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Comparison of the effects of methanethiol and sodium sulphide on uterine contractile activity

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Authors
Mijusković, Ana
Oreščanin-Dušić, Zorana
Nikolić-Kokić, Aleksandra
Slavić, Marija
Spasić, Mihajlo
Spasojević, Ivan
Blagojević, Duško P
Article (Published version)
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Abstract
Background: Our aim was to investigate the effect of methanethiol (CH3SH) on contractility of rat uterus and activities of redox-active enzymes, and to compare them with the effect of sodium sulphide (Na2S), a hydrogen sulphide (H2S/HS-) donor. Methods: Uteri were isolated from virgin Wistar rats, divided into six groups, controls (untreated uteri allowed to contract spontaneously and in the presence of Ca2+(6 mM)), CH3SH treated (spontaneously active and Ca2+ induced) and Na2S treated (spontaneously active and Ca2+ induced). Underlying antioxidative enzyme activities (superoxide dismutase - SOD, glutathione peroxidase - GSHPx, glutathione reductase - GR) in CH3SH- or Na2S-treated uteri were compared to controls. Results: Our experiments showed that CH3SH and Na2S provoked reversible relaxation of both spontaneous and Ca2+ induced uterine contractions. The dose-response curves differed in shape, and CH3SH curve was shifted to higher concentration compared to H2S/HS-. The effects of Na2...S fitted sigmoid curve, whereas those of CH3SH fitted linearly. CH3SH provoked increased SOD activity and decreased GR activity. However, Na2S (H2S/HS-) provoked an increase in SOD activity exclusively in Ca2+ stimulated uteri, while the activity of GSHPx was increased in both types of active uteri. Conclusion: Our results imply that CH3SH may have a constructive role in the control of muscle function and metabolism. Observed differences between CH3SH and H2S/HS- could be attributed to a larger moiety that is present in CH3SH compared to H2S, but they are more likely to be a consequence of the specific actions of HS-, in relation to its negative charge.

Keywords:
SOD / Relaxation / Reactive oxygen species / Methanethiol / Hydrogen sulfide
Source:
Pharmacological Reports, 2014, 66, 3, 373-379
Publisher:
  • Polish Acad Sciences Inst Pharmacology, Krakow
Funding / projects:
  • Molecular mechanisms of redox signalling in homeostasis: adaptation and pathology (RS-173014)

DOI: 10.1016/j.pharep.2013.12.012

ISSN: 1734-1140

PubMed: 24905511

WoS: 000336948900005

Scopus: 2-s2.0-84901450234
[ Google Scholar ]
12
12
URI
http://rimsi.imsi.bg.ac.rs/handle/123456789/787
Collections
  • Radovi istraživača / Researchers’ publications
Institution/Community
Institut za multidisciplinarna istraživanja
TY  - JOUR
AU  - Mijusković, Ana
AU  - Oreščanin-Dušić, Zorana
AU  - Nikolić-Kokić, Aleksandra
AU  - Slavić, Marija
AU  - Spasić, Mihajlo
AU  - Spasojević, Ivan
AU  - Blagojević, Duško P
PY  - 2014
UR  - http://rimsi.imsi.bg.ac.rs/handle/123456789/787
AB  - Background: Our aim was to investigate the effect of methanethiol (CH3SH) on contractility of rat uterus and activities of redox-active enzymes, and to compare them with the effect of sodium sulphide (Na2S), a hydrogen sulphide (H2S/HS-) donor. Methods: Uteri were isolated from virgin Wistar rats, divided into six groups, controls (untreated uteri allowed to contract spontaneously and in the presence of Ca2+(6 mM)), CH3SH treated (spontaneously active and Ca2+ induced) and Na2S treated (spontaneously active and Ca2+ induced). Underlying antioxidative enzyme activities (superoxide dismutase - SOD, glutathione peroxidase - GSHPx, glutathione reductase - GR) in CH3SH- or Na2S-treated uteri were compared to controls. Results: Our experiments showed that CH3SH and Na2S provoked reversible relaxation of both spontaneous and Ca2+ induced uterine contractions. The dose-response curves differed in shape, and CH3SH curve was shifted to higher concentration compared to H2S/HS-. The effects of Na2S fitted sigmoid curve, whereas those of CH3SH fitted linearly. CH3SH provoked increased SOD activity and decreased GR activity. However, Na2S (H2S/HS-) provoked an increase in SOD activity exclusively in Ca2+ stimulated uteri, while the activity of GSHPx was increased in both types of active uteri. Conclusion: Our results imply that CH3SH may have a constructive role in the control of muscle function and metabolism. Observed differences between CH3SH and H2S/HS- could be attributed to a larger moiety that is present in CH3SH compared to H2S, but they are more likely to be a consequence of the specific actions of HS-, in relation to its negative charge.
PB  - Polish Acad Sciences Inst Pharmacology, Krakow
T2  - Pharmacological Reports
T1  - Comparison of the effects of methanethiol and sodium sulphide on uterine contractile activity
EP  - 379
IS  - 3
SP  - 373
VL  - 66
DO  - 10.1016/j.pharep.2013.12.012
ER  - 
@article{
author = "Mijusković, Ana and Oreščanin-Dušić, Zorana and Nikolić-Kokić, Aleksandra and Slavić, Marija and Spasić, Mihajlo and Spasojević, Ivan and Blagojević, Duško P",
year = "2014",
abstract = "Background: Our aim was to investigate the effect of methanethiol (CH3SH) on contractility of rat uterus and activities of redox-active enzymes, and to compare them with the effect of sodium sulphide (Na2S), a hydrogen sulphide (H2S/HS-) donor. Methods: Uteri were isolated from virgin Wistar rats, divided into six groups, controls (untreated uteri allowed to contract spontaneously and in the presence of Ca2+(6 mM)), CH3SH treated (spontaneously active and Ca2+ induced) and Na2S treated (spontaneously active and Ca2+ induced). Underlying antioxidative enzyme activities (superoxide dismutase - SOD, glutathione peroxidase - GSHPx, glutathione reductase - GR) in CH3SH- or Na2S-treated uteri were compared to controls. Results: Our experiments showed that CH3SH and Na2S provoked reversible relaxation of both spontaneous and Ca2+ induced uterine contractions. The dose-response curves differed in shape, and CH3SH curve was shifted to higher concentration compared to H2S/HS-. The effects of Na2S fitted sigmoid curve, whereas those of CH3SH fitted linearly. CH3SH provoked increased SOD activity and decreased GR activity. However, Na2S (H2S/HS-) provoked an increase in SOD activity exclusively in Ca2+ stimulated uteri, while the activity of GSHPx was increased in both types of active uteri. Conclusion: Our results imply that CH3SH may have a constructive role in the control of muscle function and metabolism. Observed differences between CH3SH and H2S/HS- could be attributed to a larger moiety that is present in CH3SH compared to H2S, but they are more likely to be a consequence of the specific actions of HS-, in relation to its negative charge.",
publisher = "Polish Acad Sciences Inst Pharmacology, Krakow",
journal = "Pharmacological Reports",
title = "Comparison of the effects of methanethiol and sodium sulphide on uterine contractile activity",
pages = "379-373",
number = "3",
volume = "66",
doi = "10.1016/j.pharep.2013.12.012"
}
Mijusković, A., Oreščanin-Dušić, Z., Nikolić-Kokić, A., Slavić, M., Spasić, M., Spasojević, I.,& Blagojević, D. P.. (2014). Comparison of the effects of methanethiol and sodium sulphide on uterine contractile activity. in Pharmacological Reports
Polish Acad Sciences Inst Pharmacology, Krakow., 66(3), 373-379.
https://doi.org/10.1016/j.pharep.2013.12.012
Mijusković A, Oreščanin-Dušić Z, Nikolić-Kokić A, Slavić M, Spasić M, Spasojević I, Blagojević DP. Comparison of the effects of methanethiol and sodium sulphide on uterine contractile activity. in Pharmacological Reports. 2014;66(3):373-379.
doi:10.1016/j.pharep.2013.12.012 .
Mijusković, Ana, Oreščanin-Dušić, Zorana, Nikolić-Kokić, Aleksandra, Slavić, Marija, Spasić, Mihajlo, Spasojević, Ivan, Blagojević, Duško P, "Comparison of the effects of methanethiol and sodium sulphide on uterine contractile activity" in Pharmacological Reports, 66, no. 3 (2014):373-379,
https://doi.org/10.1016/j.pharep.2013.12.012 . .

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