Jagged Ligands Enhance the Pro-Angiogenic Activity of Multiple Myeloma Cells

被引:8
|
作者
Palano, Maria Teresa [1 ]
Giannandrea, Domenica [1 ]
Platonova, Natalia [1 ]
Gaudenzi, Germano [2 ]
Falleni, Monica [1 ]
Tosi, Delfina [1 ]
Lesma, Elena [1 ]
Citro, Valentina [1 ]
Colombo, Michela [1 ]
Saltarella, Ilaria [3 ]
Ria, Roberto [3 ]
Amodio, Nicola [4 ]
Taiana, Elisa [5 ]
Neri, Antonino [5 ]
Vitale, Giovanni [2 ,6 ]
Chiaramonte, Raffaella [1 ]
机构
[1] Univ Milan, Dept Hlth Sci, I-20142 Milan, Italy
[2] IRCCS, Lab Geriatr & Oncol Neuroendocrinol Res, Ist Auxol Italiano, I-20095 Cusano Milanino, Italy
[3] Univ Bari, Sch Med, Unit Internal Med & Clin Oncol, Dept Biomed Sci & Human Oncol, I-70124 Bari, Italy
[4] Magna Graecia Univ Catanzaro, Dept Expt & Clin Med, I-88100 Catanzaro, Italy
[5] Univ Milan, Hematol, Fdn Ca Granda IRCCS Policlin, Dept Oncol & Hematooncol, I-20122 Milan, Italy
[6] Univ Milan, Dept Clin Sci & Community Hlth DISCCO, I-20122 Milan, Italy
关键词
multiple myeloma; angiogenesis; Notch; Jagged; VEGF; bone marrow stromal cells; BONE-MARROW MICROENVIRONMENT; NOTCH SIGNALING PATHWAY; TUMOR ANGIOGENESIS; ENDOTHELIAL-CELLS; ACTIVATION; JAG2; OVEREXPRESSION; RESISTANCE;
D O I
10.3390/cancers12092600
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Simple Summary The Jagged family of ligands are aberrantly expressed during multiple myeloma progression and contributes to activate Notch signaling both in myeloma cells and in the nearby bone marrow cell populations activating several pro-tumor effects. This work elucidates, in vitro, in vivo as well as in patients' bone marrow biopsies, different mechanisms by which tumor cell-derived Jagged1 and 2 contribute to myeloma-associated angiogenesis. These include the ability to induce myeloma and bone marrow stromal cell secretion of VEGF along with a direct activation of the pro-angiogenic Notch signaling pathway in endothelial cells. This research provides a rational for a Jagged-directed therapy in multiple myeloma. Multiple myeloma (MM) is an incurable plasma cell malignancy arising primarily within the bone marrow (BM). During MM progression, different modifications occur in the tumor cells and BM microenvironment, including the angiogenic shift characterized by the increased capability of endothelial cells to organize a network, migrate and express angiogenic factors, including vascular endothelial growth factor (VEGF). Here, we studied the functional outcome of the dysregulation of Notch ligands, Jagged1 and Jagged2, occurring during disease progression, on the angiogenic potential of MM cells and BM stromal cells (BMSCs). Jagged1-2 expression was modulated by RNA interference or soluble peptide administration, and the effects on the MM cell lines' ability to induce human pulmonary artery cells (HPAECs) angiogenesis or to indirectly increase the BMSC angiogenic potential was analyzed in vitro; in vivo validation was performed on a zebrafish model and MM patients' BM biopsies. Overall, our results indicate that the MM-derived Jagged ligands (1) increase the tumor cell angiogenic potential by directly triggering Notch activation in the HPAECs or stimulating the release of angiogenic factors, i.e., VEGF; and (2) stimulate the BMSCs to promote angiogenesis through VEGF secretion. The observed pro-angiogenic effect of Notch activation in the BM during MM progression provides further evidence of the potential of a therapy targeting the Jagged ligands.
引用
收藏
页码:1 / 18
页数:18
相关论文
共 50 条
  • [41] ILK promotes angiogenic activity of mesenchymal stem cells in multiple myeloma
    Zhao, Weipeng
    Zhang, Xiaoying
    Zang, Li
    Zhao, Pan
    Chen, Yafang
    Wang, Xiaofang
    ONCOLOGY LETTERS, 2018, 16 (01) : 1101 - 1106
  • [42] Neutrophils Induce Pro-angiogenic T cells with a Regulatory Phenotype in Pregnancy
    Nadkarni, Suchita
    Smith, Joanne
    Sferruzzi-Perri, Amanda
    Kishore, Madhav
    Mauro, Claudio
    Williams, David
    Marelli-Berg, Federica
    Perretti, Mauro
    FASEB JOURNAL, 2017, 31
  • [43] Intrinsic pro-angiogenic status of cystic fibrosis airway epithelial cells
    Verhaeghe, Catherine
    Tabruyn, Sebastien P.
    Oury, Cecile
    Bours, Vincent
    Griffioen, Arian W.
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2007, 356 (03) : 745 - 749
  • [44] Antitumor activity and downregulation of pro-angiogenic molecules in human prostate cancer cells by a novel thiazolidione compound
    Teraishi, F
    Wu, SH
    Inoue, S
    Zhang, LD
    Davis, JJ
    Guo, W
    Dong, FQ
    Fang, BL
    PROSTATE, 2006, 66 (04): : 430 - 438
  • [45] Membrane and capillary components of lung diffusion and pro-angiogenic cells in infants
    Chang, Daniel V.
    Tiller, Christina J.
    Kisling, Jeffrey A.
    Case, Jamie
    Mund, Julie A.
    Haneline, Laura S.
    Ingram, David A.
    Tepper, Robert S.
    EUROPEAN RESPIRATORY JOURNAL, 2014, 43 (02) : 497 - 504
  • [46] Pro-angiogenic effects of X-rays on murine endothelial cells
    Lisiak, E
    Dziekiewicz, M
    Meineke, V
    Bilski, M
    Janiak, MK
    NUKLEONIKA, 2005, 50 : S17 - S20
  • [47] Function-based enrichment of pro-angiogenic cells for cardiovascular repair
    Rowlinson, J. M.
    Kraenkel, N.
    Ascione, R.
    Madeddu, P.
    CARDIOVASCULAR RESEARCH, 2012, 93 : S59 - S59
  • [48] Membrane vesicles mediate pro-angiogenic activity of equine adipose-derived mesenchymal stromal cells
    Pascucci, Luisa
    Alessandri, Giulio
    Dall'Aglio, Cecilia
    Mercati, Francesca
    Coliolo, Paola
    Bazzucchi, Cinzia
    Dante, Sara
    Petrini, Stefano
    Curina, Giovanni
    Ceccarelli, Piero
    VETERINARY JOURNAL, 2014, 202 (02): : 361 - 366
  • [49] Bioavailability of Bergamot (Citrus bergamia) Flavanones and Biological Activity of Their Circulating Metabolites in Human Pro-Angiogenic Cells
    Spigoni, Valentina
    Mena, Pedro
    Fantuzzi, Federica
    Tassotti, Michele
    Brighenti, Furio
    Bonadonna, Riccardo C.
    Del Rio, Daniele
    Dei Cas, Alessandra
    NUTRIENTS, 2017, 9 (12)
  • [50] Study of pro-angiogenic activity of astilbin on human umbilical vein endothelial cells in vitro and zebrafish in vivo
    Lv, Kongpeng
    Ren, Qin
    Zhang, Xingyan
    Zhang, Keda
    Fei, Jia
    Li, Tiyuan
    RSC ADVANCES, 2019, 9 (40) : 22921 - 22930