TY - JOUR
T1 - Cardiac Protection by Oral Sodium Thiosulfate in a Rat Model of L-NNA-Induced Heart Disease
AU - Nguyen, Isabel T N
AU - Wiggenhauser, Lucas M
AU - Bulthuis, Marian
AU - Hillebrands, Jan-Luuk
AU - Feelisch, Martin
AU - Verhaar, Marianne C
AU - van Goor, Harry
AU - Joles, Jaap A
N1 - Funding Information:
This work was supported by the Dutch Kidney Foundation (13OI114 and 170I16) and by a grant from the Netherlands CardioVascular Research Initiative: an initiative with support of the Dutch Heart Foundation (CVON2014–11 (RECONNECT)). Part of the work has been performed at the UMCG Imaging and Microscopy Center (UMIC), which is sponsored by NWO-grant 40–00506-98–9021 (TissueFAXS).
Funding Information:
We thank Petra de Bree and Melanie Nieuwenhuijzen-Van de Kaa for their technical advice and assistance.
Publisher Copyright:
© Copyright © 2021 Nguyen, Wiggenhauser, Bulthuis, Hillebrands, Feelisch, Verhaar, van Goor and Joles.
PY - 2021/4/15
Y1 - 2021/4/15
N2 - Hypertension contributes to cardiac damage and remodeling. Despite the availability of renin-angiotensin system inhibitors and other antihypertensive therapies, some patients still develop heart failure. Novel therapeutic approaches are required that are effective and without major adverse effects. Sodium Thiosulfate (STS), a reversible oxidation product of hydrogen sulfide (H2S), is a promising pharmacological entity with vasodilator and anti-oxidant potential that is clinically approved for the treatment of calciphylaxis and cyanide poisoning. We hypothesized that Sodium Thiosulfate improves cardiac disease in an experimental hypertension model and sought to investigate its cardioprotective effects by direct comparison to the ACE-inhibitor lisinopril, alone and in combination, using a rat model of chronic nitric oxide (NO) deficiency. Systemic nitric oxide production was inhibited in Sprague Dawley rats by administering N-ω-nitro-l-arginine (L-NNA) with the food for three weeks, leading to progressive hypertension, cardiac dysfunction and remodeling. We observed that STS, orally administered via the drinking water, ameliorated L-NNA-induced heart disease. Treatment with STS for two weeks ameliorated hypertension and improved systolic function, left ventricular hypertrophy, cardiac fibrosis and oxidative stress, without causing metabolic acidosis as is sometimes observed following parenteral administration of this drug. STS and lisinopril had similar protective effects that were not additive when combined. Our findings indicate that oral intervention with a H2S donor such as STS has cardioprotective properties without noticeable side effects.
AB - Hypertension contributes to cardiac damage and remodeling. Despite the availability of renin-angiotensin system inhibitors and other antihypertensive therapies, some patients still develop heart failure. Novel therapeutic approaches are required that are effective and without major adverse effects. Sodium Thiosulfate (STS), a reversible oxidation product of hydrogen sulfide (H2S), is a promising pharmacological entity with vasodilator and anti-oxidant potential that is clinically approved for the treatment of calciphylaxis and cyanide poisoning. We hypothesized that Sodium Thiosulfate improves cardiac disease in an experimental hypertension model and sought to investigate its cardioprotective effects by direct comparison to the ACE-inhibitor lisinopril, alone and in combination, using a rat model of chronic nitric oxide (NO) deficiency. Systemic nitric oxide production was inhibited in Sprague Dawley rats by administering N-ω-nitro-l-arginine (L-NNA) with the food for three weeks, leading to progressive hypertension, cardiac dysfunction and remodeling. We observed that STS, orally administered via the drinking water, ameliorated L-NNA-induced heart disease. Treatment with STS for two weeks ameliorated hypertension and improved systolic function, left ventricular hypertrophy, cardiac fibrosis and oxidative stress, without causing metabolic acidosis as is sometimes observed following parenteral administration of this drug. STS and lisinopril had similar protective effects that were not additive when combined. Our findings indicate that oral intervention with a H2S donor such as STS has cardioprotective properties without noticeable side effects.
KW - ACE-inhibitor
KW - cardiovascular disease
KW - hydrogen sulfide
KW - hypertension
KW - nitric oxide
UR - https://www.scopus.com/pages/publications/85105121083
U2 - 10.3389/fphar.2021.650968
DO - 10.3389/fphar.2021.650968
M3 - Article
C2 - 33935760
SN - 1663-9812
VL - 12
JO - Frontiers in Pharmacology
JF - Frontiers in Pharmacology
M1 - 650968
ER -