Sulforaphane improves endothelial function and reduces placental oxidative stress in vitro

[Display omitted] •Sulforaphane protects endothelium from inflammatory injury.•Sulforaphane protects the placenta from hypoxic-reperfusion injury.•Sulforaphane works partly, though not entirely via Nrf2.•Sulforaphane may offer a novel therapeutic option for preeclampsia. The maternal endothelial dys...

Ausführliche Beschreibung

Gespeichert in:
Bibliographische Detailangaben
Veröffentlicht in:Pregnancy hypertension 2019-04, Vol.16, p.1-10
Hauptverfasser: Cox, Annie G., Gurusinghe, Seshini, Abd Rahman, Rahana, Leaw, Bryan, Chan, Siow T., Mockler, Joanne C., Murthi, Padma, Marshall, Sarah A., Lim, Rebecca, Wallace, Euan M.
Format: Artikel
Sprache:eng
Schlagworte:
Online-Zugang:Volltext
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
Beschreibung
Zusammenfassung:[Display omitted] •Sulforaphane protects endothelium from inflammatory injury.•Sulforaphane protects the placenta from hypoxic-reperfusion injury.•Sulforaphane works partly, though not entirely via Nrf2.•Sulforaphane may offer a novel therapeutic option for preeclampsia. The maternal endothelial dysfunction characteristic of preeclampsia arises, in part, from excessive placental production of anti-angiogenic factors, including soluble Flt-1, soluble endoglin and activin A, inducing oxidative stress. We assessed whether the antioxidant and NRF2-activator sulforaphane could mitigate endothelial and trophoblast dysfunction in vitro. We induced dysfunction in human umbilical vein endothelial cells (HUVECs) with TNF-α, assessing endothelial activation and dysfunction (endothelin-1, vascular cell adhesion molecule; VCAM1, intracellular adhesion molecule; ICAM1, e-selectin and endothelial permeability) in the presence or absence of sulforaphane. We also assessed the effects of sulforaphane in mitigating hypoxic and hyperoxic injury in term placental explants by measuring secretion of anti-angiogenic factors. To assess the role of NRF2 we silenced NRF2 in HUVECs and primary trophoblast cells. Sulforaphane reduced TNF-α mediated HUVEC secretion of endothelin-1, VCAM1, ICAM1 and E-selectin, and prevented increased endothelial permeability. In placental explants, sulforaphane reduced the secretion of soluble Flt-1, soluble endoglin and activin A. Sulforaphane induced activation and nuclear translocation of NRF2 in HUVECs, inducing heme oxygenase 1. NRF2 silencing blocked some but not all of sulforaphane’s effects in HUVECs. NRF2 silencing did not prevent sulforaphane’s inhibition of trophobast secretion of soluble Flt-1 or activin A. In reducing placental and endothelial oxidative stress, sulforaphane may offer a new adjuvant therapeutic approach for the treatment of preeclampsia.
ISSN:2210-7789
2210-7797
DOI:10.1016/j.preghy.2019.02.002