Combinatorial treatment rescues tumour-microenvironment-mediated attenuation of MALT1 inhibitors in B-cell lymphomas.
Shivem B ShahChristopher R CarlsonKristine LaiZhe ZhongGrazia MarsicoKatherine M LeeNicole E Félix VélezElisabeth B AbelesMayar AllamThomas HuLauren D WalterKaren E MartinKhanjan GandhiScott D ButlerRishi PuriAngela L McCleary-WheelerWayne TamOlivier ElementoKatsuyoshi TakataChristian SteidlDavid W ScottLorena FontanHideki UenoBenjamin D CosgroveGiorgio InghiramiAndres J GarciaAhmet F CoskunJean L KoffAri MelnickAnkur SinghPublished in: Nature materials (2023)
Activated B-cell-like diffuse large B-cell lymphomas (ABC-DLBCLs) are characterized by constitutive activation of nuclear factor κB driven by the B-cell receptor (BCR) and Toll-like receptor (TLR) pathways. However, BCR-pathway-targeted therapies have limited impact on DLBCLs. Here we used >1,100 DLBCL patient samples to determine immune and extracellular matrix cues in the lymphoid tumour microenvironment (Ly-TME) and built representative synthetic-hydrogel-based B-cell-lymphoma organoids accordingly. We demonstrate that Ly-TME cellular and biophysical factors amplify the BCR-MYD88-TLR9 multiprotein supercomplex and induce cooperative signalling pathways in ABC-DLBCL cells, which reduce the efficacy of compounds targeting the BCR pathway members Bruton tyrosine kinase and mucosa-associated lymphoid tissue lymphoma translocation protein 1 (MALT1). Combinatorial inhibition of multiple aberrant signalling pathways induced higher antitumour efficacy in lymphoid organoids and implanted ABC-DLBCL patient tumours in vivo. Our studies define the complex crosstalk between malignant ABC-DLBCL cells and Ly-TME, and provide rational combinatorial therapies that rescue Ly-TME-mediated attenuation of treatment response to MALT1 inhibitors.
Keyphrases
- toll like receptor
- tyrosine kinase
- nuclear factor
- diffuse large b cell lymphoma
- inflammatory response
- acute lymphoblastic leukemia
- epidermal growth factor receptor
- extracellular matrix
- induced apoptosis
- immune response
- chronic myeloid leukemia
- cell cycle arrest
- stem cells
- case report
- drug delivery
- oxidative stress
- endoplasmic reticulum stress
- cell proliferation
- diabetic rats
- cross sectional
- small molecule
- combination therapy
- replacement therapy
- tissue engineering