Isothiocyanates and Glucosinolates from Sisymbrium officinale (L.) Scop. ("the Singers' Plant"): Isolation and in Vitro Assays on the Somatosensory and Pain Receptor TRPA1 Channel

(L.) Scop. is a wild common plant of the Brassicaceae family. It is known as "the singers' plant" for its traditional use in treating aphonia and vocal disability. Despite its wide use in herbal preparations, the molecular mechanism of action of extracts is not known. The plant is ric...

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Veröffentlicht in:Molecules (Basel, Switzerland) Switzerland), 2019-03, Vol.24 (5), p.949
Hauptverfasser: Borgonovo, Gigliola, Zimbaldi, Nathan, Guarise, Marta, De Nisi, Patrizia, De Petrocellis, Luciano, Schiano Moriello, Aniello, Bassoli, Angela
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Sprache:eng
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Zusammenfassung:(L.) Scop. is a wild common plant of the Brassicaceae family. It is known as "the singers' plant" for its traditional use in treating aphonia and vocal disability. Despite its wide use in herbal preparations, the molecular mechanism of action of extracts is not known. The plant is rich in glucosinolates and isothiocyanates, which are supposed to be its active compounds. Some members of this family, in particular allylisothiocyanate, are strong agonists of the transient receptor potential ankyrin 1 (TRPA1) channel, which is involved in the somatosensory perception of pungency as well as in the nociception pathway of inflammatory pain. This study aims to isolate the glucosinolates and isothiocianates from fresh to identify the major components and test their activity in in vitro assays with a cloned TRPA1 channel. Samples of cultivated have been extracted and the active compounds isolated by column chromatography, HPLC and PTLC. The main components glucoputranjivin, isopropylisothiocyanate and 2-buthylisothiocianate have been tested on TRPA1. The glucosinolates glucoputranjivin and sinigrin turned out to be inactive, while isopropylisothiocyanate and 2-buthylisothiocyanate are potent agonists of TRPA1, with an EC in the range of the high potency natural agonists identified so far for this somatosensory channel.
ISSN:1420-3049
1420-3049
DOI:10.3390/molecules24050949