Differences in the functioning of the hypothalamic-pituitarygonadal axis of regulation in male rats at one (liver) site and two (liver and lungs) sites of metastasis of sarcoma 45 in the experiment

O. Kit, I. Kaplieva, E. Frantsiyants, L. Trepitaki, V. Bandovkina, Y. Pogorelova, I. Goroshinskaya, E. Surikova, I. Neskubina, G. Zhukova, A. Shikhlyarova, M. Engibaryan, T. V. Ausheva, V. L. Volkova, M. Gusareva, P. Kachesova
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Abstract

Aims: to study the features of the functioning of the hypothalamic-pituitary-gonadal axis (HPGA) regulation in male rats at the stages of liver metastasizing. Materials and methods. Our research work was performed in 30 outbred male rats. Metastases in the liver were produced by implantation of sarcoma 45 (S45) cells into the spleen, which was previously positioned under the skin. The time spans of the study are 5 weeks (the pre-metastatic stage) and 7 weeks (the metastatic stage) after tumor cell transplantation. In the tissues, the content of the following hormones was determined by RIA: luteinizing hormone (LH), follicle-stimulating hormone (FSH), estradiol (E2), total testosterone (Ttot), progesterone (P4); by ELISA we determined the content of the following hormones: gonadotropin-releasing hormone (GnRH), free testosterone (Tfr) and estrone (E1). Results. At all stages of the study, the level of GnRH in the hypothalamus decreased by more than 2.0 times; in the pituitary gland, the hormone levels had multidirectional dynamics: LH decreased by 1.6 times, and FSH increased by more than 6.0 times. Liver metastases were characterized by high levels of E1 and Ttot. In the gonads, a high level of P4 was recorded and concentrations of both forms of testosterone were reduced. The concentrations of E2 (by 1.6 times), Tfr (by 4.8 times) increased in blood, and the level of Ttot decreased (by 1.9 times). The salient features of HPGA in the presence of two metastasis sites (liver and lungs) were as follows: in blood, a 2.0 times lower increase in the LH and Tfr contents, a 1.6 times greater increase in E2, an increase in P4 (2.6 times), 1, 4 times lower level of FSH; in the gonads, there are found lower levels of P4, E1, but higher levels of Tfr and Ttot; in liver metastases, a greater increase in P4 (5.2 times), E1 (2.2 times) and Tfr (2.0 times) is recorded. Conclusion. Metastasizing to the liver was accompanied by activation of HPGA with the maximum accumulation of reactogenic E1 in liver metastases in rats with two metastasis sites that may indicate their more severe malignancy and ability to metastasize to the lungs.
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雄性大鼠45型肉瘤1(肝)、2(肝、肺)转移部位下丘脑-垂体-性腺调节轴功能的差异
目的:研究肝转移期雄性大鼠下丘脑-垂体-性腺轴(HPGA)调节功能的特点。材料和方法。我们的研究工作是在30只雄性大鼠中进行的。肝脏转移是通过将肉瘤45(S45)细胞植入脾脏而产生的,脾脏先前位于皮肤下。研究的时间跨度为肿瘤细胞移植后5周(转移前阶段)和7周(转移阶段)。RIA法测定组织中下列激素的含量:黄体生成素(LH)、卵泡刺激素(FSH)、雌二醇(E2)、总睾酮(Ttot)、孕酮(P4);用ELISA法测定了促性腺激素释放激素(GnRH)、游离睾酮(Tfr)和雌激素(E1)的含量。后果在研究的所有阶段,下丘脑中的GnRH水平下降了2.0倍以上;垂体激素水平呈多向动态变化:LH下降1.6倍,FSH增加6.0倍以上。肝转移的特点是高水平的E1和Ttot。在性腺中,记录到高水平的P4,并且两种形式的睾酮的浓度都降低了。血液中E2(增加1.6倍)、Tfr(增加4.8倍)的浓度增加,Ttot水平降低1.9倍。在存在两个转移位点(肝和肺)的情况下,HPGA的显著特征如下:在血液中,LH和Tfr含量的增加低2.0倍,E2的增加高1.6倍,P4的增加(2.6倍),FSH水平低1.4倍;在性腺中,P4、E1水平较低,但Tfr和Ttot水平较高;在肝转移中,P4(5.2倍)、E1(2.2倍)和Tfr(2.0倍)的增加更大。结论肝转移伴随着HPGA的激活,在具有两个转移位点的大鼠中,肝转移中反应原性E1的最大积累可能表明其更严重的恶性肿瘤和转移到肺的能力。
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来源期刊
Cardiometry
Cardiometry MEDICAL LABORATORY TECHNOLOGY-
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审稿时长
6 weeks
期刊介绍: Cardiometry is an open access biannual electronic journal founded in 2012. It refers to medicine, particularly to cardiology, as well as oncocardiology and allied science of biophysics and medical equipment engineering. We publish mainly high quality original articles, reports, case reports, reviews and lectures in the field of the theory of cardiovascular system functioning, principles of cardiometry, its diagnostic methods, cardiovascular system therapy from the aspect of cardiometry, system and particular approaches to maintaining health, engineering peculiarities in cardiometry developing. The interdisciplinary areas of the journal are: hemodynamics, biophysics, biochemistry, metrology. The target audience of our Journal covers healthcare providers including cardiologists and general practitioners, bioengineers, biophysics, medical equipment, especially cardiology diagnostics device, developers, educators, nurses, healthcare decision-makers, people with cardiovascular diseases, cardiology and engineering universities and schools, state and private clinics. Cardiometry is aimed to provide a wide forum for exchange of information and public discussion on above scientific issues for the mentioned experts.
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