Mononuclear phagocytes in the central nervous system

Neuroscience ◽  
1979 ◽  
Vol 4 (12) ◽  
pp. 2073-2074
Author(s):  
M.M. Esiri
2004 ◽  
Vol 13 (3) ◽  
pp. 205-207 ◽  
Author(s):  
Rosaria Alba Merendino ◽  
Giuseppe Di Pasquale ◽  
Filippo De Luca ◽  
Laura Di Pasquale ◽  
Edoardo Ferlazzo ◽  
...  

MODERATE-severe depression (MSD) is linked to overexpression of proinflammatory cytokines and chemokines. Fractalkine (FKN) and macrophage inflammatory protein-1 alpha (MIP-1α) are, respectively, members of CX3C and C-C chemokines, and both are involved in recruiting and activating mononuclear phagocytes in the central nervous system. We analysed the presence of FKN and MIP-1α in sera of untreated MSD patients and healthy donors. High FKN levels were observed in all MSD patients as compared with values only detectable in 26% of healthy donors. MIP-1α was measurable in 20% of patients, while no healthy donors showed detectable chemokine levels. In conclusion, we describe a previously unknown involvement of FKN in the pathogenesis of MSD, suggesting that FKN may represent a target for a specific immune therapy of this disease.


2001 ◽  
Vol 159 (5) ◽  
pp. 1701-1710 ◽  
Author(s):  
Corinna Trebst ◽  
Torben Lykke Sørensen ◽  
Pia Kivisäkk ◽  
Martha K. Cathcart ◽  
Joseph Hesselgesser ◽  
...  

2021 ◽  
Vol 11 ◽  
Author(s):  
Daniela C. Ivan ◽  
Sabrina Walthert ◽  
Kristina Berve ◽  
Jasmin Steudler ◽  
Giuseppe Locatelli

The central nervous system (CNS) parenchyma is enclosed and protected by a multilayered system of cellular and acellular barriers, functionally separating glia and neurons from peripheral circulation and blood-borne immune cells. Populating these borders as dynamic observers, CNS-resident macrophages contribute to organ homeostasis. Upon autoimmune, traumatic or neurodegenerative inflammation, these phagocytes start playing additional roles as immune regulators contributing to disease evolution. At the same time, pathological CNS conditions drive the migration and recruitment of blood-borne monocyte-derived cells across distinct local gateways. This invasion process drastically increases border complexity and can lead to parenchymal infiltration of blood-borne phagocytes playing a direct role both in damage and in tissue repair. While recent studies and technical advancements have highlighted the extreme heterogeneity of these resident and CNS-invading cells, both the compartment-specific mechanism of invasion and the functional specification of intruding and resident cells remain unclear. This review illustrates the complexity of mononuclear phagocytes at CNS interfaces, indicating how further studies of CNS border dynamics are crucially needed to shed light on local and systemic regulation of CNS functions and dysfunctions.


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