PubMed Health⌕ Search

Biomedical subjects

K Devereux

Publications and source records attributed to K Devereux.

5 recordsLinked to original sources

Pharmacokinetics and tissue distribution of the nonadecapeptide Moli1901 in rats and mice.

1. Administration of aerosolized, radiolabelled Moli1901 (duramycin, 2622U90), a 19 amino acid polycyclic peptide, to rats resulted in the deposition of high amounts of radiolabel in the respiratory tract, with deposited radiolabel persisting almost unchanged through 7 days after dosing. Little to no radiolabel was present in the bloodstream of these rats. 2. Rats absorbed little radiolabel after p.o. administration, with nearly all of the dose excreted in the faeces by 2 days after dosing. 3. At 7 days following an intravenous dose, rats excreted 54% of the radiolabel in faeces and 5.4% in the urine, with 44% remaining in the carcass, primarily in the liver (33%). 4. Following an intratracheal instillation dose to rats, radiolabel was eliminated from the pulmonary system with a half-life of 64 days. Excretion was almost exclusively via faeces, with an elimination half-life of 52 days. Plasma and blood concentrations in these animals were uniformly <1 ng eq. ml(-1) at all sampling times. 5. Results in mice given intravenous and oral doses were consistent with those observed in rats. 6. Prolonged retention of Moli1901 in pulmonary tissue supports its use in the treatment of respiratory diseases.

Administration, Inhalation↗

Pharmacokinetics, disposition and metabolism of 546C88 (L-NG-methylarginine hydrochloride) in rat and dog.

1. 14C-546C88 (14C-L-NG-methylarginine hydrochloride) was administered to rat and dog as a single 5-min intravenous infusion at 1.7 mg/kg (20 mg/kg/h) to aid in the preclinical safety evaluation of the compound. 2. The distribution and elimination of parent compound from plasma was rapid in both species. 3. Drug-derived radioactivity was eliminated slowly. There was up to 39% of the dose retained in the carcasses at the end of the 7-day collection periods. The main route of elimination was as 14CO2 in the expired air. Less than 8% of the dose was excreted in the urine, and < 5% in the faeces. 4. Drug derived radioactivity was widely distributed throughout the body with highest concentrations in tissues with a high protein turnover, such as glandular tissue and liver. 5. 14C-546C88 appeared to be eliminated primarily by metabolism and subsequent putative amino acid catabolism, resulting in retention of drug-derived radioactivity in tissues, and ultimate elimination as 14CO2 in the expired air. Potential routes of metabolism of 546C88 have been identified.

Animals↗

The comparative disposition of [14C]-fotemustine in non-tumourous and tumourous mice.

The distribution and excretion of radioactivity from [14C]-fotemustine was examined in mice with melanomas at different stages of development to determine whether the disease state substantially alters the disposition of the drug and its metabolites. Normal BDF1 mice and mice that had been subcutaneously grafted with B16 melanoma either 1, 3, 7, 14 or 21 days previously were used. The animals were killed at either 5 min, or at 3, 24 or 96 h after receiving an intravenous dose of [14C]-fotemustine (20 mg/kg) and were examined either by whole-body autoradiography or by liquid scintillation counting of excreta and tissues of interest. The majority of the [14C]-fotemustine dose was excreted in the urine, with similar amounts being measured in both non-tumourous animals (61.6% +/- 13.1%) and tumourous mice grafted 14 days previously (67.2% +/- 5.7%). Small amounts of radioactivity, again similar in both non-tumourous and tumourous mice, were recovered in the faeces (5.4% +/- 5.6% and 3.6% +/- 1.8%, respectively) and as carbon dioxide (7% +/- 3.5% and 6.4% +/- 1%, respectively), with minimal amounts being expired as chloroethanol (less than 1%). When mice were examined 5 min after dosing, there was extensive tissue distribution accounting for 75% +/- 10% of the dose. The highest concentrations determined by both whole-body autoradiography and liquid scintillation counting were measured in the excretory organs, with 33 and 28 micrograms Eq/g being found in the liver and kidney, respectively. High levels were also seen in the lung and plasma (19.8 and 19.5 micrograms Eq/g, respectively). Analysis of variance indicated that groups of tissues, such as the excretory organs, blood and plasma or the pigmented tissues, showed distinct but inconsistent patterns. Only tumours at 14 and 21 days of development were suitable for examination, and these showed levels of 12.1 micrograms Eq/g; however, the tumour-to-plasma ratio increased from between approx. 0.5 and 0.6 at 5 min to approx. 2 at 96 h after dosing, suggesting retention within the melanoma, whereas the ratio for the femur remained at approx. 1. Whole-body autoradiography showed that the distribution in the tumour was not uniform, but rather was concentrated in the peripheral area (presumably viable cells) as opposed to the central necrotic region. Thus, the high and sustained concentration of radioactivity found in the active cells of the melanoma may provide an explanation for the high efficacy of the drug.

Animals↗