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D Baccam

Publications and source records attributed to D Baccam.

29 records · Page 2Linked to original sources

[Studies on Plasmodium atheruri].

Plasmodium atheruri, a parasite of the African porcupine Atherurus africanus, is infective to splenectomised laboratory Rats and Mice, to Hamsters and to 2 exotic rodents which are easily bred in captivity: Calomys callosus and Meriones unguiculatus. Sporogony develops in Anopheles stephensi fed on Atherurus and on laboratory rodents; it is similar to that of the Rodent Plasmodia. Exoerythrocytic schizogony usually lasts 4 to 6 days but schizonts have been found in the liver of a porcupine at day 8. Schizogony in the blood (induced by inoculation of infected blood or by injections of sporozoites) follows two stages which are morphologically distinct: a) acute infections developing in clean Atherurus, following splenectomy of infected Atherurus or in laboratory rodents; it is characterized by large trophozoïtes, schizonts with 8 to 16 merozoites, gametocytes and infectivity to Anopheles. b) chronic infection which only occurs in the blood of Atherurus and follows the acute stage 15 to 21 days after its onset; it is characterized by small trophozoites and schizonts producing 4 merozoites. Thus it is thought that the chronic stage only occurs in the natural host when it is immunized. We think that, in nature, chronic schizogony maintains the parasitaemia through periods of low transmission and is followed by "recrudescences". The mechanisms that trigger the "recrudescences" are unknown but are probably connected with a decrease in the immune status of the host.

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[In vitro infestation of human hepatocytes by sporozoites of Plasmodium vivax: schizogony and liberation of merozoites capable of infesting human erythrocytes].

Human hepatocytes obtained by perfusion of a liver biopsy fragment, were infected in vitro with Plasmodium vivax sporozoites raised in Anopheles stephensi. On day 7 of culture, numerous hepatocytic schizonts ranging in size from 5 to 35 micrometers were observed. The schizont maturation was complete and led to the release of invasive merozoites as shown by in vitro infestation of human red cells layered on the hepatocytes cultures.

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[In vitro infestation of adult thamnomys hepatocytes with Plasmodium yoelii sporozoites; schizogony and release of infecting merozoites].

Hepatocytes isolated from an African rodent, Thamnomys gazellae, by perfusing the liver with a solution of collagenase were cultured in modified MEM medium, and infected in vitro by sporozoites of the 17 X strain of P. y. yoelii. 48 hrs. later, schizonts measuring 30 to 40 microns on average were observed in all cultures. Injection of culture supernatant, harvested on day 3, into Mice, was followed by a parasitaemia demonstrating that viable merozoites had been released by the schizonts.

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[Isospora from the domestic sparrow; multiplicity of species].

Natural intestinal infection of Isospora in the domestic Sparrow was studied during one year on a farm in Normandy. This survey showed many species and constant multiple infections. Some species were present all year, others were found only at certain times of the year; intensity varied with species and season. Almost all of the Isosporans previously described from the Sparrow were assigned to Isospora lacazei (Labbé, 1893), but this species is shown here in to be a parasite of the Goldfinch. Twelve new species are described on the basis of morphology of fresh sporulated oocysts. The most useful characters are those of: a) the Stieda apparatus and its inclusions;' b) the polar granules (number and shape); c) the residual body (diffuse or well delineated). In addition, the size and shape of oocysts and sporocysts, the number and shape of cristalloids in the sporozoites can be used to differenciate species. The following observations were made on sporogony: a) each species develops at a particular level in the intestine but several species could be found at the same level. However there is a patchy distribution of the species such that no two species occurred in the same villus. b) synchronous excretion of oocysts noted by others was found: the first oocysts appear at the beginning of the afternoon, the last at night fall; each species was found to have a characteristic and limited period of excretion. All the species found belong to the same systematic group (Stieda apparatus "macropylar") which suggests that they arose from successive speciations from a single species and were not acquired from other passerines in the same habitat.

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[New data on the biology of gametocytes of Plasmodium yoelii yoelli gathered from morphological characteristics indicating their age].

A morphological study has been made of the gametocytes of P. yoelii (a parasite of Rodents belonging to the "vivax" group). The authors distinguish 4 types chronologically ordered. Moreover, morphology enables one to predict their infectivity. The morphological analysis represents a tool leading to new data on the biology of gametocytes: loss of infectivity as soon as the parasitaemia becomes high; infectivity restricted to the young stages; concentration of young stages in the blood ingested by the Mosquitoes; short periodicity and short lived infectivity.

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Cultivation of the liver forms of Plasmodium vivax in human hepatocytes.

The blood schizogonic cycle of human malaria parasites has thus far been the most exhaustively studied phase of parasite development. However, before entering red blood cells (RBCs), the parasite undergoes its first multiplication not in blood, but in hepatic cells. These hepatic stages were the last to be discovered and only a few studies have been performed in humans and other primates. Despite recent advances, in vivo studies have limitations and other approaches such as cultures of these liver forms may be necessary to investigate their chemosensitivity and their biochemical or immunological properties. Recently, sporozoites of species of rodent malaria have been made to infect cultured cell lines or primary hepatocyte cultures. We report here that the complete cycle of the human malaria parasite Plasmodium vivax can be obtained in primary cultures of human hepatocytes up to release of merozoites able to penetrate RBCs.

Cells, Cultured↗

[Dionisia bunoi n. g. n. sp., Haemoproteidae parasite of the microchiropteran bat Hipposideros cyclops in Gabon (author's transl)].

Dionisia bunoi ng. g., n. sp. is characterized by:--a) sexual dimorphism of gametocytes, macrogametocyte of the falciparum type, microgametocyte of the type malariae:--b) schizonts developing in the lumen of liver blood vessels inside a greatly hypertrophied host cell; their size remains moderate and their cytoplasm is not intensely basophilic as is usually in the young stages of Haemosporidia of Mammals. The genus has morphological characters in common with each of the 4 other genera of Haemoproteidae of Mammals. The phyletic hypothesis concerning the morphology of gametocytes and schizonts suggests that Bioccala and Dionisia are primitive.

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[Plasmodium vinckei petteri: various aspects of its sporogony and exoerythrocytic schizogony].

A study of Plasmodium vinckei peterri sporogony was performed by experimental infection of Anopheles stephensi with gametocytes from infected mice. The study includes the description of the ookinete, complete evolution of oocysts and their final transformation to sporozoites. These were later used for intravenous infection of new mice, in order to study the exoerythrocytic schizogony. The morphology of exoerythrocytic schizonts was similar to that of other species of the same group. The minimal duration of the hepatic cycle was found to be of 61 hours. These data, along with other related to the hematic cycle characteristics, help to complete the information on the species, which can be recommended as a model for the study of human malaria.

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[Study of gametocytes from the Plasmodium "vivax" group: morphology, development in Anopheles and infectivity of Plasmodium yoelii microgametocytes].

The study of the gametocytes of Plasmodium yoelii enabled the differentiation of 4 morphological types: O, I, II and III (in a chronological order) and amongst each of these types the differentiation of healthy and altered gametocytes. These morphological data represent a tool for investigations on the biology of the gametocytes of the "vivax" group. Preliminary experiments bring informations on the evolution of gametocytes and the mechanisms of their infectivity. 1--In experimentaly infected white mice gametocytes of P.y. nigeriensis are infective up to the 3rd-4th day, those of P. y. yoelii until the 5th-6th days. These periods can be shorter when the infection is very virulent or longer when chronical. 2--The drop in infectivity coincides with the increase in number of the altered gametocytes. 3--The loss of infectivity is connected with the condition of the blood: when parasitaemiae are high, it becomes rapidly unsuitable to a normal evolution of the gametocytes: thus, non infective gametocytes acquire a good infectivity in less than two hours when transfered to a clean mouse. 4--The gametocytic composition of the blood taken up by the Anopheles in the capillaries can be very different from that taken at the tail of a Rodent. In the young parasitaemiae, when the Rodents are most infective to the Mosquitoes, there is a considerable enrichment in gametocytes O-I of the blood ingested by the Anopheles as compared to that taken from the Rodents by the usual techniques. This phenomenon could perhaps be explained by the larger size of gametocytes O and I and their retention in the capillaries of the host. 5--The strong infectivity of gametocytes O and I is confirmed by the fact that no infection develops in the Mosquitoes when no such gametocytes are present in the ingested blood. 6--The ageeing of gametocytes appears to be very rapid for gametocytes arising from exo-erythrocytic schizontes reach stage II, 29 hours and stage III, 35 hours, after the rupture of the very first schizonts.

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[Description of Hepatocystis muuli n. sp., Haemoproteidae, parasite of Sciuridae in Thailand (author's transl)].

Description of the gametocytes and the schizonts of H. muuli and of the gametocytes of Hepatocystis sp. parasites of Menetes berdmorei in Thailand. The schizonts of H. muuli are intrahepatocytic and provoke an hypertrophy of the host cell and its nucleus which remain visible during the entire development of the tissue stage. Old schizonts are very lobulated and the colloid is abundant and irregularly distributed. Histiomacrophagic reaction of the surrounding tissue remains moderate before the maturity of the parasite.

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