IRCCS Azienda Ospedaliero-Universitaria di Bologna
Bologna, 40138, Italy
Location status: Recruiting
NCT Number: NCT06874257
The combination of azacitidine and venetoclax is currently considered a therapeutic strategy innovative in AML through the addition of new compounds (triplet therapies), including inhibitors of the immune checkpoint inhibitors. Despite strong motivation, the clinical results of these approaches have been disappointing overall. The mechanisms leading to treatment failure of immunotherapies in AML are poorly elucidated as the effects on the AML microenvironment induced by basic azactidine and venetoclax therapy are largely unknown. In particular, the activity of the IDO1 enzyme as a potential mechanism of microenvironment resistance has been scarcely studied. The products of the IDO1-catalysed pathway activate the signalling of the AHR in mesenchymal stem cells and enhance their immunosuppressive effects, including the ability to reprogram the phenotype of M1/M2 macrophages. Furthermore, activation of the AHR by by products of the IDO1 pathway kinurenine-promotes tolerogenic dendritic cells and the generation of regulatory T cells. Based on this rationale, TALETE-2023 will aim to analyse the leukaemia immune microenvironment through multiomics (epigenomics transcriptomics, proteomics, metabolomics) and assess its contribution to the effect of the combination of azacitidine and venetoclax.
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Request Info18 year and older
All sexes
Observational
Bologna, 40138, Italy
Location status: Recruiting
Study Objective: To decipher the cellular composition of the bone marrow microenvironment before and after treatment with azacitidine and venetoclax. Objective 2: To functionally validate the cellular composition of the bone marrow environment and its contribution in response to treatment using an in vitro model. Objective 3: To evaluate the association between the cellular composition of the bone marrow environment and the achievement of clinical response. Objective 4: To investigate whether the cellular composition of the bone marrow environment and its contribution in response to treatment is associated with lower survival at 18 months. The primary endpoint will be the discovery of the mechanisms of the microenvironment of susceptibility to immunotherapy and their correlation with clinical response (achievement of CR or refractoriness) and survival data. More specifically:
The study is funded by 'TRANSCAN-3 ERA-NET: supported collaboration of national national and regional programmes in cancer research'; Joint Transnational Call 2021 (JTC 2021) co-funded by the European Commission/DG Research and Innovation: 'Next generation cancer immunotherapy: Targeting the tumour microenvironment'.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
For healthy donors:
Exclusion criteria
For patients:
For healthy donors:
None
Cell models, co-culture condition set-up and functional validation, Single-cell RNA sequencing and NGS, Metabolomics analysis, metabolomics validation and intracellular metabolomics analysis, Metabolic ImmunoProfiling and epigenetic profile, CyTOF immune and signaling profiling, Monocyte, macrophages and MSCs in vitro assays.
Time frame: At visit 1 (T1, diagnosis), and after the second cycle with azacitidine and venetoclax (T2, 2 months after treatment initiation)
Pan-tissue AHR signature levels will be measured by using iterative cycles of computational biology analyses and experimental validation (24). In particular, the levels of expression will be detected and a cutoff for differentially expressed genes will be set at log2 fold change.
Time frame: At visit 1 (T1), and after the second cycle with azacitidine and venetoclax (T2, 2 months after treatment initiation)
Expression level of IFN-y in AML cells (% of positive cells) and IDO1 in MSCs (mRNA levels) will be measured. IDO1 expression will be measured in relation to BM Treg infiltration (25).A cutoff for IFN-y and IDO1 expression will be set at 30% with fold-change>2 at T2 over T1.
Time frame: At visit 1 (T1), and after the second cycle with azacitidine and venetoclax (T2, 2 months after treatment initiation)
The effects of IDO1 inhibitor for the metabolic re activation of effector T cells will be measured via mTOR activation. We will measure the following parameters as percentages(%): 1) glucose dependence, 2) mitochondrial dependence 3) glycolytic capacity and 4) fatty acid and AA oxidation capacity to determine the metabolic status. The fold change between T2 and T1 of these 4 parameters will be evaluated.
Time frame: After the second cycle with azacitidine and venetoclax (T2, 2 months after treatement initiation )
≥100 x 109
Time frame: At follow-up (up to 12 months)
OS (%, months) and RFS (%, months)
Contact information is provided by the study sponsor or research team.
IRCCS Azienda Ospedaliero-Universitaria di Bologna
Other
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