Garlic-Derived Organic Polysulfides and Myocardial Protection.
Study Goal
The researchers aimed to evaluate the cardioprotective effects of garlic-derived diallyl polysulfides, particularly focusing on their potential H2S-dependent mechanisms.
Results Summary
The study found that garlic reduces cardiovascular disease risks by lowering cholesterol, inhibiting platelet aggregation, and lowering blood pressure, with evidence suggesting these effects may be mediated by H2S-dependent pathways. Preclinical studies also showed that H2S administration prevents myocardial injury and dysfunction in CVD models.
Population
Not specified (preclinical and clinical evidence referenced, but no specific human population detailed).
Effective Dosage
Not specified
Duration
Not specified
Interactions
None mentioned
| Intervention | Direction | Endpoint | Population | Dosage | Impact | Claim # |
|---|---|---|---|---|---|---|
garlic | decrease | disease prevention | - | - | exert substantial medicinal effects | #1 |
garlic | decrease | cardiovascular disease (CVD) | - | - | reduces risks | #2 |
garlic | decrease | cholesterol | - | - | lowering | #3 |
garlic | decrease | platelet aggregation | - | - | inhibiting | #4 |
garlic | decrease | blood pressure | - | - | lowering | #5 |
hydrogen sulfide (H2S) | increase | cardiac and cellular protection | - | - | has cardioprotective and cytoprotective properties | #6 |
allicin | neutral | organic diallyl polysulfides | - | - | degraded into | #7 |
organic diallyl polysulfides | increase | H2S production | - | - | are potent H2S donors | #8 |
enhancement of endogenous H2S | neutral | vascular reactivity | - | - | has an impact on | #9 |
administration of H2S | decrease | myocardial injury and dysfunction | CVD models | - | prevents | #10 |
garlic-derived diallyl polysulfides | increase | cardiac protection | - | - | cardioprotective effects | #11 |
For centuries, garlic has been shown to exert substantial medicinal effects and is considered to be one of the best disease-preventative foods. Diet is important in the maintenance of health and prevention of many diseases including cardiovascular disease (CVD). Preclinical and clinical evidence has shown that garlic reduces risks associated with CVD by lowering cholesterol, inhibiting platelet aggregation, and lowering blood pressure. In recent years, emerging evidence has shown that hydrogen sulfide (H2S) has cardioprotective and cytoprotective properties. The active metabolite in garlic, allicin, is readily degraded into organic diallyl polysulfides that are potent H2S donors in the presence of thiols. Preclinical studies have shown that enhancement of endogenous H2S has an impact on vascular reactivity. In CVD models, the administration of H2S prevents myocardial injury and dysfunction. It is hypothesized that these beneficial effects of garlic may be mediated by H2S-dependent mechanisms. This review evaluates the current knowledge concerning the cardioprotective effects of garlic-derived diallyl polysulfides.