Rodrigo Pacheco
Principal Investigator
Neuroimmunology Lab
Dr. Rodrigo Pacheco earned his Biochemistry degree from Pontificia Universidad Católica de Chile in 2001, receiving top honors in his class. His thesis focused on the mechanism of action of urushiol allergens. He later pursued a PhD in Molecular Neurobiology at Universitat de Barcelona, where he studied how glutamate and adenosine deaminases modulate human dendritic cells and CD4+ T-cell function. His thesis was recognized as high-impact research by the university, and he earned his doctorate in 2006.
Upon returning to Chile, Dr. Pacheco completed postdoctoral training at Pontificia Universidad Católica de Chile, investigating the role of Fc-gamma receptors in dendritic cells, particularly in autoimmune and infectious disease contexts.
In 2008, he established the Laboratory of Neuroimmunology at Fundación Ciencia & Vida. His research focuses on understanding how dopamine regulates neuro-immune interactions. His team explores the role of dopamine in autoimmune diseases, cancer, neurodegenerative disorders, and behavior, aiming to reveal novel therapeutic pathways. Through his interdisciplinary approach, Dr. Pacheco has become a key figure in advancing neuroimmunology in Chile.
Grants
Collaborations
Selected Publications
International Journal of Molecular Sciences
The heteromeric dopamine receptor D2:D3 controls the gut recruitment and suppressive activity of regulatory T cells
Jacob Mora, Iu Raïch, Valentina Ugalde, Gemma Navarro, Carolina Prado, Pía M. Vidal, Pedro Leal, Alexandra Espinoza, Moting Liu, Rinse Weersma, Ranko Gacesa, Marcela A. Hermoso, Rafael Franco, Rodrigo Pacheco
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Jacob Mora, Iu Raïch, Valentina Ugalde, Gemma Navarro, Carolina Prado, Pía M. Vidal, Pedro Leal, Alexandra Espinoza, Moting Liu, Rinse Weersma, Ranko Gacesa, Marcela A. Hermoso, Rafael Franco, Rodrigo Pacheco
Brain
The immune system in Parkinson’s disease: what we know so far
Cintia Roodveldt, Liliana Bernardino, Ozgur Oztop-Cakmak, Milorad Dragic, Kari Espolin Fladmark, Sibel Ertan, Aktas Busra, Carlos Pita, Lucia Ciglar, Gaetan Garraux, Caroline Williams-Gray, Rodrigo Pacheco*and Marina Romero-Ramos.
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Cintia Roodveldt, Liliana Bernardino, Ozgur Oztop-Cakmak, Milorad Dragic, Kari Espolin Fladmark, Sibel Ertan, Aktas Busra, Carlos Pita, Lucia Ciglar, Gaetan Garraux, Caroline Williams-Gray, Rodrigo Pacheco*and Marina Romero-Ramos.
Pharmacological Reviews
Regulation of pain perception by microbiota in Parkinson’s Disease
Zulmary Manjarres, Margarita Calvo, Rodrigo Pacheco

Zulmary Manjarres, Margarita Calvo, Rodrigo Pacheco
Journal of Neuroinflammation
GPR43 stimulation on TCRαβ+ intraepithelial colonic lymphocytes inhibits the recruitment of encephalitogenic T-cells into the central nervous system and attenuates the development of autoimmunity
Carolina Prado, Alexandra Espinoza, J Eduardo Martínez-Hernández, Joseph Petrosino, Erick Riquelme, Alberto JM Martin, Rodrigo Pacheco
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Carolina Prado, Alexandra Espinoza, J Eduardo Martínez-Hernández, Joseph Petrosino, Erick Riquelme, Alberto JM Martin, Rodrigo Pacheco
Selected Publications
International Journal of Molecular Sciences
The heteromeric dopamine receptor D2:D3 controls the gut recruitment and suppressive activity of regulatory T cells
%201_57_24%E2%80%AFp_m_.png)
Jacob Mora, Iu Raïch, Valentina Ugalde, Gemma Navarro, Carolina Prado, Pía M. Vidal, Pedro Leal, Alexandra Espinoza, Moting Liu, Rinse Weersma, Ranko Gacesa, Marcela A. Hermoso, Rafael Franco, Rodrigo Pacheco
Brain
The immune system in Parkinson’s disease: what we know so far
%201_46_01%E2%80%AFp_m_.png)
Cintia Roodveldt, Liliana Bernardino, Ozgur Oztop-Cakmak, Milorad Dragic, Kari Espolin Fladmark, Sibel Ertan, Aktas Busra, Carlos Pita, Lucia Ciglar, Gaetan Garraux, Caroline Williams-Gray, Rodrigo Pacheco*and Marina Romero-Ramos.
Pharmacological Reviews
Regulation of pain perception by microbiota in Parkinson’s Disease

Zulmary Manjarres, Margarita Calvo, Rodrigo Pacheco
Journal of Neuroinflammation
GPR43 stimulation on TCRαβ+ intraepithelial colonic lymphocytes inhibits the recruitment of encephalitogenic T-cells into the central nervous system and attenuates the development of autoimmunity
%202_01_28%E2%80%AFp_m_.png)
Carolina Prado, Alexandra Espinoza, J Eduardo Martínez-Hernández, Joseph Petrosino, Erick Riquelme, Alberto JM Martin, Rodrigo Pacheco


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