首页> 外文期刊>The Journal of Steroid Biochemistry and Molecular Biology >Chitosan-eurycomanone nanoformulation acts on steroidogenesis pathway genes to increase the reproduction rate in fish
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Chitosan-eurycomanone nanoformulation acts on steroidogenesis pathway genes to increase the reproduction rate in fish

机译:壳聚糖-Eurycomanone Nanoformulation作用于类固化性途径基因,以提高鱼类的繁殖率

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摘要

The study was undertaken to explore the molecular mechanism of eurycomanone, a major compound of Eurycoma longifolia plant in increasing the reproductive processes in the male fish model. Chitosan-nanoconjugated eurycomanone nanoparticles with a significant particle size [130 ran (CED1); 144.1 nm (CED2)] and stable zeta potentials (+49.1 mV and +30 mV) were synthesized and evaluated against naked eurycomanone (ED1 and ED2). In present study, short-term and long-term experiments were conducted to evaluate the effect of nano formulation on expression of endocrine-related genes, circulating hormone concentrations (Follicle stimulating hormone, FSH; luteinizing hormone, LH; progesterone, testosterone and 17-beta estradiol) and reproductive capacity of male Clarias magur. In short-term experiment, the sampling of tissues was done on hourly basis after injection of eurycomanone either alone or with chitosan and long-term experiment was carried for 21 days and in this the injection was repeated after 7 days and 14 days. Treatments CED1 and CED2 showed controlled and sustained surge of the transcript level of selected genes (except aromatase) and serum hormones (except 17 beta-estradiol) compared to ED1 and ED2 groups. The transcript levels of aromatase and serum 17 beta-estradiol hormone showed the declining trend in the chitosan conjugated groups. The gonadosomatic index (GSI), reproductive capacity, intracellular calcium and selenium and cellular structure of testes were improved in CED1 and CED2 groups compared to other treatments. Furthermore, the effect of chitosan conjugated eurycomanone was evaluated in primary testicular cells and an increase in the mRNA expression level of endocrine-related genes was detected. This is the first report of the use of chitosan conjugated eurycomanone and present study elucidates the molecular mechanism of eurycomanone in increasing the reproductive output in animals.
机译:该研究是探讨EURYCOMANONONE的分子机制,EURYCOMA Longifolia植物的主要化合物在增加男性鱼类模型中的生殖过程中。壳聚糖 - 纳米腔缀合的Eurycomanone纳米颗粒具有显着粒径[130 RAN(CED1);合成144.1nm(CED2)]和稳定的Zeta电位(+ 49.1mV和+ 30mV),并评估裸体汞合金(ED1和ED2)。在目前的研究中,进行短期和长期实验,以评估纳米制剂对内分泌相关基因表达,循环激素浓度(卵泡刺激激素,FSH;叶黄素化激素,LH;黄体酮,睾酮和17- β雌二醇和男性Clarias Magur的生殖能力。在短期实验中,组织的取样在单独或用壳聚糖注射Eurycomanone后,长期实验进行21天,在7天和14天后重复注射。与ED1和ED2基团相比,治疗CED1和CED2显示出选定基因(芳香酶)和血清激素(17β-雌二醇除外)的转录水平的受控和持续涌动。芳香酶和血清17β-雌二醇激素的转录物水平显示出壳聚糖共轭基团的下降趋势。与其他处理相比,CED1和CED2组的促进剂指数(GSI),繁殖能力,细胞内钙和硒和细胞结构得到改善。此外,检测壳聚糖缀合的EURYCOMONONE的作用在初级睾丸细胞中评价,并检测了内分泌相关基因的mRNA表达水平的增加。这是使用壳聚糖共轭的EURYCOMANONE的第一个报告,并阐明了EURYCOMANONE在增加动物生殖产出时的分子机制。

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