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Biomedical subjects

R S Rew

Publications and source records attributed to R S Rew.

5 recordsLinked to original sources

Screen for anthelmintics, using larvae of Ascaris suum.

A multiwell culture system was used to assay the effects of 12 known anthelmintic compounds on Ascaris suum larval development from 2nd-stage (L2; hatched from eggs) to early 3rd-stage (L3) and from in vivo-derived late L3 to early 4th-stage (L4). Larval survival, development, and motility were monitored for drug effects. Development of L2 to L3 was sensitive to thiabendazole, albendazole (ABZ), ABZ/sulfoxide, ABZ/sulfone (SO), mebendazole, L-tetramisole, D-tetramisole, piperazine, or closantel at a concentration of 0.01 microgram/ml; however, the effects of these drugs on larval development did not correlate well with known effects in vivo. The development of L3 to L4 was blocked by ABZ or mebendazole at 0.01 microgram/ml, by thiabendazole or ABZ/sulfoxide at 0.1 microgram/ml, and by ABZ/SO at 1.0 microgram/ml; however, except for ABZ/SO, most larvae were viable at these concentrations. In contrast, L-tetramisole or morantel appeared to inhibit development of L3 to L4 and to reduce survival at concentrations of greater than or equal to 1 microgram/ml; however, D-tetramisole was at least 10 times less effective. Haloxon, ivermectin, and closantel blocked development of L3 to L4 at 0.1, 1, and 10 micrograms/ml, respectively, in the absence of serum, but their activity was reduced by the presence of serum. Seemingly, in vitro development of A suum larvae was a convenient and sensitive bioassay for anthelmintic activity and could serve as a screen for anthelmintic residues in edible tissues.

Animals

Prophylactic efficacy of clorsulon against Fasciola hepatica in calves and sheep.

A daily oral 5 mg kg-1 dose of clorsulon for 28 days in calves given Fasciola hepatica cysts at 3, 5, and 7 days after initiation of treatment was highly effective in reducing worm burdens (98%) and preventing liver pathology. In similarly infected and treated sheep, clorsulon showed little effect as a prophylactic for delaying the onset of liver pathology. The size of flukes recovered from treated sheep was reduced. Although clorsulon prevented development of fascioliasis in treated calves, the host antibody response was qualitatively similar to that of untreated infected calves, but the magnitude of the response was reduced. Blood clorsulon levels in calves rose to 2.90 micrograms ml-1 within the first week of treatment then fluctuated between 2.65 and 2.90 micrograms ml-1 for the next two weeks. Clorsulon levels in sheep were 0.50-0.60 micrograms ml-1 lower than those in calf blood. The difference in bioavailability of clorsulon between sheep and calves may have contributed to differences in efficacy of the drug.

Administration, Oral

Effect of diamfenetide on experimental infections of Fasciola hepatica in lambs: anthelmintic and clinical investigations.

The activity of diamfenetide (N,N'-[oxybis(2,1-ethan diyloxy-4,1-phenylene)] bis acetamide) was studied in lambs experimentally inoculated with Fasciola hepatica. The drug was given orally at a dose level of 100 mg/kg either 1,3,5,7, or 9 weeks postinoculation. It was 100% effective 1, 3, and 5 weeks postinoculation, 73% effective 7 weeks postinoculation, and 57% effective 9 weeks postinoculation. Serum gamma-glutamyl transpeptidase activity remained normal in all lambs for 5 weeks after infection; it then began to increase in infected, untreated lambs at 6 weeks, and had increased 5- to 6-fold 9 weeks postinoculation in infected lambs. This enzyme activity was the most sensitive hematologic parameter used in this test to detect hepatobiliary damage by the parasite. The drug was well tolerated at the dose level used.

Acetanilides

The carbohydrate metabolism of Brugia pahangi microfilariae.

Evidence is presented that the microfilariae of Litomosoides carinii, Dipetalonema viteae and Brugia pahangi have an aerobic requirement for motility, but possibly not for survival. In addition, the data suggest that in an in vitro anaerobic environment, B. pahangi microfilariae ferment glucose only as far as lactate. In an aerobic environment, however, the data are consistent with a portion of glucose being dissimilated via a one step oxidative decarboxylation of pyruvate formed from glycolysis to acetate and CO2. In addition, a low level of complete oxidation, possibly via a tricarboxylic acid cycle pathway, may be occurring. Finally, if B. pahangi microfilariae are immobilized with levamisole in an aerobic atmosphere, the drug appears to alter the aerobic glucose metabolism of the parasite both qualitatively and quantitatively. A decreased glucose utilization occurs, together with a shift to a more nearly homolactate fermentation. It is suggested that the effects of levamisole on the metabolism of the microfilariid are secondary to the observed paralysis.

Aerobiosis

Enzyme localization in the anaerobic mitochondria of Ascaris lumbricoides.

Mitochondria from the muscle of the parasitic nematode Ascaris lumbricoides var. suum function anaerobically in electron transport-associated phosphorylations under physiological conditions. These helminth organelles have been fractionated into inner and outer membrane, matrix, and intermembrane space fractions. The distributions of enzyme systems were determined and compared with corresponding distributions reported in mammalian mitochondria. Succinate and pyruvate dehydrogenases as well as NADH oxidase, Mg(++)-dependent ATPase, adenylate kinase, citrate synthase, and cytochrome c reductases were determined to be distributed as in mammalian mitochondria. In contrast with the mammalian systems, fumarase and NAD-linked "malic" enzyme were isolated primarily from the intermembrane space fraction of the worm mitochondria. These enzymes are required for the anaerobic energy-generating system in Ascaris and would be expected to give rise to NADH in the intermembrane space. The need for and possible mechanism of a proton translocation system to obtain energy generation is suggested.

Adenosine Triphosphatases