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Chronic high-dose creatine has opposing effects on depression-related gene expression and behavior in intact and sex hormone-treated gonadectomized male and female rats

机译:慢性大剂量肌酸对完整和性激素治疗的性腺切除雌雄大鼠的抑郁相关基因表达和行为有相反的影响

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摘要

Creatine is an antioxidant, neuromodulator and key regulator of energy metabolism shown to improve depressive symptoms in humans and animals, especially in females. To better understand the pharmacological effects of creatine, we examined its influence on depression-related hippocampal gene expression and behaviors in the presence and absence of sex steroids. Sham-operated and gonadectomized male and female rats were fed chow alone or chow blended with either 2% or 4% w/w creatine monohydrate for five weeks before forced swim, open field, and wire suspension tests, or seven weeks total. Before supplementation, males were chronically implanted with an empty or a testosterone-filled (T) capsule (10-mm surface release), and females were administered progesterone (P, 250 μg), estradiol benzoate (EB, 2.5 μg), EB+P, or sesame oil vehicle weekly. Relative to non-supplemented shams, all hippocampal plasticity-related mRNAs measured, including brain-derived neurotrophic factor (BDNF), tyrosine kinase B, doublecortin, calretinin, and calbindin, were downregulated in sham males given 4% creatine, and BDNF, doublecortin, and calbindin mRNAs were downregulated in sham females given 4% creatine. In contrast, combined 4% creatine + T in castrates prevented downregulation of BDNF, doublecortin, and calretinin mRNAs. Similarly, combined 4% creatine + EB+P in ovariectomized females attenuated downregulation of BDNF and calbindin mRNA levels. Moderate antidepressant and anxiolytic-like behaviors were observed in EB+P-treated ovariectomized females fed creatine, with similar trends in T-treated castrates fed creatine. Altogether, these data show that chronic, high-dose creatine has opposing effects on neuroplasticity-related genes and depressive behavior in intact and gonadectomized male and female rats. The dose and schedule of creatine used negatively impacted hippocampal neuronal integrity in otherwise healthy brains, possibly through negative compensatory changes in energy metabolism, whereas combined creatine and sex steroids acted in a neuroprotective manner in gonadectomized rats, potentially by reducing metabolic complications associated with castration or ovariectomy.
机译:肌酸是一种抗氧化剂,神经调节剂和能量代谢的关键调节剂,可改善人类和动物尤其是女性的抑郁症状。为了更好地了解肌酸的药理作用,我们研究了其在存在和不存在性类固醇的情况下对抑郁症相关海马基因表达和行为的影响。假手术和性腺切除的雄性和雌性大鼠单独喂食或与2%或4%w / w肌酸一水合物混合的食物在强迫游泳,开阔田野和金属丝悬挂测试前五周,或总共七个星期。在补充之前,雄性被长期植入一个空的或睾丸激素填充的(T)胶囊(表面释放10毫米),雌性被给予孕酮(P,250μg),苯甲酸雌二醇(EB,2.5μg),EB + P,或每周食用芝麻油。相对于未补充的ms毛,所有接受模拟的海马可塑性相关的mRNA,包括脑源性神经营养因子(BDNF),酪氨酸激酶B,doublecortin,calretinin和calbindin,在接受4%肌酸和BDNF,doublecortin的假男性中均被下调。 ,并且在给予4%肌酸的假女性中,calbindin mRNA的表达下调。相反,去势犬中4%的肌酸+ T组合可防止BDNF,doublecortin和calretinin mRNA的下调。同样,去卵巢的女性中4%的肌酸+ EB + P组合可减轻BDNF和calbindin mRNA水平的下调。在接受EB + P治疗的切除了肌酸的卵巢切除雌性动物中观察到了中度抗抑郁和抗焦虑药的行为,在经T治疗的接受了肌酸的去势犬中,趋势相似。总而言之,这些数据表明,慢性,大剂量肌酸对完整和性腺切除的雄性和雌性大鼠的神经可塑性相关基因和抑郁行为具有相反的影响。所用肌酸的剂量和给药方式可能会通过能量代谢的负补偿变化而对其他健康大脑的海马神经元完整性产生负面影响,而肌酸和性类固醇的联合作用对淋巴切除的大鼠具有神经保护作用,可能通过减少与去势或cast割相关的代谢并发症卵巢切除术。

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