Vitamin D Inhibits IL-6 Pro-Atherothrombotic Effects in Human Endothelial Cells: A Potential Mechanism for Protection against COVID-19 Infection?

COVID-19 IL-6 atherothrombosis tissue factor vitamin D

Journal

Journal of cardiovascular development and disease
ISSN: 2308-3425
Titre abrégé: J Cardiovasc Dev Dis
Pays: Switzerland
ID NLM: 101651414

Informations de publication

Date de publication:
13 Jan 2022
Historique:
received: 02 12 2021
revised: 06 01 2022
accepted: 11 01 2022
entrez: 20 1 2022
pubmed: 21 1 2022
medline: 21 1 2022
Statut: epublish

Résumé

Thrombosis with cardiovascular involvement is a crucial complication in COVID-19 infection. COVID-19 infects the host by the angiotensin converting enzyme-2 receptor (ACE2r), which is expressed in endothelial cells too. Thus, COVID-related thrombotic events might be due to endothelial dysfunction. IL-6 is one of the main cytokines involved in the COVID-19 inflammatory storm. Some evidence indicates that Vitamin D (VitD) has a protective role in COVID-19 patients, but the molecular mechanisms involved are still debated. Thus, we investigated the effect of VitD on Tissue Factor and adhesion molecules (CAMs) in IL-6-stimulated endothelial cells (HUVEC). Moreover, we evaluated levels of the ACE2r gene and proteins. Finally, we studied the modulation of NF-kB and STAT3 pathways. HUVEC cultivated in VitD-enriched medium were stimulated with IL-6 (0.5 ng/mL). The TF gene (RT-PCR), protein (Western blot), surface expression (FACS) and procoagulant activity (FXa generation assay) were measured. Similarly, CAMs soluble values (ELISA) and ACE2r (RT-PCR and Western blot) levels were assessed. NF-kB and STAT3 modulation (Western blot) were also investigated. VitD significantly reduced TF expression at both gene and protein levels as well as TF-procoagulant activity in IL-6-treated HUVEC. Similar effects were observed for CAMs and ACE2r expression. IL-6 modulates these effects by regulating NF-κB and STAT3 pathways. IL-6 induces endothelial dysfunction with TF and CAMs expression via upregulation of ACE2r. VitD prevented these IL-6 deleterious effects. Thus, it might be speculated that this is one of the hypothetical mechanism(s) by which VitD exerts its beneficial effects in COVID-19 infection.

Sections du résumé

BACKGROUND BACKGROUND
Thrombosis with cardiovascular involvement is a crucial complication in COVID-19 infection. COVID-19 infects the host by the angiotensin converting enzyme-2 receptor (ACE2r), which is expressed in endothelial cells too. Thus, COVID-related thrombotic events might be due to endothelial dysfunction. IL-6 is one of the main cytokines involved in the COVID-19 inflammatory storm. Some evidence indicates that Vitamin D (VitD) has a protective role in COVID-19 patients, but the molecular mechanisms involved are still debated. Thus, we investigated the effect of VitD on Tissue Factor and adhesion molecules (CAMs) in IL-6-stimulated endothelial cells (HUVEC). Moreover, we evaluated levels of the ACE2r gene and proteins. Finally, we studied the modulation of NF-kB and STAT3 pathways.
METHODS METHODS
HUVEC cultivated in VitD-enriched medium were stimulated with IL-6 (0.5 ng/mL). The TF gene (RT-PCR), protein (Western blot), surface expression (FACS) and procoagulant activity (FXa generation assay) were measured. Similarly, CAMs soluble values (ELISA) and ACE2r (RT-PCR and Western blot) levels were assessed. NF-kB and STAT3 modulation (Western blot) were also investigated.
RESULTS RESULTS
VitD significantly reduced TF expression at both gene and protein levels as well as TF-procoagulant activity in IL-6-treated HUVEC. Similar effects were observed for CAMs and ACE2r expression. IL-6 modulates these effects by regulating NF-κB and STAT3 pathways.
CONCLUSIONS CONCLUSIONS
IL-6 induces endothelial dysfunction with TF and CAMs expression via upregulation of ACE2r. VitD prevented these IL-6 deleterious effects. Thus, it might be speculated that this is one of the hypothetical mechanism(s) by which VitD exerts its beneficial effects in COVID-19 infection.

Identifiants

pubmed: 35050236
pii: jcdd9010027
doi: 10.3390/jcdd9010027
pmc: PMC8781542
pii:
doi:

Types de publication

Journal Article

Langues

eng

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Auteurs

Giovanni Cimmino (G)

Department of Translational Medical Sciences, Section of Cardiology, University of Campania "Luigi Vanvitelli", 80131 Naples, Italy.

Stefano Conte (S)

Department of Translational Medical Sciences, Section of Lung Disease, University of Campania "Luigi Vanvitelli", 80131 Naples, Italy.

Mariarosaria Morello (M)

Department of Advanced Biomedical Sciences, Section of Cardiology, University of Naples "Federico II", 80131 Naples, Italy.

Grazia Pellegrino (G)

Department of Woman, Child and General and Specialized Surgery, Section of Anesthesiology, University of Campania "Luigi Vanvitelli", 80138 Naples, Italy.

Laura Marra (L)

Department of Cell Biology and Biotherapy Research, Istituto Nazionale Tumori IRCCS-Fondazione G. Pascale, 80131 Naples, Italy.

Andrea Morello (A)

Biochemical Unit, A. S. Re. M. (Azienda Sanitaria Regionale del Molise), Antonio Cardarelli Hospital, 86100 Campobasso, Italy.

Giuseppe Nicoletti (G)

Department of Advanced Biomedical Sciences, Section of Cardiology, University of Naples "Federico II", 80131 Naples, Italy.

Gennaro De Rosa (G)

Department of Advanced Biomedical Sciences, Section of Cardiology, University of Naples "Federico II", 80131 Naples, Italy.

Paolo Golino (P)

Department of Translational Medical Sciences, Section of Cardiology, University of Campania "Luigi Vanvitelli", 80131 Naples, Italy.

Plinio Cirillo (P)

Department of Advanced Biomedical Sciences, Section of Cardiology, University of Naples "Federico II", 80131 Naples, Italy.

Classifications MeSH