Duke Center for Neurodegeneration and Neurotherapeutics, Department of Pharmacology and Cancer Biology, Duke University, 3 Genome Court, Durham 27710, North Carolina, U.S.A.
Biochem Soc Trans. 2023 Apr 26;51(2):747-758. doi: 10.1042/BST20201091.
The accumulation of aggregated α-synuclein in susceptible neurons in the brain, together with robust activation of nearby myeloid cells, are pathological hallmarks of Parkinson's disease (PD). While microglia represent the dominant type of myeloid cell in the brain, recent genetic and whole-transcriptomic studies have implicated another type of myeloid cell, bone-marrow derived monocytes, in disease risk and progression. Monocytes in circulation harbor high concentrations of the PD-linked enzyme leucine-rich repeat kinase 2 (LRRK2) and respond to both intracellular and extracellular aggregated α-synuclein with a variety of strong pro-inflammatory responses. This review highlights recent findings from studies that functionally characterize monocytes in PD patients, monocytes that infiltrate into cerebrospinal fluid, and emerging analyses of whole myeloid cell populations in the PD-affected brain that include monocyte populations. Central controversies discussed include the relative contribution of monocytes acting in the periphery from those that might engraft in the brain to modify disease risk and progression. We conclude that further investigation into monocyte pathways and responses in PD, especially the discovery of additional markers, transcriptomic signatures, and functional classifications, that better distinguish monocyte lineages and responses in the brain from other types of myeloid cells may reveal points for therapeutic intervention, as well as a better understanding of ongoing inflammation associated with PD.
在大脑中易感神经元中聚集的α-突触核蛋白的积累,以及附近髓样细胞的强烈激活,是帕金森病 (PD) 的病理标志。虽然小胶质细胞是大脑中主要的髓样细胞类型,但最近的遗传和全转录组研究表明,另一种髓样细胞——骨髓来源的单核细胞,与疾病风险和进展有关。循环中的单核细胞含有高浓度的 PD 相关酶——富含亮氨酸重复激酶 2 (LRRK2),并对内源性和外源性聚集的α-突触核蛋白做出各种强烈的促炎反应。这篇综述强调了最近的研究发现,这些研究从功能上描述了 PD 患者中的单核细胞、浸润到脑脊液中的单核细胞,以及对包括单核细胞群体在内的受 PD 影响的大脑中的全髓样细胞群体的新兴分析。讨论的核心争议包括在外周发挥作用的单核细胞与可能在大脑中植入以改变疾病风险和进展的单核细胞的相对贡献。我们得出结论,进一步研究 PD 中的单核细胞途径和反应,特别是发现更多的标记物、转录组特征和功能分类,可以更好地区分大脑中的单核细胞谱系和反应与其他类型的髓样细胞,这可能为治疗干预提供依据,并更好地了解与 PD 相关的持续炎症。