{"title":"长期接触镉和铜对大鼠胚胎小肠组织结构的影响","authors":"V. Shatorna, K. M. Tymchuk","doi":"10.31718/2077-1096.24.1.159","DOIUrl":null,"url":null,"abstract":"The search for bioantagonistic elements that mitigate cadmium toxicity and accumulation in the body is a pressing area of research. In this context, investigating the potential of trace element succinates holds promise, given their increasing application in medicine, biological experimentation, and pharmaceutical development. \nThis study aimed to evaluate the effects of chronic, isolated intragastric administration of cadmium chloride, and its combined administration with copper succinate, on the small intestine morphogenesis in developing rat embryos. Pregnant rats were exposed daily throughout pregnancy by oral gavage with solutions containing the respective agents at a dose of 2.0 mg/kg. 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引用次数: 0

摘要

寻找能减轻镉毒性和体内积累的生物拮抗元素是一个紧迫的研究领域。在此背景下,鉴于微量元素琥珀酸盐在医学、生物实验和药物开发中的应用日益广泛,研究微量元素琥珀酸盐的潜力大有可为。本研究的目的是评估氯化镉的长期、离体胃内给药及其与琥珀酸铜的联合给药对发育中大鼠胚胎小肠形态发生的影响。怀孕大鼠在整个孕期每天都要通过口服灌胃的方式摄入含有相应制剂的溶液,剂量为 2.0 毫克/千克。怀孕大鼠每天长期灌胃氯化镉会导致胚胎小肠结构的改变,这种改变早在第 13 天就已显现,并在第 19 天变得更加明显。与对照组相比,镉暴露导致小肠壁变薄,肠粘膜绒毛直径变大。值得注意的是,镉暴露组在两个时间点都没有粘膜隐窝。相反,联合施用氯化镉和琥珀酸铜可显著恢复胚胎在两个研究日的小肠中的大部分组织学参数。因此,对所获数据的分析证明,与对照组相比,单独施用氯化镉可导致小肠绒毛增厚和粘膜壁变薄,而联合施用氯化镉和琥珀酸铜后,胚胎小肠壁粘膜层厚度指标有恢复到对照组数据的趋势。根据所获得的数据,我们可以认为琥珀酸铜在大鼠实验中以指定剂量胃内给药时是氯化镉的生物拮抗剂。
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CHRONIC EFFECT OF CADMIUM AND COPPER EXPOSURE ON THE HISTOLOGICAL STRUCTURE OF THE SMALL INTESTINE IN RAT EMBRYOS
The search for bioantagonistic elements that mitigate cadmium toxicity and accumulation in the body is a pressing area of research. In this context, investigating the potential of trace element succinates holds promise, given their increasing application in medicine, biological experimentation, and pharmaceutical development. This study aimed to evaluate the effects of chronic, isolated intragastric administration of cadmium chloride, and its combined administration with copper succinate, on the small intestine morphogenesis in developing rat embryos. Pregnant rats were exposed daily throughout pregnancy by oral gavage with solutions containing the respective agents at a dose of 2.0 mg/kg. Chronic daily exposure of pregnant rats to cadmium chloride via gavage resulted in structural alterations in the small intestine of embryos, evident as early as day 13 and becoming more pronounced by day 19. Compared to controls, cadmium exposure led to a thinner small intestine wall and a larger villus diameter in the intestinal mucosa. Notably, mucosal crypts were absent in the cadmium-exposed group at both time points. Conversely, the combined administration of cadmium chloride with copper succinate significantly restored most of the investigated histological parameters in the small intestine of embryos at both study days. Thus, the analysis of the obtained data has proven the effect of the isolated introduction of cadmium chloride leads to a reliable thickening of the villi of the small intestine and thinning of the mucosal walls in comparison to the control, and with the combined introduction of cadmium chloride with copper succinates, the indicators of the thickness of the mucous layer of the wall of the small intestine of the embryos had a tendency recovery to control group data. The obtained data allow us to consider copper succinate as a bioantagonist of cadmium chloride when administered intragastrically in the indicated doses in an experiment on rats.
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