Vascular endothelial growth factor overexpression in myelodysplastic syndrome bone marrow cells: biological and clinical implications

2016 ◽  
Vol 58 (7) ◽  
pp. 1711-1720 ◽  
Author(s):  
Rosangela Invernizzi ◽  
Erica Travaglino ◽  
Matteo Giovanni Della Porta ◽  
Luca Malcovati ◽  
Anna Gallì ◽  
...  
Blood ◽  
2013 ◽  
Vol 122 (21) ◽  
pp. 5331-5331
Author(s):  
Ryosuke Shirasaki ◽  
Takuji Matsuo ◽  
Yoko Oka ◽  
Jun Ooi ◽  
Naoki Shirafuji

Abstract Background We previously reported that when adult human dermal fibroblasts were cultured with interleukin (IL)-1-b, vascular endothelial growth factor (VEGF)-A was produced significantly (54th ASH). And, when antihuman VEGF-A neutralizing antibody (VEGF-A Ab) was added to the cultures, CD138 (Syndecan-1) expressed significantly. CD138 is a member of cell-surface transmembrane haparan sulfate proteoglycans, and expresses in plasma cells from multiple myeloma (MM) cases. Membrane-anchoring CD138 shows a better prognosis in an immunodeficiency murine transplantation model in vivo; however, when extra-domain of CD138 is digested by heparanase to be shed from the cell-surface, MM cells invade to various kinds of tissues, and the patients show poor prognosis. Aims To validate a biological implication of inhibition of VEGF-A-signaling in MM cells, we observed effects of VEGF-A Ab to bone marrow cells from MM patients. Cell-proliferations as well as morphological changes were also observed time-dependently. Materials and Methods Institutional ethical committee approved our study, and bone marrow cells were obtained from the informed MM patients as well as normal individuals. Cells were separated with gravity-sedimentation method, and the prepared mononuclear cells were cultured with or without VEGF-A Ab, and the expression of specific genes was analyzed. Results Twenty MM patients were eligible, in which three showed significant poor prognosis, and worsened after underwent intensive chemotherapy or allogeneic hematopoietic stem cells transplantation. Thirteen out of twenty expressed CD138, and when cells were cultured with VEGF-A Ab for four days, CD138-expression increased significantly in all cases. Four did not express CD138; however, CD138-expression was observed after 4 day’s culture with VEGF-A Ab. In three progressed cases CD138-expression decreased in accordance with the disease-progression; however, when VEGF-A Ab was added to the cell-cultures, CD138 was induced to express. Heparanase-expression was observed in 10 cases out of 20, which were down-regulated when VEGF-A Ab was added to the cultures. In contrast, in bone marrow cells from seven normal individuals CD138-expression was very low, which was down-regulated with the addition of VEGF-A Ab. Heparanase-expression was not observed in these normal cells, and were induced to be observed in four out of seven when VEGF-A Ab was added to the cultures. Discussion Expression of CD138 is induced in fibroblast by the addition of fibroblast growth factor-2, and in keratinocytes by epidermal growth factor and keratinocyte growth factor; however, an induction of CD138 by the VEGF-A Ab has not been reported. Several cytokines including VEGF-A influence plasma cell-proliferation; however, little is reported on cytokine-suppression therapy. Inhibition of the signaling of VEGF receptors by the chemicals including solafenib is not specific for VEGF-A. Currently we validate the efficacy of the inhibition of VEGF-A-signaling to MM cells and their environmental cells using RNA interference. Disclosures: No relevant conflicts of interest to declare.


Blood ◽  
2007 ◽  
Vol 110 (11) ◽  
pp. 4313-4313
Author(s):  
Haruko Tashiro ◽  
Mitsuho Noguchi ◽  
Ryosuke Shirasaki ◽  
Kazuo Kawasugi ◽  
Naoki Shirafuji

Abstract Objective: There have been reported that the levels of serum vascular endothelial growth factor (VEGF) were decreased in aplastic anemia cases. We investigated VEGF system after chemotherapy to acute myelogenous leukemia (AML) cases, and determined whether VEGF system influenced the prolonged bone marrow suppression in these cases. Materials and Methods: Sera and bone marrow cells were prepared from 30 AML cases including 10 cases of AML (M3) at the onset of the disease, after chemotherapy, and the recovery periods, and the concentration of VEGF in sera of the patients and in the conditioned media obtained from bone marrow-cell cultures was measured with ELISA kit (Quantikine; R&D Systems). The expression of VEGF, VEGF receptor type-1 and VEGF receptor type-2 was analyzed with RT-PCR. The biological effect of VEGF on the bone marrow cells which showed the prolonged suppression after chemotherapy was assayed with colony-formation with or without any cytokines. Result and Discussion: As was reported previously, VEGF levels were significantly increased in M3 cases. In other types of AML cases the levels of VEGF production varied. When patients were given chemotherapy and the bone marrow suppression was prolonged, the production levels of VEGF were significantly diminished less than that observed in AML cases with normal bone marrow recovery. In M3 cases that were treated with all-trans retinoic acid and the prolonged bone marrow-suppression was observed, VEGF production was also suppressed. The expression of VEGFR-1 and -2 was observed in bone marrow cells from prolonged bone marrow suppression cases. In these cases, when bone marrow cells were cultured with VEGF, synergistic effects with G-CSF and EPO were observed with colony-formation assay. These observations indicate that VEGF works on the important role for the hematopoietic recovery after chemotherapy in AML cases.


Sign in / Sign up

Export Citation Format

Share Document