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Dive into the research topics where Assèta Kagambèga is active.

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Featured researches published by Assèta Kagambèga.


Journal of Food Protection | 2011

Prevalence of Salmonella enterica and the Hygienic Indicator Escherichia coli in Raw Meat at Markets in Ouagadougou, Burkina Faso

Assèta Kagambèga; Kaisa Haukka; Anja Siitonen; Alfred S. Traore; Nicolas Barro

This study investigated the hygienic status and prevalence of Salmonella and Escherichia coli in retail meat sold at open markets in Ouagadougou, Burkina Faso. A total of 150 samples of beef meat (n = 45), beef intestine (n = 45), mutton (n = 30), and chicken (n = 30) were collected from four local markets for investigation. The prevalence of Salmonella enterica subsp. enterica was 9.3%, and six serotypes, all previously unreported in Burkina Faso, were identified: Derby, Tilene, Hato, Bredeney, Agona, and Senftenberg. Most of the Salmonella isolates were sensitive to the 12 antimicrobial drugs tested. The prevalence of E. coli was 100% in all the meat types. An assessment of hygiene practices for the production, transportation, display, and vending of the meat revealed unhygienic conditions. Meat sellers had a low education level and poor knowledge of foodborne pathogens and their transmission routes. The findings showed that foodstuff handlers were in dire need of education about safe food handling practices.


Foodborne Pathogens and Disease | 2012

Characterization of Shigatoxigenic Escherichia coli strains from Burkina Faso.

Outi Martikainen; Assèta Kagambèga; Isidore Juste O. Bonkoungou; Nicolas Barro; Anja Siitonen; Kaisa Haukka

Shigatoxigenic Escherichia coli (STEC) cause serious foodborne infections that lead to diarrheal disease and sequelae worldwide. In Burkina Faso, West Africa, STEC strains from environmental and human sources have not been isolated and characterized before. In this study, 21 STEC strains were isolated from food samples of animal origin and human feces using colony hybridization of the Shiga toxin gene stx. The STEC strains belonged to 15 different serotypes, including O43:H2, O8:H(-), and O2:H2. All strains were positive for stx(1) and 10 also for stx(2). The most common stx(1) subtype was stx(1a), and the most common stx(2) subtype was stx(2b). In five strains, stx(2) subtypes stx(2a) and/or stx(2c), which were previously associated with hemolytic uremic syndrome, were present. Some of the strains possessed the gene saa, encoding autoagglutinating adhesin. None of the strains possessed the gene eae, encoding intimin. Two STEC strains carried also an enterotoxigenic E. coli-associated gene estIa, encoding heat-stable enterotoxin. The STEC isolated from food in Burkina Faso are potentially pathogenic for humans based on the virulence gene combinations that they possess and phenotypes that they express.


Foodborne Pathogens and Disease | 2012

Characterization of Salmonella enterica and Detection of the Virulence Genes Specific to Diarrheagenic Escherichia coli from Poultry Carcasses in Ouagadougou, Burkina Faso

Assèta Kagambèga; Nicolas Barro; Alfred S. Traore; Anja Siitonen; Kaisa Haukka

One hundred chicken carcasses purchased from three markets selling poultry in Ouagadougou, Burkina Faso, between June 2010 and October 2010 were examined for their microbiological quality. The presence of Salmonella was investigated using standard bacteriological procedures, and the isolates obtained were serotyped and tested for antimicrobial susceptibility. The presence of virulence-associated genes of the five main pathogroups of diarrheagenic Escherichia coli-Shiga toxin-producing E. coli (STEC), enteropathogenic E. coli (EPEC), enteroaggregative E. coli (EAEC), enterotoxigenic E. coli, and enteroinvasive E. coli-was investigated using 16-plex polymerase chain reaction (PCR) on the mixed bacterial cultures from the poultry samples. Of the 100 chicken carcasses studied, 57 were contaminated by Salmonella; 16 different serotypes were identified, the most frequent being Salmonella Derby, found in 28 samples. Four Salmonella strains were resistant to tetracycline, and two were resistant to streptomycin. Based on the PCR detection of the virulence genes, in total, 45 carcasses were contaminated by three pathogroups of E. coli: STEC, EPEC, or EAEC. The STEC and EPEC virulence genes were detected on six and 39 carcasses, respectively. EAEC virulence genes were only detected in combination with those of EPEC (on 11 carcasses) or STEC (on two carcasses). The STEC-positive carcasses contained the genes stx(1), stx(2), eaeA, escV, and ent in different combinations. None of the EPEC-positive carcasses contained the bfp gene, indicating that only atypical EPEC was present. EAEC virulence genes detected were aggR and/or pic. The high proportion of chicken carcasses contaminated by Salmonella and diarrheagenic E. coli indicates a potential food safety risk for consumers and highlights the necessity of public awareness of these pathogens.


Tropical Medicine and Health | 2018

Whole genome sequencing of multidrug-resistant Salmonella enterica serovar Typhimurium isolated from humans and poultry in Burkina Faso

Assèta Kagambèga; Taru Lienemann; Jonathan G. Frye; Nicolas Barro; Kaisa Haukka

BackgroundMultidrug-resistant Salmonella is an important cause of morbidity and mortality in developing countries. The aim of this study was to characterize and compare multidrug-resistant Salmonella enterica serovar Typhimurium isolates from patients and poultry feces.MethodsSalmonella strains were isolated from poultry and patients using standard bacteriological methods described in previous studies. The strains were serotype according to Kaufmann-White scheme and tested for antibiotic susceptibility to 12 different antimicrobial agents using the disk diffusion method. The whole genome of the S. Typhimurium isolates was analyzed using Illumina technology and compared with 20 isolates of S. Typhimurium for which the ST has been deposited in a global MLST database.The ResFinder Web server was used to find the antibiotic resistance genes from whole genome sequencing (WGS) data. For comparative genomics, publicly available complete and draft genomes of different S. Typhimurium laboratory-adapted strains were downloaded from GenBank.ResultsAll the tested Salmonella serotype Typhimurium were multiresistant to five commonly used antibiotics (ampicillin, chloramphenicol, streptomycin, sulfonamide, and trimethoprim). The multilocus sequence type ST313 was detected from all the strains. Our sequences were very similar to S. Typhimurium ST313 strain D23580 isolated from a patient with invasive non-typhoid Salmonella (NTS) infection in Malawi, also located in sub-Saharan Africa. The use of ResFinder web server on the whole genome of the strains showed a resistance to aminoglycoside associated with carriage of the following resistances genes: strA, strB, and aadA1; resistance to β-lactams associated with carriage of a blaTEM-1B genes; resistance to phenicol associated with carriage of catA1 gene; resistance to sulfonamide associated with carriage of sul1 and sul2 genes; resistance to tetracycline associated with carriage of tet B gene; and resistance to trimethoprim associated to dfrA1 gene for all the isolates.ConclusionThe poultry and human isolates were genetically similar showing a potential food safety risk for consumers. Our finding of multidrug-resistant S. Typhimurium ST313 in poultry feces calls for further studies to clarify the potential reservoirs of this emerging pathogen.


European journal of microbiology and immunology | 2017

Epidemiology and antibiotic resistance phenotypes of diarrheagenic Escherichia coli responsible for infantile gastroenteritis in Ouagadougou, Burkina Faso

Ali Konaté; René Dembélé; Nathalie Guessennd; Fernique Konan Kouadio; Innocent Kouamé Kouadio; Mohamed Baguy Ouattara; Wendpoulomdé Ad Kaboré; Assèta Kagambèga; Haoua Cissé; Hadiza Bawa Ibrahim; Touwendsida Serge Bagré; Alfred S. Traore; Nicolas Barro

The emergence and persistence of multidrug-resistant (MDR) diarrheagenic Escherichia coli (DEC) causing acute diarrhea is a major public health challenge in developing countries. The aim of this study was to evaluate the resistance phenotypes of DEC isolated from stool samples collected from children less than 5 years of age with acute diarrhea living in Ouagadougou/Burkina Faso. From August 2013 to October 2015, this study was carried out on 31 DEC strains of our study conducted in “Centre Médical avec Antenne Chirurgicale (CMA)” Paul VI and CMA of Schiphra. DEC were isolated and identified by standard microbiological methods and polymerase chain reaction (PCR) method was used to further characterize them. Antimicrobial susceptibility testing was done based on the disk diffusion method. DEC isolates were high resistant to tetracycline (83.9%), amoxicillin (77.4%), amoxicillin clavulanic acid (77.4%), piperacillin (64.5%), and colistin sulfate (61.3%). The most resistant phenotype represented was the extended spectrum β-lactamase (ESBL) phenotype (67.7%). Aminoglycosides were 100% active on enteroinvasive E. coli (EIEC) and enterohemorrhagic E. coli (EHEC). All the DEC isolates exhibited absolute (100%) sensitivity to ciprofloxacin. Monitoring and studying the resistance profile of DEC to antibiotics are necessary to guide probabilistic antibiotic therapy, especially in pediatric patients.


Food Science and Nutrition | 2018

Salmonella spp. and Campylobacter spp. in poultry feces and carcasses in Ouagadougou, Burkina Faso

Assèta Kagambèga; Alexandre Thibodeau; Valentina Trinetta; Daniel K. Soro; Florent N. Sama; Evariste Bako; Caroline S. Bouda; Aïssata Wereme N’Diaye; Philippe Fravalo; Nicolas Barro

Abstract The importance of Salmonella and Campylobacter as foodborne pathogens is well recognized worldwide. Poultry and poultry products are commonly considered as the major vehicles of Salmonella and Campylobacter infection in humans. The aim of this study was to investigate the hygienic status of poultry facilities and determine the prevalence of Salmonella and Campylobacter in slaughtered poultry feces and carcasses in four different markets in Ouagadougou, capital city of Burkina Faso. A total of 103 poultry feces and 20 carcasses were analyzed using microbiological standard methods. Among the 103 fecal samples, 70 were positive for Campylobacter ssp (67.96%) and 54 for Salmonella ssp (52.42%). The hippurate hydrolysis test revealed that among the 70 Campylobacter strains isolated from feces, 49 were C. jejuni (70%) and 21 were C. coli (30%). From the 20 carcasses analyzed, 18 were contaminated with Salmonella (90%) and 10 with Campylobacter ssp (50%). Among the 10 Campylobacter ssp samples isolated from poultry carcasses, all were identified as C. jejuni using the API CAMPY system and the hippurate hydrolysis test. The assessment of markets hygienic practices for production, transportation, display, and vending of meat revealed unhygienic conditions. To complete the observation of unhygienic practices, we have sampled chicken‐washing solution from the study sites and microbiological analysis of these samples revealed the presence of Salmonella spp in 100% of the samples. This study highlighted that poultry products on sale in Ouagadougou are highly contaminated with Salmonella and Campylobacter. To the best of our knowledge, this is the first report describing Campylobacter presence in the poultry industry of Burkina Faso. Our findings might help to better understand the epidemiology of Salmonella and Campylobacter.


Food Science and Nutrition | 2018

Safety of ready-to-eat chicken in Burkina Faso: Microbiological quality, antibiotic resistance, and virulence genes in Escherichia coli isolated from chicken samples of Ouagadougou

Namwin Siourimè Somda; Ouindgueta Juste Isidore Bonkoungou; Cheikna Zongo; Assèta Kagambèga; Imael. H.N. Bassole .; Yves Traoré; Jacques Mahillon; Marie-Louise Scippo; Joseph D. Hounhouigan; Aly Savadogo

Abstract In Burkina Faso, flamed/grilled chickens are very popular and well known to consumers. The aim of this study was to evaluate the microbiological quality, the antibiotic resistance, and the virulence gene from Escherichia coli isolated from these chickens in Ouagadougou. A total of 102 grilled, flamed, and fumed chickens were collected in Ouagadougou and analyzed, using standard microbiological methods. All E. coli isolates were checked with the antimicrobial test and also typed by 16‐plex PCR. The mean of aerobic mesophilic bacteria (AMB) and thermo‐tolerant coliforms (TTC) was found respectively between 6.90 ± 0.12 × 107 CFU/g to 2.76 ± 0.44 × 108 CFU/g and 2.4 ± 0.82 × 107 CFU/g to 1.27 ± 0.9 × 108 CFU/g. E. coli strains were found to 27.45%. Forty samples (38.24%) were unacceptable based on the AMB load. Fifty‐nine samples (57.85%) were contaminated with TTCs. Low resistance was observed with antibiotics of betalactamin family. Diarrheagenic E. coli strains were detected in 21.43% of all samples. This study showed that flamed/grilled chickens sold in Ouagadougou could pose health risks for the consumers. Need of hygienic practices or system and good manufacturing practices is necessary to improve the hygienic quality of flamed/grilled chickens. Our results highlight the need of control of good hygiene and production practices to contribute to the improvement of the safety of the products and also to avoid antibiotic resistance. Slaughter, scalding, evisceration, plucking, bleeding, washing, rinsing, preserving, grilling, and selling may be the ways of contamination.


International Journal of Environmental Research and Public Health | 2017

Characterization of Diarrheagenic Escherichia coli Isolated in Organic Waste Products (Cattle Fecal Matter, Manure and, Slurry) from Cattle’s Markets in Ouagadougou, Burkina Faso

Evariste Bako; Assèta Kagambèga; Kuan Abdoulaye Traoré; Touwendsida Serge Bagré; Hadiza Bawa Ibrahim; Soutongnooma Caroline Bouda; Isidore Juste O. Bonkoungou; Saidou Kaboré; Cheikna Zongo; Alfred S. Traore; Nicolas Barro

Cattle farming can promote diarrheal disease transmission through waste, effluents or cattle fecal matter. The study aims to characterize the diarrheagenic Escherichia coli (DEC) isolated from cattle feces, manure in the composting process and slurry, collected from four cattle markets in Ouagadougou. A total of 585 samples (340 cattle feces, 200 slurries and 45 manures in the composting process) were collected from the four cattle markets between May 2015 and May 2016. A multiplex Polymerase Chain Reaction (PCR), namely 16-plex PCR, was used to screen simultaneously the virulence genes specific for shiga toxin-producing E. coli (STEC), enteropathogenic E. coli (EPEC), enterotoxigenic E. coli (ETEC), enteroinvasive E. coli (EIEC) and enteroaggregative E. coli (EAEC). DEC was detected in 10.76% of samples. ETEC was the most prevalent (9.91%). STEC and EAEC have been observed with the same rate (0.51%). ETEC were detected in 12.64% of cattle feces, in 6.66% of manure in the composting process and in 5% of slurry. STEC were detected in 0.58% of cattle feces and in 2.22% of manure in the composting process. EAEC was detected only in 1% of slurry and in 2.22% of manure in the composting process. ETEC strains were identified based on estIa gene and/or estIb gene and/or elt gene amplification. Of the 58 ETEC, 10.34% contained astA, 17.24% contained elt, 3.44% contained estIa and 79.31% contained estIb. The two positive EAEC strains contained only the aggR gene, and the third was positive only for the pic gene. The results show that effluent from cattle markets could contribute to the spreading of DEC in the environment in Burkina Faso.


European journal of microbiology and immunology | 2017

Molecular characterization of diarrheagenic Escherichia coli in children less than 5 years of age with diarrhea in Ouagadougou, Burkina Faso

Ali Konaté; René Dembélé; Assèta Kagambèga; Issiaka Soulama; Wendpoulomdé Ad Kaboré; Emmanuel Sampo; Haoua Cissé; Antoine Sanou; Samuel Serme; Soumanaba Zongo; Cheikna Zongo; Alio Mahamadou Fody; Nathalie Guessennd; Alfred S. Traore; Amy Gassama-Sow; Nicolas Barro

Diarrheagenic Escherichia coli (DEC) is important bacteria of children’s endemic and epidemic diarrhea worldwide. The aim of this study was to determine the prevalence of DEC isolated from stool samples collected from children with acute diarrhea living in Ouagadougou, Burkina Faso. From August 2013 to October 2015, stool samples were collected from 315 children under 5 years of age suffering from diarrhea in the “Centre Médical avec Antenne Chirurgicale (CMA)” Paul VI and the CMA of Schiphra. E. coli were isolated and identified by standard microbiological methods, and the 16-plex PCR method was used to further characterize them. Four hundred and nineteen (419) E. coli strains were characterized, of which 31 (7.4%) DEC pathotypes were identified and classified in five E. coli pathotypes: 15 enteroaggregative E. coli (EAEC) (48.4%), 8 enteropathogenic E. coli (EPEC) (25.8%) with 4 typical EPEC and 4 atypical EPEC, 4 enteroinvasive E. coli (EIEC) (12.9%), 3 enterohemorrhagic E. coli (EHEC) 9.67%, and 1 enterotoxigenic E. coli (ETEC) 3.2%. The use of multiplex PCR as a routine in clinical laboratory for the detection of DEC would be a useful mean for a rapid management of an acute diarrhea in children.


The Journal of Microbiology, Biotechnology and Food Sciences | 2016

Characterization of diarrheagenic Escherichia coli isolated from raw beef, mutton, and intestines sold in Ouagadougou, Burkina Faso.

Hadiza Bawa Ibrahim; Gertrude Bsadjo Tchamba; Touwendsida Serge Bagré; Soutongnooma Caroline Bouda; Alio Mahamadou Fody; Assèta Kagambèga; Isidore Juste O. Bonkoungou; Fidèle Tiendrebeogo; Cheikna Zongo; Aly Savadogo; Alfred S. Traore; Nicolas Barro

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Nicolas Barro

University of Ouagadougou

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Cheikna Zongo

École Normale Supérieure

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Anja Siitonen

National Institute for Health and Welfare

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Ali Konaté

École Normale Supérieure

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Evariste Bako

École Normale Supérieure

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Nicolas Barro

University of Ouagadougou

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