Baptista Pedro, Andrade José P
Unit of Anatomy, Department of Biomedicine, Faculty of Medicine of University of Porto, Porto, Portugal.
Center of Health Technology and Services Research (CINTESIS), Faculty of Medicine of University of Porto, Porto, Portugal.
Front Neuroanat. 2018 Jun 5;12:44. doi: 10.3389/fnana.2018.00044. eCollection 2018.
The formation of new neurons in the adult central nervous system (CNS) has been recognized as one of the major findings in neuroanatomical research. The hippocampal formation (HF), one of the main targets of these investigations, holds a neurogenic niche widely recognized among several mammalian species and whose existence in the human brain has sparked controversy and extensive debate. Many cellular features from this region emphasize that hippocampal neurogenesis suffers changes with normal aging and, among regulatory factors, physical exercise and chronic stress provoke opposite effects on cell proliferation, maturation and survival. Considering the numerous functions attributable to the HF, increasing or decreasing the integration of new neurons in the delicate neuronal network might be significant for modulation of cognition and emotion. The role that immature and mature adult-born neurons play in this circuitry is still mostly unknown but it could prove fundamental to understand hippocampal-dependent cognitive processes, the pathophysiology of depression, and the therapeutic effects of antidepressant medication in modulating behavior and mental health.
成体中枢神经系统(CNS)中新生神经元的形成已被视为神经解剖学研究的主要发现之一。海马结构(HF)是这些研究的主要目标之一,在多个哺乳动物物种中拥有一个广为人知的神经发生微环境,其在人类大脑中的存在引发了争议和广泛讨论。该区域的许多细胞特征表明,海马神经发生会随着正常衰老而发生变化,在调节因子中,体育锻炼和慢性应激对细胞增殖、成熟和存活产生相反的影响。鉴于HF具有多种功能,增加或减少新神经元融入精细的神经元网络可能对认知和情绪的调节具有重要意义。未成熟和成熟的成年新生神经元在这个神经回路中所起的作用仍然大多未知,但对于理解海马依赖性认知过程、抑郁症的病理生理学以及抗抑郁药物在调节行为和心理健康方面的治疗效果可能至关重要。