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1.
A comparison of two human cell lines and two rat gonadal cell primary cultures as in vitro screening tools for aromatase modulation // Toxicol. in Vitro, 2012. Vol. 26, N 1.-С.107-118

2.
Alteration of pituitary hormone-immunoreactive cell populations in rat offspring after maternal dietary exposure to endocrine-active chemicals // Arch. Toxicol., 2004. Vol. 78, N 4.-С.232-240

3.
Alterations in reproductive development in hamsters induced by methoxyclop (M) // Toxicologist, 1986. Vol. 6, N 1.-С.294

4.
Biodegradation of methoxychlor and its metabolites by the white rot fungus Stereum hirsutum related to the inactivation of estrogenic activity // J. Environ. Sci. and Health. B, 2006. Vol. 41, N 4.-С.385-397

5.
Bulger William H. Characteristics of monooxygenase-mediated covalent binding of methoxychlor in human and rat liver microsomes // Drug Metab. and Disposit., 1989. Vol. 17, N 5.-С.487-494

6.
Campos M. Efecto de los tratamientos con metoxicloro contra Phloeotribus scarabaeoides (Col., Scolytidae) en lenas de poda de olivo // Bol. sanid. veg. Plagas, 1997. Vol. 23, N 2.-С.263-271

7.
Chen Влияние метоксихлора на плаценту беременных крыс и их потомство // Jiefangjun yixue zazhi, 2008. Vol. 33, N 4.-С.403-406

8.
Combined effects of dietary phytoestrogen and synthetic endocrine active compound on reproductive development in Sprague-Dawley rats - genistein and methoxychlor // Toxicol. Sci., 2002. Vol. 66, N 1.-С.91-104

9.
Cooke Paul S. Inhibitory effects of technical grade methoxychlor on development of neonatal male mouse reproductive organs // Biol. Reprod., 1990. Vol. 42, N 3.-С.585-596

10.
Cuffney Thomas F. Experimental evidence quantifying the role of benthic invertebrates in organic matter dynamics of headwater streams // Freshwater Biol., 1990. Vol. 23, N 2.-С.281-299

11.
Cummings A.M. Methoxychlor accelerates embryo transport through the rat reproductive tract // Toxicol. and Appl. Pharmacol., 1990. Vol. 102, N 1.-С.110-116

12.
Cummlngs A.M. Inhibition of the decidual cell response of the female rat by methoxychlor // Toxicologist, 1986. Vol. 6, N 1.-С.295

13.
CYP2C subfamily primarily CYP2C9, catalyses the enantioselective demethylation of the endocrine disruptor pesticide methoxychlor in human liver microsomes: Use of inhibitory monoclonal antibodies in P450 identification // Xenobiotica, 2004. Vol. 34, N 2.-С.117-132

14.
Cytochrome P450 catalyzed covalent binding of methoxychlor to rat hepatic, microsomal iodothyronine 5'-monodeiodinase, type I: Does exposure to methoxychlor disrupt thyroid hormone metabolism? // Arch. Biochem. and Biophys., 1995. Vol. 322, N 2.-С.390-394

15.
Dehal Shangara S. Metabolism of the proestrogenic pesticide methoxychlor by hepatic P450 monooxygenases in rats and humans: Dual pathways involving novel ortho ring-hydroxylation by CYP2В // Drug Metab. and Disposit., 1994. Vol. 22, N 6.-С.937-946

16.
Demethylation of the pesticide methoxychlor in liver and intestine from untreated, methoxychlor-treated, and 3-methylcholanthrene-treated channel catfish (Ictalurus punctatus): Evidence for roles of CYP1 and CYP3A family isozymes // Drug Metab. and Dispos., 2006. Vol. 34, N 6.-С.932-938

17.
Demethylation of the pesticide methoxychlor in liver and intestine from untreated, methoxychlor-treated, and 3-methylcholanthrene-treated channel catfish (Ictalurus punctatus): Evidence for roles of CYP1 and CYP3A family isozymes // Drug Metab. and Dispos., 2006. Vol. 34, N 6.-С.932-938

18.
Differential interaction of the methoxychlor metabolite 2,2-bis-(p-hydroxyphenyl)-1,1,1-trichloroethane with estrogen receptors 'альфа' and 'бета' // Endocrinology, 1999. Vol. 140, N 12.-С.5746-5753

19.
Differential interaction of the methoxychlor metabolite 2,2-bis-(p-hydroxyphenyl)-1,1,1-trichloroethane with estrogen receptors 'альфа' and 'бета' // Endocrinology, 1999. Vol. 140, N 12.-С.5746-5753

20.
Dikshith T.S.S. Acute and ninety day oral toxicity of methoxychor in rats // Nat. Acad. Sci. Lett, 1990. Vol. 13, N 2.-С.67-72

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