Respiratory complex I regulates dendritic cell maturation in explant model of human tumor immune microenvironment
: Turpin, Rita; Liu, Ruixian; Munne, Pauliina M.; Peura, Aino; Rannikko, Jenna H.; Philips, Gino; Boeckx, Bram; Salmelin, Natasha; Hurskainen, Elina; Suleymanova, Ilida; Aung, July; Vuorinen, Elisa M.; Lehtinen, Laura; Mutka, Minna; Kovanen, Panu E.; Niinikoski, Laura; Meretoja, Tuomo J.; Mattson, Johanna; Mustjoki, Satu; Saavalainen, Päivi; Goga, Andrei; Lambrechts, Diether; Pouwels, Jeroen; Hollmén, Maija; Klefström, Juha
Publisher: BMJ Publishing Group
: 2024
Journal for Immunotherapy of Cancer
: Journal for immunotherapy of cancer
: J Immunother Cancer
: e008053
: 12
: 4
: 2051-1426
: 2051-1426
DOI: https://doi.org/10.1136/jitc-2023-008053
: https://jitc.bmj.com/content/12/4/e008053
: https://research.utu.fi/converis/portal/detail/Publication/387706288
Background: Combining cytotoxic chemotherapy or novel anticancer drugs with T-cell modulators holds great promise in treating advanced cancers. However, the response varies depending on the tumor immune microenvironment (TIME). Therefore, there is a clear need for pharmacologically tractable models of the TIME to dissect its influence on mono- and combination treatment response at the individual level.
Methods: Here we establish a patient-derived explant culture (PDEC) model of breast cancer, which retains the immune contexture of the primary tumor, recapitulating cytokine profiles and CD8+T cell cytotoxic activity.
Results: We explored the immunomodulatory action of a synthetic lethal BCL2 inhibitor venetoclax+metformin drug combination ex vivo, discovering metformin cannot overcome the lymphocyte-depleting action of venetoclax. Instead, metformin promotes dendritic cell maturation through inhibition of mitochondrial complex I, increasing their capacity to co-stimulate CD4+T cells and thus facilitating antitumor immunity.
Conclusions: Our results establish PDECs as a feasible model to identify immunomodulatory functions of anticancer drugs in the context of patient-specific TIME.