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Blood|February 17, 2007
CKS1B, overexpressed in aggressive disease, regulates multiple myeloma growth and survival through SKP2- and p27Kip1-dependent and -independent mechanismsFenghuang Zhan, Simona Colla, Xiaosong Wu, et al.Experimental Hematology|October 28, 2010
The proapoptotic effect of zoledronic acid is independent of either the bone microenvironment or the intrinsic resistance to bortezomib of myeloma cells and is enhanced by the combination with arsenic trioxideManuela Abeltino, Sabrina Bonomini, Marina Bolzoni, et al.Blood|June 4, 2005
Myeloma cells block RUNX2/CBFA1 activity in human bone marrow osteoblast progenitors and inhibit osteoblast formation and differentiationNicola Giuliani, Simona Colla, Francesca Morandi, et al.Nature Communications|November 26, 2021
Hematopoiesis under telomere attrition at the single-cell resolutionNatthakan Thongon, Feiyang Ma, Andrea Santoni, et al.Blood|January 27, 2007
The oxidative stress response regulates DKK1 expression through the JNK signaling cascade in multiple myeloma plasma cellsSimona Colla, Fenghuang Zhan, Wei Xiong, et al.Blood|May 10, 2005
IL-3 is a potential inhibitor of osteoblast differentiation in multiple myelomaLori A Ehrlich, Ho Yeon Chung, Irene Ghobrial, et al.Cancer Research|August 16, 2008
CC-chemokine ligand 20/macrophage inflammatory protein-3α and CC-chemokine receptor 6 are overexpressed in myeloma microenvironment related to osteolytic bone lesionsNicola Giuliani, Gina Lisignoli, Simona Colla, et al.Clinical Lymphoma, Myeloma & Leukemia|August 14, 2016
PDE4 Differential Expression Is a Potential Prognostic Factor and Therapeutic Target in Patients With Myelodysplastic Syndrome and Chronic Myelomonocytic LeukemiaAli N Chamseddine, Monica Cabrero, Yue Wei, et al.Haematologica|November 4, 2006
CXCR3 and its binding chemokines in myeloma cells: expression of isoforms and potential relationships with myeloma cell proliferation and survivalNicola Giuliani, Sabrina Bonomini, Paola Romagnani, et al.Biorxiv : the Preprint Server for Biology|March 3, 2023
Targeting DNA2 Overcomes Metabolic Reprogramming in Multiple MyelomaNatthakan Thongon, Feiyang Ma, Pamela Lockyer, et al.Pageof 10