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面包树对黑腹果蝇蔗糖诱导型糖尿病的ILP-2、InR和Imp-L2基因的调节作用。

Modulatory effect of Artocarpus camansi on ILP-2, InR, and Imp-L2 genes of sucrose -induced diabetes mellitus in Drosophila melanogaster.

作者信息

Saliu Jamiyu Ayodeji, Olajuyin Ayobami Matthew, Akinnubi Aderopo

机构信息

Department of Biochemistry, Adekunle Ajasin University, Akungba Akoko, Ondo State, Nigeria.

Department of Respiratory and Critical Care Medicine, Henan Provincial People's Hospital, People Hospital of Zhengzhou University Henan, 450003, China; Department of Natural and Environmental Science, School of Arts and Sciences, American University of Nigeria Lamido Zubairu Way, Yola Township By-pass, P.M.B 2250, Adamawa State, Nigeria.

出版信息

Comp Biochem Physiol C Toxicol Pharmacol. 2021 Aug;246:109041. doi: 10.1016/j.cbpc.2021.109041. Epub 2021 Apr 15.

Abstract

Diabetes mellitus continues to be a menace, being one of the five major causes of death in the world. In this study, the common fruit fly, Drosophila melanogaster, a well-studied genetic model organism for understanding molecular mechanisms of human diseases, and Artocarpus camansi (breadnut), an underutilized fruit, was used. This study was aimed at investigating the antihyperglycemic potentials of Artocarpus camansi fruit in sucrose-induced diabetic Drosophila melanogaster. Phytochemical screening was carried out after the fruit has been pulverized and freeze-dried. Total phenol content and total flavonoid content were carried out in vitro on the aqueous extract of Artocarpus camansi, and the result obtained showed that its phenol content is low, and its flavonoid content increases at increasing concentrations. Alpha-amylase inhibitory activity was carried out in vivo on sucrose-induced diabetic Drosophila melanogaster tissue. Gene expression profiling of Insulin-like peptide-2 (ILP-2), Insulin-like receptor (InR) and Ecdysone inducible gene L2 (Imp-L2) was carried out on trizol homogenate of Drosophila melanogaster tissue. In this study, Drosophila melanogaster was divided into nine groups. Group1 served as the basal control as they were fed with normal basal diet, group II served as the negative control which were fed with basal diet and 0.5 mL sucrose/100 mL distilled water, group III served as the positive control which were fed with basal diet 0.5 mL sucrose/100 mL distilled water and metformin, groups IV and V which were fed with basal diet and 0.1 and 1% Artocarpus camansi respectively, groups VI and VII were fed with basal diet, sucrose and 0.1 and 1% Artocarpus camansi respectively, groups VIII and IX served the purpose of the synergistic effect which were fed with basal diet, sucrose, metformin and 0.1 and 1% Artocarpus camansi respectively. All the groups were left for seven days. The experiment was conducted for 3 months and the fruit fly meals were changed every 5 days. Gene expression profiling results showed that the dietary inclusion of fruit downregulated the expression of ILP-2 and InR and upregulated the expression of Imp-L2 when the diabetic group were compared with the normal control. The results suggest that Artocarpus camansi fruit could possess antihyperglycemic properties and its use as a nutraceutical in the alleviation of diabetes should be encouraged.

摘要

糖尿病仍然是一种威胁,是全球五大主要死因之一。在本研究中,使用了常见的果蝇——黑腹果蝇,它是一种经过充分研究的用于理解人类疾病分子机制的遗传模式生物,以及面包树(Artocarpus camansi),一种未得到充分利用的水果。本研究旨在调查面包树果实对蔗糖诱导的糖尿病黑腹果蝇的降血糖潜力。在果实被粉碎并冷冻干燥后进行了植物化学筛选。对面包树的水提取物进行了总酚含量和总黄酮含量的体外测定,结果表明其酚含量较低,且黄酮含量随浓度增加而增加。对蔗糖诱导的糖尿病黑腹果蝇组织进行了体内α -淀粉酶抑制活性测定。对黑腹果蝇组织的三氯甲烷匀浆进行了胰岛素样肽 -2(ILP -2)、胰岛素样受体(InR)和蜕皮激素诱导基因L2(Imp -L2)的基因表达谱分析。在本研究中,黑腹果蝇被分为九组。第一组作为基础对照组,喂食正常基础饲料;第二组作为阴性对照组,喂食基础饲料和0.5 mL蔗糖/100 mL蒸馏水;第三组作为阳性对照组,喂食基础饲料、0.5 mL蔗糖/100 mL蒸馏水和二甲双胍;第四组和第五组分别喂食基础饲料和1%的面包树果实;第六组和第七组分别喂食基础饲料、蔗糖和1%的面包树果实;第八组和第九组用于协同作用研究,分别喂食基础饲料、蔗糖、二甲双胍和1%的面包树果实。所有组均饲养7天。实验进行3个月,每隔5天更换果蝇饲料。基因表达谱结果显示,与正常对照组相比,糖尿病组中添加果实的饮食下调了ILP -2和InR的表达,上调了Imp -L2的表达。结果表明,面包树果实可能具有降血糖特性,应鼓励将其作为营养保健品用于缓解糖尿病。

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