母体甲状腺机能减退导致大鼠后代神经元发育受损:产前护理的启示

Tayyaba Fahad, Shabana Ali, Tayyaba Qureshi, Noor Fatima Khan
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摘要

研究目的通过光镜观察母体甲状腺功能减退对幼鼠运动皮层神经元发育的影响。研究设计实验室实验研究:这项研究是与巴基斯坦伊斯兰堡国家卫生研究院(NIH)和巴基斯坦伊斯兰堡里法国际大学伊斯兰国际医学院解剖学系合作进行的,研究时间为2023年3月至2023年5月:本研究将 24 只雌性 Sprague dawley 大鼠和 12 只雄性 Sprague dawley 大鼠分为对照组和甲状腺功能减退组。对照组在整个研究期间接受标准饮食和白开水。而甲状腺机能减退组则每天在每只大鼠的饮用水中混入 4.5 毫克的丙基硫氧嘧啶。这种治疗从交配前一周开始,一直持续到分娩后三周。通过阴道插管确认交配成功后,妊娠继续进行,新生幼鼠在三周后出生,并在21天内可以充分获得母体的泌乳。出生后第 22 天,对幼崽进行解剖,并小心翼翼地取出大脑。随后对运动皮层进行冠状切片检查:结果:对照组显示出典型的神经发生模式,其特点是大脑皮层神经元结构正常。另一方面,甲状腺机能减退组的细胞内空泡化、胶质细胞坏死和 Nissl 边缘厚度减少在统计学上有显著意义,这共同表明神经发生不典型。结论本研究强调了母体甲状腺功能减退症对大脑皮层神经元结构完整性的不利影响。研究重点在于提高人们的认识和实施全面的产前保健策略:Fahad T, Ali S, Qureshi T, Khan NF.母体甲状腺机能减退诱发大鼠后代神经元发育受损:产前护理的启示。生命与科学》。2024; 5(1):68-74. doi: http://doi.org/10.37185/LnS.1.1.525
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maternal Hypothyroidism-Induced Impaired Development of Neurons in Rat Offspring: Insights for Antenatal Care
Objective: To determine the effect of maternal hypothyroidism on the development of neurons in the motor cortex of rat pups by using light microscopy. Study Design: Laboratory-based experimental study.Place and Duration of Study: The study was carried out in collaboration with the National Institute of Health (NIH) Islamabad and the Department of Anatomy, Islamic International Medical College, Riphah International University, Islamabad, Pakistan from March 2023 to May 2023.Methods: In this study, 24 females and 12 male Sprague dawley rats were sorted into control and hypothyroid groups. The control group received a standard diet and plain drinking water throughout the study. In contrast, the hypothyroid group had 4.5mg of propylthiouracil administered per rat per day, mixed into their drinking water. This treatment started a week before mating and continued until three weeks after delivery. Once successful mating was confirmed via vaginal plugs, gestation proceeded, and newborn pups were born after nd three weeks, having full access to maternal lactation for 21 days. On the 22 day after birth, dissection took place, and the brains of the pups were carefully removed. Coronal sections of the motor cortex were then obtained for subsequent examination.Results: The control group displayed a typical pattern of neurogenesis, characterized by the normal structure of cortical neurons. On the other hand, intracellular vacuolation, glial cell necrosis, and reduced Nissl rim thickness were statistically significant in hypothyroid group which collectively pointed to atypical neurogenesis. Conclusion: This study highlights the adverse effects of maternal hypothyroidism on the structural integrity of cortical neurons. It focuses on increasing awareness and implementing thorough prenatal healthcare strategies.How to cite this: Fahad T, Ali S, Qureshi T, Khan NF. Maternal Hypothyroidism-Induced Impaired Development of Neurons in Rat Offspring: Insights for Antenatal Care. Life and Science. 2024; 5(1): 68-74. doi: http://doi.org/10.37185/LnS.1.1.525
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