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Taiga Nishihori

Publications and source records attributed to Taiga Nishihori.

2 recordsLinked to original sources

Integrated Genomic and Epigenomic Analysis Reveals Epigenetic Plasticity in Disease Progression and Multidrug Resistance in Multiple Myeloma.

UNLABELLED: Multiple myeloma is marked by recurrent cytogenetic abnormalities and mutations that accumulate as the disease progresses. In this study, we sought to elucidate the transitions driving tumorigenesis and therapy resistance in multiple myeloma using a unique cohort of nearly 900 patients spanning premalignant to late-stage refractory multiple myeloma, comprehensively characterized at molecular and clinical levels. Waves of epigenetic dysregulation drove these critical transitions. In this paradigm, genomic and cytogenetic events unlocked epigenetic plasticity, reshaping multiple myeloma cell biology to evade tumor microenvironment constraints and therapeutic pressures. Functional perturbation studies in an isogenic proteasome inhibitor-resistant cell line model demonstrated enhanced reliance on transcriptional cofactors, supporting a mechanistic link between chromatin plasticity and therapy adaptation. Collectively, these findings support a unifying framework in which genomic heterogeneity unlocks gene regulatory plasticity, enabling plasma cells (PC) to evade microenvironmental constraints and therapeutic pressure. These results provide a mechanistic explanation for sequential relapse without new genomic alterations and nominate epigenetic plasticity-mediated PC adaptation as a therapeutic vulnerability in the heterogeneous genetic background of multiple myeloma. SIGNIFICANCE: Assembly and analysis of a multiple myeloma cohort spanning the continuum from premalignant to late relapse that integrates bulk transcriptomics with single-cell multiomic data provides insights into disease progression and epigenetic plasticity.

Multiple Myeloma

Prolonged Cytopenia After Idecabtagene Vicleucel for Multiple Myeloma is Associated with Poor Overall Survival.

Cytopenias are well-recognized toxicities of idecabtagene vicleucel (ide-cel), a chimeric antigen receptor T cell (CAR-T) therapy approved for the treatment of relapsed, refractory multiple myeloma (RRMM). However, little is known of prognostic implications of cytopenias that persist 30 to 100 days after CAR-T infusion. We report the duration, incidence, and impact on outcomes of post-CAR-T cytopenias at Day 30 and Day 100, defined as an absolute neutrophil count of <500 cells/mm3 and/or platelet count <20 &#xd7; 109 cells/L, per the recent definitions of immune effector cell-associated hematotoxicity for neutropenia (N-ICAHT) and thrombocytopenia (T-ICAHT). Using observational data from the Center for International Blood and Marrow Transplant Research, we identified 821 patients treated during 2021 to 2023. The cumulative incidence of cytopenias at Day 30 was 25% and at Day 100 was 2%. Patients with Day 30 cytopenias had inferior progression-free survival (PFS) (39% versus 45%, P = .01) and overall survival (OS) at 12 months (57% versus 76%, P < .01). While there was no significant difference in PFS in patients who had Day 100 cytopenias (42% versus 53%, P = .12), compared to those who did not, patients with Day 100 cytopenias had significantly inferior OS at 12 months (55% versus 82%, P < .01). High (&#x2265;2) chimeric antigen receptor cell-mediated hematotoxicity score was associated with cytopenias at Day 30 (hazard ratio 5.26, P < .001). Cytopenias at Day 30 after ide-cel were associated with inferior PFS and OS. In addition, cytopenias at Day 100 after ide-cel are rare and are associated with inferior OS.

CAR-T