PubMed Health⌕ Search

Biomedical subjects

Z-F Chen

Publications and source records attributed to Z-F Chen.

3 recordsLinked to original sources

Hydroxyapatite solubility in simple inorganic solutions.

OBJECTIVE: To use solid titration and laser-scattering end-point detection to determine the hydroxyapatite (HAP) solubility isotherm at 37 degrees C in a plain KCl solution, with CO(2) present, and with additional phosphate. DESIGN: Pulverised HAP solid was used to perform a titration to saturation. A very sensitive detector capable of detecting the light scattered at small forward angles from a laser beam was adopted to monitor the onset of precipitation (or failure to dissolve) near the equilibrium point. Each addition of HAP solid caused a step increase in scattered light and this signal decreased quasi-exponentially with time. When a steady but elevated scattering was obtained, small portions of 1M HCl were added to lower the pH by about 0.5-2 units, according to need, to dissolve excess solid and allow a further titration. The scatter signal and pH data, plotted against the amount of HAP added, were used to estimate the actual end-point by interpolation and thus construct each point on the solubility isotherm. RESULTS: The solubility isotherm for HAP in plain KCl solution in the absence of CO(2) obtained now differs substantially from the results of previous solubility studies (i.e. much lower). The increase in solubility due to CO(2) reported earlier was confirmed, while the effect of excess phosphate was found to be to increase the apparent solubility of HAP, contrary to elementary mass-action expectations. CONCLUSIONS: The solid titration method is a more reliable approach than that of conventional excess solid method with respect to the determination of the HAP-carrying capacity. The solubility of HAP appears to be substantially lower than previously reported, and a reconsideration of all aspects of the system is warranted.

Biocompatible Materials↗

Validation of ion chromatography for human salivary anionic analysis.

OBJECTIVE: Assess the applicability of ion chromatography (IC) for human saliva studies. MATERIALS AND METHODS: The behaviour of an ion chromatograph (DX-100, Dionex) in the analysis of human saliva was examined in the following respects: calibration, reproducibility, recovery, and effect of pre-treatment conditions (dilution, temperature). The eluents used were 1.7 mM NaHCO3 + 1.8 mM Na2CO3 + 100 mg/L p-cyanophenol (2 mL/min) and 1.6 mM perfluorobutyric acid + 0.3 mM sodium hydroxide (0.3 mL/min) for inorganic and organic anions, respectively. RESULTS: The calibration curves were satisfactorily linear, but did not have unit slope (log-log plot) in the case of chloride, phosphate, sulphate and acetate. No significant effects were detected for centrifugation temperature, or between runs on the same occasion. CONCLUSION: IC appears to be a valuable technique well-suited to the efficient analysis of several salivary anions.

Anions↗

Human salivary anionic analysis using ion chromatography.

OBJECTIVE: To survey concentrations and time-variability of the major anions of human saliva using ion chromatography (IC). MATERIALS AND METHODS: Resting saliva samples after overnight fasting, obtained under standardized conditions in time-series for 10 subjects, were analysed for chloride, phosphate, nitrate, sulphate, thiocyanate, acetate and lactate. A second group of five subjects provided mixed saliva as before, and in addition a sample of parotid saliva collected immediately afterwards using a Lashley cup. Analysis was by ion chromatography (DX-100, Dionex) using 1.7 mM NaHCO3 + 1.8 mM Na2CO3 + 100 mg/L p-cyanophenol (2 mL/min) and 1.6 mM perfluorobutyric acid + 0.3 mM sodium hydroxide (0.3 mL/min) as eluents for inorganic and organic anions, respectively. RESULTS: The time-series data showed great natural variability. Analysis of the correlations showed that the concentration of nitrate was uncoupled from those of the other anions. Lactate was not detected. Parotid saliva showed marked differences from mixed saliva, most notably the absence of acetate and the presence in two instances of lactate. Bromide, nitrite and citrate were not detected. CONCLUSIONS: Acetate is a major component of the oral chemical environment. Simultaneous analyses permit the investigation of the relationships between component concentrations that otherwise might have been difficult to study.

Acetates↗