αV-Integrin-Dependent Inhibition of Glioblastoma Cell Migration, Invasion and Vasculogenic Mimicry by the uPAcyclin Decapeptide

Author:

Franco Paola1,Camerino Iolanda12,Merlino Francesco3ORCID,D’Angelo Margherita14,Cimmino Amelia1ORCID,Carotenuto Alfonso3ORCID,Colucci-D’Amato Luca25ORCID,Stoppelli Maria Patrizia16

Affiliation:

1. Institute of Genetics and Biophysics “A. Buzzati Traverso” (IGB-ABT), National Research Council of Italy, 80131 Naples, Italy

2. Department of Environmental, Biological and Pharmaceutical Sciences and Technologies, University of Campania “Luigi Vanvitelli”, 81100 Caserta, Italy

3. Department of Pharmacy, University of Naples ‘Federico II’, 80131 Naples, Italy

4. Department of Experimental Medicine, University of Campania Luigi Vanvitelli, 81100 Naples, Italy

5. InterUniversity Center for Research in Neurosciences (CIRN), 80131 Naples, Italy

6. UniCamillus—Saint Camillus International University of Health Sciences, 00131 Rome, Italy

Abstract

Among the deadliest human cancers is glioblastoma (GBM) for which new treatment approaches are urgently needed. Here, the effects of the cyclic decapeptide, uPAcyclin, are investigated using the U87-MG, U251-MG, and U138-MG human GBM and C6 rat cell models. All GBM cells express the αV-integrin subunit, the target of uPAcyclin, and bind specifically to nanomolar concentrations of the decapeptide. Although peptide exposure affects neither viability nor cell proliferation rate, nanomolar concentrations of uPAcyclin markedly inhibit the directional migration and matrix invasion of all GBM cells, in a concentration- and αV-dependent manner. Moreover, wound healing rate closure of U87-MG and C6 rat glioma cells is reduced by 50% and time-lapse videomicroscopy studies show that the formation of vascular-like structures by U87-MG in three-dimensional matrix cultures is markedly inhibited by uPAcyclin. A strong reduction in the branching point numbers of the U87-MG, C6, and U251-MG cell lines undergoing vasculogenic mimicry, in the presence of nanomolar peptide concentrations, was observed. Lysates from matrix-recovered uPAcyclin-exposed cells exhibit a reduced expression of VE-cadherin, a prominent factor in the acquisition of vascular-like structures. In conclusion, these results indicate that uPAcyclin is a promising candidate to counteract the formation of new vessels in novel targeted anti-GBM therapies.

Funder

Università della Campania “Luigi Vanvitelli”, program VALERE

Regione Campania, project SATIN

NextGenerationEU, project “D3 4 HEALTH: Digital Driven Diagnostics, prognostics and therapeutics for sustainable Health care”

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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