An experimental protocol was developed to assess the efficacy of two UV reactors (medium-pressure UVaster), and a low-pressure reactor) on the infectivity of Cryptosporidium parvum oocysts under conditions mimicking small- or medium-size water distribution units. The protocol included purification of large amounts of viable oocysts from experimentally infected calf feces, pilot spiking, sample concentration and purification after UV radiation, oocyst quantification and in vitro evaluation of oocyst infectivity on HCT-8 cells. Water samples were collected at intervals upstream and downstream from the UV reactor after spiking. Oocysts were concentrated by centrifugation, purified by immunomagnetic capture and quantified using laser-scanning cytometry. An enhanced in vitro infectivity test on HCT-8 cells was developed, where oocysts were pretreated in order to obtain maximized in vitro infectivity, and infectious foci were enumerated after immunofluorescence staining after 3 days of culture. This method was superior to viability measured by excystation for assessing oocyst infectivity. The infectivity rate of untreated oocysts ranged between 9% and 30% in replicate experiments. The method allowed us to determine inactivation rates >4.92 (log) with UVaster and >4.82 with the LP reactor after exposition of oocysts to an effective dose of 400 J m(-2) at flow rates of 15 and 42 m(3) h(-1), respectively.
Six trypanosomatids isolated from different geographical areas from South America (Peru and Brazil) and different vectors and reservoir hosts (the triatomine Panstrongylus chinai [TP1], Triatoma infestans [TP2], Rhodnius ecuadorensis [TP3], R. prolixus [TB1], Didelphys marsupialis [TB2]), and one from a human asymptomatic patient [TB3], were characterized using lectin agglutination, isoenzyme profile, in vitro culture final metabolite patterns, and compared with a reference strain (Trypanosoma cruzi, Maracay strain [TC]). The different isolates were cultured in vitro in Grace's medium supplemented with 10% inactivated bovine foetal serum. According to our results and the statistical study, the isolate obtained from R. ecuadorensis should be designed as a Trypanosoma rangeli sp., showing all other isolates strong similarities to T. cruzi. Between them, two clusters could be identified, strongly correlating with the geographical origin. Cluster I grouped isolates from Peru and T. cruzi reference strain, and cluster II grouped the three Brazilian isolates.
Cryptosporidium parvum oocysts are the infective stages responsible for transmission and survival of the organism in the environment. In the present work we show that the oocyst wall, far from being a static structure, is able to incorporate antigens by a mechanism involving vesicle fusion with the wall, and the incorporation of the antigen to the outer oocyst wall. Using immunoelectron microscopy we show that the antigen recognized by a monoclonal antibody used for diagnosis of cryptosporidiosis (Merifluor(R), Meridian Diagnostic Inc.) could be found associated with vesicles in the space between the sporozoites and the oocysts wall, and incorporated to the outer oocyst wall by an unknown mechanism.
In 1909, Donovan [1] proposed the creation of a new genus, Phytomonas, to differentiate plant from animal trypanosomatids. Phytomonas spp. live in the latex, sap, sieve tubes, and fruit of many plant species [2]. At first, considerable controversy surrounded the pathogenicity of phytomonads in plants, as initially these parasitic protozoans were not thought to be particularly harmful. However, evidence from a number of plants of great economic significance, such as coffee, coconut, and palm, has shown that Phytomonas infections can have devastating economic consequences [3]. The defence mechanisms of trypanosomatids against the toxic products of O2 reduction – e.g. superoxide anion, hydrogen peroxide or hydroxyl radicals – are not completely understood. Trypanosomatids are protected from the damaging effects of reactive oxygen intermediates by scavengers such as trypanothione and specific enzymes such as superoxide dismutase (SOD, EC 1.15.1.1) and trypanothione peroxidase. Catalase, involved in the elimination of hydrogen peroxide, is absent from most trypanosomatids, although it has been detected in Crithidia luciliae [4] and in Phytomonas spp. [5]. Cyanide-insensitive SOD activity has been reported in Trypanosoma cruzi [6], as well as in other trypanosomatids such as Crithidia fasciculata [7] and Trypanosoma brucei [4]. The SOD activities of Leishmania tropica and T. cruzi are also cyanide-insensitive but peroxide-sensitive [7]. SOD of C. fasciculata is located in the cytosol and exists in three forms, which may represent three distinct isozymes. Comparisons of the amino-acid sequence of this SOD with those of SODs from other sources suggest that the crithidial enzyme is closely related to bacterial FeSOD of the alga Euglena gracilis. SOD activity has also been detected in L. dono ani and Phytomonas spp., although its nature has not been determined [8,9]. Most of the information on the biochemistry of plant flagellates has come from experiments in which the flagellates were used as instruments in biochemical research rather than from studies investigating the biochemistry of the plant flagellates themselves. Probably for this reason, these studies are scattered through a variety of subjects, and, despite the amount of information gathered in recent years, our knowledge of the biochemistry of Phytomonas remains fragmentary [3]. In this sense, the detoxifying mechanisms of oxygen radicals in plant trypanosomatids are unknown. From previous studies [10], we know that plant flagellates have SOD activity, but we have yet to identify the role of this enzyme in the destruction of the superoxide radicals, and there is no information available on the enzyme itself. In the present work, we confirm and quantify the SOD activity in three trypanosomes isolated from different plants: from phloem of the Coco nucifera (Hartrot disease) [11], from latex vessels of Euphorbia characias [12], from the fruits of Lycopersicon esculenAbbre iations: Cu/ZnSOD, copper/zinc-containing superoxide dismutase; FeSOD, iron-containing superoxide dismutase; ME, malic enzyme; MnSOD, manganese-containing superoxide dismutase; NBT, nitro-blue tetrazolium salt; PK, pyruvate kinase; PFK, 6-phospho fructose kinase; SOD, superoxide dismutase. * Corresponding author. Tel.: +34-958-242369; fax: +34-958243174. E-mail address: msanchem@goliat.ugr.es (M. Sanchez-Moreno).
Cryptosporidium parvum oocysts were purified using a discontinuous potassium bromide density gradient, composed by three solutions of 6, 16 and 28% (w/v) KBr in Tris-EDTA buffer. Fecal samples containing oocysts were washed to diminish interfering lipids and applied to the gradient. After centrifugation, oocysts can be easily aspirated from a clear band, diluted and washed by centrifugation in phosphate buffer to remove residual KBr. This method allows the purification of large amounts of highly purified C. parvum oocysts, using low cost reagents and a standard table-top centrifuge.
Six compounds, all newly synthesized triazole-pyrimidine derivatives that proved inhibitory of in in vitro growth of epimastigotes in Trypanosoma cruzi and of promastigotes of Leishmania donovani and Phytomonas staheli, were studied to investigate their toxic effects. As a biological model, the plant trypanosome P. staheli, which causes sudden wilt in the oil palm and Hartrot in the coconut palm, was used. The six compounds markedly inhibited macromolecule synthesis (nucleic acids and proteins) by the parasite. The cells treated with these compounds present severe damage in their ultrastructure-intense 'vacuolization, and appearance of lysosomes as well as other residual bodies. The mitochondrial section appeared larger in size. with a swollen matrix. In addition, these compounds changed the excretion of end metabolites, primarily affecting ethanol and acetate excretion, possibly by directly influencing certain enzymes (alcohol dehydrogenase and acetate synthetase) or their synthesis. 2000 Elsevier Science Ltd.
The antiprotozoal activity of newly synthesised compounds, all [1,2,4]triazolo [1,5a]pyrimidine derivatives, was tested against the protozoan parasites Trypanosoma cruzi, Leishmania donovani and Phytotmonas staheli. Six of these compounds significantly inhibited in vitro cell growth of the epimastigote forms of T. cruzi, and the promastigote forms of L. donovani and P. staheli. Some of the compounds reached complete growth inhibition at 1 microg/ml for 48 h of parasite/drug interaction. None of the compounds tested showed significant toxicity against cells of Aedes albopictus, mouse macrophages J-774A.1 and Lycopersicum esculentum at dosages five times greater than used against parasites.
A protozoan flagelate has recently been isolated from Amaranthus retroflexus. This plant grows near economically important crops in southeastern Spain, which are known to be parasitized by Phytomonas spp. The present study focuses on the characterization of the energy metabolism of this new isolate. These flagellates utilize glucose efficiently as their primary energy source, although they are unable to completely degrade it. They excrete ethanol, acetate, glycine, and succinate in lower amount, as well as ammonium. The presence of glycosomes was indicated by the early enzymes of the glycolytic pathway, one enzyme of the glycerol pathway (glycerol kinase), and malate dehydrogenase. No evidence of a fully functional citric-acid cycle was found. In the absence of catalase activity, these flagellates showed significant superoxide dismutase activity located in the glycosomal and cytosolic fractions. These trypanosomes, despite being morphologically and metabolically similar to other Phytomonas isolated from the same area, showed significant differences, suggesting that they are phylogenetically different species.
Oocysts of Cryptosporidium parvum were obtained from an experimentally infected newborn goat. After purification, the oocysts were homogenised and the activities of the glycolytic enzymes measured in the different subcellular fractions. All of the activities of the Embden-Meyerhoff pathway were located in the non-sedimentable, cytoplasmic fraction. Under the conditions used, hexokinase activity was below the limits of detection. The pathway is also characterised by the presence of a pyrophosphate-dependent phosphofructokinase and a carbon dioxide-fixing cycle comprising phosphoenolpyruvate carboxylase, malate dehydrogenase and malate dehydrogenase (decarboxylating) activities. The data presented in this paper suggest that the infective stage of this parasite probably relies on substrate-level phosphorylation for energy generation.
Oocysts of Cryptosporidium parvum showed relatively low levels of SOD activity. The SOD which had a pI of 4.8 and an approximate molecular weight of 35 kDa appeared to be iron dependent. Catalase, glutathione transferase, glutathione reductase and glutathione peroxidase activity could not be detected, nor could trypanothione reductase. No NADH or NADPH oxidase activity could be detected, nor could peroxidase activity be demonstrated using o-dianisidine, guaiacol, NADPH or NADH as co-substrates. However, an NADPH-dependent H2O2 scavenging system was detected in the insoluble fraction.
Copper-zinc superoxide dismutase was purified from Ascaris suum (Nematoda). Four benzimidazole derivatives, six recently synthesized pyrimidine derivatives and eleven recently synthesized glycine derivatives were shown to inhibit: (1) purified extracts of A. suum superoxide dismutase; (2) superoxide dismutase from host liver, and (3) purified extracts of superoxide dismutase from living A. suum incubated in the presence of these drugs. Thiabendazole compounds, with a documented effect against helminth parasites, were found to affect the superoxide dismutase. The inhibitory effects of some pyrimidine and glycine derivatives were higher than those of benzimidazoles, and the pyrimidine compounds failed to inhibit the host's enzyme. These derivatives are candidate anthelmintics, acting as inhibitors of certain metalloenzymes in parasites.
ABSTRACT. We describe the in vitro culture of Phytomonas species isolated from Euphorbia characias. The best choice between tested media was SDM‐79, in which promastigotes, after 6 days of culture, reached cell densities as high as 4 × 107 cells/ml. Cells growing in LIT or MTL medium showed longer division times and lower cell densities. We succeeded in obtaining Phytomonas sp. amastigote and spheromastigote forms in modified GRACE's medium, yielding transformation rates of up to 70%. Electron microscopy studies were performed in order to characterize the ultrastructural features of these forms obtained in vitro. On the other hand, metabolic studies based on qualitative (nuclear magnetic resonance spectroscopy) and quantitative metabolic methods (enzymatic assays) showed that promastigote forms secreted mainly ethanol, acetate, glycine, glycerol, piruvate and succinate in SDM‐79 medium, whereas the major metabolites found after transformation in modified Grace's medium were ethanol, acetate, glycine, piruvate and smaller amounts of glycerol.
Infections by the protozoan parasite Cryptosporidium parvum are routinely diagnosed by modified Ziehl-Neelsen (acid-fast) staining of faecal preparations despite the counterstaining and ghost-like appearance of some oocysts. Quantitative studies demonstrated that only a small percentage of oocysts excreted by naturally infected newborn calves displayed acid-fast characteristics, but that percentage increased when the time between excretion and sample staining was increased. The treatment of faecal samples with hydrogen peroxide (10 min, 5 vol. final concentration) caused all oocysts to become acid-fast, with up to 40-fold increases in test sensitivity in samples treated and stained within 3 h of excretion. Flow-cytometry analysis of hydrogen peroxide-treated oocysts also demonstrated increased labelling of oocysts by a commercial monoclonal antibody preparation commonly used for diagnosis.
Copper-zinc superoxide dismutase fromAscaris suum (Nematoda) was purified in a new, more efficient, and faster manner. The process included differential centrifugation, fractionation with ammonium sulfate, and sodium dodecyl sulfate-polyacrylamide electrophoresis, yielding a 340-fold purification (specific activity of 47 units/mg). Optimal storage conditions, optimal pH range, thermostability, molecular weight and ultravioltet-visible absorption spectrum of the enzyme are described, and a new enzymatic model for pharmacological screening is suggested.