Endothelial Ca2+ Signaling and the Resistance to Anticancer Treatments: Partners in Crime

Intracellular Ca2+ signaling drives angiogenesis and vasculogenesis by stimulating proliferation, migration, and tube formation in both vascular endothelial cells and endothelial colony forming cells (ECFCs), which represent the only endothelial precursor truly belonging to the endothelial phenotype...

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Main Author: Francesco Moccia
Format: Article
Language:English
Published: MDPI AG 2018-01-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:http://www.mdpi.com/1422-0067/19/1/217
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spelling doaj-d80d949eb4814b2bbd12e6bfe5d171512020-11-24T23:18:55ZengMDPI AGInternational Journal of Molecular Sciences1422-00672018-01-0119121710.3390/ijms19010217ijms19010217Endothelial Ca2+ Signaling and the Resistance to Anticancer Treatments: Partners in CrimeFrancesco Moccia0Laboratory of General Physiology, Department of Biology and Biotechnology “L. Spallanzani”, University of Pavia, I-27100 Pavia, ItalyIntracellular Ca2+ signaling drives angiogenesis and vasculogenesis by stimulating proliferation, migration, and tube formation in both vascular endothelial cells and endothelial colony forming cells (ECFCs), which represent the only endothelial precursor truly belonging to the endothelial phenotype. In addition, local Ca2+ signals at the endoplasmic reticulum (ER)–mitochondria interface regulate endothelial cell fate by stimulating survival or apoptosis depending on the extent of the mitochondrial Ca2+ increase. The present article aims at describing how remodeling of the endothelial Ca2+ toolkit contributes to establish intrinsic or acquired resistance to standard anti-cancer therapies. The endothelial Ca2+ toolkit undergoes a major alteration in tumor endothelial cells and tumor-associated ECFCs. These include changes in TRPV4 expression and increase in the expression of P2X7 receptors, Piezo2, Stim1, Orai1, TRPC1, TRPC5, Connexin 40 and dysregulation of the ER Ca2+ handling machinery. Additionally, remodeling of the endothelial Ca2+ toolkit could involve nicotinic acetylcholine receptors, gasotransmitters-gated channels, two-pore channels and Na+/H+ exchanger. Targeting the endothelial Ca2+ toolkit could represent an alternative adjuvant therapy to circumvent patients’ resistance to current anti-cancer treatments.http://www.mdpi.com/1422-0067/19/1/217Ca2+ signalingtumorendothelial cellsendothelial progenitor cellsendothelial colony forming cellsanticancer therapiesVEGFresistance to apoptosis
collection DOAJ
language English
format Article
sources DOAJ
author Francesco Moccia
spellingShingle Francesco Moccia
Endothelial Ca2+ Signaling and the Resistance to Anticancer Treatments: Partners in Crime
International Journal of Molecular Sciences
Ca2+ signaling
tumor
endothelial cells
endothelial progenitor cells
endothelial colony forming cells
anticancer therapies
VEGF
resistance to apoptosis
author_facet Francesco Moccia
author_sort Francesco Moccia
title Endothelial Ca2+ Signaling and the Resistance to Anticancer Treatments: Partners in Crime
title_short Endothelial Ca2+ Signaling and the Resistance to Anticancer Treatments: Partners in Crime
title_full Endothelial Ca2+ Signaling and the Resistance to Anticancer Treatments: Partners in Crime
title_fullStr Endothelial Ca2+ Signaling and the Resistance to Anticancer Treatments: Partners in Crime
title_full_unstemmed Endothelial Ca2+ Signaling and the Resistance to Anticancer Treatments: Partners in Crime
title_sort endothelial ca2+ signaling and the resistance to anticancer treatments: partners in crime
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1422-0067
publishDate 2018-01-01
description Intracellular Ca2+ signaling drives angiogenesis and vasculogenesis by stimulating proliferation, migration, and tube formation in both vascular endothelial cells and endothelial colony forming cells (ECFCs), which represent the only endothelial precursor truly belonging to the endothelial phenotype. In addition, local Ca2+ signals at the endoplasmic reticulum (ER)–mitochondria interface regulate endothelial cell fate by stimulating survival or apoptosis depending on the extent of the mitochondrial Ca2+ increase. The present article aims at describing how remodeling of the endothelial Ca2+ toolkit contributes to establish intrinsic or acquired resistance to standard anti-cancer therapies. The endothelial Ca2+ toolkit undergoes a major alteration in tumor endothelial cells and tumor-associated ECFCs. These include changes in TRPV4 expression and increase in the expression of P2X7 receptors, Piezo2, Stim1, Orai1, TRPC1, TRPC5, Connexin 40 and dysregulation of the ER Ca2+ handling machinery. Additionally, remodeling of the endothelial Ca2+ toolkit could involve nicotinic acetylcholine receptors, gasotransmitters-gated channels, two-pore channels and Na+/H+ exchanger. Targeting the endothelial Ca2+ toolkit could represent an alternative adjuvant therapy to circumvent patients’ resistance to current anti-cancer treatments.
topic Ca2+ signaling
tumor
endothelial cells
endothelial progenitor cells
endothelial colony forming cells
anticancer therapies
VEGF
resistance to apoptosis
url http://www.mdpi.com/1422-0067/19/1/217
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