Infiltration by monocytes of the central nervous system and its role in multiple sclerosis: reflections on therapeutic strategies.
Guangyong ZhangQing YaoChubing LongPengcheng YiJiali SongLuojia WuWei WanXiuqin RaoYue LinGen WeiJun YingFuzhou HuaPublished in: Neural regeneration research (2024)
Mononuclear macrophage infiltration in the central nervous system is a prominent feature of neuroinflammation. Recent studies on the pathogenesis and progression of multiple sclerosis have highlighted the multiple roles of mononuclear macrophages in the neuroinflammatory process. Monocytes play a significant role in neuroinflammation, and managing neuroinflammation by manipulating peripheral monocytes stands out as an effective strategy for the treatment of multiple sclerosis, leading to improved patient outcomes. This review outlines the steps involved in the entry of myeloid monocytes into the central nervous system that are targets for effective intervention: the activation of bone marrow hematopoiesis, migration of monocytes in the blood, and penetration of the blood-brain barrier by monocytes. Finally, we summarize the different monocyte subpopulations and their effects on the central nervous system based on phenotypic differences. As activated microglia resemble monocyte-derived macrophages, it is important to accurately identify the role of monocyte-derived macrophages in disease. Depending on the roles played by monocyte-derived macrophages at different stages of the disease, several of these processes can be interrupted to limit neuroinflammation and improve patient prognosis. Here, we discuss possible strategies to target monocytes in neurological diseases, focusing on three key aspects of monocyte infiltration into the central nervous system, to provide new ideas for the treatment of neurodegenerative diseases.
Keyphrases
- dendritic cells
- peripheral blood
- multiple sclerosis
- bone marrow
- cerebrospinal fluid
- traumatic brain injury
- lipopolysaccharide induced
- immune response
- lps induced
- cognitive impairment
- endothelial cells
- cerebral ischemia
- randomized controlled trial
- inflammatory response
- adipose tissue
- deep learning
- blood brain barrier
- mesenchymal stem cells
- combination therapy
- replacement therapy