Grozdanov Veselin, Bliederhaeuser Corinna, Ruf Wolfgang P, Roth Valerie, Fundel-Clemens Kathrin, Zondler Lisa, Brenner David, Martin-Villalba Ana, Hengerer Bastian, Kassubek Jan, Ludolph Albert C, Weishaupt Jochen H, Danzer Karin M
Department of Neurology, Ulm University, Albert Einstein Allee 11, 89081, Ulm, Germany.
Acta Neuropathol. 2014 Nov;128(5):651-63. doi: 10.1007/s00401-014-1345-4. Epub 2014 Oct 5.
Despite extensive effort on studying inflammatory processes in the CNS of Parkinson's disease (PD) patients, implications of peripheral monocytes are still poorly understood. Here, we set out to obtain a comprehensive picture of circulating myeloid cells in PD patients. We applied a human primary monocyte culture system and flow cytometry-based techniques to determine the state of monocytes from PD patients during disease. We found that the classical monocytes are enriched in the blood of PD patients along with an increase in the monocyte-recruiting chemoattractant protein CCL2. Moreover, we found that monocytes from PD patients display a pathological hyperactivity in response to LPS stimulation that correlates with disease severity. Inflammatory pre-conditioning was also reflected on the transcriptome in PD monocytes using next-generation sequencing. Further, we identified the CD95/CD95L as a key regulator for the PD-associated alteration of circulating monocytes. Pharmacological neutralization of CD95L reverses the dysregulation of monocytic subpopulations in favor of non-classical monocytes. Our results suggest that PD monocytes are in an inflammatory predisposition responding with hyperactivation to a "second hit". These results provide the first direct evidence that circulating human peripheral blood monocytes are altered in terms of their function and composition in PD patients. This study provides insights into monocyte biology in PD and establishes a basis for future studies on peripheral inflammation.
尽管在研究帕金森病(PD)患者中枢神经系统中的炎症过程方面付出了巨大努力,但外周单核细胞的影响仍知之甚少。在此,我们着手全面了解PD患者循环髓样细胞的情况。我们应用人类原代单核细胞培养系统和基于流式细胞术的技术来确定疾病期间PD患者单核细胞的状态。我们发现,经典单核细胞在PD患者血液中富集,同时单核细胞趋化因子CCL2增加。此外,我们发现PD患者的单核细胞在受到脂多糖刺激时表现出病理性的过度活跃,且与疾病严重程度相关。使用下一代测序技术,炎症预处理也反映在PD单核细胞的转录组上。此外,我们确定CD95/CD95L是循环单核细胞与PD相关改变的关键调节因子。对CD95L进行药理学中和可逆转单核细胞亚群的失调,有利于非经典单核细胞。我们的结果表明,PD单核细胞处于炎症易感性状态,对“二次打击”会过度激活做出反应。这些结果提供了首个直接证据,表明PD患者循环中的人类外周血单核细胞在功能和组成方面发生了改变。这项研究为PD中的单核细胞生物学提供了见解,并为未来外周炎症研究奠定了基础。