Investigação, Desenvolvimento e Inovação · Em Execução

Dissecar o papel das células imunes na radioresistência dos tumores retais

I3S - INSTITUTO DE INVESTIGAÇÃO E INOVAÇÃO EM SAÚDE DA UNIVERSIDADE DO PORTO - ASSOCIAÇÃO

Fundo aprovado
212 058,00 €
Fundo executado
6 575,08 €
Fundo pago
26 465,86 €

Esta ficha organiza os campos que o Portugal 2030 publica sobre a operação: financiamento aprovado, execução administrativa, enquadramento e território. O mérito da candidatura e os resultados no terreno não constam desta fonte.

COMPETE2030-FEDER-00707100

O QUE FOI APRESENTADO

Finalidade da operação

Despite the plethora of existing rectal cancer (RC) treatment regimens, >50% of the patients present advanced disease at diagnosis and rely, at least once, on radiotherapy (RT) to downstage tumor and improve locoregional control. However, 20-40% of tumors exhibit or DEVELOP RESISTANCE to RT, resulting in high relapse rates and mortality [5,6]. RESISTANCE emerges from a previous FCT-funded exploratory project (READOUT) that started to dissect RC radioresistance using immunospheroids. Under the scope of the MISpheroID consortium, we evidence that these 3D cultures, gathering cancer and immune cells, are excellent biomimetic models for radioresistance studies [7](PR5). Our preliminary results unveiled that immune cells impair RT-induced cell death, sustaining proliferation and orchestrating…

Ler a descrição publicada na íntegra

Despite the plethora of existing rectal cancer (RC) treatment regimens, >50% of the patients present advanced disease at diagnosis and rely, at least once, on radiotherapy (RT) to downstage tumor and improve locoregional control. However, 20-40% of tumors exhibit or DEVELOP RESISTANCE to RT, resulting in high relapse rates and mortality [5,6]. RESISTANCE emerges from a previous FCT-funded exploratory project (READOUT) that started to dissect RC radioresistance using immunospheroids. Under the scope of the MISpheroID consortium, we evidence that these 3D cultures, gathering cancer and immune cells, are excellent biomimetic models for radioresistance studies [7](PR5). Our preliminary results unveiled that immune cells impair RT-induced cell death, sustaining proliferation and orchestrating alterations on iron and lipid metabolic pathways, increasing RC resistance to therapy (PR6,7). Interestingly, we have also reported that the combination of immunomodulatory nanoparticles with RT reeducates murine macrophages and T cells towards a pro-inflammatory response, reducing breast cancer primary tumor growth and lung metastases [8](PR4). Building up on these findings, our HYPOTHESIS is that the immune landscape present at the TME may sustain RADIORESISTANCE mechanisms that impair RT-mediated cell death and support cancer cell survival and immune escape. RESISTANCE overarching goals are to unravel the role of immune cells on RC radioresistance, dissecting the associated MECHANISMS, and identifying novel prognostic BIOMARKERS and potential targets for IMMUNOMODULATORY THERAPIES. This venture profits from emergent single cell resolution and immune mapping techniques to exploit clinical cohorts, comprising tumors exclusively subjected to neoadjuvant short-course radiotherapy (nSCRT), to unveil RC immune-associated RADIORESISTANCE SIGNATURE. This approach will mitigate potential confounding effects caused by other therapies, facilitating a focused comparison between RT responders and non-responders. To tackle this, RESISTANCE embraces four SPECIFIC AIMS to be addressed through interconnected Tasks: 1) Identification and mapping the immune-associated radioresistance signature on a retrospective RC cohort 2) Infer the predictive value of the identified radioresistance signature in the plasma of a prospective RC cohort 3) Dissect the molecular mechanisms underlying immune cells-mediated radioresistance, using 3D biomimetic in vitro models 4) Sensitize tumors to RT through modulation of the radioresistance pathways in an orthotopic mouse model and in human tumor explants Our project will unveil the molecular and IMMUNE LANDSCAPE of radioresistant tumors, decoding the role of immune cells on cancer RADIORESISTANCE and uncovering novel targets for pharmacological intervention. Liquid biopsies from RT-resistant RC patients will be analyzed to infer the relevance of the identified molecules as potential BIOMARKERS for patient stratification at diagnosis. Human 3D biomimetic models will serve as a screening platform for pharmacological inhibitors and assist in dissecting immune-mediated radioresistance mechanisms. Using murine models and patients tumor explants, the most efficient inhibitors that, in combination with RT sensitize tumors, impairing growth and metastases, will be revealed. A PRE-CLINICAL PROOF-OF-CONCEPT that modulation of IMMUNE-MEDIATED RADIORESISTANCE is PARAMOUNT to improve RC patients treatment and survival will be provided

PROGRAMA E OBJETIVOS

Como a operação está enquadrada

Programa
Programa Inovação e Transição Digital
Fundo
Fundo Europeu de Desenvolvimento Regional
Objetivo estratégico
+ Inteligente
Objetivo específico
Reforçar a investigação, inovação e adoção de tecnologias avançadas.
Área temática
Investigação, Desenvolvimento e Inovação
Atividade económica
Outra investigação e desenvolvimento das ciências físicas e naturais
Modalidade
Subvenção
Taxa de cofinanciamento
85%

ONDE

Distribuição territorial publicada

PortoÁrea Metropolitana do Porto · Norte
100% da localização

Localização observada no ficheiro de 31 de agosto de 2026.

QUANDO

Calendário publicado

Início previsto
16 de junho de 2025
Início efetivo
16 de julho de 2025
Conclusão prevista
14 de junho de 2028
Conclusão efetiva
Não indicada

PROVENIÊNCIA

Fonte oficial e datas de corte

Operação e valores: 31 de agosto de 2026. Localização: 31 de agosto de 2026.

Consultar o portal oficial Portugal 2030 ↗Capturas validadas por SHA-256; fonte verificada em 21 de setembro de 2026.
Dissecar o papel das células imunes na radioresistência dos tumores retais | Impacto Público