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首页> 外文期刊>Turkish Journal of Veterinary and Animal Sciences >Cadmium affects the development of somites in chick embryos ( iGallus gallus domesticus/i ) under in vitro conditions
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Cadmium affects the development of somites in chick embryos ( iGallus gallus domesticus/i ) under in vitro conditions

机译:镉在体外条件下影响鸡胚( Gallus domesticus )体节的发育

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Cadmium is one of the most toxic metals that has high environmental stability and can hardly be converted into substances of low toxicity. In the present study, the effects of cadmium on the development of somites of chick embryos under in vitro conditions were investigated. First, fertilized eggs were incubated until they reached the stage of 15?20 somites. The embryos were then separated from the yolk by using the window technique. The somites were separated by insulin needles under a stereomicroscope. The separated somites were then transferred to Dulbecco?s modified Eagle?s medium (DMEM) stock culture and treated with different concentrations of cadmium nitrate (0, 500, 1000, 2000, and 4000 ng/mL). After 72 h, the diameter of the nucleus, cell morphology, and extracellular matrix compounds were examined. Our results indicated that cadmium disrupted the developmental process of the somites. The microscopic studies of the somites, based on a histological technique, indicated that cadmium induced apoptosis in somite cells and also decreased the chondrogenesis and collagen synthesis. Therefore, somites are considered suitable temporary embryonic organs and interesting models for basic developmental study under in vitro conditions. Moreover, it might be possible to use somites in vitro for studying the effects of trace elements on living organisms.
机译:镉是毒性最高的金属之一,具有很高的环境稳定性,几乎不能转化为低毒物质。在本研究中,研究了镉在体外条件下对雏鸡胚胎体节发育的影响。首先,将受精卵孵化直至达到15-20个节段。然后通过窗口技术将胚与蛋黄分离。在体视显微镜下,用胰岛素针将这些肿块分开。然后将分离的卵节转移至Dulbecco改良的Eagle培养基(DMEM)的原种培养物中,并用不同浓度的硝酸镉(0、500、1000、2000和4000 ng / mL)处理。 72小时后,检查了细胞核的直径,细胞形态和细胞外基质化合物。我们的结果表明,镉破坏了体节的发育过程。基于组织学技术的体节的显微镜研究表明,镉诱导了体节细胞的凋亡,也降低了软骨形成和胶原合成。因此,体节被认为是合适的临时胚胎器官,是体外条件下基础发育研究的有趣模型。此外,可能有可能在体外使用体节来研究微量元素对活生物体的影响。

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