In vitro cadmium exposure induces structural damage and endothelial dysfunction in female rat aorta

Author:

Mulher Lorraine Christiny Costa Sepulchro1,Simões Rakel Passos1,Rossi Karoline Alves1,Schereider Ingridy Reinholz Grafites1,Nascimento Camilla Lóren Silva1,Ávila Renata Andrade1,Padilha Alessandra Simão1

Affiliation:

1. Federal University of Espírito Santo

Abstract

Abstract Cadmium is a heavy metal that is widespread in the environment and has been described as a metalloestrogen and a cardiovascular risk factor. Experimental studies conducted in male animals have shown that cadmium exposure induces vascular dysfunction, which could lead to vasculopathies caused by this metal. However, it is necessary to investigate the vascular effects of cadmium in female rats to understand its potential gender-specific impact on the cardiovascular system. While its effects on male rats have been studied, cadmium may act differently in females due to its potential as a metalloestrogen. In vitro studies conducted in a controlled environment allow for a direct assessment of cadmium's impact on vascular function, and the use of female rats ensures that gender-specific effects are evaluated. Therefore, the aim of this study was to investigate the in vitro effects of Cadmium Chloride (ClCd2, 5µM) exposure on vascular reactivity in the isolated aorta of female Wistar rats. Exposure to ClCd2 damaged the architecture of the vascular endothelium. ClCd2 incubation increased the production and release of O2•-, reduced the participation of potassium (K+) channels, and increased the participation of the angiotensin II pathway in response to phenylephrine. Moreover, estrogen receptors alpha (Erα) modulated vascular reactivity to phenylephrine in the presence of cadmium, supporting the hypothesis that cadmium could act as a metalloestrogen. Our results demonstrated that in vitro cadmium exposure induces damage to endothelial architecture and an increase in oxidative stress in the isolated aorta of female rats, which could precipitate vasculopathies.

Publisher

Research Square Platform LLC

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