Publications
15
Citations
55
Est. group size
~1
Recurring co-author estimate
Active years
12
Publishing since 2015
Typically publishes in teams of ~14 · 7% small-team papers (≤3 authors) · across 4 venues
- Abstract 6475: Myeloma cells with therapy-induced senescence-like phenotype have increased resistance to killing by T cell directed therapies
Cancer Research · 2026
- Abstract 6467: Myeloma cells with therapy-induced senescence-like phenotype are associated with resistance to CAR-T therapy
Cancer Research · 2026
- Senescence profiling of monoclonal gammopathies reveals paracrine senescence as a crucial defense against disease progression
Leukemia · 2025
- Abstract 519: CDK4/6 inhibitors and endocrine therapies induce senescence with drug- and cell line-specific vulnerabilities in ERα+ breast cancer
Cancer Research · 2025
- Senescence in the bone marrow microenvironment: A driver in development of therapy-related myeloid neoplasms
Journal of bone oncology · 2024
- Therapy Induced Senescence Is Associated with a Myeloid Gene Signature in Multiple Myeloma Plasma Cells
Blood · 2024
- Abstract 2958: Melphalan-treated multiple myeloma cells exhibit a senescent-like dormancy phenotype
Cancer Research · 2024
- Abstract PR012: Pre-malignant plasma cells exhibit a senescence-like phenotype and accumulation of transposable elements
Cancer Research · 2023
- Melphalan-Induced Multiple Myeloma Cells Exhibit a Senescent-like Dormant Phenotype
Blood · 2023
- Abstract B023: Enhanced survival and adherence of melphalan-induced senescent-like dormant multiple myeloma cells co-cultured with bone marrow stromal cells
Cancer Research · 2023
- Abstract B020: Pre-malignant plasma cells exhibit a senescence-like phenotype and accumulation of transposable elements
Cancer Research · 2023
- Stable MGUS and SMM Are Characterized By Distinct Senescent Features in the Pre-Malignant Plasma Cells and the Proximate Bone Microenvironment
Blood · 2023
- MGUS and SMM Plasma Cells Exhibit a Senescence-like Phenotype and Accumulation of Transposable Elements That May Contribute to Disease Progression
Blood · 2022
- Enhanced Survival and Adherence of Melphalan-Induced Senescent-like Dormant Multiple Myeloma Cells Co-Cultured with Bone Marrow Stromal Cells
Blood · 2022
- Cancer Research×7
- Blood×5
- Leukemia×1
- Journal of bone oncology×1
- Srinivas Devarakonda
Medicine · The Ohio State University
- Abdullah Khan
Medicine · The Ohio State University
- Nidhi Sharma
Medicine · The Ohio State University
- Sherif S. Farag
Medicine · Indiana University
- Yi Zhao
Medicine · Indiana University
This profile was generated automatically from public scholarly data (OpenAlex). Group size and activity levels are estimates derived from co-authorship patterns.
Last updated Jul 25, 2026.
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