多发性硬化症和神经脊髓炎谱系障碍大脑功能改变的成像转录组学。

Yuna Li, Jun Sun, Zhizheng Zhuo, Min Guo, Yunyun Duan, Xiaolu Xu, Decai Tian, Kuncheng Li, Fuqing Zhou, Haiqing Li, Ningnannan Zhang, Xuemei Han, Fudong Shi, Yongmei Li, Xinghu Zhang, Yaou Liu
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引用次数: 0

摘要

背景和目的:驱动多发性硬化症和神经脊髓炎视神经频谱障碍(NMOSD)脑功能改变的潜在转录组特征尚不清楚:在209名多发性硬化症患者、90名抗喹波蛋白-4抗体(AQP4)+NMOSD患者、49名抗喹波蛋白-4+NMOSD患者和228名健康对照者中获得并比较了区域低频波动分数振幅(fALFF)值。我们使用偏最小二乘法(PLS)回归来确定与疾病相关的 fALFF 改变相关的基因转录组特征。我们通过富集分析探讨了已确定的 PLS 基因的生物过程和细胞类型特异性特征。还探讨了 PLS 基因与临床变量之间的相关性。利用前瞻性独立队列验证了脑部 fALFF 改变和已识别基因的可重复性:结果:多发性硬化症、AQP4+ NMOSD和AQP4- NMOSD在认知相关区域和深灰质中的fALFF降低,而NMOSD(包括AQP4+和AQP4-)在视觉区域的fALFF也降低。在所有疾病中,重叠的 PLS1- 基因(表明随着区域 fALFF 的降低,这些基因被过度表达)都富集在免疫反应的调控中,而 PLS1- 基因则特别富集在多发性硬化症的表观遗传学特征、AQP4+ NMOSD 的膜破坏和细胞粘附以及 AQP4- NMOSD 的白细胞活化中。在细胞类型转录特征方面,小胶质细胞和星形胶质细胞导致了 fALFF 的降低。与fALFF相关的PLS1-基因与多发性硬化症残疾状况扩展量表和各种疾病的病程直接相关:我们揭示了多发性硬化症、AQP4+ NMOSD 和 AQP4- NMOSD 的功能活动改变及其潜在的共享和特异基因转录特征。
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Imaging Transcriptomics of Brain Functional Alterations in MS and Neuromyelitis Optica Spectrum Disorder.

Background and purpose: The underlying transcriptomic signatures driving brain functional alterations in MS and neuromyelitis optica spectrum disorder (NMOSD) are still unclear.

Materials and methods: Regional fractional amplitude of low-frequency fluctuation (fALFF) values were obtained and compared among 209 patients with MS, 90 patients with antiaquaporin-4 antibody (AQP4)+ NMOSD, 49 with AQP4- NMOSD, and 228 healthy controls from a discovery cohort. We used partial least squares (PLS) regression to identify the gene transcriptomic signatures associated with disease-related fALFF alterations. The biologic process and cell type-specific signature of the identified PLS genes were explored by enrichment analysis. The correlation between PLS genes and clinical variables was explored. A prospective independent cohort was used to validate the brain fALFF alterations and the repeatability of identified genes.

Results: MS, AQP4+ NMOSD, and AQP4- NMOSD showed decreased fALFF in cognition-related regions and deep gray matter, while NMOSD (both AQP4+ and AQP4-) additionally demonstrated lower fALFF in the visual region. The overlapping PLS1- genes (indicating that the genes were overexpressed as regional fALFF decreased) were enriched in response to regulation of the immune response in all diseases, and the PLS1- genes were specifically enriched in the epigenetics profile in MS, membrane disruption and cell adhesion in AQP4+ NMOSD, and leukocyte activation in AQP4- NMOSD. For the cell type transcriptional signature, microglia and astrocytes accounted for the decreased fALFF. The fALFF-associated PLS1- genes directly correlated with Expanded Disability Status Scale of MS and disease duration across disorders.

Conclusions: We revealed the functional activity alterations and their underlying shared and specific gene transcriptional signatures in MS, AQP4+ NMOSD, and AQP4- NMOSD.

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