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首页> 外文期刊>Saudi Pharmaceutical Journal >Pharmacological melioration by Selenium on the toxicity of tellurium in neuroendocrine centre (Pituitary Gland) in male wistar rats: A mechanistic approach
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Pharmacological melioration by Selenium on the toxicity of tellurium in neuroendocrine centre (Pituitary Gland) in male wistar rats: A mechanistic approach

机译:硒对雄性Wistar大鼠神经内分泌中心(垂体腺体)中碲毒性的药理改进:机制方法

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Purpose The present research was designed to evaluate the toxicity of tellurium and its prevention by selenium on the pituitary gland in male Wistar rats. Methods 30 rats were used weighing 200–250 gm, and randomly divided them into five groups.?Each group contained an equal number of animals. Group-1 was nominated as control group. Group-2 received an intraperitoneal dose of selenium 0.3 mg per kg body wt. Group-3 was administered with tellurium 4.15?mg per kg body wt. Group-4 was given low-dose (L) of both selenium 0.15 and tellurium 2.075, Group-5 was given High-dose (H) of both selenium 0.3 and tellurium 4.15?mg/kg body wt. orally once in a day. After 15?days of dosing, the behavioral activities- motor co-ordination rotarod and grip strength test were measured. On 16th-day animals were sacrificed and activity of LPO, GSH, caspase-3, caspase-9, GPx, GR, SOD, catalase, and AChE were performed on the pituitary gland as per standard method reported. Results Se when given together with Te, significantly protects the motor coordination up to 32.5%, and also protects the grip strength up to 75% in group 4 and 5 respectively as compared to group- 3. Se?+?Te treatment protects the activity of TBARS up to 48.68% and GSH is 58%. As compared to control, it protects caspase-3 up to 118% and caspase-9 up to 83%. The level of AChE was also observed to be modulated by the administration of Se in Group- 4 and 5. Se?+?Te protected AChE up to 28.6%. Similar findings were observed for the biochemical activities of GPx (140% protection), SOD (458%), GR (159%), and catalase (95%) activities that were protected significantly Se?+?Te in Group- 4 and 5. Conclusion Selenium dose-dependently protects behavioral activities. It also protects apoptosis, oxidative stress, and AChE activities in the pituitary gland.
机译:目的,本研究旨在评估碲的毒性及其在雄性Wistar大鼠垂体腺体上的预防。方法使用600只大鼠200-250克,随机将它们分成五组。含有相同数量的动物。第1组被提名为对照组。 Group-2接受腹膜内剂量的硒0.3mg / kg体WT。将-3组用碲4.15μmg施用每kg体积%。将Group-4给出硒0.15和碲2.075的低剂量(L),给予硒0.3和碲4.15〜15×kg体Wt的高剂量(h)。在一天口服一次。在加入量15?天时,测量了行为活动 - 电动机协调旋转盘和握力试验。根据标准方法在垂体腺体中,处死16天动物,并处于处死了LPO,GSH,Caspase-3,Caspase-9,GPX,GR,SOD,过氧化氢酶和疼痛的活性。结果SE与TE一起给药,显着保护高达32.5%的电机协调,并分别与组 - 3. SEα+ TE治疗相比保护45%的抓握强度高达75%的粘合强度α+ TE治疗保护活动TBAR高达48.68%,GSH为58%。与对照相比,它保护Caspase-3高达118%,Caspase-9至83%。也观察到疼痛水平以通过在-4和5中的施用中调节。+ + TE保护疼痛高达28.6%。对于GPX的生物化学活性(140%的保护),SOD(458%),GR(159%)和过氧化氢酶(95%)的活性而言,可观察到类似的结果,这些活性在群体 - 4和5中受到保护。结论硒依赖性保护行为活动。它还保护垂体腺体中的凋亡,氧化应激和疼痛活动。

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