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Biomedical subjects

H S Chen

Publications and source records attributed to H S Chen.

12 recordsLinked to original sources

[Uses of duck hepatitis B virus polymerase and reverse transcriptase in the evaluation of anti-hepatitis B virus drugs].

The method of DHBV replication complexes (RCs) purification was modified. In order to screen anti-HBV drugs from Chinese medicinal herbs, the inhibitory effects of the extracts of 14 Chinese recipes and herbs, 30 compounds isolated from Chinese herbs on DHBV DNA polymerase (DNAP) and reverse transcriptase (RT) have been studied. The results showed that extracts of Xiao Chai Hu Tang (small Bupleurum decoction) inhibited DHBV DNAP and RT in less extent. Of the 7 herbs, the components of Xiao Chai Hu Tang, the extracts of S. baicalensis and P. ternata potently inhibited DHBV RT, their concentration of reducing enzyme activity by 50% (IC50) was 1.25 and 1.6 mg/ml respectively. Furthermore, it has been proved that S. baicalensis inhibited DHBV DNA replication in ducklings. It also was found the extract of P. cuspidatum inhibited DHBV RT with IC50 of 1.76 mg/ml. Nine of thirty isolated compounds inhibited both DHBV DNAP and RT in less extent under high concentration, while other did not.

Animals

Kinetics of intravenous melphalan.

We have studied the disposition and elimination of melphalan after intravenous administration in 9 patients with cancer. High-pressure liquid chromatography and 14C-melphalan were used to assay drug concentration in plasma and urine. Composite plasma t1/2alpha was 7.7 +/- 3.3 and t1/2beta was 108 +/- 20.8 min for 8 of the patients. The mean 24-hr urinary excretion of melphalan was 13.0 +/- 5.4% of the administered dose. In 2 patients, 80% to 100% of the measured 14C counts in plasma and urine samples at each study interval, up to 24 hr after drug administration, could be accounted for by the sum of parent compound, monohydroxy and dihydroxy products, and methanol nonextractable radioactivity (i.e., protein-bound activity). These data and evidence of rapid disappearance from plasma at 37 degrees in vitro suggest that spontaneous degradation, and not enzymatic metabolism, is the major determinant of the t1/2 of melphalan in vivo.

Adult

Oral melphalan kinetics.

The systemic availability of melphalan after oral administration is not well known. Most patients are put on a fixed oral dosage regimen. We have studied the disposition of melphalan in 14 patients after single oral doses. Five were also studied after receiving the same dose intravenously. Oral melphalan had a mean plasma terminal phase half-life (t1/2) of 90 +/- 17 min. The mean area under the plasma concentration:time curve (CXT) was 53 +/- 33 micrograms . min/ml. Urinary excretion of oral melphalan averaged 10.9 +/- 4.9% during the first 24 hr. The CXT ratio (oral:intravenous) for the 5 patients studied after both oral and intravenous melphalal (0.6 mg/kg) ranged between 0.25 and 0.89 and averaged 0.56. After oral dosing in 14 fasting patients, the time at which melphalan first appeared in the plasma varied between 15 min and 6 hr. In a myeloma patient who took oral melphalan, no melphalan was found in plasma or urine up to 24 hr. Some instances of failure of tumor response to oral melphalan may be due to inadequate bioavailability rather than inherent tumor resistance.

Administration, Oral

Pharmacokinetics of drugs subject to enterohepatic circulation.

The influence of the changes in biliary excretion and reabsorption rates on the pharmacokinetics of drugs subject to enterohepatic circulation was examined analytically. A recently proposed two-compartment model with drug elimination occurring in each compartment was adapted to represent the body and the GI tract. Enhanced reabsorption was equivalent to biliary excretion rate reduction, except that the latter always decreased alpha and prolonged the alpha-phase half-life while the former always increased alpha and shortened the half-life. However, depending on the relative values of the two elimination rate constants, biliary excretion reduction (or reabsorption enhancement) could either increase or decrease the terminal drug half-life (beta-phase). Whether the terminal drug half-life was prolonged or shortened, a biliary excretion reduction always increased the area under the plasma decay curve for intravenous and oral doses and also raised the steady-state drug level in the body for constant-rate intravenous infusion. As a consequence, the lethality, toxicity, or effectiveness of the drug will be increased for patients with impaired bile flow or enhanced drug reabsorption; therefore, the clinical dosage may have to be reduced.

Enterohepatic Circulation

Clearance constants in physiologically based pharmacokinetic models.

The intrinsic clearance of an organ is usually approximated by the apparent clearance from that organ in the development of a physiologically based pharmacokinetic model. In this study, the exact relationship between the two clearances was derived and analyzed. When the extraction ratio of the drug was small (less than 0.05), the approximation was reasonable. However, when the extraction ratio was high (greater than 0.2), serious errors could be made by using the approximation. These errors could be as much as 50% reduction in the estimated extraction ratio and as much as an order-of-magnitude difference in the intrinsic clearance.

Kinetics

Physiologically based pharmacokinetic models for anticancer drugs.

The rationale and history of the development of physiologically based pharmacokinetic models are briefly reviewed in this paper. The methods of model construction and the previous application of this type of model to anticancer drugs are discussed. Future research should be focused on the following areas: (1) interspecies scaling, (2) the effects of disease states on the pharmacokinetics of anticancer drugs, and (3) the applications of pharmocokinetics to the studies of growth behavior of cancer cells. The ultimate goal will be to utilize this basic information to design an optimal dosage regimen and treatment schedule for the safe and effective cancer chemotherapy of each individual patient.

Ancitabine

Estimation of tissue-to-plasma partition coefficients used in physiological pharmacokinetic models.

An important parameter in the development of pharmacokinetic models is the ratio of tissue drug concentration to the concentration of the drug in the arterial plasma or the effluent plasma. The relationship between these two tissue/plasma ratios is derived analytically for different routes of drug administration. The two are equal only in compartments with no elimination when the drug is infused at constant rate. For other routes of administration, the two ratios are identical in all compartments only when there is no elimination process. The tissue/plasma concentration ratios for infusion equilibrium are not equal to the corresponding values for the postdistribution phase after an intravenous bolus injection. When the plasma concentration for infusion and injection are the same, more drug will appear in the lung during infusion steady state than during the postdistribution equilibrium. The reverse is true for the other organs. The importance of properly defining the tissue/plasma ratio and its implication for pharmacokinetic modeling are discussed. The results may have important therapeutic implications for the availability of drugs using different routes of administration.

Absorption

Effect of phenobarbital on plasma levels of cyclophosphamide and its metabolites in the mouse.

We have studied the quantitative pharmacokinetic differences of individual metabolites and unchanged cyclophosphamide (CPA) in control and phenobarbital-treated animals, using radiolabelled CPA together with thin-layer chromatography. On Day 0, one group was started on phenobarbital drinking water and one group stayed on regular acid water. P388 leukaemia, (10(6) cells i.p.) was administered to all mice on Day 8, and 2 days later both groups of mice were given i.p. CPA (200 mg/kg) with 14C-CPA (0.2 muCi per mouse). At 5--60 min after CPA administration, groups of 10 mice were killed and their blood collected for assay of parent compound and metabolites in plasma. Phenobarbital pretreatment reduced CPA and phosphoramide mustard CXT (concentration x time) by 66+% and 27+%, respectively. Assuming that phosphoramide mustard is both the ultimate cytotoxic form of CPA and the blood-transport form, the reduction of CPA by phenobarbital would predict a decreased therapeutic effect. The assay methods in this study will be used in the future to determine the importance of this potential drug interaction in man.

Animals