Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Menthol”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 253 records · Page 14Linked to original sources

Functional control of cold- and menthol-sensitive TRPM8 ion channels by phosphatidylinositol 4,5-bisphosphate.

Cold is detected by a small subpopulation of peripheral thermoreceptors. TRPM8, a cloned menthol- and cold-sensitive ion channel, has been suggested to mediate cold transduction in the innocuous range. The channel shows a robust response in whole-cell recordings but exhibits markedly reduced activity in excised membrane patches. Here we report that phosphatidylinositol 4,5-bisphosphate (PIP2) is an essential regulator of the channel function. The rundown of the channel is prevented by lipid phosphatase inhibitors. Application of exogenous PIP2 both activates the channel directly and restores rundown activity. Whole-cell experiments involving intracellular dialysis with polyvalent cations, inhibition of PIP2 synthesis kinases, and receptor-mediated hydrolysis of PIP2 show that PIP2 also modulates the channel activity in the intact cells. The crucial role of PIP2 on the function of TRPM8 suggests that the membrane PIP2 level may be an important regulator of cold transduction in vivo. The opposite effects of PIP2 on the vanilloid receptor TRPV1 and TRPM8 also implies that the membrane lipid may have dual actions as a bimodal switch to selectively control the heat- and cold-induced responses in nociceptors expressing both channels.

1-Phosphatidylinositol 4-Kinase↗

Effects of a menthol-based analgesic balm on pressor responses evoked from muscle afferents in cats.

OBJECTIVE: To evaluate changes in heart rate (HR) and mean arterial pressure (MAP) as indicators of changes in pressor response for muscle afferents after topical application of menthol (MEN)-based analgesic balm. ANIMALS: 11 decerebrate cats. PROCEDURE: Pressor responses were reflexively evoked by static contraction of hind limb muscles, which are caused by group III and IV afferents. Responses were monitored without interference from anesthesia or effects of higher brain function by the use of decerebrate cats. After obtaining baseline data, MEN analgesic balm (1.9%) was applied to the skin over contracting muscles of 1 hind limb in 6 cats; petrolatum was applied to 5 control cats. Muscle contractions were evoked every 10 minutes, alternating between hind limbs, for 120 minutes. Peak MAP and HR were analyzed. RESULTS: Peak MAP responses evoked by static muscle contraction for the ipsilateral hind limb were significantly attenuated 20 minutes after application, but approached baseline values 40 minutes after application. The pressor response was significantly decreased 20 minutes after application during the last 12 seconds of the stimulus, which was attributed to group IV afferents. There were no significant differences in HR responses. CONCLUSIONS AND CLINICAL RELEVANCE: Application of MEN analgesic balm to the skin over contracting muscles significantly decreased the pressor response to static muscle contractions. This suggests that topical application of MEN has effects on responses evoked from receptors located in muscles. The MEN analgesic balm appeared to attenuate the pressor response 20 minutes after application, but it was a short-term effect.

Administration, Topical↗

[Pharmacological studies with an ointment containing menthol, camphene and essential oils for broncholytic and secretolytic effects].

Experimental studies in animals were made with an ointment on the basis of menthol, camphene and essential oils (Pinimenthol) to prove its broncholytical and secretolytical effects. According to its recommended clinical application it was tested on the respiratory system as well as by its application on epilated skin. The acetylcholine induced bronchospasms were reduced by 50% when the ointment was insufflated through the respiratory tract. Whereas on epicutaneous application of the drug gave only a slight reduction of the bronchospasms. Significant secretolytical effects of the ointment could be proved by an increase of 44% of the tracheobroncholytical secretion after intratracheal insufflation. An increase of 54% of the secretion was measured after applying the ointment directly to the epilated skin of the animals. Regarding these results an adequate therapeutic effect of the ointment can be expected in humans in chronically obstructive bronchitis and diseases of the respiratory system.

Acetylcholine↗

[Percutaneous absorption of various terpenes - menthol, camphene, limonene, isoborneol-acetate, alpha-pinene - from foam baths (author's transl)].

The percutaneous absorptions of camphene, isoborneol-acetate, limonene, menthol and alpha-pinene as constituents of a foam bath (Pinimenthol) were measured on animals using radioactively labelled ingredients. Pharmacokinetic measurements showed maximum blood levels for all tested ingredients 10 min after the onset of percutaneous absorption. None of the ingredients was preferentially absorbed. Blood levels of all ingredients after 10 min of percutaneous absorption were a direct function of the size of the skin area involved.

Animals↗

Response of human ciliated respiratory cells to a mixture of menthol, eucalyptus oil and pine needle oil.

Nasal respiratory cells were harvested from 45 healthy individuals using a microcurette technique. Following harvest, cells were placed on microporous polycarbonate membranes and exposed for 30 min using a gas/liquid interface technique to a mixture of menthol, eucalyptus oil and pine needle oil (MEP), eucalyptus oil alone (ECO), and pine needle oil alone (PNO) at concentrations ranging between 0.2 and 11 g/m3. Ambient air served as control. Ciliary beat frequency (CBF) was assessed before and after exposure using video-interference-contrast microscopy. Control exposure to air (n = 10) did not alter CBF (7.1 +/- 0.9 Hz before and 7.0 +/- 0.9 Hz after exposure, -1.3% decrease), whereas a dose dependent decrease of CBF following exposure to MEP (max. decrease -22.6% at a concentration of 10 g/m3, p < 0.01), ECO (max. decrease -32.5% at a concentration of 7.5 g/m3, p < 0.01) and PNO (max. decrease -56.1% at a concentration of 9.4 g/m3, p < 0.01) was observed. The data show that essential oils in high concentrations can reduce in-vitro ciliary activity of human respiratory cells not protected by a mucus layer. These effects have to be verified by in vivo investigations.

Administration, Inhalation↗

Monoterpene double-bond reductases of the (-)-menthol biosynthetic pathway: isolation and characterization of cDNAs encoding (-)-isopiperitenone reductase and (+)-pulegone reductase of peppermint.

Random sequencing of a peppermint essential oil gland secretory cell cDNA library revealed a large number of clones that specified redox-type enzymes. Full-length acquisitions of each type were screened by functional expression in Escherichia coli using a newly developed in situ assay. cDNA clones encoding the monoterpene double-bond reductases (-)-isopiperitenone reductase and (+)-pulegone reductase were isolated, representing two central steps in the biosynthesis of (-)-menthol, the principal component of peppermint essential oil, and the first reductase genes of terpenoid metabolism to be described. The (-)-isopiperitenone reductase cDNA has an open reading frame of 942 nucleotides that encodes a 314 residue protein with a calculated molecular weight of 34,409. The recombinant reductase has an optimum pH of 5.5, and K(m) values of 1.0 and 2.2 microM for (-)-isopiperitenone and NADPH, respectively, with k(cat) of 1.3s(-1) for the formation of the product (+)-cis-isopulegone. The (+)-pulegone reductase cDNA has an open reading frame of 1026 nucleotides and encodes a 342 residue protein with a calculated molecular weight of 37,914. This recombinant reductase catalyzes the reduction of the 4(8)-double bond of (+)-pulegone to produce both (-)-menthone and (+)-isomenthone in a 55:45 ratio, has an optimum pH of 5.0, and K(m) values of 2.3 and 6.9 microM for (+)-pulegone and NADPH, respectively, with k(cat) of 1.8s(-1). Deduced sequence comparison revealed that these two highly substrate specific double-bond reductases show less than 12% identity. (-)-Isopiperitenone reductase is a member of the short-chain dehydrogenase/reductase superfamily and (+)-pulegone reductase is a member of the medium-chain dehydrogenase/reductase superfamily, implying very different evolutionary origins in spite of the similarity in substrates utilized and reactions catalyzed.

Amino Acid Sequence↗

Fungal transformation of (1R,2S,5R)-(-)-menthol by cephalosporiumaphidicola

Incubation of (1R,2S,5R)-(-)-menthol (1) with Cephalosporium aphidicola for 12 days yielded the six oxidized metabolites: 10-acetoxymenthol (2), 7-hydroxymenthol (3), 4alpha-hydroxymenthol (4), 3alpha-hydroxymenthol (5), 9-hydroxymenthol (6), and 10-hydroxymenthol (7). The structures of the novel compounds 2, 4, 5, and 7 were assigned by interpretation of their spectral data.

Journal Article↗

In vitro activity of taurolidine, chlorophenol-camphor-menthol and chlorhexidine against oral pathogenic microorganisms.

The antimicrobial activity of taurolidine (Taurolin, CAS 19388-87-5), a synthetic broad-spectrum antimicrobial agent and anti-toxin, and two conventional antiseptics, chlorophenol-camphor-menthol (CCM) and chlorhexidine digluconate (CHX) were compared using the serial dilution test on 10 potential oral pathogenic bacterial species. The minimum inhibitory and minimum bactericidal concentrations were lowest for CHX (MIC 0.03-0.12 mg/ml), followed by taurolidine (MIC 0.12-0.5 mg/ml) and CCM (MIC 0.5-2.0 mg/ml). However, if both bacterial efficacy and cytotoxicity are considered, only taurolidine achieves extensive bactericidal activity with tissue tolerability.

Anti-Infective Agents, Local↗