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Rafa Blanco-Domínguez

@rafaelblancodom.bsky.social
107 followers 162 following 7 posts

Crafting an army of T cells 📍Gulbenkian Institute for Molecular Medicine (GIMM). Lisbon PT

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Reposted by Rafa Blanco-Domínguez
γδ T cell Forum @forum-gd.bsky.social · 01/06/2026
CXCR3 signaling promotes Delta One T cell recruitment and antitumor efficacy in colorectal cancer jitc.bmj.com/content/14/5...
jitc.bmj.com
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Reposted by Rafa Blanco-Domínguez
Payal Yokota @payalyokota.bsky.social · 13/06/2026
Beautiful new study about DOT cells by Rafa and Bruno regarding a CXCR3 signaling that promotes Delta One T cell (δ1) recruitment and antitumor efficacy in colorectal cancer 👇 @rafaelblancodom.bsky.social @bsilvasantos.bsky.social
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Reposted by Rafa Blanco-Domínguez
Journal of Experimental Medicine @jem.org · 04/06/2026
Regulatory T cells sabotage anti-tumor γδ T cells by creating IL-2–deficient environments. From @rafaelblancodom.bsky.social, @bsilvasantos.bsky.social, Sofia Mensurado and colleagues: rupress.org/jem/article/... 📘 Part of JEM #Cancer Collection: rupress.org/jem/collecti... #EACR2026
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Reposted by Rafa Blanco-Domínguez
Journal of Experimental Medicine @jem.org · 20/05/2026
Regulatory T cells sabotage anti-tumor γδ T cells by creating IL-2–deficient environments. New study from Rafael Blanco-Domínguez @rafaelblancodom.bsky.social, Bruno Silva-Santos @bsilvasantos.bsky.social, Sofia Mensurado and colleagues @gimminstitute.bsky.social: rupress.org/jem/article/...
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Reposted by Rafa Blanco-Domínguez
Waggoner Lab @labwaggoner.bsky.social · 14/05/2026
Regulatory T cells constrain IFNγ-producing γδ T cells by competing for IL-2, thereby limiting their expansion and anti-tumor function, which can be overcome by IL-2Rβγc agonism @jem.org @bsilvasantos.bsky.social rupress.org/jem/article/...
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Rafa Blanco-Domínguez @rafaelblancodom.bsky.social · 13/05/2026
Check our last piece of science out at J Exp Med - Anti-tumor gd T cells kept in check by Treg cells
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Reposted by Rafa Blanco-Domínguez
Rockefeller University Press @rupress.org · 13/05/2026
In @jem.org, @rafaelblancodom.bsky.social, @bsilvasantos.bsky.social, Mensurado et al. @gimminstitute.bsky.social demonstrate that regulatory T cells constrain IFNγ-producing γδ T cells by competing for IL-2, thereby limiting their expansion and anti-tumor function. rupress.org/jem/article/...
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Rafa Blanco-Domínguez @rafaelblancodom.bsky.social · 17/04/2026
A huge honor to have been selected for the EACR - Mark Foundation program. Looking forward to expand the network!
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Reposted by Rafa Blanco-Domínguez
Seth Coffelt @coffeltlab.bsky.social · 28/03/2026
📣We've summarized all there is to know about mouse #gdTcells in cancer and how they relate to humans @immunowolf.bsky.social #AbhiramMallu #NataliePhinney check it out here: authors.elsevier.com/sd/article/S...
authors.elsevier.com
ScienceDirect.com | Science, health and medical journals, full text articles and books.
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Reposted by Rafa Blanco-Domínguez
Journal of Experimental Medicine @jem.org · 18/02/2026
Follow the "DOTs": Vδ1⁺ γδ T cells as effectors of #cancer #immunotherapy. New Found in Translation article from Bruno Silva-Santos (@bsilvasantos.bsky.social), Sofia Mensurado, Rafael Blanco-Domínguez (@rafaelblancodom.bsky.social), and Adrian Hayday: rupress.org/jem/article/... #TumorImmunology
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Reposted by Rafa Blanco-Domínguez
Journal of Experimental Medicine @jem.org · 11/02/2026
In a new opinion article, Silva-Santos, @rafaelblancodom.bsky.social et al. @gimminstitute.bsky.social discuss the potential of Vδ1⁺ γδ T cells for #cancer #immunotherapy, focusing on delta one T (DOT) cells. rupress.org/jem/article/... #FoundInTranslation #TumorImmunology
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Reposted by Rafa Blanco-Domínguez
Rockefeller University Press @rupress.org · 11/02/2026
In a new opinion article @jem.org, Silva-Santos, @rafaelblancodom.bsky.social et al. @gimminstitute.bsky.social discuss the potential of Vδ1⁺ γδ T cells for #cancer #immunotherapy, focusing on delta one T (DOT) cells. rupress.org/jem/article/... #FoundInTranslation #TumorImmunology
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Reposted by Rafa Blanco-Domínguez
Ranit Kedmi @kedmiranit.bsky.social · 27/05/2025
Incredible! Over the past 2 months, 5 independent manuscripts — from @TheColonnaLab, Dan Littman, @gardnerlabucsf.bsky.social and @chrysothemisbrown.bsky.social , and our own (now in @nature.com, www.nature.com/articles/s41...), reports that the dietary pTreg program is initiated by RORγt⁺ APCs. /1
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Reposted by Rafa Blanco-Domínguez
Payal Yokota @payalyokota.bsky.social · 23/05/2025
The unparalleled @bsilvasantos.bsky.social concludes the amazing #gammadeltatoronto with the keynote talk. A moment I've waited for since may2022 inaugural #gdtcellclub talk. Super excited to see the wrap up for the unbelievable conf thanks to JC and the other fellow organizers. Let's go!!
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Rafa Blanco-Domínguez @rafaelblancodom.bsky.social · 29/04/2025
Celebrating the #DayofImmunology by spreading the word of DOT cell therapy against CRC at @i3suporto.bsky.social Thanks for the nice welcoming after an apocalypse-like day in this side of the globe
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Rafa Blanco-Domínguez @rafaelblancodom.bsky.social · 16/04/2025
Flying the flag for γδ T cell therapy in colorectal cancer! Our paper is out in @naturecancer.bsky.social: Potent, broad & HLA-independent cytotoxicity & tumor infiltration make DOT cells strong allogeneic candidates against CRC! rdcu.be/eh0ru @gimmfoundation.bsky.social #immunotherapy #gdTcells
rdcu.be
Dual modulation of cytotoxic and checkpoint receptors tunes the efficacy of adoptive Delta One T cell therapy against colorectal cancer
Nature Cancer - Silva-Santos and colleagues provide in vivo preclinical evidence supporting a therapeutic use of Delta One T cells to tackle colorectal cancer and propose activating natural killer...
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Reposted by Rafa Blanco-Domínguez
Trends in Immunology @cp-trendsimmuno.bsky.social · 25/03/2025
Diabetes can impact cellular immunity in solid tumors #immunology
dlvr.it
Diabetes can impact cellular immunity in solid tumors
Cancer is increasingly prevalent worldwide, often coexisting with type 2 diabetes (T2D). Recent breakthroughs reveal the immune system’s pivotal role in eliminating tumors and how the metabolic environment, such as glucose availability, affects antitumor immunity. Diabetes is known to dysregulate both innate and adaptive immune responses, while cancer creates an immunosuppressive microenvironment. We hypothesize that diabetes in cancer subjects may exacerbate this immunosuppression. Here, we examine the current understanding of the interplay between T2D and solid tumors and the associated challenges. Despite inconsistencies in data from mouse models and human tissues, evidence suggests that T2D can impact the antitumor response. Possible mechanisms may involve myeloid cells, inducing local immunosuppression and impairing antigen presentation, and certain lymphoid cell populations, exhibiting exhaustion.
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