Vascular inflammation (VI) represents a pathological condition that progressively affects the integrity and functionality of the vascular wall, thus leading to endothelial dysfunction and the onset of several cardiovascular diseases. Therefore, the research of novel compounds able to prevent VI represents a compelling need. In this study, we tested erucin, the natural isothiocyanate H2S-donor derived from Eruca sativa Mill. (Brassicaceae), in an in vivo mouse model of lipopolysaccharide (LPS)-induced peritonitis, where it significantly reduced the amount of emigrated CD11b positive neutrophils. We then evaluated the anti-inflammatory effects of erucin in LPS-challenged human umbilical vein endothelial cells (HUVECs). The pre-incubation of erucin, before LPS treatment (1, 6, 24 h), significantly preserved cell viability and prevented the increase of reactive oxygen species (ROS) and tumor necrosis factor alpha (TNF-alpha) levels. Moreover, erucin downregulated endothelial hyperpermeability and reduced the loss of vascular endothelial (VE)-Cadherin levels. In addition, erucin decreased vascular cell adhesion molecule 1 (VCAM-1), cyclooxygenase-2 (COX-2) and microsomal prostaglandin E-synthase 1 (mPGES-1) expression. Of note, erucin induced eNOS phosphorylation and counteracted LPS-mediated NF-kappa B nuclear translocation, an effect that was partially abolished in the presence of the eNOS inhibitor L-NAME. Therefore, erucin can control endothelial function through biochemical and genomic positive effects against VI.

Anti-Inflammatory Effect of the Natural H2S-Donor Erucin in Vascular Endothelium / Ciccone, Valerio; Piragine, Eugenia; Gorica, Era; Citi, Valentina; Testai, Lara; Pagnotta, Eleonora; Matteo, Roberto; Pecchioni, Nicola; Montanaro, Rosangela; Di Cesare Mannelli, Lorenzo; Ghelardini, Carla; Brancaleone, Vincenzo; Morbidelli, Lucia; Calderone, Vincenzo; Martelli, Alma. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 23:24(2022), pp. 15593-19 pages. [10.3390/ijms232415593]

Anti-Inflammatory Effect of the Natural H2S-Donor Erucin in Vascular Endothelium

Pecchioni, Nicola;
2022

Abstract

Vascular inflammation (VI) represents a pathological condition that progressively affects the integrity and functionality of the vascular wall, thus leading to endothelial dysfunction and the onset of several cardiovascular diseases. Therefore, the research of novel compounds able to prevent VI represents a compelling need. In this study, we tested erucin, the natural isothiocyanate H2S-donor derived from Eruca sativa Mill. (Brassicaceae), in an in vivo mouse model of lipopolysaccharide (LPS)-induced peritonitis, where it significantly reduced the amount of emigrated CD11b positive neutrophils. We then evaluated the anti-inflammatory effects of erucin in LPS-challenged human umbilical vein endothelial cells (HUVECs). The pre-incubation of erucin, before LPS treatment (1, 6, 24 h), significantly preserved cell viability and prevented the increase of reactive oxygen species (ROS) and tumor necrosis factor alpha (TNF-alpha) levels. Moreover, erucin downregulated endothelial hyperpermeability and reduced the loss of vascular endothelial (VE)-Cadherin levels. In addition, erucin decreased vascular cell adhesion molecule 1 (VCAM-1), cyclooxygenase-2 (COX-2) and microsomal prostaglandin E-synthase 1 (mPGES-1) expression. Of note, erucin induced eNOS phosphorylation and counteracted LPS-mediated NF-kappa B nuclear translocation, an effect that was partially abolished in the presence of the eNOS inhibitor L-NAME. Therefore, erucin can control endothelial function through biochemical and genomic positive effects against VI.
2022
Inglese
23
24
15593
19 pages
Eruca sativa Mill; endothelial dysfunction; erucin; hydrogen sulfide; isothiocyanates; vascular inflammation
open
info:eu-repo/semantics/article
Contributo su RIVISTA::Articolo su rivista
262
Anti-Inflammatory Effect of the Natural H2S-Donor Erucin in Vascular Endothelium / Ciccone, Valerio; Piragine, Eugenia; Gorica, Era; Citi, Valentina; Testai, Lara; Pagnotta, Eleonora; Matteo, Roberto; Pecchioni, Nicola; Montanaro, Rosangela; Di Cesare Mannelli, Lorenzo; Ghelardini, Carla; Brancaleone, Vincenzo; Morbidelli, Lucia; Calderone, Vincenzo; Martelli, Alma. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 23:24(2022), pp. 15593-19 pages. [10.3390/ijms232415593]
Ciccone, Valerio; Piragine, Eugenia; Gorica, Era; Citi, Valentina; Testai, Lara; Pagnotta, Eleonora; Matteo, Roberto; Pecchioni, Nicola; Montanaro, Ro...espandi
15
   COMETA research project “Colture autoctone mediterranee e loro valorizzazione con tecnologie avanzate di chimica verde” (Native Mediterranean crops and their enhancement with advanced green chemistry technologies) (ARS01_00606)
   COMETA
   Italian Ministry of Instruction, University and Research (MIUR), PON “Ricerca e Innovazione” 2014–2020-Azione II
   ARS01_00606 Grant decree COMETA prot. n. 1741 of 05/07/2018, CUP B26G18000200004–COR 54591
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