Gil Castro
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Associate Professor and Principal Investigator
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Immunological basis of failure in controlling Mycobacterium tuberculosis infection
Open Date: 2018-07-01
Close Date: 2021-06-01
Grant: Close
Immunological basis of failure in controlling Mycobacterium tuberculosis infection
Open Date: 2018-06-01
Close Date: 2021-06-01
Grant: Close
Deregulation of hematopoiesis by Interleukin-10 over-expression: implications for the development of hematological disorders
Open Date: 2014-03-01
Close Date: 2017-01-01
Grant: Close
BCG vaccination: a tool to identify new correlates of protection and pathology in experimental infection with Mycobacterium tuberculosis
Open Date: 2010-01-01
Close Date: 2013-01-01
Grant: Close
Reconstitution and Homeostasis of the Immune System Following HIV-Infection
Open Date: 2009-01-01
Close Date: 2012-01-01
Articles (16)
Highly tailorable gellan gum nanoparticles as a platform for the development of T cell activator systems
Background T cell priming has been shown to be a powerful immunotherapeutic approach for cancer treatment in terms of efficacy and relatively weak side effects. Systems that optimize the stimulation of T cells to improve therapeutic efficacy are therefore in constant demand. A way to achieve this is through artificial antigen presenting cells that are complexes between vehicles and key molecules that target relevant T cell subpopulations, eliciting antigen-specific T cell priming. In such T cell activator systems, the vehicles chosen to deliver and present the key molecules to the targeted cell populations are of extreme importance. In this work, a new platform for the creation of T cell activator systems based on highly tailorable nanoparticles made from the natural polymer gellan gum (GG) was developed and validated. Methods GG nanoparticles were produced by a water in oil emulsion procedure, and characterized by dynamic light scattering, high resolution scanning electronic microscopy and water uptake. Their biocompatibility with cultured cells was assessed by a metabolic activity assay. Surface functionalization was performed with anti-CD3/CD28 antibodies via EDC/NHS or NeutrAvidin/Biotin linkage. Functionalized particles were tested for their capacity to stimulate CD4 + T cells and trigger T cell cytotoxic responses. Results Nanoparticles were approximately 150 nm in size, with a stable structure and no detectable cytotoxicity. Water uptake originated a weight gain of up to 3200%. The functional antibodies did efficiently bind to the nanoparticles, as confirmed by SDS-PAGE, which then targeted the desired CD4 + populations, as confirmed by confocal microscopy. The developed system presented a more sustained T cell activation over time when compared to commercial alternatives. Concurrently, the expression of higher levels of key cytotoxic pathway molecules granzyme B/perforin was induced, suggesting a greater cytotoxic potential for future application in adoptive cancer therapy. Conclusions Our results show that GG nanoparticles were successfully used as a highly tailorable T cell activator system platform capable of T cell expansion and re-education.
Year:
2022
Collaborators (17)
Ricardo Silvestre
University of Minho
Ricardo Perez-Martin
Profesor de Investigacion
Consejo Superior de Investigaciones Cientificas
Jorge Pedrosa
-
Maurice N. Collins
University of Limerick
Albert Sotto
Nîmes University Hospital
Jorge Vieira
Principal Researcher - Head of the Molecular Evolution group
International Institute of Molecular and Cell Biology
Sandra F. Martins
University of Minho
Manuel Vilanova
Professor Catedrático
University of Porto
Jérôme Estaquier
Laval University
Margarida Correia-Neves
Invited Professor
Karolinska Institutet
Pedro Rodrigues
Full Professor
University of Porto
Fernando Rodrigues
University of Minho
Fabrizio Mammano
-
Alexandra Tauzin
INSERM
Fernanda Zamboni
Assistant Professor
University of Limerick
Rogério P. Pirraco
University of Minho
adhemar longatto-filho
Professor
University of Minho

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