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Edited Magnetic Resonance Spectroscopy Detects an Age-related Decline in Brain GABA Levels

机译:编辑的磁共振波谱检测到大脑GABA水平与年龄相关的下降

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摘要

Gamma-aminobutyric acid (GABA) is the primary inhibitory neurotransmitter in the brain. Although measurements of GABA levels in vivo in the human brain using edited proton magnetic resonance spectroscopy (1H-MRS) have been established for some time, it is has not been established how regional GABA levels vary with age in the normal human brain. In this study, 49 healthy men and 51 healthy women aged between 20 and 76 years were recruited and J-difference edited spectra were recorded at 3 Tesla to determine the effect of age on GABA levels, and to investigate whether there are regional and gender differences in GABA in mesial frontal and parietal regions.Because the signal detected at 3.02 ppm using these experimental parameters is also expected to contain contributions from both macromolecules (MM) and homocarnosine, in this study the signal is labeled GABA+ rather than GABA. Significant negative correlations were observed between age and GABA+ in both regions studied (GABA+/Cr: frontal region, r = -0.68, p< 0.001, parietal region, r = -0.54, p< 0.001; GABA+/NAA: frontal region, r = -0.58, p< 0.001, parietal region, r = -0.49, p< 0.001). The decrease in GABA+ with age in the frontal region was more rapid in women than men. Evidence of a measureable decline in GABA is important in considering the neurochemical basis of the cognitive decline that is associated with normal aging.
机译:γ-氨基丁酸(GABA)是大脑中主要的抑制性神经递质。尽管已经建立了使用编辑质子磁共振波谱( 1 H-MRS)测量人脑中体内GABA水平的方法,但尚未确定区域性GABA水平如何随年龄变化在正常的人脑中。在这项研究中,招募了年龄在20至76岁之间的49位健康男性和51位健康女性,并在3 Tesla处记录了J差编辑的光谱,以确定年龄对GABA水平的影响,并调查是否存在区域差异和性别差异由于预期使用这些实验参数在3.02 ppm处检测到的信号也包含大分子(MM)和高肌氨酸的贡献,因此在本研究中,该信号被标记为GABA +而不是GABA。在两个研究区域中,年龄和GABA +之间均存在显着负相关(GABA + / Cr:额叶区域,r = -0.68,p <0.001,顶叶区域,r = -0.54,p <0.001; GABA + / NAA:额叶区域,r = -0.58,p <0.001,顶区,r = -0.49,p <0.001)。女性的额叶区域中,GABA +随年龄的下降比男性更快。在考虑与正常衰老相关的认知功能减退的神经化学基础时,GABA明显下降的证据很重要。

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