Inhibition of Human cAMP-Phosphodiesterase as a Mechanism of the Spasmolytic Effect of Matricaria recutita L
Mechanisms underlying the spasmolytic activity of chamomile still remain unclear. Inhibition of cAMP- and cGMP-phosphodiesterases (PDE) is one of the mechanisms operated by spasmolytic drugs. In this study, the effect of chamomile on PDE was investigated. Human platelet cAMP-PDE and recombinant PDE5...
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Veröffentlicht in: | Journal of agricultural and food chemistry 2008-07, Vol.56 (13), p.5015-5020 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Mechanisms underlying the spasmolytic activity of chamomile still remain unclear. Inhibition of cAMP- and cGMP-phosphodiesterases (PDE) is one of the mechanisms operated by spasmolytic drugs. In this study, the effect of chamomile on PDE was investigated. Human platelet cAMP-PDE and recombinant PDE5A1 were assayed in the presence of infusions prepared from sifted flowers and capitula. LC-ESI-MS/MS analysis showed different compositions in infusions made with sifted flowers and capitula. Chamomile inhibited cAMP-PDE activity (IC50 = 17.9−40.5 μg/mL), while cGMP-PDE5 was less affected (−15% at 50 μg/mL). Among the individual compounds tested, only flavonoids showed an inhibitory effect (IC50 = 1.3−14.9 μM), contributing to around 39% of the infusion inhibition; other compounds responsible for cAMP-PDE inhibition still remain unknown. Although experimental evidence supporting the use of chamomile for gastrointestinal minor spasms dates back to the fifties, cAMP-PDE inhibition as a likely mechanism underlying the spasmolytic activity is reported for the first time. |
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ISSN: | 0021-8561 1520-5118 |
DOI: | 10.1021/jf800051n |