首页> 外文期刊>International Journal of Nanomedicine >Nanoparticles of Antroquinonol-Rich Extract from Solid-State-Cultured Antrodia cinnamomea Improve Reproductive Function in Diabetic Male Rats
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Nanoparticles of Antroquinonol-Rich Extract from Solid-State-Cultured Antrodia cinnamomea Improve Reproductive Function in Diabetic Male Rats

机译:来自固态培养的Antrodia Cinnamomea的富含氧化喹啉醇提取物的纳米粒子改善了糖尿病雄性大鼠的繁殖功能

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Purpose: To characterize the nanoparticle of antroquinonol from A. cinnamomea and its ameliorative effects on the reproductive dysfunction in the diabetic male rat. Material and Methods: The chitosan-silicate nanoparticle was used as the carrier for the delivery of antroquinonol from solid-state-cultured A. cinnamomea extract (AC). The rats were fed with a high-fat diet and intraperitoneally injected with streptozotocin to induce diabetes. The rats were daily oral gavage by water [Diabetes (DM) and Control groups], three different doses of chitosan-silicate nanoparticle of antroquinonol from solid-state-cultured A . cinnamomea (nano-SAC, NAC): (DM+NAC1x, 4 mg/kg of body weight; DM+NAC2x, 8 mg/kg; and DM+NAC5x, 20 mg/kg), solid-state-cultured AC (DM+AC5x, 20 mg/kg), or metformin (DM+Met, 200 mg/kg) for 7 weeks. Results: The nano-SAC size was 37.68± 5.91 nm, the zeta potential was 4.13± 0.49 mV, encapsulation efficiency was 79.29± 0.77%, and loading capacity was 32.45± 0.02%. The nano-SAC can improve diabetes-induced reproductive dysfunction by regulating glucose, insulin, and oxidative enzyme and by increasing the level of testosterone, follicle-stimulating hormone, luteinizing hormone, and sperm count as well as sperm mobility. In testicular histopathology, the seminiferous tubules of A. cinnamomea -supplemented diabetic rats showed similar morphology with the control group. Conclusion: The nanoparticle of antroquinonol from Antrodia cinnamomea can be used as an effective strategy to improve diabetes-induced testicular dysfunction.
机译:目的:从A肉桂瘤的纳米喹啉瘤的纳米粒子的表征及其对糖尿病雄性大鼠生殖功能障碍的改复作用。材料和方法:将壳聚糖硅酸盐纳米颗粒用作递送固态培养的A.肉瘤提取物(AC)的载体载体的载体。将大鼠用高脂饮食喂养,并用链脲佐菌素腹膜内注射诱导糖尿病。大鼠用水[糖尿病​​(DM)和对照组]每日口服饲养,三种不同剂量的壳聚糖 - 硅酸盐纳米粒子的苯醌醇来自固态培养的a。 Cinnamomea(纳米囊,NAC):(DM + NaC1x,4毫克/千克体重; DM + NaC2x,8mg / kg;和DM + NaC5x,20 mg / kg),固态培养的AC(DM + AC5X,20mg / kg)或二甲双胍(DM + MET,200 mg / kg)7周。结果:纳米囊尺寸为37.68±5.91nm,Zeta电位为4.13±0.49mV,封装效率为79.29±0.77%,负载能力为32.45±0.02%。纳米囊可以通过调节葡萄糖,胰岛素和氧化酶来改善糖尿病诱导的繁殖功能障碍,并通过增加睾酮,卵泡刺激激素,丁黄激素和精子计数以及精子移动性的水平。在睾丸组织病理学中,A型肉桂瘤的嗜血脂肪小管与对照组的形态相似。结论:来自Antrodia Cinnamomea的萘隆纳米粒子可用作改善糖尿病诱导的睾丸功能障碍的有效策略。

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