formed from them during the fumigations of foodstuffs. Food Cosmet Toxicol 18:115–118

    Google Scholar 

  • Rannu GU, Gothe R, Wachmeister CA (1976) The mutagenicity of chlorethylene oxide chloracetaldehyde, 2 chlorethanol and chloracetic acid, conceivable of metabolites of vinyl chloride. Chem Biol Interact 12:251

    Google Scholar 

  • Thiess AM, Schwegler H, Fleig I, Stocker WG (1981) Mutagenicity study on workers exposed to alkylene oxides (ethylene oxide/propylene oxide) and derivatives. J Occup Med 23:343–347

    Google Scholar 

  • Turtoczky, Ehrenberg L (1969) Reaction rates and biological action of alkylating agents. Preliminary report on bacteriocidal and mutagenic action in E. coli. Mutat Res 9:229

    Google Scholar 

  • Vijayalaxmi X, Evans HJ (1982) In vivo and in vitro effects of cigarette smoke on chromosomal damage and sister-chromatid exchange in human peripheral blood lymphocytes. Mutat Res 92:321–332

    Google Scholar 

  • Watson WAF (1966) Further evidence of an essential difference between genetical effects of mono and bifunctional alkylating agents. Mutat Res 3:455

    Google Scholar 

  • Yager JW, Hines CH, Spear RC (1983) Exposure to ethylene oxide at work increases S.C.E. in human peripheral lymphocytes. Science (NY) 219:1221–1223

    Google Scholar 

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Laurent, C., Frederic, J. & Léonard, A.Y. Sister chromatid exchange frequency in workers exposed to high levels of ethylene oxide, in a hospital sterilization service. Int Arch Occup Environ Heath 54, 33–43 (1984). https://doi.org/10.1007/BF00378726

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  • DOI: https://doi.org/10.1007/BF00378726

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