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Biomedical subjects

D H Ho

Publications and source records attributed to D H Ho.

At least 91 records · Page 5Linked to original sources

Comparative distribution of Baker's antifolate (NSC 139105) in rat tissues after subcutaneous and intravenous injections.

The tissue distribution of BAF was compared by intravenous and subcutaneous injections in rats bearing Walker 256 carcinoma. Following a single dose (6 mg/kg containing 30 microCi 4,6-di-14C-BAF), the drug concentrations were determined by radiochemical and dihydrofolate reductase assays. The two methods gave comparable results. No metabolites were found by paper chromatographic separations.

Animals↗

Clinical pharmacology of IMPY by radioimmunoassay.

A radioimmunoassay for IMPY has been developed using [3H]acetyl-IMPY and antibody induced by immunizing rabbits with succinyl-IMPY bovine serum albumin conjugates. The method was reproducible and sensitive at a dose of 0.2 microgram/ml. The cross-reactivities of IMPY and IMPY derivatives with the antibody were compared. Using this radioimmunoassay, clinical pharmacology was performed in cancer patients during phase I trials. Following 30-60-minute iv infusions of IMPY (450-1500 mg/m2/day for 5 days), the drug disappeared rapidly from plasma with an initial half-life of less than 10 minutes and second half-life of 4 hours. The half-lives are not affected by minimally abnormal hepatic function and are not dose-related. The apparent volume of distribution was approximately 125 ml/kg. The results obtained on Day 5 were essentially the same as those obtained on Day 1. IMPY was also detected in glioblastoma, brain, and temporalis muscle when the drug (500 mg/m2) was infused iv 4-5 hours before surgery. The tissue drug levels were comparable to or higher than those of plasma. The drug was also measurable in kidney and liver tissues obtained 4 hours after death in a patient who died 21 hours after iv infusion of IMPY at a dose of 1500 mg/m2/day for 3 days.

Antineoplastic Agents↗

Pharmacologic studies of continuous infusion of arabinosylcytosine by liquid infusion system.

Arabinosylcytosine (ara-C) was administered by prolonged intravenous infusion with a portable liquid infusion system (LIS) to patients with acute myelogenous leukemia. With the use of tritiated ara-C and this portable system, pharmacologic studies were performed in 8 patients. Most of the plasma radioactivity is in the deaminated product, arabinosyluracil (ara-U). After continuous intravenous infusion, a constant ara-C level is achieved slowly in the plasma. Unless a loading (priming) dose is administered immediately before beginning the infusion, a steady-state ara-C level cannot be achieved until 8 to 24 hr after the infusion. The infusion system has two mechanisms--one for giving a loading dose (3 ml/min) and the other for regular infusion at a rate of 0.5 to 2.0 ml/hr. If a loading dose is given before continuous infusion, a steady-state are-C level is achieved within an hour. The plasma ara-C disappearance curves are biphasic with a terminal half-life of 104 min, which is the same as that of a single injection. The cumulative urinary excretion after approximately 23 hr of infusion varied from 14% to 35% in different patients; more than 90% is ara-U and the remainder is ara-C. Our results have demonstrated that LIS can be used conveniently to sustain a constant plasma level of ara-C. The LIS increases mobility of both inpatients and outpatients and is particularly convenient for ambulatory patients.

Arabinofuranosyluracil↗

Pharmacology of 5'-esters of 1-beta-D-arabinofuranosylcytosine.

Pharmacological studies of 5'-esters of 1 beta-D-arabinofuranosylcytosine (ara-C) were performed in three species (mouse, pig, and man). In mice, after a single i.p. injection of a suspension of tritiated 1-beta-D-arabinofuranosylcytosine 5'-palmitate (PalmO-ara-C) at a therapeutic dose of 150 mg/kg, 30% of the administered radioactivity was recovered in the urine in 24 hr and 56% was recovered after 7 days. Excretion was less rapid after s.c. administration. ara-C and 1-beta-D-arabino furanosyluracil each accounted for about 50% of the excreted radioactivity, and no PalmO-ara-C was found. Plasma ara-C concentrations of greater than 0.1 microng/ml were detected 24 hr after i.p. administration of PalmO-ara-C (150 mg/kg). Single doses of PalmO-ara-C were effective against L1210 leukemic mice when administered 5 to 7 days before tumor inoculation. In a pig, after i.m. injection of tritiated PalmO-ara-C (60 mg/kg, two sites), only 7% of the administered radioactivity was recovered in the urine over a 1-week period. Similar low rates of excretion were also observed in patients treated i.m. with PalmO-ara-C or 1-beta-D-arabinofuranosylcytosine 5'-benzoate. N ara-C was detected in the plasma, which is consistent with the absence of clinical toxicity or myelosuppression in Phase 1 trials of PalmO-ara-C at doses up to 1500 mg/sq m every 3 weeks for as many as eight courses.

Animals↗

Biological active peptides in human urine: III. Inhibitors of the growth of human leukemia, osteosarcoma, and HeLa cells.

Medium-sized peptides isolated from normal humans urine were tested for their effect on DNA, RNA, and protein synthesis, and mitosis, in tissue culture of human myeloblastic leukemia, osteosarcoma, and HeLa cells. Two types of antineoplastic peptides were found. One type consists of strongly acidic peptides (probably sulfated glycopeptides) which act specifically on different kinds of neoplasma. The other type comprises slightly acidic and neutral peptides, and has broad specificity. The active peptides produce up to 97% inhibition of DNA synthesis and mitosis in the neoplastic cells in tissue culture. The peptide fraction which has broad specificity was tested in different concentrations and gave good dose-response relationship.

Antineoplastic Agents↗