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Immunisation against bovine tropical theileriasis (Theileria annulata infection).

Fully susceptible cross-bred calves, six to nine months of age, were immunised by tick-induced Theileria annulata infection treated with chlortetracycline at 16 mg/kg body weight for four, eight or 16 days. The infections were induced with 10 ticks (Hyalomma anatolicum anatolicum) or 30 ticks (H dromedarii). The recovered calves were tested for immunity to homologous severe challenge, 50 or 73 days after the first infection. The reaction of the calves to infections was evaluated by noting the prepatent period, symptoms, degree of anaemia, rate of parasitisation of lymphocytes and erythrocytes. It was observed that untreated calves developed acute theileriasis characterised by typical symptoms and lesions and 56 to 66 per cent mortality. The medicated calves, however, developed a mild form of the disease. Calves which recovered from treated or untreated infections were solidly resistant to subsequent severe homologous infection. Judged from the severity of anaemia in the infected calves, eight day and 16 day medication provided slightly better protection than four day medication. It was concluded that eight day medication afforded adequate protection against the severe immunising infection, and allowed the development of solid resistance to severe homologous challenge.

Animals

Cell-mediated immunity in tropical theileriasis (Theileria annulata infection).

Migration of peripheral leucocytes collected from Theileria annulata carrier cattle was inhibited in the presence of piroplasmal antigen. The degree of inhibition was antigen density dependent. The same antigen did not inhibit migration of leucocytes obtained from clean animals, raised under tick-free conditions. The carrier animals exhibited typical skin sensitivity reaction on intradermal inocluation of the piroplasmal antigen. The known negative animals failed to evince a similar reaction.

Animals

Effects of 60Co irradiation of the early developmental stages of an ixodid tick, Hyalomma anatolicum.

Various developmental stages of Hyalomma anatolicum were subjected to a range of doses of 60Co radiation from 0-10 000 R, and their subsequent development was observed. Some of these ticks were infected with Theileria annulata. Doses of 2000 R and over prevented all but a very limited development of ticks. After 1000 R a proportion of exposed individuals continued development in a near-normal manner. Lower doses had proportionately less effect. 1000 R to ticks infected with T. annulata failed to prevent transmission of typical theileriasis to calves.

Animals

Lymphocytes infected with Theileria parva require both cell-cell contact and growth factor to proliferate.

Lymphocytes infected with the intracellular parasite Theileria parva proliferate continuously as lymphoblastoid cell lines. We have previously shown that the continuous proliferation of the T. parva-infected (Tpi) cell line TpM(803) is mediated in part by an autocrine mechanism (Dobbelaere, D. A. E. et al., Proc. Natl. Acad. Sci. USA 1988. 85:4730). We now report that continuous proliferation also requires surface stimulation through cell-cell contact. Under standard culture conditions this surface stimulus is provided by the infected cells themselves, but it can also be provided by uninfected lymphocytes or macrophages. The ability to respond to surface stimulation is critically dependent on the presence of the parasite in the host cell and is lost within 48 h after the elimination of the parasite from the host cell cytoplasm by treatment with the theilericidal drug BW720c. Tpi cells also secrete a growth factor which is able to support the proliferation of diluted Tpi cells. Growth factor secretion is rapidly lost upon elimination of the parasite. Moreover, inhibition experiments using anti-interleukin 2 (IL 2) antibodies show that IL 2 is involved in the proliferation of the Tpi cell lines TpM(803) and IN10. T cell proliferation is dependent on a number of costimulatory signals which are normally provided by accessory cells. The finding that Tpi cells can mutually stimulate each other to grow in the absence of conventional accessory cells helps to explain how they can escape the normal constraints on T cell growth, allowing them to invade and multiply in non-lymphoid as well as lymphoid tissues.

Animals

[Light microscopic studies on the development of Theileria annulata (Dschunkowsky and Luhs, 1904) in Hyalomma anatolicum excavatum (Koch, 1844). I. The development in the gut of engorged nymphs (author's transl)].

A laboratory strain of H. a. excavatum was selected on high susceptibility for T. annulata through several generations. Giemsa-stained smears and wet smears of gut and gut content were studied. After engorgement of erythrocytic stages of T. annulata by the nymphs the following development was observed: 1. Erythrocytic merozoites developed to slender, spindleshaped "microgamonts" in the gut 24 to 96 hours after repletion (p. repl.). Spherical stages with a conspicuous spike developed at the same time and earlier. The "microgamonts" then form up to 4 nuclei and several flagella-like appendices. Filiform "microgametes" obviously develop from the "microgamonts". In addition, spherical stages, i.e. "macrogametes", occur. 2. Spherical "zygotes" with a vacuole-like center appear in the epithelial cells of the gut from day 5 p. repl. These "zygotes" increase steadily in size and then stain more intensely up to day 12 p. repl. 3. From day 12 p. repl. the spherical "Zygotes" change to elongate forms by a continuing process of folding. Finally, from day 13 p. repl., they extend to clubshaped kinetes. These kinetes move actively by gliding within the gut cells and from day 17 p. repl. in the haemolymph. It could not be decided yet whether these kinetes are oo- or sporokinetes.

Animals

[Electron microscope studies on development stages of Theileria annulata (Dschunkowsky, Luhs, 1904) in the intestine and haemolymph of Hyalomma anatolicum excavatum (Koch, 1844) (author's transl)].

For the first time developmental stages of Theileria within the intestine and haemolymph of ticks were studied by electron microscopy. On the 1st-6th day post repletionem the intestine of the ticks contained humerous tages, which were very similar to microgamonts and microgametes of haemosporidia. Later, on the 14th-19th day p.r. ookinete-like stages ere found in the haemolymph of ticks. From these results it seemed likely that gamogony of Theileria takes place in the intestine of ticks. In more detail: The microgamont-like stages were spindle-shaped; they measured about 8-12 mu in length with a diameter of about. 08 mu in their middle region...

Animals