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A bone-based 3D scaffold as an in-vitro model of microenvironment-DLBCL lymphoma cell interaction.
Ceccato, Jessica; Piazza, Maria; Pizzi, Marco; Manni, Sabrina; Piazza, Francesco; Caputo, Ilaria; Cinetto, Francesco; Pisoni, Lorena; Trojan, Diletta; Scarpa, Riccardo; Zambello, Renato; Tos, Angelo Paolo Dei; Trentin, Livio; Semenzato, Gianpietro; Vianello, Fabrizio.
Affiliation
  • Ceccato J; Hematology Unit, Department of Medicine, University of Padua, Padua, Italy.
  • Piazza M; Laboratory of Myeloma and Lymphoma Pathobiology, Veneto Institute of Molecular Medicine (VIMM) and Foundation for Advanced Biomedical Research (FABR), Padua, Italy.
  • Pizzi M; Hematology Unit, Department of Medicine, University of Padua, Padua, Italy.
  • Manni S; Surgical Pathology and Cytopathology Unit, Department of Medicine-DIMED, University of Padua, Padua, Italy.
  • Piazza F; Hematology Unit, Department of Medicine, University of Padua, Padua, Italy.
  • Caputo I; Laboratory of Myeloma and Lymphoma Pathobiology, Veneto Institute of Molecular Medicine (VIMM) and Foundation for Advanced Biomedical Research (FABR), Padua, Italy.
  • Cinetto F; Hematology Unit, Department of Medicine, University of Padua, Padua, Italy.
  • Pisoni L; Laboratory of Myeloma and Lymphoma Pathobiology, Veneto Institute of Molecular Medicine (VIMM) and Foundation for Advanced Biomedical Research (FABR), Padua, Italy.
  • Trojan D; Hematology Unit, Department of Medicine, University of Padua, Padua, Italy.
  • Scarpa R; Internal Medicine and Allergology and Clinical Immunology Units, Treviso Ca' Foncello Hospital, Treviso, Italy.
  • Zambello R; Hematology Unit, Department of Medicine, University of Padua, Padua, Italy.
  • Tos APD; Treviso Tissue Bank Foundation, Treviso, Italy.
  • Trentin L; Internal Medicine and Allergology and Clinical Immunology Units, Treviso Ca' Foncello Hospital, Treviso, Italy.
  • Semenzato G; Hematology Unit, Department of Medicine, University of Padua, Padua, Italy.
  • Vianello F; Laboratory of Myeloma and Lymphoma Pathobiology, Veneto Institute of Molecular Medicine (VIMM) and Foundation for Advanced Biomedical Research (FABR), Padua, Italy.
Front Oncol ; 12: 947823, 2022.
Article in En | MEDLINE | ID: mdl-36330473
ABSTRACT
About 30% of patients with diffuse large B-cell lymphoma (DLBCL) relapse or exhibit refractory disease (r/r DLBCL) after first-line immunochemotherapy. Bone marrow (BM) involvement confers a dismal prognosis at diagnosis, likely due to the interaction between neoplastic cells and a complex tumor microenvironment (TME). Therefore, we developed a 3D in-vitro model from human decellularized femoral bone fragments aiming to study the role of mesenchymal stromal cells (MSC) and the extracellular matrix (ECM) in the adaptation, growth, and drug resistance of DLBCL lymphoma cells. The 3D spatial configuration of the model was studied by histological analysis and confocal and multiphoton microscopy which allowed the 3D digital reproduction of the structure. We proved that MSC adapt and expand in the 3D scaffold generating niches in which also other cell types may grow. DLBCL cell lines adhered and grew in the 3D scaffold, both in the presence and absence of MSC, suggesting an active ECM-lymphocyte interaction. We found that the germinal center B-cell (GCB)-derived OCI-LY18 cells were more resistant to doxorubicin-induced apoptosis when growing in the decellularized 3D bone scaffold compared to 2D cultures (49.9% +/- 7.7% Annexin V+ cells in 2D condition compared to 30.7% + 9.2% Annexin V+ 3D adherent cells in the ECM model), thus suggesting a protective role of ECM. The coexistence of MSC in the 3D scaffold did not significantly affect doxorubicin-induced apoptosis of adherent OCI-LY18 cells (27.6% +/- 7.3% Annexin V+ 3D adherent cells in the ECM/MSC model after doxorubicin treatment). On the contrary, ECM did not protect the activated B-cell (ABC)-derived NU-DUL-1 lymphoma cell line from doxorubicin-induced apoptosis but protection was observed when MSC were growing in the bone scaffold (40.6% +/- 5.7% vs. 62.1% +/- 5.3% Annexin V+ 3D adherent cells vs. 2D condition). These data suggest that the interaction of lymphoma cells with the microenvironment may differ according to the DLBCL subtype and that 2D systems may fail to uncover this behavior. The 3D model we proposed may be improved with other cell types or translated to the study of other pathologies with the final goal to provide a tool for patient-specific treatment development.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Front Oncol Year: 2022 Document type: Article Affiliation country: Italia

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Front Oncol Year: 2022 Document type: Article Affiliation country: Italia