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Cancers|November 9, 2019
The Role and Function of microRNA in the Pathogenesis of Multiple MyelomaHiroshi Handa, Yuki Murakami, Rei Ishihara, et al.Advances in Medical Education and Practice|April 28, 2026
Attendance in a First-year Educational Support Program and Academic Performance Among Allied Health Students in Japan: A Retrospective Observational StudyRei Ishihara, Yuki Murakami, Yusuke Ono, et al.International Journal of Hematology|December 15, 2022
Clinical significance of human endogenous retrovirus K (HERV-K) in multiple myeloma progressionYuta Masuda, Rei Ishihara, Yuki Murakami, et al.Clinical and Experimental Medicine|October 18, 2019
PDCD1 and PDCD1LG1 polymorphisms affect the susceptibility to multiple myelomaTetsuhiro Kasamatsu, Maaya Awata, Rei Ishihara, et al.American Journal of Physiology. Renal Physiology|January 16, 2026
Loss of transcription factor ATOH8 activates TGF-β signaling and exacerbates glomerulosclerosis in podocytesHiroko Hamatani, Akifumi Tabei, Shinichiro Ogawa, et al.Clinical and Experimental Medicine|March 13, 2023
Sub-lethal doses of chemotherapeutic agents induce senescence in T cells and upregulation of PD-1 expressionTetsuhiro Kasamatsu, Maaya Awata-Shiraiwa, Rei Ishihara, et al.Cancers|February 13, 2025
Role of Rac1 in p53-Related Proliferation and Drug Sensitivity in Multiple MyelomaIkuko Matsumura, Tsukasa Oda, Tetsuhiro Kasamatsu, et al.International Journal of Molecular Sciences|February 11, 2023
Myeloma Microenvironmental TIMP1 Induces the Invasive Phenotype in Fibroblasts to Modulate Disease ProgressionRei Ishihara, Tsukasa Oda, Yuki Murakami, et al.Genes|January 21, 2023
MYC Causes Multiple Myeloma Progression via Attenuating TP53-Induced MicroRNA-34 ExpressionYuki Murakami, Kei Kimura-Masuda, Tsukasa Oda, et al.International Journal of Molecular Sciences|September 30, 2020
Long Noncoding RNA <i>PVT1</i> Is Regulated by Bromodomain Protein BRD4 in Multiple Myeloma and Is Associated with Disease ProgressionHiroshi Handa, Kazuki Honma, Tsukasa Oda, et al.Pageof 2