首页> 外文期刊>Animals >Denatonium Benzoate-Induces Oxidative Stress in the Heart and Kidney of Chinese Fast Yellow Chickens by Regulating Apoptosis, Autophagy, Antioxidative Activities and Bitter Taste Receptor Gene Expressions
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Denatonium Benzoate-Induces Oxidative Stress in the Heart and Kidney of Chinese Fast Yellow Chickens by Regulating Apoptosis, Autophagy, Antioxidative Activities and Bitter Taste Receptor Gene Expressions

机译:通过调节细胞凋亡,自噬,抗氧化活性和苦味受体基因表达,Denatonium Zhzoate - 诱导中国快黄鸡的心脏和肾脏氧化胁迫

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The sense of taste which tells us which prospective foods are nutritious, poisonous and harmful is essential for the life of the organisms. Denatonium benzoate (DB) is a bitter taste agonist known for its activation of bitter taste receptors in different cells. The aim of the current study was to investigate the mRNA expressions of bitter taste, downstream signaling effectors, apoptosis-, autophagy- and antioxidant-related genes and effector signaling pathways in the heart/kidney of chickens after DB dietary exposure. We randomly assigned 240, 1-day-old Chinese Fast Yellow chicks into four groups with five replicates of 12 chicks and studied them for 28 consecutive days. The dietary treatments consisted of basal diet and feed containing DB (5, 20 and 100 mg/kg). The results revealed that dietary DB impaired ( p 0.05) the growth performance of the chickens. Haemotoxylin and eosin staining and TUNEL assays confirmed that medium and high doses of DB damaged the epithelial cells of heart/kidney and induced apoptosis and autophagy. Remarkably, the results of RT-PCR and qRT-PCR indicated that different doses of DB gradually increased ( p 0.05) mRNA expressions of bitter taste, signaling effectors, apoptosis-, autophagy- and antioxidant- related genes on day 7 in a dose-response manner, while, these expressions were decreased ( p 0.05) subsequently by day-28 but exceptional higher ( P 0.05) expressions were observed in the high-dose DB groups of chickens. In conclusion, DB exerts adverse effects on the heart/kidney of chickens in a dose-response manner via damaging the epithelium of the heart/kidney by inducing apoptosis, autophagy associated with bitter taste and effector gene expressions. Correlation analyses for apoptosis/autophagy showed agonistic relationships. Our data provide a novel perspective for understanding the interaction of bitter taste, apoptosis, autophagy and antioxidative genes with bitter taste strong activators in the heart/kidney of chicken. These insights might help the feed industries and pave the way toward innovative directions in chicken husbandry.
机译:味道感,告诉我们哪些前瞻性食物是营养,有毒和有害对生物的生命至关重要。 Denatonium benzoate(dB)是一种苦味的味道激动剂,以其激活不同细胞中的苦味受体。目前研究的目的是研究DB膳食暴露后鸡心脏/肾脏中苦味,下游信号效应,凋亡,凋亡,自噬和抗氧化和抗氧化剂相关基因和效应信号传导途径的mRNA表达。我们随机分配了240名,1日历史的中国快黄雏鸡分为四组,其中五个复制了12个小鸡,并连续28天学习它们。膳食处理包括基础饮食和含有DB(5,20和100mg / kg)的饲料。结果表明,膳食DB受损(P <0.05)鸡的生长性能。氧毒素和曙红染色和TUNEL测定证实,中等和高剂量DB损坏了心脏/肾的上皮细胞,诱导细胞凋亡和自噬。值得注意的是,RT-PCR和QRT-PCR的结果表明,不同剂量的DB剂量在剂量时第7天逐渐增加(P <0.05)mRNA表达苦味,信号效应,凋亡,自血管和抗氧化剂相关基因 - 响应方式,而这些表达随后在第28天之后减少(P <0.05),但在高剂量DB鸡群中观察到卓越的较高(P <0.05)表达。总之,DB通过诱导细胞凋亡,与苦味和效应基因表达相关的凋亡,自噬损坏心脏/肾脏的心脏/肾脏的心脏/肾脏对鸡的心脏/肾脏的不利影响。凋亡/自噬的相关分析显示激动关系。我们的数据提供了一种用于了解苦味,细胞凋亡,自噬和抗氧化基因的相互作用在鸡肉中的心脏/肾脏中的苦味强烈活化剂对苦味,细胞凋亡,自噬和抗氧化基因的相互作用。这些见解可能有助于饲料行业,并在养鸡饲养方面铺平了创新方向。

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