The Hematological Variations and Effect of Cadmium Induced Toxicity on Mammary Tumors Development in Albino Mice. A Comparative Model Study on the Effect of Heavy Metals in Human Breast Cancer.

IF 3 4区 医学 Q3 CHEMISTRY, MEDICINAL
Saba Munir, Yasir Nawaz, Fouzia Tanvir, Khalid Mehmood Anjum
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Abstract

Introduction: Breast cancer develops in breast tissues, in ducts and lobules. It affects both genders, though it is uncommon in men. Hematological variations are important considerations and deficiencies in metals can negatively impact human health. Cadmium is highly toxic and plays role in breast cancer progression. This study was designed for hematological variations and cadmium induced toxicity in mice and humans causing breast cancer.

Methods: Mice, obtained from local supplier, housed at university laboratory for 11 weeks, exposed to cadmium. Following dissection, blood and organs were harvested for examination. Histological analysis of liver and mammary gland tissues was conducted.

Results: Affected mice had higher Hb, RBC, HCT, MCV, and MCH, while humans showed lower Hb, HCT, and MCV but similar RBC and MCH. Other blood values also show changes. Histopathology revealed changes in mammary glands (higher cadmium led to increased fat deposition, degeneration of alveolar epithelial cells, and a reduction in alveolar milk lumen size, indicating compromised glandular function) and Liver damage (vacuolation, lipid accumulation, fibrosis, and collagen deposition, was noticeable with prolonged cadmium). These changes causes liver fibrosis and impaired mammary gland function.

Discussion: The cadmium exposure induces distinct hematological alterations and severe tissues damage, reflecting species-specific responses. The observed liver fibrosis and mammary gland dysfunction emphasize cadmium's potential to compromise critical organ functions over time.

Conclusion: Significant effects of cadmium exposure in mice were observed. Histological damage was seen in mammary glands and liver. Further research on protective measures and dose-response relationships for cadmium exposure is needed.

白化小鼠血液学变化及镉毒性对乳腺肿瘤发展的影响。重金属对人乳腺癌影响的比较模型研究。
简介:乳腺癌发生于乳腺组织、乳腺导管和乳腺小叶。它会影响两性,但在男性中并不常见。血液学变化是重要的考虑因素,金属缺乏会对人体健康产生负面影响。镉是剧毒的,在乳腺癌的发展中起着重要作用。这项研究旨在研究小鼠和人体内的血液学变化和镉引起的乳腺癌毒性。方法:从当地供体获得小鼠,在大学实验室饲养11周。解剖后,采集血液和器官进行检查。对肝脏和乳腺组织进行组织学分析。结果:感染小鼠Hb、RBC、HCT、MCV和MCH升高,而人Hb、HCT和MCV降低,但RBC和MCH相似。其他血液值也显示出变化。组织病理学显示乳腺的变化(高镉导致脂肪沉积增加,肺泡上皮细胞变性,肺泡乳腔大小减小,表明腺体功能受损)和肝脏损伤(空泡化,脂质积累,纤维化和胶原沉积,随着镉的延长而明显)。这些变化导致肝纤维化和乳腺功能受损。讨论:镉暴露引起明显的血液学改变和严重的组织损伤,反映了物种特异性反应。观察到的肝纤维化和乳腺功能障碍强调了镉随时间损害关键器官功能的潜力。结论:镉暴露对小鼠有显著影响。乳腺和肝脏可见组织学损害。需要进一步研究镉暴露的防护措施和剂量-反应关系。
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来源期刊
Anti-cancer agents in medicinal chemistry
Anti-cancer agents in medicinal chemistry ONCOLOGY-CHEMISTRY, MEDICINAL
CiteScore
5.10
自引率
3.60%
发文量
323
审稿时长
4-8 weeks
期刊介绍: Formerly: Current Medicinal Chemistry - Anti-Cancer Agents. Anti-Cancer Agents in Medicinal Chemistry aims to cover all the latest and outstanding developments in medicinal chemistry and rational drug design for the discovery of anti-cancer agents. Each issue contains a series of timely in-depth reviews and guest edited issues written by leaders in the field covering a range of current topics in cancer medicinal chemistry. The journal only considers high quality research papers for publication. Anti-Cancer Agents in Medicinal Chemistry is an essential journal for every medicinal chemist who wishes to be kept informed and up-to-date with the latest and most important developments in cancer drug discovery.
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