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Controlled release technology for the control of helminths in ruminants.

Release rates from controlled release devices are determined by the device itself and thus are accurate, reproducible and predictable, whereas in general, prolonged or slow release systems are sensitive to environmental conditions. Diffusion and dissolution are the principal means of achieving controlled release. A diffusion system is specific for the active ingredient and release rate decreases proportionately to the square root of time because of a decreasing concentration gradient or an increasing diffusion path. In dissolution systems, the choice of matrix determines the rate of dissolution and release rates are linearly related to the area of dissolution which can be maintained constant. Consequently, this system has general application, a sharp cut-off point and can be used for more than one ingredient simulatenously. Potential disadvantages of controlled release technology centre on unacceptable tissue residues and parasite resistance to the chemicals used. Advantages include, the ability to programme the release of compounds to achieve specific effects for various periods, decreasing the frequency of dosage and increasing the choice of compounds for the control of parasitic infections. Sufficient epidemiological information should be available before controlled release technology is implemented. Existing anthelmintics and control strategies can be used to achieve an enhanced, but expected result, e.g., prolonged reduction in pasture contamination to protect both ewes and lambs. In future it should be possible to devise compounds and strategies appropriate to the unique features of controlled release technology, e.g., compounds which interrupt or inhibit the growth and development of parasites. Environmental impact should be low because of the specific effect and low dosage of the chemical used.

Animals↗

New methods of drug application for control of helminths.

Several new ways have been developed of delivering anthelmintics to ruminants aimed particularly at reducing labour. For single doses, these include a semi-automatic rumen injector for giving insoluble drugs to cattle more conveniently and efficiently than by oral dosing, and the dermal application of levamisole which is, however, subject to seasonal variation in absorption. Sustained administration offers potentially a high level of preventive control but carries a greater risk of developing drug resistance. Even with the best available methods of group administration in feed supplements or drinking water, there remains some uncontrollable variation in individual intake. Intraruminal sustained release devices largely overcome this problem and constitute the most important new technology. They are represented at present by the commercially successful morantel sustained release bolus, and the more versatile Laby capsule which is under development for anthelmintic delivery. Other new applications include the possible development of synergists, potentiators and drug combinations, the special features of drugs which bind strongly to plasma proteins, and the new possibilities offered by a drug highly effective against all stages of Fasciola hepatica. In the general approach to anthelmintic application in helminth control, there have been advances in knowledge of helminth population biology which can lead to better timing of strategic dosing programs, which show that single treatments can have persistent benefits without a simultaneous reduction in infection rate, and which question the conventional view that control schemes require the treatment of all animals in the group.

Administration, Oral↗

Advances in immunoparasitology.

A selective review of the advances in immunoparasitology is presented. It is selective simply because it is not feasible to embrace the whole field of parasitology within the compass of a single review paper, for if it were attempted, it would suffer undue abbreviation. Emphasis is placed on the advances in helminthology and especially the gastro-intestinal parasites of ruminants, an obvious selection because of the interests of the author. Reviews are always somewhat retrospective in outlook; to write a review at the present time is especially foolhardy since developments in biology are such that totally new concepts can arise almost overnight, as it were. This is a particularly healthy state, and the discipline of parasitology is caught up in the application and interpretation of molecular biological considerations. "Parasitism" is a field of increasing importance and challenge.

Animal Diseases↗

Ticks on livestock in St. Lucia.

Cattle, sheep, goats and horses were examined for ticks. Over 95% of Holstein cross-breeds, 28% of sheep (local mixed breeds) and 18% of goats (local mixed breeds) examined from 18 August to 4 September 1983 were infested with the southern cattle tick, Boophilus microplus Canestrini. About 90 and 17% of the horses examined were infested with the tropical horse tick, Anocentor nitens Neumann, and the tropical bont tick, Amblyomma variegatum Fabricius, respectively. The tropical bont tick was found infesting 10% of cattle in the Gros Islet area of St. Lucia. The tropical bont tick was also found associated with a severe skin disease, dermatophilosis, caused by the bacterium Dermatophilus congolensis, in 54% of the cattle infested by A. variegatum in the Gros Islet and Dauphin areas of St. Lucia.

Animals↗

Coenurus in the muscles of a gemsbok (Oryx gazella).

Several swellings in the muscles of a gemsbok were found to be caused by coenurus. The finding is discussed and the relevant literature reviewed with regard to the occurrence of this tapeworm larva in domestic and wild animals.

Animals↗

Occurrence and pathology of Gongylonema infection in captive wild herbivores.

Gongylonema infection in 11 captive wild herbivores out of 214 animals (5.14%) was recorded at post mortem examination. Species of animals affected were spotted deer (6.06%), sambar (7.14%), mouse deer (16.66%), nilgai (11.76%), serow (16.66%) and giraffe (20.0%). The affected areas showed fibrinous inflammation. On scanning electron microscopic study, destruction and disruption of the epithelium were noted, and cuticular bosses originating from the anterior tip of the parasite were observed.

Animals↗

Composition of adrenal lipids from some domestic and wild ruminants.

1. Lipids from the whole adrenal glands of the ox and the African buffalo (Syncerus caffer) were extracted and fractionated into neutral and phospholipids. Both species revealed the presence of considerable quantities of cholesterol but only very small quantities of cholesteryl esters. 2. Fatty acids from various fractions of bovine and buffalo adrenal glands were investigated by gas-chromatography. They showed a remarkably low content of higher unsaturated fatty acids and a very high content of stearic acid. 3. Mitochondrial and microsomal fractions were isolated from the adrenal glands of the impala antelope (Aepyceros melampus), their lipids extracted, analyzed and compared with the composition of the mitochondrial lipids from bovine adrenal glands. 4. Subcellular fractions of the bovine and impala adrenal glands contain only very small quantities of esterified cholesterol. Most of the lipid fractions were characterized by the absence of adrenic acid (C22:4 omega 6) and a low content of arachidonic acid.

Adrenal Glands↗

Phospholipid and fatty acid composition of erythrocyte membrane from wild Japanese serow (Capricornis crispus).

The phospholipid composition and fatty acid composition of the individual phospholipids were determined in erythrocyte membrane of wild Japanese serow, Capricornis crispus, and compared with those of Japanese cattle. Sphingomyelin (SM) contributed more than 50% to the total phospholipids, with only 3% phosphatidylcholine, 30% phosphatidylethanolamine and 11% phosphatidylserine. This phospholipid composition and ratio of phospholipid to protein in erythrocyte membrane of wild serow were quite similar to those of Japanese cattle. However, marked differences in fatty acid composition were found, especially in lignoceric acid 24:0 and nervonic acid 24:1 of sphingomyelin which were major constituents (approximately 60%) of that phospholipid.

Animals↗

Comparative biochemistry of mammalian arylsulfatase C and steroid sulfatase.

1. Hepatic arylsulfatase C (ASC) and steroid sulfatase (SS) from six of eleven mammals (rat, dog, baboon, cow, goat, and sheep) coeluted from DEAE-Sephacel as a single anionic species. A minor cationic peak of ASC and SS activity was also recovered from solubilized microsomes derived from the domestic cat. Characterization of the cationic activities indicated they were most likely contributed by a protein structurally related to the anionic isozyme. Properties of ASC and SS activities occurring in these seven species were most consistent with the presence of both activities in the same enzyme. 2. Guinea-pig liver SS activity was partitioned between an alkylsulfatase (hydrolyzing dehydroepiandrosterone sulfate (DHEAS)) and an arylsulfatase (hydrolyzing both estrone sulfate (E1S) and 4-methylumbelliferyl sulfate (4MUS) at a common active site). These enzymes were physically separable by ion-exchange chromatography and possessed distinct immunological and chemical properties. 3. Porcine, squirrel, and human livers possessed a major isozyme of ASC that lacked both E1S- and DHEAS-sulfatase activities. The human hepatic ASC was separable from SS by electrophoresis and was partially resolved from SS by DEAE-Sephacel chromatography. The ASC isozyme lacking SS activity was heat-labile in all three species.

Animals↗