PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “ISONICOTINIC ACID”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

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

At least 73 records · Page 4Linked to original sources

[Electrochemical behavior of dopamine at the poly (isonicotinic acid) modified glassy carbon electrode].

AIM: To study the determination of dopamine (DA) in the presence of ascorbic acid (AA) using poly (isonicotinic acid) film modified electrode. METHODS: The cyclic voltammetry and differential pulse voltammetry were used to study the electrochemical behavior of DA at the poly (isonicotinic acid) film modified electrode. RESULTS: The poly (isonicotinic acid) film modified electrode showed an electrocatalytic effect on DA, and shifted the oxidation of AA to negative potential. The difference between the oxidation potentials of DA and AA was 204 mV, thus, AA did not interfere with the determination of DA. The linear range between the anodic currents and DA concentration was: 1.0 x 10(-7)-2.0 x 10(-5) and 2.0 x 10(-5)-1.0 x 10(-4) mol.L-1. The detection limit was 8.0 x 10(-9) mol.L-1. CONCLUSION: The useful life period of the modified electrode is three weeks at least. The modified electrode can be used to the determination of DA in the sample.

Ascorbic Acid↗

The effect of substrate on inhibition of Corynebacterium lepus by isonicotinic acid hydrazide (Isoniazid).

Isonicotinic acid hydrazide (INH) inhibits the growth of Corynebacterium lepus on hexadecane but has no effect on its growth on fructose. INH also inhibits the production of the mycolic acid containing lipopeptide bioemulsifier normally produced by C. lepus in response to an insoluble substate. The primary effect of INH appears to be inhibition of mycolic acid synthesis, which limits the growth of C. lepus on hexadecane by reducing the concentration of bioemulsifier.

Alkanes↗

Participation of P450-dependent oxidation of isoniazid in isonicotinic acid formation in rat liver.

By determining the formation amount of isonicotinic acid (INA) from isonicotinic acid hydrazide (isoniazid:INH) in isolated rat hepatocytes, we were able to identify the involvement of the oxidative cleavage of the acid hydrazide. INA formation from INH increased significantly using the isolated hepatocytes prepared from rats pretreated with phenobarbital (PB), 3-methylcholanthrene (3MC), dexamethazone (DEX) and rifampicin (RIF), respectively, in comparison to the control group. On the other hand, a remarkable decrease in INA formation from INH was observed by the addition of such P450 inhibitor as metyrapone or cimetidine as well as an amidase inhibitor bis(p-nitrophenyl)phosphate (BNPP) to the isolated hepatocytes prepared from PB-pretreated rats. By further experiments using rat hepatic microsomes, the oxidative pathway of INA formation in INH metabolism was determined to be P450-dependent, since NADPH and oxygen were both essential for the oxidative pathway of INH to INA and the amount of INA formation was also significantly increased by P450 inducers. Regarding acetylisoniazid (AcINH) and isonicotinic acid amide (INAA), however, INA formation by P450 was little observed in the microsomal experiments.

Animals↗

Synthesis and biological activities of the tri-L-alanine derivative of isonicotinic acid hydrazide.

N-(tert-Butyloxycarbonyl) tri-L-alanine was coupled to the hydrazide function of isonicotinic acid hydrazide followed by cleavage of the amino protective group. The resulting dihydrochloride of the tri-L-alanine derivative of isonicotinic acid hydrazide was characterized by 13C-NMR. The minimal inhibitory concentration of isonicotinic acid hydrazide was not improved by the peptide derivative, and competition experiments with tri-L-alanine demonstrated that tri-L-alanyl-isonicotinic acid hydrazide did not use the peptide transport system. Isonicotinic acid hydrazide and its tri-peptide derivative possessed the same activity against pathogenic mycobacteria and did not antagonize each other. The relatively high stability of the tri-peptide derivative against peptidases of Mycobacterium fortuitum was discussed as being responsible for the significantly weaker activity against this atypical mycobacterium strain. With the exception of peptidases of hog intestinal mucose, the tri-L-alanyl derivative of isonicotinic acid hydrazide was stable to pronase and alpha-chymotrypsin when compared to other peptides.

Anti-Bacterial Agents↗

Molecular ordering in isonicotinic acid on rutile TiO2(110) investigated with valence band photoemission.

The adsorption of isonicotinic acid on rutile TiO(2)(110) has been investigated using synchrotron-based valence band photoemission. Structural ordering in multilayer films of the molecules is found to give rise to a strong angular dependence in the valence band intensities when measured using linearly polarized radiation. Molecular ordering in this case is proposed to be induced by intermolecular hydrogen bonding which is found to be highly dependent upon the deposition rate of the isonicotinic acid. Through comparison of the experimental data with density functional calculated valence band spectra of hydrogen-bonded isonicotinic acid molecules, we can account for the angular dependence in terms of the spatial distribution of the molecular orbitals.

Journal Article↗

gamma-Aminobutyric acid release from synaptosomes prepared from rats treated with isonicotinic acid hydrazide and gabaculine.

The potassium-stimulated release of gamma-aminobutyric acid (GABA) from synaptosomes was determined in preparations from control rats and from rats treated with a convulsant agent [isonicotinic acid hydrazide (INH)] and an anticonvulsant agent (gabaculine). INH treatment brought about a significant decrease in Ca2+-dependent release of GABA with no effect on Ca2+-independent release, whereas gabaculine caused an increase in Ca2+-independent release with no effect on Ca2+-dependent release of GABA. Thus, the anticonvulsant action of gabaculine was not a simple reversal of the effects of INH on GABA release. The results indicate that there are at least two pools of GABA in nerve endings and support the hypothesis that exogenous GABA is taken up first into a pool that supplies GABA for Ca2+-independent release and then is transferred to a second pool (Ca2+-dependent releasable), where it mixes with newly synthesized GABA.

Animals↗