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Biomedical subjects

G Valencia

Publications and source records attributed to G Valencia.

At least 55 records · Page 3Linked to original sources

In vitro activity and selectivity of glucosidic SP(6-11) analogues.

The relative potencies of a series of substance P (6-11) analogues have been determined for spasmogenic activity in the guinea pig ileum in vitro and for potentiation of electrically evoked contractions in the rat vas deferens in vitro. ED50 values were determined for the new analogues. Substance P and its methyl ester were used as standard agonists. Substitution of Gly9 by Pro on [Glu6]SP(6-11) increased four times the activity on the NK-1 receptor. The glycosilation of [Glu6]SP(6-11) by the incorporation of a beta-D-glucopyranosyl amide residue on the gamma-carboxyl group of Glu6 reduced both the activity and selectivity. The simultaneous substitution of Gly9 by Pro and the incorporation of a monosaccharide moiety on the gamma-carboxyl of Glu6 on [Glu6]SP(6-11) yielded an analogue with 60-fold enhanced selectivity relative to substance P for the NK-1 receptor. These results may indicate that the critical factor providing potency to SP(6-11) analogues is mostly related to conformational rather than hydrophilicity aspects of the molecular structure.

Animals↗

Synthesis and biological activity of substance P analogues.

The synthesis of the hexapeptide [Glu6]SP6-11 and its glycosylated analogue at the Glu6 gamma-carboxyl position by solution procedures according to several strategies is discussed. The biological activity of SP, [Glu6]SP6-11 (VI) and [Glu(beta-D-Glcp)6]SP6-11 (VIII) have been determined and compared to SP by the GPI and RVD assays. The introduction of a beta-D-glucopyranosyl moiety at the sixth position of the [Glu6]SP6-11 did not affect to a great extent the in vitro activity pattern of the parent hexapeptide.

Animals↗

Kinetic study of alpha-chymotrypsin-catalyzed synthesis of kyotorphin.

A kinetic analysis of reaction-rate data obtained during a series of optimization experiments of the alpha-chymotrypsin-catalyzed synthesis of kyotorphin has been performed. The kinetic data have been fitted to a model equation derived from a proposed sequential mechanism, which has been further simplified to a first-order equation as a function of the substrate consumption. Statistical tests performed validate the model, since the fitted constants were statistically significant. In addition, the activation energy of the process has been calculated and resulted to be 32.5 +/- 2.3 kJ/mol which is within the range of other enzymatic reactions.

Chymotrypsin↗

A physicochemical study of the interaction of phosphatidylinositol with buprenorphine and naloxone.

The interactions of two opioid molecules (buprenorphine and naloxone) with phosphatidylinositol and phosphatidylcholine were studied in lipid monolayers at the air-water interface. The influence of Na+, Ca2+, and Mn2+ ions in these interactions has also been determined. Neither buprenorphine nor naloxone influence the ordered state of phosphatidylcholine monolayers. On the contrary, both opioid molecules interact specifically with phosphatidylinositol monolayers. The area/molecule of phosphatidylinositol spread on buprenorphine containing subphases is highly affected by this molecule and also by ions. The phosphatidylinositol/naloxone interactions are rather weak and less affected by ions.

Buprenorphine↗

Laboratory study of asthmatic volunteers exposed to nitrogen dioxide and to ambient air pollution.

Adult volunteers with moderate to severe asthma (N = 59) underwent dose-response studies to assess their reactivity to nitrogen dioxide (NO2) in otherwise clean air. Exposure concentrations were 0.0 (control), 0.3 and 0.6 ppm. A subgroup (N = 36) also underwent exposures to Los Angeles area ambient air at times when NO2 pollution was expected. Concentrations of NO2 during ambient exposures were 0.086 +/- 0.024 ppm (mean +/- s.d.). All exposures took place in a movable chamber/laboratory facility. Each study lasted 2 hr, with alternating 10 min periods of exercise (mean ventilation rate 40 L/min) and rest. Lung function was measured prior to exposure and after 10 min, 1 hr and 2 hr of exposure. Symptoms were recorded prior to exposure, during exposure and for 1 week afterward. In some subjects bronchial reactivity to cold air was measured 1 hr after the end of exposure and again 24 hr later. Different exposure conditions were presented in randomized order, 1 week apart. No pollutant exposure produced statistically significant changes in lung function, symptoms, or bronchial reactivity, relative to clean air. Ambient air exposures produced the largest (still nonsignificant) mean changes in some lung function tests. Given the physiological and atmospheric variability, negative statistical results do not rule out a small unfavorable effect of ambient pollution on lung function. If any such effect occurred, it was not likely caused by NO2. Statistical results remained negative when the analysis was restricted to the 20 subjects with most severe lung dysfunction. In conclusion at least in the Los Angeles area, sensitivity to ambient concentrations of NO2 is not common, even among adult asthmatics with moderate to severe disease.

Adult↗

[D-Met2,Pro5] enkephalin [N1.5-beta-D-glucopyranosyl] amide: a glycosylpeptide with high antinociceptive activity.

Different synthetic strategies have been attempted for the synthesis of a glycosylpeptide resulting from the covalent bonding of a sugar residue to the C-terminal carboxyl group of an enkephalin related pentapeptide. The final structure is: Tyr-D-Met-Gly-Phe-Pro [N1.5-beta-D-glucopyranosyl] amide. The in vitro potency on the GPI test of this analogue was IC50 = 64.0 nM. However, its antinociceptive activity by tail immersion tests, after intraperitoneal administration, was 2000 and 200 times higher than morphine in rats and mice, respectively.

Analgesics↗

Kinetically controlled enzyme-catalyzed synthesis of kyotorphin. An optimization study.

Regarding the alpha-chymotrypsin-catalyzed synthesis of Z-Tyr-Arg-NH2, the effect on the reaction yield of the following experimental factors is discussed: DMF/buffer proportions, reaction temperature, and donor/nucleophile ratios. The experimental design shows that relatively better yields are obtained by increasing the reaction temperature and lowering the cosolvent proportion while maintaining a slight excess of nucleophile. The ascensional line reaches an optimal response surface very flat voided of a well-defined maximum.

Analgesics↗

Interaction of morphine and naloxone with mixed monolayers of lecithin and gangliosides.

Monomolecular films of lecithin, gangliosides or lecithin/gangliosides mixtures were studied on a Langmuir through in order to examine the interactions between these lipids and opioid agonists or antagonists. Lecithin alone did not interact in a monolayer structure with opioids. However, gangliosides and lecithin/gangliosides mixtures were expanded by both morphine and naloxone. The expansion of ganglioside-containing monolayers was greater with morphine than with the antagonist, naloxone.

Chemical Phenomena↗

Biological activity of Leu-enkephalin containing hydrophobic moieties.

A series of enkephalin analogues (Tyr-Gly-Gly-Phe-Leu-C-NH-R;R=C6,C8,C10,C12 and C14; C=CH2 groups) with increasing hydrophobic character have been tested behaviourally in the analgesic hot plate and tail flick tests. The analogues were administered intraperitoneally and were found to possess anti-nociceptive activity. The results indicate that apparently there is not a direct relationship between increasing hydrophobicity and activity of the enkephalin-alkyl-amide analogues. The enkephalin analogues were found to behave in the same way as the enkephalins in producing tolerance.

Analgesia↗

Preparation and in vitro activity of liposome encapsulated opioids.

Four opiate molecules: morphine, naloxone, meperidine and codeine have been encapsulated in liposomes. The encapsulation efficiency has been studied as a function of the following parameters: liposome preparation method, lipid composition and opioid molecule hydrophobicity. The most important parameter as far as the entrapment efficiency is concerned is the liposome preparation method. The opioid activity of these molecules in vitro (Guinea Pig Ileum preparation) has been determined. No differences in the IC50 values could be found between encapsulated and free drug molecules.

Animals↗