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Biomedical subjects

M Naciri

Publications and source records attributed to M Naciri.

At least 37 records · Page 2Linked to original sources

Human intestinal epithelial cells respond to Cryptosporidium parvum infection with increased prostaglandin H synthase 2 expression and prostaglandin E2 and F2alpha production.

Cryptosporidium parvum is an important cause of diarrhea in humans and several animal species. Prostaglandins play a central role in regulating intestinal fluid secretion in animal models of cryptosporidiosis, but their cellular sources and mechanisms of induction are unclear. Here, we show that C. parvum infection directly activates prostaglandin H synthase 2 expression and prostaglandin E2 and F2alpha production in human intestinal epithelial cells.

Animals↗

Evaluation of decoquinate to treat experimental cryptosporidiosis in kids.

The purpose of this trial was to evaluate the effects of decoquinate at 2.5 mg/kg/day for 21 days to prevent an experimental cryptosporidiosis in kids. Twenty 1-day-old male kids (French Alpin), fed initially goat colostrum heated 1 h at 56 degrees C and fed twice daily with nonmedicated milk replacer, were assigned into 2 groups. Kids of both groups were orally inoculated with 10(6) Cryptosporidium parvum (D0 = inoculation day). Group A kids were kept as nonmedicated controls and group B kids were orally medicated with 2.5 mg/kg/day of decoquinate (Deccox L. Rhône Poulenc Animal Nutrition) for 21 days from D-3 to D17. The studied criteria were body weight gain, oocyst shedding and specific anti-C. parvum immune response. In group A, the inoculation was not followed by mortality; but only by diarrhea and high oocyst shedding. Decoquinate reduced the severity of cryptosporidiosis in group B kids. The treatment prevented episodes of diarrhea and weight gain decrease for the D0-D7 and D0-D14 disease periods but did not allow a better final weight gain. The oocyst shedding was decreased in number and in duration. This parasitic development has induced a specific anti-C. parvum immune response. This drug is well-tolerated by animals and may be recommended in the prevention of ruminant cryptosporidiosis, a disease which has very limited treatment options.

Animals↗

Cryptosporidium parvum infection of human intestinal epithelial cells induces the polarized secretion of C-X-C chemokines.

Cryptosporidium parvum infects intestinal epithelial cells and does not invade deeper layers of the intestinal mucosa. Nonetheless, an inflammatory cell infiltrate that consists of neutrophils and mononuclear cells is often present in the lamina propria, which underlies the epithelium. This study investigated the host epithelial cell response to C. parvum by assessing in vitro and in vivo the expression and production of proinflammatory cytokines by intestinal epithelial cells after infection. The human colon epithelial cell lines HCT-8 and Caco-2 and human intestinal xenografts in SCID mice were infected with C. parvum. The expression and secretion of the C-X-C chemokines interleukin-8 (IL-8) and GROalpha were determined by reverse transcription-PCR analysis and enzyme-linked immunosorbent assay. Our results demonstrate that upregulated expression and secretion of IL-8 and GROalpha after C. parvum infection of intestinal epithelial cells first occurred 16 to 24 h after infection and increased over the ensuing 1 to 2 days. The kinetics of C-X-C chemokine production by C. parvum-infected epithelial cells contrast markedly with the rapid but transient expression of C-X-C chemokines by epithelial cells infected with invasive enteric bacteria. C-X-C chemokine secretion in C. parvum-infected epithelial cells occurred predominantly from the basolateral surface in polarized monolayers of Caco-2 cells grown in Transwell cultures, whereas cell lysis occurred at the apical surface. The basolateral secretion of IL-8 and GROalpha from C. parvum-infected epithelial cells suggests that C-X-C chemokines produced by those cells contribute to the mucosal inflammatory cell infiltrate in the underlying intestinal mucosa.

Animals↗

Detection of Cryptosporidium parvum DNA in formed human feces by a sensitive PCR-based assay including uracil-N-glycosylase inactivation.

We developed a PCR-based method that can be used to identify Cryptosporidium parvum in human feces. Fecal oocysts were concentrated by centrifugation on a sodium chloride gradient and filtration on a nitrocellulose filter prior to DNA extraction and PCR amplification of a 452-bp C. parvum-specific DNA sequence with a protocol including dUTP and uracil-N-glycosylase. All samples obtained from naturally infected humans (n = 10), calves (n = 4), and goats (n = 2) were positive. A 100% detection rate was achieved with both formed and solid stools (n = 10) seeded with 1,000 C. parvum oocysts per g. Procedures based on stool concentration by a modified Ritchie method and subsequent oocyst identification by immunofluorescent labeling or acid-fast staining require concentrations of 50,000 to 500,000 oocysts per g to achieve a 100% detection rate with formed stools. The described PCR-based assay thus has a 50- to 500-fold increase in sensitivity compared to those of the methods commonly used to analyze formed feces.

Animals↗

[PCR detection of Mycobacterium tuberculosis lacking IS 6110].

We have evaluated the frequency of M. tuberculosis strains which lack IS 6110 among 102 sputa isolated from Moroccan patients. A pair of primers was designed to amplify a 201bp DNA fragment of IS 6110. The amplified DNA was detected by ethidium bromide stained agarose gel electrophoresis and confirmed by southern blot hybridization with a 32P-labelled probe (PMTO2). To detect the presence of amplification inhibitors, an internal control DNA was added in each negative PCR result. Among 102 samples, 6 sputa were negative by PCR-IS 6110 but culture positive. The test of detection of M. tuberculosis for 2/6 sputa by PCR Amplicor amplifying 584 pb of rRNA 16s sequence was positive. RFLP analysis of these 2 strains revealed no bands hybridizing IS 6110 but PCR-Mt 308 was positive. These results confirmed that these M. tuberculosis strains are lacking IS 6110.

Adult↗

Genotyping human and bovine isolates of Cryptosporidium parvum by polymerase chain reaction-restriction fragment length polymorphism analysis of a repetitive DNA sequence.

In order to define transmission routes of cryptosporidiosis and develop markers that distinguish Cryptosporidium parvum isolates, we have identified 2 polymorphic restriction enzyme sites in a C. parvum repetitive DNA sequence. The target sequence was amplified by polymerase chain reaction from 100 to 500 oocysts and the amplified product was subjected to restriction enzyme digestion. Typing of 23 isolates showed that 10/10 calf isolates had the same profile. In contrast, 2 patterns were observed among human isolates: 7/13 displayed the calf profile, and 6/13 presented another pattern. The PCR-RFLP assay described here is a sensitive tool to distinguish C. parvum isolates.

Animals↗

Chemoprophylaxis of Cryptosporidium parvum infection with paromomycin in kids and immunological study.

The anticryptosporidial activity of paromomycin, a natural antibiotic weakly absorbed when administered per os, was assessed in goat kids experimentally infected once via the oral route with 10(6) Cryptosporidium parvum oocysts. Paromomycin used prophylactically at a dose of 100 mg/kg of body weight per day from day-1 to day 10 (day 0 was the inoculation day) prevented infection during the period of drug administration. A delayed low infection was suggested by an antibody rise, but the infection developed below the microscopic detection limits. This low parasite development induced a partial immunity in kids, which reacted immunologically to a challenge on day 21 without symptoms or detectable oocyst shedding. So, paromomycin is a good candidate for field trials because it is prophylactically effective against experimental C. parvum infection and well tolerated by animals. This drug would be useful in an adapted form as an anticryptosporidial agent for neonatal ruminants.

Animals↗

Major antigens of Cryptosporidium parvum recognised by serum antibodies from different infected animal species and man.

Serum humoral immune response to Cryptosporidium parvum was evaluated in six species: mouse, rabbit, lamb, calf, pig and man. Electrophoretic and immunoblot analysis showed that specific animal antibody response appeared between Day 4 and Day 15 post inoculation. The two main target antigens had apparent molecular weights of 15-17 and 23 kDa. They were recognised by each species studied. Serum IgA intensively recognised the 15-17 kDa antigen, except in rabbit. This study demonstrates that these two antigens are consistent targets of humoral immune response and can therefore be of great interest in studies of therapy/prophylaxis.

Animals↗

Treatment of experimental ovine cryptosporidiosis with ovine or bovine hyperimmune colostrum.

Ovine or bovine colostrums with different antibody titers were tested for their ability to prevent cryptosporidiosis in five groups of neonatal lambs experimentally infected with 10(6) Cryptosporidium parvum oocysts 2 days after birth (Day 0). In a control group (Group 1), six lambs were deprived of ewe colostrum and exclusively fed with milk replacer. Two groups of six lambs were allowed to suckle their non-hyperimmunized (Group 2) or hyperimmunized (Group 3) dams throughout the experiment. Two groups of seven lambs were separated from their dams at birth before suckling and fed with non-hyperimmune (Group 4) or hyperimmune (Group 5) bovine colostrum; for 7 days they received 50 ml of colostrum completed by milk replacer twice a day, then they were fed with milk replacer exclusively. Control lambs became infected and developed clinical cryptosporidiosis with diarrhea on Days 4-9 post inoculation, oocyst shedding and mortality (2/6). In all the treated groups, the colostrum prevented mortality and clinical cryptosporidiosis. The mortality (5/7) observed in Group 5 was not due to cryptosporidiosis but anemia. In treated groups, specific antibodies were detected on Day 0 after 2 days of colostrum intake and varied little in time for IgM and IgG in spite of the parasite development, whereas they appeared later in the control group, on Day 4 for IgM, Day 11 for IgA and Day 14 for IgG. In all groups, the response which was the most consistent was the IgA response which evolved from Days 11 to 18 in association with the decline of oocyst shedding. Our results show that whatever the serum antibody titers were, the specific C. parvum circulating antibodies have no influence on the control of cryptosporidiosis. The prophylaxis or the treatment of cryptosporidiosis require high titers of specific C. parvum antibodies in the gut lumen during a sufficiently long period.

Animals↗

Humoral antibody response and oocyst shedding after experimental infection of histocompatible newborn and weaned piglets with Cryptosporidium parvum.

Experimental inoculations (mono- and multi-inoculations) with C parvum isolated from a diarrheic child and maintained on calves, were performed on 2 histocompatible miniature (d/d haplotype) weaned 4-week-old piglets and 2 newborn piglets. In each group, 1 piglet received water at the moment of inoculation and served as a negative control. Our results showed that the piglet strain used was resistant to cryptosporidiosis. No clinical sign or oocyst shedding were observed in newborn piglets. A very weak shedding was noticed on day 6 (D6) post-inoculation in inoculated weaned piglets. Using ELISA, inoculated weaned piglets showed a peak of G, M and total antibodies on D10. Specific IgA antibody production peaked on D20. During the experiment on newborn piglets, no peak of specific IgA production was detected. Using immunoblotting, sera of both inoculated weaned piglets and one inoculated newborn piglet were shown to recognize a 14.5-16.5 kDa protein. A 23 kDa antigen was recognized by all 3 uninoculated and inoculated weaned piglets. A difference between mono and multi-inoculations was not clearly demonstrated. Age did not play any role. This pig strain does not seem to be a good model to induce acute cryptosporidiosis.

Animals↗

The effect of halofuginone lactate on experimental Cryptosporidium parvum infections in calves.

The chemoprophylactic effects of halofuginone lactate were tested against calf experimental cryptosporidiosis. Twenty 2-day-old calves, divided into four groups, were orally inoculated with 1 x 10(6) oocysts of Cryptosporidium parvum. The infected control group was unmedicated whereas the three other groups were medicated with the drug at 30, 60 and 120 micrograms kg-1 day-1, respectively, for 7 days, from Day (D) 2 to D8 post-inoculation (D 0 was inoculation day). The calves were weighed twice weekly and disease development and drug efficacy were assessed daily from D0 to D30 from consistency of feces, shedding of oocysts and mortality. Experimental C. parvum infection caused a severe clinical disease with profuse watery diarrhea, high oocyst shedding and mortality (3 out of 5) in the unmedicated group. The results clearly demonstrated the efficacy of halofuginone lactate in reducing the severity of clinical cryptosporidiosis. This efficacy was dose-dependent. The lowest dose (30 micrograms kg-1 day-1) was not able to prevent clinical disease and mortality (3 out of 5). No clinical signs were observed with the 60 and 120 micrograms kg-1 day-1 doses, but the animals shed oocysts after drug withdrawal. This shedding was more delayed the higher the dose of drug administered, but the delayed shedding had no effect on the growth of the animals.

Animals↗

Specific serum and local antibody responses against Cryptosporidium parvum during medication of calves with halofuginone lactate.

Fecal and serum anti-Cryptosporidium parvum immunoglobulin A (IgA), IgM, and IgG were monitored by an enzyme immunoassay in C. parvum-infected calves after medication with halofuginone lactate. In a first experiment, four groups of five 1-day-old colostrum-fed calves were inoculated with 10(6) oocysts of C. parvum. They were medicated with 0, 30, 60, or 120 micrograms of halofuginone lactate per kg from days 2 to 8 postinfection (p.i.). Unmedicated calves passed large numbers of oocysts between 3 and 14 days p.i. Treatment with 30 micrograms/kg did not completely inhibit oocyst output during medication, whereas 60 and 120 micrograms/kg did. The latter groups passed only a reduced number of oocysts when the drug was withdrawn. In a second experiment, 3- to 6-day-old colostrum-fed calves were divided into three groups of 16 or 17 animals each. All animals had acquired C. parvum infection before arrival at the fattening unit. They were medicated with 0, 60, or 120 micrograms/kg for 7 days beginning on the day of arrival. Unmedicated calves passed large numbers of oocysts from 0 to 21 days. Medication stopped oocyst output at day 7, but some of the calves again passed low numbers of oocysts 7 days after withdrawal of the drug. Experimental infection of unmedicated calves was followed by a rise in local anti-C. parvum IgA and IgM titers. Rising coproantibody levels coincided with falling oocyst output. In halofuginone-medicated and experimentally infected calves, only specific anti-C. parvum IgM levels rose during the first 5 days p.i. Specific IgA levels increased in association with oocyst output after withdrawal of the drug in the 60- and 120-micrograms/kg groups. In naturally infected calves, on the other hand, both specific IgA and IgM levels rose further during medication. Although titers were lower than in unmedicated controls, no significant differences were observed. Both medicated and unmedicated calves were equally protected from a challenge with 10(7) oocysts 16 weeks after the first contact with the parasite.

Animals↗

Serum coloration as a criterion of the severity of experimental coccidiosis in the chicken.

Serum decoloration may be used as a criterion for the severity of coccidiosis. Direct measurement of serum coloration at 480 nm is easy to carry out and, with micromethods, it is not necessary to slaughter animals. With intestinal coccidia the sensitivity is high, and there is good correlation with the severity of infection and variability is small. With Eimeria tenella infection the criterion is less sensitive, but may be of value for some purposes.

Animals↗

Immunological characterization of a 17-kDa antigen from Cryptosporidium parvum recognized early by mucosal IgA antibodies.

Cryptosporidium parvum antigens were characterized by immunoblot analysis of sera and intestinal secretions of BALB/c mice orally infected with 10(5) oocysts. A major band at 17 kDa under non-reduced conditions and at 18 kDa under reduced conditions was recognized by anti-C. parvum IgA and IgG in serum and intestinal secretions from day 15 post-infection. This recognition persisted throughout the experiment (day 30). Mouse-serum antibodies raised against the 17-kDa purified antigen (P17) showed no cross-reactivity with other C. parvum antigens. Immunofluorescence study revealed that this antigen is located on the sporozoite. It is suggested that this antigen could be a good candidate for studies of mucosal immune response to C. parvum and for vaccination.

Animals↗

Cryptosporidium parvum in calves: kinetics and immunoblot analysis of specific serum and local antibody responses (immunoglobulin A [IgA], IgG, and IgM) after natural and experimental infections.

Fecal and serum anti-Cryptosporidium parvum immunoglobulin A (IgA), IgM, and IgG were monitored by an enzyme-linked immunosorbent assay after experimental and natural infection of calves with C. parvum. Although all experimentally infected calves showed high levels of colostral antibodies in the feces, they acquired C. parvum infection. Three of five animals died. Calves which acquired natural infection showed only diarrhea. Levels of colostral coproantibodies dropped quickly. Experimental infection was followed by a rise in local anti-C. parvum IgM levels from day 5 postinfection (p.i.). IgM peaked at day 14 p.i. and then disappeared quickly. Anti-C. parvum IgA levels rose between days 7 and 14 p.i. and decreased slowly. Rising levels of coproantibodies coincided with falling oocyst output. Fecal anti-C. parvum IgG levels rose slightly during oocyst output, and IgG disappeared 3 weeks p.i. Similar kinetics were established in naturally infected calves. Although fecal anti-C. parvum IgA levels declined slowly, reinfections were established 5, 7, and 14 weeks after the primary contact. Serum anti-C. parvum IgG levels rose during maximal oocyst excretion, whereas serum anti-C. parvum IgA levels peaked later than did local IgA levels. Challenge reinfection of naturally infected calves at day 112 was not followed by clinical signs or oocyst output or by a secondary antibody response. Sequential Western immunoblotting with fecal extracts revealed up to 32 different parasite antigens. Convalescent-phase sera recognized up to 23 antigens. Fecal IgA reacted intensely with antigens with relative molecular weights (M(r)) of approximately 11,000 and 15,000. These antigens were not recognized by convalescent-phase serum IgG. Both local IgA and serum IgG also showed strong reactions with 23,000- and 44,000-M(r) antigens and with several antigens of between 66,200 and 200,000 M(r). Most bands remained detectable for at least 16 weeks p.i.

Animals↗

[Cryptosporidiosis. Prospective epidemiologic survey in hospitalized children with diarrhea].

The pathogenic role of Cryptosporidium in diarrhea is well known in animals and now admitted in humans. Organism is common both to animals and humans. Diarrhea is particularly severe in immunocompromised patients. In order to determine occurrence of cryptosporidiosis in the pediatric population and therefore the contamination risk of the immunocompromised patients in the hospital, stool examinations were carried out in a prospective way in 190 hospitalized children with diarrhea on a 12 month-period. Cryptosporidium was detected 5 times in 4 children, among 57 positive stool examinations. No chronic carrier was found. In all the cases recovery was observed within one month. No child was immunodeficient. No outbreak was observed. The results confirm that immunologically competent children can be infected by cryptosporidium and have diarrhea, recovery and clearing of the stools always occurring spontaneously.

Adolescent↗

Prevalence of various enteropathogens in the feces of diarrheic and healthy calves.

The presence of various enteropathogens was examined in the feces of homebred dairy calves reared in a restricted geographical area of France (North West of County of Indre-et-Loire) during winter 1983-1984. Two distinct surveys were carried on: a case-control study including 32 diarrheic calves and 21 healthy calves bred in 53 different farms; and a separate study on nine diarrheic calves in another farm. The following infectious agents were looked for, by specific methods of detection: Escherichia coli K99 and E. coli lethal for mice, Salmonella species, Yersinia enterocolitica, Campylobacter jejuni, enterotoxigenic Clostridium perfringens, Chlamydia psittaci, rotaviruses, coronaviruses, Cryptosporidium. In the case-control survey, no enterotoxigenic E. coli (K99+) was detected in either group of calves. Four agents were more often detected in diarrheic calves than in healthy calves, i.e. rotavirus (12/32 vs 1/21), lethal E. coli (6/32 vs 1/21), Cryptosporidium (2/32 vs 0/21) and Salmonella typhimurium (1/32 vs 0/21). One at least of these four agents was present in 16 diarrheic calves (50%) vs only 2 healthy calves (10%) (P less than 0.01). On the other hand, the occurrence of Campylobacter jejuni and of C. perfringens, enterotoxin was similar in both groups of calves, accounting respectively for about 20% and 10% of total calves. Moreover, coronavirus-like particles were significatively associated with healthy calves (7/32 vs 11/21; P less than 0.05). In the other study, all the main categories of enteropathogens were detected throughout the period of observation in the same farm with the exception of enterotoxigenic E. coli. But each calf taken individually was rarely shedding more than two agents at a time. In addition, specific antibodies against C. perfringens enterotoxin, as tested in an ELISA test, were present in the serum of all the calves examined in both surveys. This study confirms the primary role of rotavirus and Cryptosporidium as agents of diarrhea in calves under three weeks. It also suggests the possible participation of E. coli strains that are lethal for mice and underlines the potential hazard for human health of bovine reservoirs of Campylobacter jejuni and enterotoxigenic C. perfringens.

Animals↗