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Energetic stabilization of d-camphor via weak neutral currents.

It is shown via a series of numerical tests on the camphor molecule, C10H16O, that the naturally occurring d-enantiomer is energetically stabilized with respect to its mirror image by electroweak force. The calculated energy difference between enantiomers, about 1.5 x 10(-19) hartree, is roughly eight orders of magnitude smaller than the upper bound suggested by available spectroscopic investigations on the frequency of a spectroscopic transition. However, such a difference is about ten times larger than previous estimates of parity-violating energy contributions reported in the literature for other chiral molecules, which makes the idea of electroweak stabilization of one enantiomer more reliable than expected before.

Biophysical Phenomena↗

Spin transition of camphor-bound cytochrome P-450. 1. local paH and electrostatic interactions.

Variations of the spin state in camphor-bound cytochrome P-450 are interpreted in the light of the polyelectrolyte theory and its implications on the microenvironment of the heme. The ratio of high-spin to low-spin iron can serve as a tool to determine the local paH in the microenvironment of a group (pK0, app approximately 5.4) which governs the spin state. The local paH depends on the electrostatic potential created by negatively charged groups (pKa = 5.6), modulated in turn by paH and by the screening effect of ionic strength. A model is given for the proton-coupled spin state change.

Camphor↗

Visible and ultraviolet spectral transitions of camphor-bound cytochrome P-450. A comprehensive study.

A systematic analysis of the low-spin to high-spin transition in the ultraviolet and visible absorption spectrum of camphor-bound cytochrome P-450 is presented. The equilibrium depends on the ionization of two groups, the deprotonation of the first one (pK1 = 5.4 at -17 degrees C) leading to an increased content of high-spin type of spectrum, that of the second one (pK2 > 6) to more low-spin type of spectrum. Both protonation processes and their thermodynamic terms are studied under various conditions of salt, solvent and temperature, including subzero temperatures. The basic mechanism of the transition is the same in aqueous and mixed organic solvent, i.e. the protonation of the first group triggers a conformational change of the whole protein. These phenomena are discussed with reference to functional conformational changes during the catalytic cycle of cytochrome P-450.

Camphor↗

Dynamics of the spin transition in camphor-bound ferric cytochrome P-450 versus temperature, pressure and viscosity.

The kinetics and equilibrium of the low-spin (LS) to high-spin (HS) transition in camphor-bound ferric cytochrome P-450 have been measured versus temperature, pressure and viscosity at selected pH and KCl concentration. The results cannot be described by a single set of delta E degrees, delta V degrees and delta S degrees, since these parameters change with the solvent conditions. A three-state model can explain a large bulk of the data but it is clear that other substates are involved. The activation energy and volume are practically zero for the high to low spin transition, while the low to high spin transition parameters vary from 20 kJ/mol to 80 kJ/mol for delta E psi and from 5 cm3/mol to 80 cm3/mol for delta V psi. The observed relaxation time could be varied from about 10 ms to more than 1000 s by changing temperature, pressure and viscosity. Both kLH and kHL rate coefficients scale roughly as 1/eta, indicating that the slow spin change involves protein motions which are influenced by the solvent viscous forces.

Binding Sites↗

Contact allergy to 4-isopropyl-dibenzoylmethane and 3-(4'-methylbenzylidene) camphor in the sunscreen Eusolex 8021.

10 cases of contact allergy from the sunscreen Eusolex 8021 are reported. 5 patients were sensitized to a lipstick, 4 to a sunscreen cream, and 1 reacted to several cosmetic creams. Of 9 patients tested with the 2 ingredients of Eusolex 8021, 5 proved to be allergic to both (chemically unrelated) constituents: 4-isopropyl-dibenzoylmethane and 3-(4'-methylbenzylidene) camphor; 4 were allergic to 4-isopropyl-dibenzoylmethane only. Contact allergy to this recently introduced broad spectrum sunscreen may not be rare. The relevant literature is reviewed.

Adult↗

Contact allergy to 3-(4' methylbenzylidene) camphor and contact and photocontact allergy to 4-isopropyl dibenzoylmethane.

We report a clinical case of a 15-year-old boy who presented a photodistributed eruption after having used a sunscreen cream for 8 days. Photobiological testing showed a contact allergy to 3-(4' methylbenzylidene) camphor (Eusolex 6300) included in his sunscreen cream associated with a contact and photocontact allergy to 4-isopropyl-dibenzoylmethane (Eusolex 8020) not included.

Adolescent↗

Camphor revisited: involvement of a unique monooxygenase in metabolism of 2-oxo-delta 3-4,5,5-trimethylcyclopentenylacetic acid by Pseudomonas putida.

Previously, Pseudomonas putida was shown to degrade (+)-camphor, and cleavage of the first ring of the bicyclic structure involved two monooxygenases (a hydroxylase and a ring oxygen-inserting enzyme), a dehydrogenase, and spontaneous cleavage of an unstable oxygenation product (lactone). Cleavage of the second ring was not demonstrated but was assumed also to occur by ring oxygen insertion, since the predicted oxygenation product was extracted from whole-cell incubation systems. Our investigation established that metabolism of the first ring cleavage intermediate, 2-oxo-delta 3-4,5,5-trimethylcyclopentenylacetic acid, occurred through the sequential action of two inducible enzymes, a coenzyme A ester synthetase and an oxygenase. The oxygenase was purified to homogeneity and had a molecular weight of 106,000. This enzyme carried a single molecule of flavin adenine dinucleotide and consisted of two identical subunits. Iron was not present at a significant level. The oxygenase was specific for NADPH as the electron donor and absolutely specific for the coenzyme A ester of 2-oxo-delta 3-4,5,5-trimethylcyclopentenylacetic acid as the substrate. The reaction stoichiometry was compatible with this enzyme being a monooxygenase, and a mass spectral analysis of the methyl ester of the product confirmed the insertion of a single oxygen atom. The enzyme appeared to be analogous to, although distinct from. 2,5-diketocamphane 1,2-monooxygenase in catalyzing a "biological Baeyer-Villiger" reaction with the formation of a lactone. Structural analogy suggested that this lactone, like the first, was also unstable and susceptible to spontaneous ring opening, although this was not experimentally established.

Camphor↗

Dopaminergic unique affinity of tetrahydroberberine and l-tetrahydroberberine-d-camphor sulfonate.

l-Tetrahydroberberine-d-camphor sulfonate (THB-CS) possessed an inhibitory effect on apomorphine-induced chewing movement in a similar manner to that of tetrahydroberberine (THB). Both compounds enhanced barbiturate-induced hypnosis. They did not have an anticonvulsant effect on convulsive seizures induced by bicuculline, pentetrazole or strychnine. THB and THB-CS blocked dopamine-stimulated adenylate cyclase activity. These compounds showed almost equipotent affinities to dopamine D1 (3H-SCH-23390) and D2 (3H-spiperone) receptors but did not have significant affinity to mu-opioid, muscarinic and alpha 2-adrenergic receptors, and benzodiazepine binding sites. Furthermore, both compounds did not elicit cataleptogenic behavior, even at very high doses. These data suggest that THB and THB-CS have a central depressant effect through both D1 and D2 dopaminergic receptors and may have different modes of action from that of standard neuroleptics.

Animals↗

[Central depressant effect of l-tetrahydroberberine-d-camphor sulfonate (THB-CS). Electroencephalographic study].

Effects of l-tetrahydroberberine-d-camphor sulfonate (THB-CS) on spontaneous EEG, arousal response and recruiting response were investigated in rabbits and rats in comparison with those of chlorpromazine. The spontaneous EEG recorded from the motor cortex and hippocampus showed a prominent resting pattern 3-5 min after intravenous administration of THB-CS in doses more than 0.01 mg/kg in rabbits and 30 min after oral administration of the drug in doses more than 1 mg/kg in rats. These effects lasted for 30-60 min after i.v. administration and 60-90 min after oral administration; however, the effects were not proportional to the doses up to 8 mg/kg (i.v.) and 12.5 mg/kg (p.o.). The abnormal characteristics of the EEG pattern such as seizure pattern and flattening were not observed. Chlorpromazine also produced the resting pattern in doses of 2 mg/kg (i.v.) in rabbits and 1 mg/kg (p.o.) in rats. THB-CS and chlorpromazine produced a slight elevation of threshold for the EEG arousal response elicited by high frequency stimulation of the midbrain reticular formation, but did not alter the recruiting response elicited by low frequency stimulation of the centromedian nucleus of the thalamus. These results suggest that the effects of THB-CS resemble those of chlorpromazine, but are different from those of barbiturates.

Administration, Oral↗

The effect of parachlorophenol and camphorated parachlorophenol on nitric oxide production by a murine macrophage cell line, RAW264.7.

The aim of this study was to determine the effect of parachlorophenol (PCP) and camphorated parachlorophenol (CMCP) on nitric oxide (NO) production by a murine macrophage cell line, RAW264.7. The cells were incubated on plastic disks with either PCP or CMCP. Plastic adherent and nonadherent cells were subsequently stimulated with recombinant mouse IFN-gamma or bacterial lipopolysaccharide (LPS). Nitric oxide (NO) levels detected from the culture supernatants were determined by the Griess reaction. The results showed that PCP and CMCP diluted at 10(-1) but not at 10(-3) suppressed NO production by both plastic adherent and nonadherent cells, suggesting that both phenolic compounds may suppress NO production by murine macrophages in a dose-dependent manner.

Analysis of Variance↗

[Raspail's camphor chest].

In the 19th century many medical textbooks were published in Poland. These presented the principles of medical knowledge, including information about illnesses and medicines. Most of them were written by physicians or pharmacists but some of them were written by charlatans. Books describing "miracle cures" were specially popular and often had many editions. The book Domowy lekarz i domowa apteka written by F. V. Raspail and published in Warsaw in 1864 is a good example of bad medical advice. The main medicine recommended by Raspail was camphor.

Camphor↗

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↗

[Historical study of the moth repellent, "Fujisawa Camphor" (3) An exposition as an advertisement media].

Newspaper advertisements were the predominant medium in informing people about new products midway through the Meiji Era. Subscribers to these newspapers, however, were still limited. At the time, expositions were wildly popular. Seizing the opportunity , in 1903 Fujisawa promoted his "Fujisawa Camphor" through aggressive advertising at the 5th Domestic Industrial Exposition in Osaka. The advertising proved to be a success, as Fujisawa took 2nd Prize of the exposition.

Advertising↗

[Localization of camphor degradative plasmids on the chromosome of Pseudomonas putida strains PaW].

Camphor degradative plasmids (CAM, pRK1) are preferentially situated on chromosomes of Pseudomonas putida strains PaW. After having been transferred into Cam+ strains, the TOL plasmid pWWO dissociates into the cryptic plasmid pWWO-8 and chromosome-borne transposon Tn4651. The opposite situation, i.e. reconstruction of the TOL plasmid pWWO from the cryptic plasmid pWWO-8 and chromosome-borne catabolic operons of the pWWO plasmid has been described. Cam- derivatives of the CAM plasmid were obtained in vivo which contain the TOL plasmid transposons Tn4651 or Tn4652 as obligatory structural elements. These plasmids as well as pWWO-8 determine conjugational mobilization of chromosome-located cam operons followed by their integration into the chromosome of recipient.

Camphor↗

Determination of association constants at moderately fast chemical exchange: complexation of camphor enantiomers by alpha-cyclodextrin.

Association constants in weak molecular complexes can be determined by analysis of chemical shifts variations resulting from changes of guest to host concentration ratio. In the regime of very fast exchange, i.e., when exchange rate is several orders of magnitude larger than the Larmor angular frequency difference of the observed resonance in free and complexed molecule, the apparent position of averaged resonance is a population-weighted mean of resonances of particular forms involved in the equilibrium. The assumption of very fast exchange is often, however, tacitly admitted in literature even in cases where the process of interest is much slower than required. We show that such an unjustified simplification may, under certain circumstances, lead to significant underestimation of association constant and, in consequence, to non-negligible errors in Gibbs free energy under determination. We present a general method, based on iterative numerical NMR line shape analysis, which allows one for the compensation of chemical exchange effects, and delivers both the correct association constants and the exchange rates. The latter are not delivered by the other mentioned method. Practical application of our algorithm is illustrated by the case of camphor-alpha-cyclodextrin complexes.

Journal Article↗