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Biomedical subjects

S Cai

Publications and source records attributed to S Cai.

186 records · Page 11Linked to original sources

Molecular electronegative distance vector (MEDV) related to 15 properties of alkanes.

Several quantitative structure-property relationship (QSPR) models between 15 basic physical properties or thermodynamic functions of alkanes and their molecular electronegative distance vectors (MEDV) are developed. For six of the properties-boiling point (BP), density (D) at 25 degrees C, refraction index (RI) at 25 degrees C, critical temperature (CT), critical pressure (CP), and surface tension (ST) at 20 degrees C-logarithmic models are found to give better results than conventional (linear) models since the values of these properties all tend to a limit with increasing carbon chain length. All models are created using multiple linear regression (MLR). Conventional models are proposed for the remaining nine physical properties or thermodynamic functions: molar volume (MV) at 20 degrees C, molar refraction (MR) at 20 degrees C, heat capacity (HC) at 300 K, enthalpy (E) at 300 K, heats of vaporization (HV) at 25 degrees C, heat of atomization (HA) at 25 degrees C, standard heat of formation (HF) at 25 degrees C, heat of formation in liquid (HFL) at 25 degrees C, and heat of formation in gas (HFG) at 25 degrees C.

Journal Article↗

NMR and EPR investigations of iron corrolates: iron(III) corrolate pi cation radicals or iron(IV) corrolates?

The chloroiron corrolates of 2,3,7,8,12,13,17,18-octamethyl- and 7,13-dimethyl-2,3,8,12,17,18-hexaethylcorrole ([(Me8C)FeCl] and [(7,13-Me2Et6C)FeCl], respectively) and their bisimidazole complexes have been investigated by NMR spectroscopy as a function of temperature, and by EPR spectroscopy at 4.2 K. Magnetic susceptibilities were measured by the modified Evans method. It is found that the electron configuration of the chloroiron corrolates is that of a S = 3/2 Fe(III) center coupled to a corrolate pi radical, where one electron has been removed from the pi system of the corrolate. This pi radical is antiferromagnetically coupled to the unpaired electrons of the iron to yield an overall S = 1 complex, as evidenced by the very large positive shifts of the meso-H resonances (183 and 172 ppm). That this antiferromagnetic coupling is very strong is supported by the near-Curie behavior of the 1H chemical shifts. For the chloroiron corrolates in the presence of imidazole, imidazole-d4, and N-methylimidazole at temperatures of -50 degrees C and below, the mono- and bisligand complexes are formed. The NMR spectra can be assigned on the basis of chemical exchange between the chloroiron(III) parent complex and the bisligand complex at -30 degrees C, and between the bisligand complex and the monoligand complex at -50 degrees C. The bisimidazole complexes show pyrrole CH2 and CH3 resonances characteristic of low-spin Fe(III) centers (S = 1/2), but with strongly upfield-shifted meso-H resonances (delta values of -95 and -82.5 ppm for the octamethyl complex and -188 and -161 ppm for the dimethylhexaethyl complex at 203 K) characteristic of the presence of a macrocycle-centered unpaired electron. The magnetic moments of these bisligand complexes are somewhat lower than expected for overall S = 1 systems, and decrease as the temperature is lowered. The lower apparent magnetic moments (2.0-1.8 mu B between -50 and -90 degrees C) are believed to be caused by a combination of weak or no magnetic coupling between the metal and macrocycle electrons and decreasing solubility of the complex as the temperature is lowered. The non-Curie behavior of the 1H chemical shifts observed in the low-temperature (-50 to -90 degrees C) NMR spectra likely arises from a combination of the effects of weak antiferromagnetic coupling of metal and macrocycle spins, a low-lying electronic excited state, and ligand binding/loss equilibria at the highest temperatures studied (-50 degrees C).

Cations↗

Effect of Cervitec on mutans streptococci in plaque and on caries formation on occlusal fissures of erupting permanent molars.

The aim of this study was to evaluate the effect of Cervitec on the abundance of mutans streptococci (MS) in occlusal dental plaque and on 2-year caries increment of partly erupting first permanent molars. Sixteen healthy schoolchildren aged 6-8 years, with at least 2 sound contralateral partly erupted permanent molars, received diet counselling and daily parental supervised toothbrushing with a fluoride dentifrice. Stimulated saliva samples were collected at baseline and after 1 year to evaluate MS levels. In a split-mouth design, Cervitec varnish was applied to one of the teeth at baseline and after 3 and 6 months, while the other tooth in the same jaw was a control. At the 9-month follow-up the teeth were in occlusal contact. At this time, varnish was not applied. At 3 and 6 months after the first application of varnish a significant suppression of MS was observed in plaque. Caries investigations, performed at baseline and every 3 months during the 2 years after the start of the study, showed that all the teeth treated with the varnish were free of caries after 2 years, whereas 8/16 control teeth developed incipient caries. In conclusion, our results suggest that treatment with Cervitec reduces MS in plaque on erupting permanent molars and can lead to a significant decrease in caries incidence.

Anti-Infective Agents, Local↗

[Antacid activity of citrate-bicarbonate complex of effervescent formulations of ranitidine. In vitro analysis using 'artificial stomach-duodenum' model].

Antacid activity supported by citrate-bicarbonate complex of four effervescent ranitidine forms has been assessed in vitro using an 'artificial stomach-duodenum' model controlled by microcomputer. This model allows (i) maintenance of constant the rates of the fluxes throughout the experiments or (ii) simulation of gastroduodenal flux regulation, in the normal subject (NS) or in the duodenal ulcer patient (DU) situation. The four forms developed a theoretical maximal antacid capacity between 61 and 81 mmol with a maximum intragastric pH between 3.2 and 4.8. In the gastroduodenal flux regulation simulation, antacid activity duration was rapid and included between 85 and 118 min in NS situation (50 to 56 mmol H+ consumed) and between 75 and 93 min in DU situation (43 to 47 mmol H+ consumed). The reduction of acid load penetrating into the duodenum was contained between 36 and 50 per cent. Effervescent compounds exerted a neutralising activity and a buffering capacity close to pH 6.0 (5 per cent of total antacid capacity), related to antacid potency.

Antacids↗

In vitro assessment of antacid efficacy using a computer-controlled 'artificial stomach-duodenum' model reproducing gastroduodenal flux regulation.

We have developed an artificial stomach-duodenum model made up of three compartments representing the stomach, (including a fragment of hog gastric mucosa), the proximal duodenum, and the distal duodenum. Gastroduodenal flow rates are controlled by a microcomputer capable of (1) adjusting gastric emptying and alkaline secretion in the proximal duodenum according to intragastric pH; (2) adjusting pancreatic alkaline secretion according to proximal duodenum pH; and (3) simulating acid response to food ingestion. Antacid drugs were added 90 min after simulated food ingestion in near-physiological or duodenal ulcer conditions. Aluminum phosphate-containing antacids resulted in a persistent antacid effect, due to their adsorption to the gastric mucosa; this prolonged the buffering capacity at pH 2.4 to 120 min. Aluminum+magnesium hydroxides and calcium+magnesium carbonate combinations mainly exerted neutralizing activity, inducing an increase in the gastric emptying rate. In the duodenal ulcer simulation, the pH of the gastric contents was lower and the antacid effect was shorter than in the 'physiological' simulation.

Aluminum↗