Immune Regulatory Neural Stem/Precursor Cells Protect from Central Nervous System Autoimmunity by Restraining Dendritic Cell Function

被引:98
作者
Pluchino, Stefano
Zanotti, Lucia
Brambilla, Elena
Rovere-Querini, Patrizia
Capobianco, Annalisa
Alfaro-Cervello, Clara
Salani, Giuliana
Cossetti, Chiara
Borsellino, Giovanna
Battistini, Luca
Ponzoni, Maurilio
Doglioni, Claudio
Manuel Garcia-Verdugo, Jose
Comi, Giancarlo
Manfredi, Angelo A.
Martino, Gianvito
机构
[1] Neuroimmunology Unit, San Raffaele Scientific Institute, Università Vita-Salute, Milan
[2] DIBIT II, Institute of Experimental Neurology (InSpe), Università Vita-Salute, Milan
[3] Department of Neurology and Neurophysiology, San Raffaele Scientific Institute, Università Vita-Salute, Milan
[4] Clinical Immunology Unit, San Raffaele Scientific Institute, Università Vita-Salute, Milan
[5] Pathology Unit, San Raffaele Scientific Institute, Università Vita-Salute, Milan
[6] Neuroimmunology Unit, European Brain Research Institute, Santa Lucia Foundation, Rome
[7] Department Comparative Neurobiology, Instituto Cavanilles, University of Valencia, Valencia
[8] Department of Cellular Therapy, Centro de Investigación Príncipe Felipe, Valencia
[9] Instituto de Ciências Biomedicas Abel Salazar (ICBAS), Universidade do Porto, Porto
关键词
MESENCHYMAL STEM-CELLS; SONIC HEDGEHOG; IN-VITRO; T-CELLS; TRANSPLANTATION; PROLIFERATION; MICE; ENCEPHALOMYELITIS; DIFFERENTIATION; PRECURSORS;
D O I
10.1371/journal.pone.0005959
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: The systemic injection of neural stem/precursor cells (NPCs) provides remarkable amelioration of the clinicopathological features of experimental autoimmune encephalomyelitis (EAE). This is dependent on the capacity of transplanted NPCs to engage concurrent mechanisms of action within specific microenvironments in vivo. Among a wide range of therapeutic actions alternative to cell replacement, neuroprotective and immune modulatory capacities of transplanted NPCs have been described. However, lacking is a detailed understanding of the mechanisms by which NPCs exert their therapeutic plasticity. This study was designed to identify the first candidate that exemplifies and sustains the immune modulatory capacity of transplanted NPCs. Methodology/Principal Findings: To achieve the exclusive targeting of the peripheral immune system, SJL mice with PLP-induced EAE were injected subcutaneously with NPCs and the treatment commenced prior to disease onset. NPC-injected EAE mice showed significant clinical improvement, as compared to controls. Exogenous NPCs lacking the expression of major neural antigens were reliably (and for long-term) found at the level of draining lymph nodes, while establishing sophisticated anatomical interactions with lymph node cells. Importantly, injected NPCs were never found in organs other than lymph nodes, including the brain and the spinal cord. Draining lymph nodes from transplanted mice showed focal upregulation of major developmental stem cell regulators, such as BMP-4, Noggin and Sonic hedgehog. In lymph nodes, injected NPCs hampered the activation of myeloid dendritic cells (DCs) and steadily restrained the expansion of antigen-specific encephalitogenic T cells. Both ex vivo and in vitro experiments identified a novel highly NPC-specific-BMP-4-dependent-mechanism hindering the DC maturation. Conclusion/Significance: The study described herein, identifies the first member of the TGF beta/BMP family of stem cell regulators as a novel tolerogenic factor released by NPCs. Full exploitation of this pathway as an efficient tool for vaccination therapy in autoimmune inflammatory conditions is underway.
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页数:15
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