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Identification and Validation of Larixyl Acetate as a Potent TRPC6 Inhibitor
Nicole Urban1, Liming Wang1, Sandra Kwiek1
1Rudolf-Boehm-Institut für Pharmakologie und Toxikologie, Universität Leipzig, Leipzig, Germany (N.U., M.S.); Institut für Pharmazie, Freie Universität Berlin, Berlin, Germany (S.K., J.R.); and The Keenan Research Centre of St. Michael's Hospital, Toronto, Canada (L.W., W.M.K.).
Abstract:
Classical or canonical transient receptor potential 6 (TRPC6), a nonselective and Ca(2+)-permeable cation channel, mediates pathophysiological responses within pulmonary and renal diseases that are still poorly controlled by current medication. Thus, controlling TRPC6 activity may provide a promising and challenging pharmacological approach. Recently identified chemical entities have demonstrated that TRPC6 is pharmacologically targetable. However, isotype-selectivity with regard to its closest relative, TRPC3, is difficult to achieve. Reasoning that balsams, essential oils, or incense materials that are traditionally used for inhalation may contain biologic activities to block TRPC6 activity, we embarked on a natural compound strategy to identify new TRPC6-blocking chemical entities. Within several preparations of plant extracts, a strong TRPC6-inhibitory activity was found in conifer balsams. The biologic activity was associated with nonvolatile resins, but not with essential oils. Of various conifers, the larch balsam was unique in displaying a marked TRPC6-prevalent mode of action. By testing the main constituents of larch resin, we identified larixol and larixyl acetate as blockers of Ca(2+) entry and ionic currents through diacylglycerol- or receptor-activated recombinant TRPC6 channels, exhibiting approximately 12- and 5-fold selectivity compared with its closest relatives TRPC3 and TRPC7, respectively. No significant inhibition of more distantly related TRPV or TRPM channels was seen. The potent inhibition of recombinant TRPC6 by larixyl acetate (IC50 = 0.1-0.6 µM) was confirmed for native TRPC6-like [Ca(2+)]i signals in diacylglycerol-stimulated rat pulmonary artery smooth muscle cells. In isolated mouse lungs, larix-6-yl monoacetate (CAS 4608-49-5; larixyl acetate; 5 µM) prevented acute hypoxia-induced vasoconstriction. We conclude that larch-derived labdane-type diterpenes are TRPC6-selective inhibitors and may represent a starting point for pharmacological TRPC6 modulation within experimental therapies.
Insights
Researchers discovered larch balsam compounds, larixol and larixyl acetate, selectively block TRPC6 channels. These natural compounds show promise for treating pulmonary and renal diseases by inhibiting TRPC6 activity.
Area of Science:
- Pharmacology
- Natural Product Chemistry
- Molecular Biology
Background:
- Classical transient receptor potential 6 (TRPC6) channels are implicated in pulmonary and renal diseases.
- Current medications offer limited control over TRPC6-mediated pathophysiological responses.
- Achieving isotype-selectivity for TRPC6 inhibitors, especially against TRPC3, remains a challenge.
Purpose of the Study:
- To identify novel TRPC6 inhibitors from natural sources, specifically plant extracts traditionally used for inhalation.
- To explore the potential of conifer balsams as a source of TRPC6-blocking agents.
- To investigate the selectivity and efficacy of identified compounds against TRPC6.
Main Methods:
- Screening of various plant extracts for TRPC6 inhibitory activity.
- Isolation and characterization of active compounds from larch balsam resin.
- Electrophysiological assessment of TRPC6 channel activity using recombinant and native systems.
- In vitro and ex vivo studies to evaluate compound efficacy and selectivity.
Main Results:
- Conifer balsams, particularly larch balsam, exhibited significant TRPC6 inhibitory activity.
- Larixol and larixyl acetate were identified as active constituents, blocking Ca(2+) entry and ionic currents through TRPC6 channels.
- Larixyl acetate demonstrated potent and selective inhibition of TRPC6 over TRPC3 and TRPC7 (12- and 5-fold selectivity, respectively).
- Larixyl acetate inhibited native TRPC6-like signals in pulmonary artery smooth muscle cells and prevented hypoxia-induced vasoconstriction in mouse lungs.
Conclusions:
- Larch-derived labdane-type diterpenes, specifically larixyl acetate, are potent and selective TRPC6 inhibitors.
- These natural compounds represent a promising starting point for developing new pharmacological strategies targeting TRPC6.
- Further research into these compounds could lead to novel therapeutic interventions for TRPC6-related diseases.
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