低剂量二氢槲皮素(DHQ)在两种遗传性神经退行模型中的疗效:FUS[1-359]-Tg 与 APPswe/PS1dE9 模型
Efficacy of Low Dose of Dihydroquercetin (DHQ) in Two Genetic Models of Neurodegeneration: Insights from FUS[1-359]-Tg and APPswe/PS1dE9 Paradigms
阿尔茨海默病(AD)和肌萎缩侧索硬化(ALS)都是氧化应激相关的神经退行性疾病,治疗需求未被满足。研究给 AD 模型小鼠口服低剂量二氢槲皮素(一种抗氧化剂)四个月,给 ALS 模型小鼠给药 1.5 个月,观察行为和病理变化。结果 AD 小鼠脑内小斑块减少、氧化应激指标恢复正常、部分学习记忆改善;ALS 小鼠脊髓运动神经元密度恢复、进食和毛发状态改善,但瘫痪发生和运动评分未见明显好转。提示低剂量 DHQ 在两种模型中均有部分神经保护作用,但转化前景尚不确定。
为什么推荐给您:已知抗氧化剂在既有小鼠模型中的疗效验证,机制无新意,仅属常规临床前增量研究
不需要生物学背景,多打比方
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摘要Abstract
Dihydroquercetin (DHQ), a powerful antioxidant and regulator of cellular metabolism, was proposed for therapy of neurodegenerative disorders. Alzheimer's disease (AD) and amyotrophic lateral sclerosis (ALS) are serious neurodegenerative disorders with oxidative stress as an overlapping feature and unmet therapeutic needs. To date, few studies have explored the efficacy of DHQ in animal models of genetically driven neurodegeneration. Here, APPswe/PS1dE9 (APP/PS1) mice and their wild-type (WT) littermates were orally administered DHQ (0.6 mg/kg/day) for four months, starting at eight months of age. At the age of 12 months, behavioral evaluation was performed, followed by brain staining with Congo red for amyloid plaque scoring and immunohistochemical analysis of GFAP-positive cells for the assessment of astrogliosis. Malondialdehyde (MDA) levels in the prefrontal cortex were studied as a marker of oxidative stress. Second, two-month-old FUS[1-359]-Tg mice, which recapitulate the hallmarks of ALS, received DHQ for 1.5 months and were investigated for general physiological parameters, the onset of paralysis, motor functions, and density of motor neurons in the spinal cord. DHQ-treated APPswe/PS1dE9 mutants displayed a decrease in amyloid plaque density of small size (≤100 μm) in the cortex and thalamus, had normalized MDA levels, improved conditioned taste aversion and Y-maze learning, and ameliorated anxiety measures, whereas their hippocampus-dependent step-down and pellet displacement performance remained impaired. In the second study, DHQ-treated FUS[1-359]-Tg mice showed rescued density of spinal cord neurons, normalized liquid and diet intake, and improved coat state, while the onset of paralysis and motor scores were not significantly ameliorated. Thus, chronic administration of low doses of DHQ exerted neuroprotective effects in both AD and ALS genetic models, which partially translated to reduced manifestations of these diseases.