Investigation of the effect of metoclopramide on proliferation signal molecules in breast tissue

IF 1.8 4区 医学 Q3 PATHOLOGY International Journal of Experimental Pathology Pub Date : 2022-03-03 DOI:10.1111/iep.12433
Nurcan Umur, Selda İldan Çalım, Gülce Naz Yazıcı, Seren Gulsen Gurgen
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Abstract

Metoclopramide (MCP) is a drug that has been widely used in recent years due to its hyperprolactinaemia effect on mothers during breastfeeding. The aim of this study was to investigate the proliferative changes that MCP may cause in the maternal breast tissue. In this study, 18 Wistar albino young–adult breastfeeding mothers with their offspring were divided into three groups: control group, low-dose MCP-applied group and high-dose MCP-applied group. The experiment was carried out during the lactation period and at the end of 21 days. Prolactin, BrdU and Ki-67 breast tissue distributions were evaluated by immunohistochemistry, and tissue levels were evaluated biochemically by the ELISA method. According to ELISA and immunohistochemistry results in breast tissue, there was no significant difference between Ki-67 and BrdU results in all groups. Metoclopramide did not change the expression of proliferation molecules Ki-67 and BrdU in breast tissue. These results suggested that while metoclopramide increases breast proliferation, it does not have the risk of transforming the tissue into a tumour.

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甲氧氯普胺对乳腺组织增生信号分子影响的研究
甲氧氯普胺(MCP)是近年来广泛使用的一种药物,因为它对母乳喂养期间的母亲有高泌乳素血症的影响。本研究的目的是探讨MCP可能在母体乳腺组织中引起的增生性变化。本研究选取18例Wistar白化病青壮年哺乳母亲及其子代,分为对照组、低剂量mcp组和高剂量mcp组。试验于泌乳期和21 d末进行。免疫组化法检测泌乳素、BrdU、Ki-67乳腺组织分布,ELISA法检测组织水平。ELISA及乳腺组织免疫组化结果显示,各组Ki-67与BrdU结果差异无统计学意义。甲氧氯普胺对乳腺组织增殖分子Ki-67和BrdU的表达无明显影响。这些结果表明,虽然甲氧氯普胺增加乳房增生,但它没有将组织转化为肿瘤的风险。
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来源期刊
CiteScore
4.50
自引率
3.30%
发文量
35
审稿时长
>12 weeks
期刊介绍: Experimental Pathology encompasses the use of multidisciplinary scientific techniques to investigate the pathogenesis and progression of pathologic processes. The International Journal of Experimental Pathology - IJEP - publishes papers which afford new and imaginative insights into the basic mechanisms underlying human disease, including in vitro work, animal models, and clinical research. Aiming to report on work that addresses the common theme of mechanism at a cellular and molecular level, IJEP publishes both original experimental investigations and review articles. Recent themes for review series have covered topics as diverse as "Viruses and Cancer", "Granulomatous Diseases", "Stem cells" and "Cardiovascular Pathology".
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