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Inhibition of NF-κB DNA Binding Suppresses Myeloma Growth via Intracellular Redox and Tumor Microenvironment Modulation.
Bariana, Manpreet; Cassella, Elena; Rateshwar, Janice; Ouk, Samedy; Liou, Hsiou-Chi; Heller, Claudia; Colorado, Iriana; Feinman, Rena; Makhdoom, Ali; Siegel, David S; Heller, Glenn; Tuckett, Andrea; Mondello, Patrizia; Zakrzewski, Johannes L.
Afiliação
  • Bariana M; Center for Discovery and Innovation, Hackensack Meridian Health, Nutley, New Jersey.
  • Cassella E; Center for Discovery and Innovation, Hackensack Meridian Health, Nutley, New Jersey.
  • Rateshwar J; Center for Discovery and Innovation, Hackensack Meridian Health, Nutley, New Jersey.
  • Ouk S; ImmuneTarget Inc., San Diego, California.
  • Liou HC; ImmuneTarget Inc., San Diego, California.
  • Heller C; Hackensack Meridian School of Medicine, Nutley, New Jersey.
  • Colorado I; Center for Discovery and Innovation, Hackensack Meridian Health, Nutley, New Jersey.
  • Feinman R; Center for Discovery and Innovation, Hackensack Meridian Health, Nutley, New Jersey.
  • Makhdoom A; Hackensack Meridian School of Medicine, Nutley, New Jersey.
  • Siegel DS; Center for Discovery and Innovation, Hackensack Meridian Health, Nutley, New Jersey.
  • Heller G; Multiple Myeloma Division, John Theurer Cancer Center, Hackensack University Medical Center, Hackensack, New Jersey.
  • Tuckett A; Memorial Sloan Kettering Cancer Center, New York, New York.
  • Mondello P; Memorial Sloan Kettering Cancer Center, New York, New York.
  • Zakrzewski JL; Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, New York.
Mol Cancer Ther ; 21(12): 1798-1809, 2022 12 02.
Article em En | MEDLINE | ID: mdl-36190955
ABSTRACT
Multiple myeloma is a plasma cell malignancy that is still largely incurable, despite considerable progress in recent years. NF-κB is a well-established therapeutic target in multiple myeloma, but none of the currently available treatment options offer direct, specific pharmacologic targeting of NF-κB transcriptional activity. Thus, we designed a novel direct NF-κB inhibitor (IT848) as a drug candidate with strong potential for clinical translation and conducted comprehensive in vitro and in vivo mechanistic studies in multiple myeloma cell lines, primary multiple myeloma cells, xenograft models, and immunocompetent mouse models of multiple myeloma. Here, we show that IT848 inhibits NF-κB activity through inhibition of DNA binding of all five NF-κB subunits. IT848 treatment of multiple myeloma cell lines and patient samples inhibited proliferation and induced caspase-dependent and independent apoptosis. In addition to direct NF-κB inhibitory effects, IT848 treatment altered the redox homeostasis of multiple myeloma cells through depletion of the reduced glutathione pool, selectively inducing oxidative stress in multiple myeloma but not in healthy cells. Multiple myeloma xenograft studies confirmed the efficacy of IT848 as single agent and in combination with bortezomib. Furthermore, IT848 significantly improved survival when combined with programmed death protein 1 inhibition, and correlative immune studies revealed that this clinical benefit was associated with suppression of regulatory T-cell infiltration of the bone marrow microenvironment. In conclusion, IT848 is a potent direct NF-κB inhibitor and inducer of oxidative stress specifically in tumor cells, displaying significant activity against multiple myeloma cells in vitro and in vivo, both as monotherapy as well as in combination with bortezomib or immune checkpoint blockade.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Mieloma Múltiplo Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Revista: Mol Cancer Ther Assunto da revista: ANTINEOPLASICOS Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Mieloma Múltiplo Tipo de estudo: Prognostic_studies Limite: Animals / Humans Idioma: En Revista: Mol Cancer Ther Assunto da revista: ANTINEOPLASICOS Ano de publicação: 2022 Tipo de documento: Article