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Apoptotic markers in cultured fibroblasts correlate with brain metabolites and regional brain volume in antipsychotic-naïve first-episode schizophrenia and healthy controls

机译:培养的成纤维细胞中的凋亡标志物与抗精神病药物-初发精神分裂症和健康对照者的脑代谢物和局部脑体积相关

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摘要

Cultured fibroblasts from first-episode schizophrenia patients (FES) have shown increased susceptibility to apoptosis, which may be related to glutamate dysfunction and progressive neuroanatomical changes. Here we determine whether apoptotic markers obtained from cultured fibroblasts in FES and controls correlate with changes in brain glutamate and N-acetylaspartate (NAA) and regional brain volumes. Eleven antipsychotic-naive FES and seven age- and gender-matched controls underwent 3-Tesla magnetic resonance imaging scanning. Glutamate plus glutamine (Glx) and NAA levels were measured in the anterior cingulate (AC) and the left thalamus (LT). Hallmarks of apoptotic susceptibility (caspase-3-baseline activity, phosphatidylserine externalization and chromatin condensation) were measured in fibroblast cultures obtained from skin biopsies after inducing apoptosis with staurosporine (STS) at doses of 0.25 and 0.5 μM. Apoptotic biomarkers were correlated to brain metabolites and regional brain volume. FES and controls showed a negative correlation in the AC between Glx levels and percentages of cells with condensed chromatin (CC) after both apoptosis inductions (STS 0.5 μM: r = − 0.90; P = 0.001; STS 0.25 μM: r = − 0.73; P = 0.003), and between NAA and cells with CC (STS 0.5 μM induction r = − 0.76; P = 0.002; STS 0.25 μM r = − 0.62; P = 0.01). In addition, we found a negative correlation between percentages of cells with CC and regional brain volume in the right supratemporal cortex and post-central region (STS 0.25 and 0.5 μM; Po0.05 family-wise error corrected (FWEc)). We reveal for the first time that peripheral markers of apoptotic susceptibility may correlate with brain metabolites, Glx and NAA, and regional brain volume in FES and controls, which is consistent with the neuroprogressive theories around the onset of the schizophrenia illness.
机译:来自首发精神分裂症患者(FES)的培养成纤维细胞显示出对凋亡的敏感性增加,这可能与谷氨酸功能障碍和进行性神经解剖学改变有关。在这里,我们确定从FES和对照中培养的成纤维细胞获得的凋亡标记是否与脑谷氨酸和N-乙酰天冬氨酸(NAA)的变化以及区域脑容量相关。 11名未接受过抗精神病药物治疗的FES以及7名年龄和性别匹配的对照接受了3特斯拉磁共振成像扫描。在前扣带回(AC)和左丘脑(LT)中测量了谷氨酸加谷氨酰胺(Glx)和NAA的水平。在0.25和0.5μM剂量的星形孢菌素(STS)诱导细胞凋亡后,从皮肤活检组织获得的成纤维细胞培养物中测量了凋亡敏感性(caspase-3基线活性,磷脂酰丝氨酸外在化和染色质浓缩)的特征。凋亡生物标记物与脑代谢物和区域脑容量相关。 FES和对照组在两次凋亡诱导后,Glx水平与染色质浓缩(CC)细胞百分比之间的交流呈负相关(STS 0.5μM:r = − 0.90; P = 0.001; STS 0.25μM:r = − 0.73; P = 0.003),并且在NAA和带有CC的细胞之间(STS 0.5μM诱导r =-0.76; P = 0.002; STS 0.25μMr =-0.62; P = 0.01)。此外,我们发现右上肱皮层和中央后区域中具有CC的细胞百分比与区域脑容量之间呈负相关(STS 0.25和0.5μM; Po0.05家庭方式错误校正(FWEc))。我们首次揭示了凋亡易感性的外周标志物可能与FES和对照中的脑代谢物,Glx和NAA以及局部脑容量相关,这与精神分裂症疾病发作前后的神经进行性理论一致。

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