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I Ho

Publications and source records attributed to I Ho.

27 records · Page 2Linked to original sources

Clobazam kinetics in the elderly.

1 The effects of age and sex on the disposition of clobazam (CBZ), a 1.5-benzodiazepine derivative, were evaluated in a series of 29 healthy volunteers aged 18 to 72 years, who ingested single 20 mg oral doses. CBZ kinetics were determined from multiple plasma concentrations measured during 7 days after the dose. 2 CBZ was rapidly absorbed, with peak levels reached an average of 1.5 h after dosing (range 0.5--2.5 h). Mean absorption half-life was 19.7 min. Absorption kinetics were not influenced by age of sex. 3 Elimination half-life ranged from 11 to 77 h, and was significantly longer in elderly v young males (48 v 17 h, P less than 0.01). In women, half-life also increased with age, but differences between young and elderly women were less striking (31 v 49 h, P less than 0.05). 4 Volume of distribution (Vd) was influenced by age and sex. Vd became larger with age regardless of sex, and within each age group was larger in women than in men. Total clearance was unrelated to age in women, but declined significantly with age in men (P less than 0.01). 5 The mean free fraction for CBZ in plasma was 11.5% (range 8.6--15.0%), and tended to increase with age, partly due to a significant age-related decline in plasma albumin concentration (r = -0.68, P less than 0.001). Correction of Vd and clearance for individual differences in binding did not alter their relation to age and sex. 6 As in the case of other benzodiazepines biotransformed by oxidative pathways, the capacity for N-demethylation of CBZ declines with age in men, but age has a minimal effect on CBZ clearance in women.

Adolescent↗

Cefotaxime kinetics after intravenous and intramuscular injection of single and multiple doses.

The kinetics of cefotaxime, a cephalosporin with an unusually broad antibacterial spectrum, were examined in humans after intravenous bolus injection, intravenous infusion every 6 hr for 14 days, and intramuscular injection every 8 hr for 10 days. Mean peak serum level after bolus injection of 500 mg was 37.9 microgram/ml; after 1 gm, 102.4 microgram/ml; and after 2 gm, 214.1 microgram/ml. The half-life (t1/2) was 1 hr for the 3 doses. Total serum clearance was the same for all doses. Overall excretion was 50% to 60%; part of the drug was excreted as the desacetyl derivative. After multiple intravenous infusion the elimination rate constants and t1/2 were the same on days 1 and 15. Assayable levels were present on all days 5 min before injection of a dose. Multiple intramuscular injections of 500 mg produced serum levels of 9.2 to 11.9 microgram/ml. The t1/2 was 0.93 hr. Mean serum levels at 8 hr ranged from 0.08 to 0.55 microgram/ml. Serum levels produced by intravenous infusion or intramuscular injection were inhibitory for most (90%) aerobic gram-positive and gram-negative organisms susceptible to cefotaxime.

Adult↗

Pharmacokinetics of cefotaxime.

The pharmacokinetics of cefotaxime after intramuscular injection and intravenous infusion were determined. The mean peak serum level after the 500-mg intramuscular dose was 11.7 micrograms/ml, and it was 20.5 micrograms/ml after a 1,000-mg dose. The serum half-life was 1.2 and 1.3 h, respectively for the two doses. The apparent fractional volumes of distribution of 32 and 37 liters were not significantly different for the two doses, and the fractional serum clearance was approximately 315 ml/min per 1.73 m2 for both doses. The mean peak serum level after 1,000 mg administered by intravenous infusion over 30 min was 41.1 micrograms/ml. The half-life was 1.13 h, apparent volume of distribution was 33 liters, serum clearance 341 ml/min per 1.73 m2, and renal clearance was 130 ml/min per 1.73 m2. The pharmacology of cefotaxime is similar to the pharmacology of other cephalosporin antibiotics, but the low inhibitory levels which it has against gram-positive and gram-negative bacteria suggest that lower dosage regimens should be possible.

Adult↗

A rat model to study the role of STn antigen in colon cancer.

Expression of the mucin-associated sialyl-Tn (STn) antigen has been associated with a decreased survival in patients with colorectal, gastric, and ovarian cancer. To better understand the role of STn antigen in tumor biology, we developed STn(+) (called LP) and STn(-) (called LN) clonal cell lines from a parental metastatic rat colon carcinoma cell line (LMCR). Both derivative cell lines exhibited identical proliferation rates in vitro. LP cells strongly expressed STn antigen both in vitro and in vivo, and were poorly tumorigenic when given to syngeneic rats. LN cells did not express STn antigen in vitro, but as in vivo tumors these cells rapidly acquired STn expression, readily formed tumors, and were highly lethal. When rats were given an otherwise lethal inoculum of i.p. LN cells, pre-immunization with synthetic STn antigen conjugated to keyhole limpet hemocyanin (STn-KLH) resulted in a 60% survival rate. When LN cells were injected subcutaneously in the presence of STn-KLH-sensitized lymphocytes, tumor growth was decreased. Distribution of STn antigen in normal organs of host rats is quite similar to that of humans. This model mimics human disease and should facilitate studies of mucin-associated antigens in tumor biology and the development of immunotherapeutic agents based on mucin-related antigens.

Animals↗

Reduced single-dose clearance of clobazam in elderly men predicts increased multiple-dose accumulation.

The rate and extent of accumulation of clobazam and its major metabolite, desmethylclobazam, during multiple dosage with clobazam were evaluated in 4 similarly sized groups of young male, young female, elderly male, and elderly female volunteers. Subjects received single 10mg doses of clobazam daily for 22 consecutive days. Plasma levels were measured during and after the period of dosage. Compared with the young male subjects, elderly males had slower rates of clobazam accumulation and washout, higher steady-state plasma levels, and lower steady-state clearance. Accumulation of desmethylclobazam also was slower and more extensive in the elderly male group. Among females, however, age-related kinetic differences did not approach significance. Among all subjects, pharmacokinetic variables for clobazam determined in a previous single-dose study were highly consistent with the multiple-dose pharmacokinetic profile. Single-dose vs post-multiple dosage half-life, single-dose vs steady-state clearance, observed vs predicted accumulation ratios, and observed vs predicted steady-state plasma concentrations were all highly correlated, with regression line slopes close to unity. Thus, reduced single-dose clearance of clobazam in elderly men leads to slower and more extensive accumulation during multiple dosage. The single-dose pharmacokinetic profile of clobazam is highly predictive of drug behaviour during repeated dosage, suggesting that clobazam kinetics are dose- and concentration-independent within the range studied, and that self-induction or inhibition of clearance is not evident during 3 weeks of dosage.

Adult↗