Literature DB >> 24130051

Long pentraxin-3 inhibits epithelial-mesenchymal transition in melanoma cells.

Roberto Ronca1, Emanuela Di Salle, Arianna Giacomini, Daria Leali, Patrizia Alessi, Daniela Coltrini, Cosetta Ravelli, Sara Matarazzo, Domenico Ribatti, William Vermi, Marco Presta.   

Abstract

During melanoma progression, malignant melanocytes are reprogrammed into mesenchymal-like cells through to an epithelial-mesenchymal transition (EMT) process associated with the acquisition of an invasive, prometastatic phenotype. The fibroblast growth factor-2 (FGF2)/FGF receptor (FGFR) system plays a pivotal role in melanoma, leading to autocrine/paracrine induction of tumor cell proliferation and angiogenesis. Long pentraxin-3 (PTX3) interacts with FGF2, and other FGF family members, inhibiting FGF-dependent neovascularization and tumor growth. Here, PTX3 protein and the PTX3-derived acetylated pentapeptide Ac-ARPCA-NH2 inhibit FGF2-driven proliferation and downstream FGFR signaling in murine melanoma B16-F10 cells. Moreover, human PTX3-overexpressing hPTX_B16-F10 cells are characterized by the reversed transition from a mesenchymal to an epithelial-like appearance, inhibition of cell proliferation, loss of clonogenic potential, reduced motility and invasive capacity, downregulation of various mesenchymal markers, and upregulation of the epithelial marker E-cadherin. Accordingly, PTX3 affects cell proliferation and EMT transition in human A375 and A2058 melanoma cells. Also, hPTX_B16-F10 cells showed a reduced tumorigenic and metastatic activity in syngeneic C57BL/6 mice. In conclusion, PTX3 inhibits FGF/FGFR-driven EMT in melanoma cells, hampering their tumorigenic and metastatic potential. These data represent the first experimental evidence about a nonredundant role of the FGF/FGFR system in the modulation of the EMT process in melanoma and indicate that PTX3 or its derivatives may represent the basis for the design of novel therapeutic approaches in FGF/FGFR-dependent tumors, including melanoma. ©2013 AACR.

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Year:  2013        PMID: 24130051     DOI: 10.1158/1535-7163.MCT-13-0487

Source DB:  PubMed          Journal:  Mol Cancer Ther        ISSN: 1535-7163            Impact factor:   6.261


  22 in total

1.  Inhibition of pentraxin 3 in glioma cells impairs proliferation and invasion in vitro and in vivo.

Authors:  Jai-Nien Tung; Chung-Po Ko; Shun-Fa Yang; Chun-Wen Cheng; Pei-Ni Chen; Chia-Yu Chang; Chia-Liang Lin; Te-Fang Yang; Yi-Hsien Hsieh; Kun-Chung Chen
Journal:  J Neurooncol       Date:  2016-06-09       Impact factor: 4.130

2.  Pentraxin-3 is a PI3K signaling target that promotes stem cell-like traits in basal-like breast cancers.

Authors:  Clémence Thomas; Whitney Henry; Benjamin G Cuiffo; Anthony Y Collmann; Elisabetta Marangoni; Vanessa Benhamo; Manoj K Bhasin; Cheng Fan; Laetitia Fuhrmann; Albert S Baldwin; Charles Perou; Anne Vincent-Salomon; Alex Toker; Antoine E Karnoub
Journal:  Sci Signal       Date:  2017-02-21       Impact factor: 8.192

3.  NOTCH Activation Promotes Valve Formation by Regulating the Endocardial Secretome.

Authors:  Rebeca Torregrosa-Carrión; Luis Luna-Zurita; Fernando García-Marqués; Gaetano D'Amato; Rebeca Piñeiro-Sabarís; Elena Bonzón-Kulichenko; Jesús Vázquez; José Luis de la Pompa
Journal:  Mol Cell Proteomics       Date:  2019-06-27       Impact factor: 5.911

Review 4.  The pentraxins PTX3 and SAP in innate immunity, regulation of inflammation and tissue remodelling.

Authors:  Barbara Bottazzi; Antonio Inforzato; Massimo Messa; Marialuisa Barbagallo; Elena Magrini; Cecilia Garlanda; Alberto Mantovani
Journal:  J Hepatol       Date:  2016-02-26       Impact factor: 25.083

5.  Impact of pentraxin 3 genetic variants on uterine cervical cancer clinicopathologic characteristics.

Authors:  Yi-Hung Sun; Ying-Hsiang Chou; Chun-Hao Wang; Yi-Hsuan Hsiao; Chung-Yuan Lee; Shun-Fa Yang; Po-Hui Wang
Journal:  Int J Med Sci       Date:  2021-04-07       Impact factor: 3.738

6.  Targeting chemotherapy-induced PTX3 in tumor stroma to prevent the progression of drug-resistant cancers.

Authors:  Jhih-Ying Chi; Yu-Wei Hsiao; Chien-Feng Li; Yu-Chih Lo; Zu-Yau Lin; Jhen-Yi Hong; Yang-Ming Liu; Xiu Han; Shao-Ming Wang; Ben-Kuen Chen; Kelvin K Tsai; Ju-Ming Wang
Journal:  Oncotarget       Date:  2015-09-15

Review 7.  Fibroblast Growth Factor Receptors (FGFRs) and Noncanonical Partners in Cancer Signaling.

Authors:  Harriet R Ferguson; Michael P Smith; Chiara Francavilla
Journal:  Cells       Date:  2021-05-14       Impact factor: 6.600

8.  A long pentraxin-3-derived pentapeptide for the therapy of FGF8b-driven steroid hormone-regulated cancers.

Authors:  Arianna Giacomini; Sara Matarazzo; Katiuscia Pagano; Laura Ragona; Sara Rezzola; Michela Corsini; Emanuela Di Salle; Marco Presta; Roberto Ronca
Journal:  Oncotarget       Date:  2015-05-30

9.  Design and Synthesis of Potent in Vitro and in Vivo Anticancer Agents Based on 1-(3',4',5'-Trimethoxyphenyl)-2-Aryl-1H-Imidazole.

Authors:  Romeo Romagnoli; Pier Giovanni Baraldi; Filippo Prencipe; Paola Oliva; Stefania Baraldi; Mojgan Aghazadeh Tabrizi; Luisa Carlota Lopez-Cara; Salvatore Ferla; Andrea Brancale; Ernest Hamel; Roberto Ronca; Roberta Bortolozzi; Elena Mariotto; Giuseppe Basso; Giampietro Viola
Journal:  Sci Rep       Date:  2016-05-24       Impact factor: 4.379

10.  The Novel Antitubulin Agent TR-764 Strongly Reduces Tumor Vasculature and Inhibits HIF-1α Activation.

Authors:  Elena Porcù; Luca Persano; Roberto Ronca; Stefania Mitola; Roberta Bortolozzi; Romeo Romagnoli; Paola Oliva; Giuseppe Basso; Giampietro Viola
Journal:  Sci Rep       Date:  2016-06-13       Impact factor: 4.379

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