ГОСТ 32635-2014
Библиография
[1]Руководящий документ OECD Test N° 487 «In Vitro Mammalian Cell Micronucleus Test».
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[5]Kirsch-Volders. M.. Sofuni. T„ Aardema, M„ AJbertini. S.. Eastmond. D„ Fenech. M., Ishidate,
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Micronucleus Assay Working Group, Environ. Mol. Mutagen., 35. 167-172.
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[8]Eastmond. D.A. and Tucker. J.D. (1989). Identification of aneuploidy-inducing agents using
cytokinesis-blocked human lymphocytes and an antikinetochore antibody. Environ. Mol. Mutagen., 13. 34-43.
[9]Eastmond. D.A. and Pinkel. D. (1990). Detection of aneuploidy and aneuploidy-inducing agents
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[10]Miller. B.M.. Zitzelsberger, H.F., Weier. H.U. and Adler. I.D. (1991). Classification of micronuclei
in murine erythrocytes: immunofluorescont staining using CREST antibodies compared to in situ
hybridization with biotinylated gamma satellite DNA. Mutagenesis. 6. 297-302.
[11]Farooqi, Z., Darroudi. F. and Natarajan. A.T. (1993), The use of fluorescence in-situ
hybridisation for the detection of aneugens in cytokinesis-blocked mouse splenocytes. Mutagenesis. 8. 329-
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[12]Migliore, L.. Bocciardi, R., Macri, C. and Lo Jacono. F. (1993), Cytogenetic damage induced in
human lymphocytes by four vanadium compounds and micronucleus analysis by fluorescence in situ
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[13]Norppa. H.. Renzi. L. and Lindholm. C. (1993). Detection of whole chromosomes in micronuclei
of cytokinesis-blocked human lymphocytes by antikinetochore staining and in situ hybridization.
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[14]Eastmond. D.A, Rupa, D.S. and Hasegawa. L.S. (1994). Detection of hyperdiploidy and
chromosome breakage in interphase human lymphocytes following exposure to the benzene metabolite
hydroguinone using multicolor fluorescence in situ hybridization with DNA probes. Mutation Res., 322. 9-20.
[15]Marshall. R.R., Murphy, M., Kirkland, D.J. and Bentley. K.S. (1996), Fluorescence in situ
hybridisation (FISH) with chromosome-specific centromeric probes: a sensitive method to detect aneuploidy.
Mutation Res., 372. 233-245.
[16]Zijno. P., Leopardi. F.. Marcon. R. and Crebelli. R. (1996). Analysis of chromosome segregation
by means of fluorescence in situ hybridization: application to cytokinesis-blocked human lymphocytes.
Mutation Res., 372. 211-219.
[17]Kirsch-Volders. M., Sofuni, T., Aardema. M., Albertini, S.. Eastmond. D., Fenech. M., Ishidate
Jr.. M.. Lorge. E.. Norppa, H„ Surraltes, J.. von der Hude. W. and Wakata. A. (2003). Report from the in vitro
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[18]OECD (1997), In Vitro Mammalian Chromosome Aberration Test. Test Guideline No. 473.
OECD Guidelines for Testing of Chemicals. OECD. Paris.
[19]Lorge. E.. Thybaud. V.. Aardema. M.J., Oliver. J.. Wakata. A., Lorenzon G. and Marzin, D.
(2006), SFTG International collaborative Study on in vitro micronucleus test. I. General conditions and
overall conclusions of the study. Mutation Res.. 607,13-36.
[20]Clare. G., Lorenzon. G., Akhurst. L.C., Marzin. D„ van Delft, J.. Montero. R.. Botta. A., Bertens,
A., Cinelli. S.. Thybaud, V. and Lorge, E. (2006), SFTG International collaborative study on the in vitro
micronucleus test. II. Using human lymphocytes. Mutation Res.. 607. 37-60.
[21]Aardema. M.J., Snyder, R.D., Spicer. C.. Divi, K.. Morita. T., Mauthe. R.J., Gibson, D.P.,
Soelter. S.. Curry. P.T.. Thybaud. V.. Lorenzon. G„ Marzin. D. and Lorge. E. (2006), SFTG International
collaborative study on the in vitro micronucleus test. III. Using CHO cells. Mutation Res.. 607, 61-87.
[22]Wakata. A.. Matsuoka. A.. Yamakage. K., Yoshida. J.. Kubo. K.. Kobayashi. K., Senjyu. N.. Itoh,
S.. Miyajima. H., Hamada. S., Nishida, S.. Araki. H., Yamamura. E., Matsui, A.. Thybaud. V.. Lorenzon. G.,
Marzin, D. and Lorge. E. (2006). SFTG International collaborative study on the in vitro micronucleus test, IV.
Using CHO/IU cells. Mutation Res., 607, 88-124.
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