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[Cyclospora cayetanensis infection. Laboratory diagnosis].

Cyclospora cayetanensis is an Apicomplexa protozoa which was found to cause gastroenteritis in humans in 1979. This paper reviews the laboratory diagnosis of the disease. The usefulness of direct examination of fresh fecal matter with special acid-fast stains is emphasized as well as the morphometric differentiation between this organism and other similar coccidia. The paper reviews the sporulation technique of Cyclospora cayetanensis for the recognition and differentiation of artifacts and green-blue algae. Another aspect discussed is the morphology of the parasite in histological sections and with electromicroscopic examination whereby tissue morphology changes caused by the microorganism can be identified. The experience of the Service and Laboratory of Parasitology of the Instituto Nacional de Pediatría of Mexico in the laboratory diagnosis of this protozoosis is described. The paper is oriented towards the inclussion of Cyclospora cayetanensis in the diagnostic protocols for the study of diarrheas in our health Institutions.

Animals↗

[Identification and molecular characterization of a Toxoplasma gondii microneme].

Protozoan of the phylum Apicomplexa are of high medical and veterinary importance, causing diseases such as malaria, toxoplasmosis and cryptosporidiosis. Invasive stages of apicomplexans possess organelles named micronemes, which are involved in the invasion process. We have recently characterized a protein in micronemes of Toxoplasma gondii, TgMIC3, which possess adhesive properties to host cell surface. Immunofluorescence analysis of T. gondii tachyzoite invasion showed that TgMIC3 is exocytosed and re-localised on the surface of the parasite during invasion. By being able to bind both the putative host cells and the parasites, TgMIC3 could be involved in invasion by acting as a bridge between the parasite and the host cell. Gene sequence analysis of TgMIC3 has revealed 5 partially overlapping EGF-like domains and a lectin binding-like domain, which can be involved in protein-protein or protein-carbohydrate interactions respectively. TgMIC3 is a homodimer synthetized with a N-terminal propeptide that is cleaved during trafficking to the organelle, presumably in the trans-Golgi network. The processing involves a serine protease and is required for correct binding function of TgMIC3. The exact role of this propeptide remains unexplained. It may be involved in the targetting of the protein to the micronemes by masking the region involved in interaction with membranes to avoid binding of the protein in the trafficking pathway.

Adhesins, Bacterial↗

[Toxoplasma and toxoplasmosis].

Toxoplasmosis is a zoonotic protozoal disease, caused by an obligatory intracellular parasite of the genus Toxoplasma. The disease is widely distributed affecting more than a billion milliard people, worldwide. Raising sheep and cattle, handling and eating raw meat, interaction with domestic cats and climate conditions play an important role in the distribution of the disease. Both Toxoplasma and Plasmodium belong to the Phylum Apicomplexa, and are, therefore, almost similarly sensitive to anti-malarial drugs. Toxoplasmosis is considered to be viscerotropic in adults and children and neurotropic in fetal and newborn children. An accurate and fast diagnosis of the disease is highly important, particularly in pregnant women, since the results may affect both the mother and her fetus. The present study summarizes the old and new techniques available and their importance in the diagnosis of the disease.

Animals↗

[The role of the sarcocyst surface apparatus in utilizing the host cell muscle structures].

The participation of the sarcocyst surface apparatus (SSA) of two sarcosporidian species, Sarcocystis muris and S. ovifelis (Coccidia, Sporozoa, Apicomplexa), in degradation of disrupted host cell substances was investigated. After degradation, these substances are transported through the membrane of the SSA to the sarcocyst ground substance (GS), but this process cannot be regarded as endocytosis. At first, the transported substances were found in SSA pits in the form of fibrillar structures. Later on, these were seen as twisted up granules. In some cases, such granules restore their fibrillar shape, penetrate through the SSA membrane and appear in the sarcocyst GS. In other cases, the small granules may be released from SSA pits directly to the sarcocyst GS. Besides, two SSA primembrane layers were seen to disappear during the transportation of host cell substances. In addition, multimembrane structures (membranous whorls) were first demonstrated between the plasmalemma and inner membrane complex of the zoite pellicle. Multimembrane structures were found, in addition, in the zoite cytoplasm in connection with micronemes. These structures resembling chloroplast granae of thylakoids may presumably fill the gap in membrane pool of the SSA contributing to its renewal.

Animals↗

[New drugs for the treatment of human parasitic protozoa].

Whereas parasitic diseases are always a heavy burden for humanity, few are the new antiparasitic molecules marketed during the last 25 years. Thus on the 1393 new molecules marketed between 1975 and 1999, only 7 have antiprotozoan properties. This talk will detail the progress made in the treatment of the intestinal protozoa, malaria, visceral leishmaniasis and toxoplasmosis, problems with which are especially confronted the European parasitologists. The treatment of Giardia and intestinal amoebas is based on 5-nitro-imidazoles derivatives. Single-dose treatments can be used with tinidazole or secnidazole. Resistance to these compounds of Giardia were described and in these cases, treatment by quinacrine or nitazoxanide are possible alternatives. Nitazoxanide is marketed in the United States and in Australia. It seems to be a well tolerated antiparasitic agent with a broad spectrum because it is active on a lot of intestinal protozoa and helminths. It acts on the same metabolic way as the 5-nitro-imidazoles (inhibition of the ferredoxine reductase) but without synthesis of free radicals and DNA deterioration of the target cell. It is thus neither teratogenic nor mutagenic. Artemisinin derivatives allowed considerable progress in the treatment of malaria. They have short half-lifes, allowing a fast parasitic clearance and these derivatives do no provoke resistance. They are first line drugs for the treatment of malaria in areas of drug resistance. The arthemeter-lumefantrine association (Riamet, Coartem) ensures a rapid disappearance of the circulating parasites and is well tolerated. Atovaquone-proguanil (Malarone) is usable in the treatment of acute malaria but also in disease prevention with the advantage of continuing drug intake for only 7 days after having left the infected area. The treatment of leishmaniasis is always delicate and is characterized by the worrying development of antimony resistances, probably related in the European zones to the treatment of dogs. Liposomal amphotricin is an alternative of choice but remains very expensive. The heating of amphotericin to 70 degrees C during 20 minutes gives it experimental properties and efficacies comparable with that of liposomal amphotericin, but at a less cost. Miltefosine, an alkyl-phospholipide antimetabolite, is very active on visceral leishmaniasis resistant to antimonial treatment. However, its long half-life could induce the emergence of resistances. Miltefosine induces much less side effects than conventional amphotericin B. The commonly used anti-toxoplasmic drugs (sulphadiazine and pyrimethamine) were marketed some 50 years ago and are only active on the rapid forms in multiplication. No drug is really efficient on the cysts although preliminary tests with atovaquone are encouraging to treat ophthalmologic forms in immunocompetent patients. To conclude, it is important to continue to search for new antiprotozoan molecules because, for some parasites, drug resistance is an important problem. Moreover, the treatment of the pregnant women, particularly during the first trimester, is often impossible and there is a lack of galenic forms easily usable in children. A better knowledge of the metabolic pathways of protozoa (particularly the apicoplast of Apicomplexa parasites) would certainly open the posssibility to identify new drugs. To reduce and delay the appearance of resistances, mass-treatments of mass should be avoided and targeted treatments prefered as well as the use of associations of molecules having different modes of action.

Adult↗

Molecular modifications of host cells by Toxoplasma gondii.

Toxoplasma gondii, the etiological agent of toxoplasmosis, is an Apicomplexa obligate intracellular protozoan parasite, which is able to infect any nucleated cell of numerous endothermic vertebrates. The combined abilities to actively penetrate host cells and perfectly control the fate of the parasite-containing vacuole (parasitophorus vacuole, PV) contribute to the remarkable global success of Toxoplasma as an intracellular parasite. Very broad host range and the relative ease of growth both in cell cultures in vitro and in vivo suggest that the parasite is able to manipulate the host cell apoptotic machinery. The article describes different aspects of host-parasite interplay focusing on molecular modifications of infected host cells.

Animals↗

Microscopic study on Sarcocystis moulei from sheep and goats in Saudi Arabia.

The present investigation revealed that the role of natural infection with Sarcocystis in sheep was 84% in Niemy, 76% in Najdy, 89% in Sawakny sheep and 77% in goats slaughtered in Riyadh, Saudi Arabia. The distribution of infection among the examined organs was varied from the sheep strain to goats. Recorded muscle cysts were macroscopic 8-18% (mean 13.5%) and microscopic 73-85% (mean 79%). Macroscopic cysts were usually detected on the oesophagus. EM showed an ultrastructural similarities in the cyst walls and their parasite contents (metrocytes and merozoites) for all macroscopic cysts examined from sheep and goats. These were also enclosed by a secondary cyst wall. The primary cyst wall had many cauliflower-like protrusions supported by many fibellar structures, while the ground substance underneath them contained many dark, dense granules and usually extended into the cyst cavity dividing it into many compartments containing the parasites. The cyst parasites were the peripheral globular to spherical metrocytes, which were divided by endodyogeny and the central banana-shaped merozoites. Both metrocytes and merozoites had all characteristics of the Apicomplexa. Experimental transmission of Sarcocystis to the definitive host, revealed that kittens were the only suitable final host. Thus, gamogony and zygote formation (fertilization) occurred 2-8 days post infection (p.i.) while sporulation took place within this final host 13-15 days p.i., where sporocysts were passed within faeces of infected kittens at that time. Also, the study indicated that the prepatent period was 13-15 days, while the patent period was 37-42 days.

Animals↗

The unusual architecture and predicted function of the mitochondrion organelle in Cryptosporidium parvum and hominis species: the strong paradigm of the structure-function relationship.

Cryptosporidium spp. is a protozoan parasite that causes widespread diarrhoeal disease in humans and other animals and is responsible for large waterborne outbreaks of cryptosporidiosis. Unlike many organisms belonging to the phylum Apicomplexa, such as Plasmodium spp. and Toxoplasma gondii, there is no clinically proven drug treatment against this parasite. Some aspects of the basic biology of Cryptosporidium spp. such as the understanding of key metabolic pathways or the full description of the organellar compartment are still lacking. Here I present evidence of the anomalous shape and substructure of the mitochondrion organelle in C. parvum and C. hominis, which is closer to the Guillardia theta nucleomorph structure rather than to the canonical mitochondrion of the proximate apicomplexan T gondii. The atypical architecture is accomplished by an altered organellar metabolone, inferred by in silico conceptual prediction and characterized by unusual, partial and/or reduced pathways. However, phylogeneticanalyses of the mitochondrion and mitochondrion-related loci hsp60, hsp70 (dnaK), alternative oxidase (AOX) and superoxide dismutase (SOD) in C. parvum show diversiform evolutionary pathways, suggesting a "chimera" derived organelle. Taken together these data depict peculiar and intriguing aspects of the C. parvum and C. hominis anomalous mitochondrion framework for further comparative analysis of the organelle within the Cryptosporidium spp. order.

Adenosine Triphosphate↗

Short report: molecular cloning and characterization of a putative binding protein of Babesia caballi.

A composite 2,206 nucleotide DNA sequence encoding a putative immunoglobulin-binding protein (BiP) was constructed from a sequence obtained from Babesia caballi cDNA library clones. The 1,962 nucleotide open reading frame predicts a 72 kD protein with extensive homology with BiPs from Apicomplexa parasites. The BiP gene had a predicted N-terminal signal sequence of 18 amino acids and a C-terminal tetrapeptide sequence (Ser-Asp-Glu-Leu) for signaling in the endoplasmic reticulum lumen. The recombinant protein expressed in baculovirus showed an apparent mass of 72 kD, which is identical to that of the native B. caballi protein. Monoclonal antibodies (MAbs) against B. caballi BiP reacted strongly with extracellular merozoites, but not in early intraerythrocytic stage. Detailed observation showed that the reaction of MAbs against pear-shaped forms was markedly irregular, with either no reaction, or reaction with one or two brightly fluorescent pear-shaped forms (two parasites) of B. caballi.

Animals↗

[Electron microscopic research on cryptosporidia. III. Parasite-host relations].

A study was made of the host-parasite relationship with Cryptosporidium parvum (Apicomplexa, Sporozoa), which parasitizes the intestine of newborn rats experimentally infected with oocysts isolated from C. parvum-infected calves. The endogenous development of the parasite occurs extracytoplasmically in the microvillar compartment of the enterocytes. The formation of the extracytoplasmic parasitophorous vacuole (PV), like that surrounding the endogenous stages of C. parvum, is regarded as one of the possible and evolutionary established ways for the intracellular parasite to escape from the host cell lysosomal digestion. Special attention is paid to the attachment zone of C. parvum, where a multimembranous organelle is formed serving eventually as a feeder organelle. No other specialized cytostome, similar to the micropore of other coccidia, has been so far revealed in the growing stages of Cryptosporidium. The characteristic ultrastructural organization of the endogenous stages of C. parvum and of other Cryptosporidium species so far investigated, along with the peculiar structure of the cryptosporidia-surrounding PV, to say nothing of some other distinctive features--all this makes it possible to distinguish between the genus Cryptosporidium and other coccidian genera, and warrants the separation of the former into a separate family Cryptosporidiidae Léger, 1911. Unlike, the addition to this family, besides Cryptosporidium Tyzzer, 1910, of another genus, Epieimeria Dykova, 1981, on the ground of the "epicellular" localization of both the genera claimed by Levine (1984), seems hardly correct, due to the totally different patterns of ultrastructural organization and host-parasite relationship recently reported for Epieimeria anguillae by Molnar and Baska (1986).

Animals↗

Electron microscopic study on macrogametogenesis of Eimeria labbeana infecting the Egyptian wild doves and host-parasite relationship.

The development of macrogametes of Eimeria labbeana was studied by electron microscopy in the epithelial cells of the villi at 96 hrs. post-infection. Appearance of young macrogamonts was characterized by the loss of the architecture of the apicomplexa (polar ring, rhoptries, micronemes, conoid, subpellicular microtubules), while the pellicle became only one unit membrane. This was associated by the formation of wall forming bodies II then I. Moreover, the mitochondria, endoplasmic reticulum and Golgi were increased in the cytoplasm. Amylopectin granules as well as lipid globules were greatly increased in mature macrogametes. Host cell reaction due to infection included enlargement and deformation of infected cells, hypertrophy of their nuclei, swollen and degeneration of mitochondria, endoplasmic reticulum and vacuolation of ground cytoplasm. These changes occur in both cells with and without parasite.

Animals↗

A comparative study of the development of Eimeria nieschulzi in vitro under aerobic and reducing conditions.

Sporozoites of the rat coccidian, Eimeria nieschulzi Dieben, 1924 (Apicomplexa: Eimeriidae), were inoculated onto monolayers of normal rat kidney (NRK) fibroblasts and cultured either under aerobic (5% CO2/95% air) or reducing (desiccator jars modified into candle jars) conditions in RPMI-1640 supplemented with 5% fetal bovine serum, sodium bicarbonate, and antibiotics. Under aerobic conditions, first-generation meronts were observed at 2 days postinoculation (DPI) and, except for individual third-generation meronts that were seen at 5 and 6 DPI, no further development was noted. Under reducing conditions, however, first-generation meronts observed at 2-5 DPI underwent additional development to form second-generation meronts (3-5 DPI), third-generation meronts (3-7 DPI), and a small number of fourth-generation meronts (5-8 DPI). Both second- and third-generation meronts were abnormal, exhibiting gigantism although the merozoites produced appeared normal. The gradual degeneration of cell monolayers under reducing conditions prevented further observations beyond 8 DPI. These results suggest that atmospheric conditions play an important role in the development of E. nieschulzi and maintenance of reducing conditions may be one key to achieving enhanced development of some species of coccidia in vitro.

Aerobiosis↗

A plea for improved presentation of type material for coccidia.

The "true" coccidia (phylum Apicomplexa, suborder Eimeriina) constitute a large and heterogeneous group of parasitic protozoa. Despite the large number of described species (ca. 1,650) and the medical and veterinary importance of some (e.g., Toxoplasma), 2 facts are clear: (1) the majority of coccidia species are probably yet undescribed, and (2) the phylogenetic relationships of those described species are poorly known. Contributing to the latter dilemma is the lack of a tradition to provide type specimens by those who describe new species, even though the International Code of Zoological Nomenclature specifically recommends the designation of a type specimen with the description of a new species. With the publication of a new edition of the Code (1985), explicit provisions are made for the unique concerns of taxonomists working with Protozoa. Here we remind those interested in the taxonomy of coccidia of an already established method for preserving oocysts in resin and, as an alternative, suggest the standardization of a photographic procedure through which type specimens of coccidia oocysts might also be submitted to and maintained in accredited museums. Thus, coccidia taxonomists should no longer have an excuse for their failure to designate types.

Animals↗

Sarcocystis encephalitis in a cockatiel.

A sporozoan organism was considered to be the causative agent of central nervous system disease in a cockatiel. The ultrastructural characteristics were typical of the coccidian group Apicomplexa, and the fact that organisms were free within the cytoplasm of infected cells and not within a vacuole, indicated they were Sarcocystis. Light and electron microscopic evaluation of brain tissue demonstrated protozoal organisms associated with areas of necrosis. Differential diagnosis of central nervous system disease in pet birds should include protozoal encephalitis.

Animals↗

[Electron microscopic study of the division processes in cysts of the sarcosporidian, Sarcocystis, ovifelis].

The metrocyte stage in the cysts of S. ovifelis has been found to divide not by endodyogeny, but by a different mode, not yet completely understood. The nucleus of the dividing metrocyte displays no nuclear envelope, the cytoplasm is full of large vacuoles. During the metrocyte division, some kind of nucleoplasm spreading occurs over the cytoplasm and between the large vacuoles, thus making any morphological limits between the cytoplasm and the nucleus invisible. The cytokinesis is accomplished due to the deep invaginations of the metrocyte pellicle. The metrocyte division first gives rise to a large multicellular (4--6) body lying in the peripheral zone of the cyst. The very impossibility of endodyogenetic division in the metrocyte stage may be due to its vaery peculiar morphofunctional organization, much different from what is characteristic of any asexual penetrative stage (= zoite) of Apicomplexa. The progeny of a metrocyte are interstitial cells which eventually, through the number of generations, evolve towards the metrozoite stage. Step by step, the interstitial cells aquire polarity due to the establishment of a conoid, rhoptries and micronnemes on the anterior pole, the pellicle becoming more rigid thus making, together with subpellicular microtubules, the cytoskeleton of the parasite. The study performed enables us to conclude that it is interstitial cells of advanced generations that divide by endodogeny. Merozoites being homologous to gamonts of other coccidia undergo no asexual division at all.

Animals↗

Characterization of a high molecular weight antigen of Cryptosporidium parvum micronemes possessing epitopes that are cross-reactive with all parasitic life cycle stages.

Crossreacting antigens between life cycle stages of Cryptosporidium parvum (Protozoa, Apicomplexa) were detected using monoclonal antibodies (mAbs). Shared epitopes were demonstrated by immunoelectron microscopy, at the level of micronemes of the sporozoite and merozoite stages; some dense granules were also labelled but not so intensively. The parasitophorous vacuole membranes of all intracellular stages, the wall-forming bodies of macrogametes and the outer oocyst walls all shared these epitopes. The antigens that bear these epitopes were characterized using the whole oocyst and sporozoite stages as sources of antigenic material. Complex labelling patterns were observed on Western blots. However, all the mAbs used in this study recognized an antigen of more than 500 kDa. The glycoproteinic nature of this antigen was demonstrated by its sensitivity to pronase and periodate treatments. The expression of this high molecular weight immunoreactive antigen in the intracellular stages of C parvum was not investigated and remains to be found.

Animals↗

Sarcocystis booliati n.sp. and a parasite of undetermined taxonomic position, Octoplasma garnhami n. gen. n. sp., from the moonrat, Echinosorex gymnurus.

Sarcocystis booliati n.sp. is described from the moonrat Echinosorex gymnurus (Mammalia, Insectivora) from West Malaysia. The cysts are very thin-walled, not visible to the naked eye, and have no trabeculae or cytophaneres. They are found in skeletal but not heart muscle. The zoites are small, 5-8 by 2-3 mum with a mean of 6.5 by 2.2 mum, in dry fixed smears. Octoplasma garnhami n.gen. n.sp., a parasite of undetermined taxonomic status but belonging to the Coccidiasina, Apicomplexa, is also described from the same host. Only schizononts and pseudocysts with typically 8 zoites, have so far been seen in monocytes of the spleen and liver. The zoites are large, 15 by 3 mum and have a distinct nucleolus even in dry-fixed smears.

Animals↗

Light and electron microscopic studies of Isospora chalchidis (Amoudi, 1989) infecting Chalcides ocellatus in Egypt.

Oocysts of Isospora chalchidis (Amoudi, 1989) were described from the faeces of the skink Chalcides ocellatus in Egypt. Non-sporulated oocysts were spheroidal, measuring 20 (18.5-21) microns in diameter and contained granulated zygotes. Sporulated oocysts had the same dimensions of the nonsporulated ones and each contained two sporocysts. Sporocysts were ovoid with stieda and sporocyst residual bodies. Sporulation time was 50 hours at room temperature. Merogony and gamogony occurred in the intestinal mucosa. Electron microscopic investigations showed that meronts, merozoites, gamonts and gametes developed in a narrow parasitophorous vacuole within the host-cell nucleus. Nuclei of meronts were surrounded by rough endoplasmic reticulum. Merozoites showed the main characteristics of motile stages of Apicomplexa. Macrogametes contained a large nucleus, two types of wall-forming bodies and a large amount of lipid inclusions. Nuclei of microgamonts were peripherally arranged and lacked nucleoli. Microgametes were flagellated.

Animals↗