Wolkowitz Owen M, Mellon Synthia H, Lindqvist Daniel, Epel Elissa S, Blackburn Elizabeth H, Lin Jue, Reus Victor I, Burke Heather, Rosser Rebecca, Mahan Laura, Mackin Scott, Yang Tony, Weiner Michael, Mueller Susanne
Department of Psychiatry, University of California San Francisco (UCSF) School of Medicine, San Francisco, CA, USA.
Department of OBGYN and Reproductive Endocrinology, UCSF School of Medicine, San Francisco, CA, USA.
Psychiatry Res. 2015 Apr 30;232(1):58-64. doi: 10.1016/j.pscychresns.2015.01.007. Epub 2015 Jan 19.
Accelerated cell aging, indexed in peripheral leukocytes by telomere shortness and in peripheral blood mononuclear cells (PBMCs) by telomerase activity, has been reported in several studies of major depressive disorder (MDD). However, the relevance of these peripheral measures for brain indices that are presumably more directly related to MDD pathophysiology is unknown. In this study, we explored the relationship between PBMC telomerase activity and leukocyte telomere length and magnetic resonance imaging-estimated hippocampal volume in un-medicated depressed individuals and healthy controls. We predicted that, to the extent peripheral and central telomerase activity are directly related, PBMC telomerase activity would be positively correlated with hippocampal volume, perhaps due to hippocampal telomerase-associated neurogenesis, neuroprotection or neurotrophic facilitation, and that this effect would be clearer in individuals with increased PBMC telomerase activity, as previously reported in un-medicated MDD. We did not have specific hypotheses regarding the relationship between leukocyte telomere length and hippocampal volume, due to conflicting reports in the published literature. We found, in 25 un-medicated MDD subjects, that PBMC telomerase activity was significantly positively correlated with hippocampal volume; this relationship was not observed in 18 healthy controls. Leukocyte telomere length was not significantly related to hippocampal volume in either group (19 unmedicated MDD subjects and 17 healthy controls). Although the nature of the relationship between peripheral telomerase activity and telomere length and the hippocampus is unclear, these preliminary data are consistent with the possibility that PBMC telomerase activity indexes, and may provide a novel window into, hippocampal neuroprotection and/or neurogenesis in MDD.
在多项重度抑郁症(MDD)研究中,已报道了细胞加速衰老现象,在外周血白细胞中以端粒缩短为指标,在外周血单核细胞(PBMC)中以端粒酶活性为指标。然而,这些外周指标与可能更直接与MDD病理生理学相关的脑指标之间的相关性尚不清楚。在本研究中,我们探讨了未用药的抑郁症患者和健康对照者中PBMC端粒酶活性与白细胞端粒长度以及磁共振成像估计的海马体积之间的关系。我们预测,在外周和中枢端粒酶活性直接相关的程度上,PBMC端粒酶活性将与海马体积呈正相关,这可能是由于海马端粒酶相关的神经发生、神经保护或神经营养促进作用,并且如先前在未用药的MDD中所报道的,这种效应在PBMC端粒酶活性增加的个体中会更明显。由于已发表文献中的报道相互矛盾,我们对白细胞端粒长度与海马体积之间的关系没有具体假设。我们发现,在25名未用药的MDD受试者中,PBMC端粒酶活性与海马体积显著正相关;在18名健康对照者中未观察到这种关系。在两组中(19名未用药的MDD受试者和17名健康对照者),白细胞端粒长度与海马体积均无显著相关性。尽管外周端粒酶活性与端粒长度和海马之间关系的性质尚不清楚,但这些初步数据与PBMC端粒酶活性指标可能为MDD中海马神经保护和/或神经发生提供新窗口的可能性一致。