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1.
Environ Microbiol Rep ; 16(4): e13319, 2024 Aug.
Article in English | MEDLINE | ID: mdl-39096033

ABSTRACT

Freshwater samples (n = 199) were obtained from 41 sites with contrasting land-uses (avian, low impact, dairy, urban, sheep and beef, and mixed sheep, beef and dairy) and the E. coli phylotype of 3980 isolates (20 per water sample enrichment) was determined. Eight phylotypes were identified with B1 (48.04%), B2 (14.87%) and A (14.79%) the most abundant. Escherichia marmotae (n = 22), and Escherichia ruysiae (n = 1), were rare (0.68%) suggesting that these environmental strains are unlikely to confound water quality assessments. Phylotypes A and B1 were overrepresented in dairy and urban sites (p < 0.0001), whilst B2 were overrepresented in low impact sites (p < 0.0001). Pathogens ((Salmonella, Campylobacter, Cryptosporidium or Giardia) and the presence of diarrhoeagenic E. coli-associated genes (stx and eae) were detected in 89.9% (179/199) samples, including 80.5% (33/41) of samples with putative non-recent faecal inputs. Quantitative PCR to detect microbial source tracking targets from human, ruminant and avian contamination were concordant with land-use type and E. coli phylotype abundance. This study demonstrated that a potential recreational health risk remains where pathogens occurred in water samples with low E. coli concentration, potential non-recent faecal sources, low impact sites and where human, ruminant and avian faecal sources were absent.


Subject(s)
Escherichia coli , Fresh Water , Public Health , Water Quality , New Zealand , Escherichia coli/genetics , Escherichia coli/isolation & purification , Escherichia coli/classification , Fresh Water/microbiology , Animals , Humans , Water Microbiology , Phylogeny , Feces/microbiology , Cryptosporidium/genetics , Cryptosporidium/isolation & purification , Cryptosporidium/classification , Giardia/genetics , Giardia/isolation & purification , Giardia/classification
2.
Food Microbiol ; 123: 104592, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39038884

ABSTRACT

Vegetable and fruit contamination is recognized as a significant parasite transmission route. This review presents the current state of vegetables ad fruits contamination with food-borne parasitic protozoa worldwide. We consider the methodologies and strategies for detecting parasitic stages developed in the last decade and the contamination data. Asia had the highest number of reports (94 studies), followed by Africa (74 studies). At the country level, with 41 studies, Iran had the most reports among other countries, followed by Nigeria (28 studies). According to the studies included in the current review, 41.22% of vegetables and fruits were contaminated with different species of protozoan parasites. Among different continents, Asia accounted for the highest contamination rate of protozoan parasites (57.12%). Giardia spp. (10%) had the highest contamination rate in vegetables and fruits, followed by Entamoeba coli (8%), E. histolytica/dispar (7%), and Cryptosporidium spp. (6%). This study provides essential data for health authorities to develop food safety programs. The presence of protozoan parasites in fruits and vegetables highlights the critical need for maintaining rigorous food safety measures across the entire production and distribution process, particularly in countries that are major producers and distributors of these food items.


Subject(s)
Food Contamination , Fruit , Vegetables , Vegetables/parasitology , Fruit/parasitology , Food Contamination/analysis , Humans , Animals , Food Safety , Food Parasitology , Cryptosporidium/isolation & purification , Cryptosporidium/genetics , Parasites/isolation & purification , Parasites/classification , Parasites/genetics , Giardia/isolation & purification , Giardia/genetics , Entamoeba/isolation & purification , Entamoeba/genetics , Asia
3.
Water Res ; 262: 122110, 2024 Sep 15.
Article in English | MEDLINE | ID: mdl-39042970

ABSTRACT

Cryptosporidium and Giardia are important parasitic protozoa due to their zoonotic potential and impact on human health, and have often caused waterborne outbreaks of disease. Detection of (oo)cysts in water matrices is challenging and extremely costly, thus only few countries have legislated for regular monitoring of drinking water for their presence. Several attempts have been made trying to investigate the association between the presence of such (oo)cysts in waters with other biotic or abiotic factors, with inconclusive findings. In this regard, the aim of this study was the development of an holistic approach leveraging Machine Learning (ML) and eXplainable Artificial Intelligence (XAI) techniques, in order to provide empirical evidence related to the presence and prediction of Cryptosporidium oocysts and Giardia cysts in water samples. To meet this objective, we initially modelled the complex relationship between Cryptosporidium and Giardia (oo)cysts and a set of parasitological, microbiological, physicochemical and meteorological parameters via a model-agnostic meta-learner algorithm that provides flexibility regarding the selection of the ML model executing the fitting task. Based on this generic approach, a set of four well-known ML candidates were, empirically, evaluated in terms of their predictive capabilities. Then, the best-performed algorithms, were further examined through XAI techniques for gaining meaningful insights related to the explainability and interpretability of the derived solutions. The findings reveal that the Random Forest achieves the highest prediction performance when the objective is the prediction of both contamination and contamination intensity with Cryptosporidium oocysts in a given water sample, with meteorological/physicochemical and microbiological markers being informative, respectively. For the prediction of contamination with Giardia, the eXtreme Gradient Boosting with physicochemical parameters was the most efficient algorithm, while, the Support Vector Regression that takes into consideration both microbiological and meteorological markers was more efficient for evaluating the contamination intensity with cysts. The results of the study designate that the adoption of ML and XAI approaches can be considered as a valuable tool for unveiling the complicated correlation of the presence and contamination intensity with these zoonotic parasites that could constitute, in turn, a basis for the development of monitoring platforms and early warning systems for the prevention of waterborne disease outbreaks.


Subject(s)
Artificial Intelligence , Cryptosporidiosis , Cryptosporidium , Giardia , Giardiasis , Machine Learning , Cryptosporidiosis/prevention & control , Cryptosporidiosis/epidemiology , Cryptosporidium/isolation & purification , Giardia/isolation & purification , Humans , Giardiasis/prevention & control , Giardiasis/epidemiology , Oocysts , Waterborne Diseases/prevention & control
4.
Vet Parasitol ; 329: 110192, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38749124

ABSTRACT

Giardia duodenalis (syn. G. intestinalis or G. lamblia) is a parasitic protozoan that infects the upper intestinal tract of a broad range of hosts, including humans and domestic animals. Thus, it has raised concerns about the public health risk due to companion animals. Recently, with the improvement of living standards and increasing contacts between pets and humans, the zoonotic transmission of Giardia has dramatically increased. From a genetic point of view, G. duodenalis should be viewed as a complex species that includes eight different species-specific genetic assemblages. The laboratory diagnosis is mainly based on the finding of microscopic cysts in stool samples by coprological examination. Other methods include the detection of antigens, immunoassays or PCR protocols, which allow the identification of Giardia assemblages. The study aimed to compare the performance of Direct Fluorescence Antibody test (DFA), zinc sulfate flotation technique (ZnSO4), rapid diagnostic test (RDT), end-point PCR amplification (PCR) for the detection of Giardia and to identify the concerning assemblages in a canine population from Central Italy. Direct fluorescence antibody test is the reference standard for laboratory diagnosis of Giardia in fecal samples from dogs, despite the microscopic examination after flotation remains the most useful method in many veterinary diagnostic centers. The present findings demonstrate the high performance of DFA and ZnSO4 in detecting Giardia, while RDT may be useful as alternative or complementary method to the DFA and ZnSO4. PCR performance was low, but it allowed determining Giardia B zoonotic assemblage in 25% of the PCR-positive specimens (15 out of 60), while the remaining PCR-positive isolates belonged to the dog-specific assemblage C. The 26% prevalence of G. duodenalis detected by DFA in owned dogs and the identification of potentially zoonotic assemblages underline the potential risk for public health and indicate frequent cross-species transmission of the parasite between humans and dogs.


Subject(s)
Dog Diseases , Feces , Giardiasis , Zoonoses , Animals , Dogs , Giardiasis/veterinary , Giardiasis/diagnosis , Giardiasis/parasitology , Dog Diseases/diagnosis , Dog Diseases/parasitology , Zoonoses/diagnosis , Zoonoses/parasitology , Feces/parasitology , Humans , Polymerase Chain Reaction/veterinary , Polymerase Chain Reaction/methods , Giardia/isolation & purification , Giardia/genetics , Giardia lamblia/isolation & purification , Giardia lamblia/genetics , Fluorescent Antibody Technique, Direct/veterinary , Italy/epidemiology , Sensitivity and Specificity
5.
Can J Microbiol ; 70(7): 262-274, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38700083

ABSTRACT

Cryptosporidium and Giardia are protozoan parasites responsible for gastrointestinal illnesses in humans and in animal species. The main way these parasites are transmitted is by ingestion of their (oo)cysts in drinking water. Monitoring (oo)cysts in water sources is beneficial to evaluate the quality of raw water supplying treatment plants. Currently, the only standardized protocol to enumerate these parasites from water samples is United States Environmental Protection Agency (USEPA) Method 1623.1. With this method, we monitored three major water sources in Quebec over a year to assess temporal and geographical variations of these parasite (oo)cysts. These three water sources have independent watersheds despite being in the same region. We found a general pattern for Giardia, with high concentrations of cysts during cold and transition periods, and significantly lower concentrations during the warm period. Cryptosporidium's concentration was more variable throughout the year. Statistical correlations (Pearson's correlation coefficients) were established between the concentration of each parasite and various environmental parameters. The three study sites each showed unique factors correlating with the presence of both protozoa, supporting the idea that each water source must be seen as a unique entity with its own particular characteristics and therefore, must be monitored independently. Although some environmental parameters could be interesting proxies to the parasitic load, no parameter was strongly correlated throughout the whole sampling year and none of the parameters could be used as a single proxy for all three studies sources.


Subject(s)
Cryptosporidium , Giardia , Cryptosporidium/isolation & purification , Quebec , Giardia/isolation & purification , Environmental Monitoring/methods , Drinking Water/parasitology , Seasons , Water Supply , Humans
6.
Parasit Vectors ; 17(1): 199, 2024 May 02.
Article in English | MEDLINE | ID: mdl-38698452

ABSTRACT

BACKGROUND: Enteric parasitic infections remain a major public health problem globally. Cryptosporidium spp., Cyclospora spp. and Giardia spp. are parasites that cause diarrhea in the general populations of both developed and developing countries. Information from molecular genetic studies on the speciation of these parasites and on the role of animals as vectors in disease transmission is lacking in Ghana. This study therefore investigated these diarrhea-causing parasites in humans, domestic rats and wildlife animals in Ghana using molecular tools. METHODS: Fecal samples were collected from asymptomatic school children aged 9-12 years living around the Shai Hills Resource Reserve (tourist site), from wildlife (zebras, kobs, baboons, ostriches, bush rats and bush bucks) at the same site, from warthogs at the Mole National Park (tourist site) and from rats at the Madina Market (a popular vegetable market in Accra, Ghana. The 18S rRNA gene (18S rRNA) and 60-kDa glycoprotein gene (gp60) for Cryptosporidium spp., the glutamate dehydrogenase gene (gdh) for Giardia spp. and the 18S rDNA for Cyclospora spp. were analyzed in all samples by PCR and Sanger sequencing as markers of speciation and genetic diversity. RESULTS: The parasite species identified in the fecal samples collected from humans and animals included the Cryptosporidium species C. hominis, C. muris, C. parvum, C. tyzzeri, C. meleagridis and C. andersoni; the Cyclopora species C. cayetanensis; and the Gardia species, G. lamblia and G. muris. For Cryptosporidium, the presence of the gp60 gene confirmed the finding of C. parvum (41%, 35/85 samples) and C. hominis (29%, 27/85 samples) in animal samples. Cyclospora cayetanensis was found in animal samples for the first time in Ghana. Only one human sample (5%, 1/20) but the majority of animal samples (58%, 51/88) had all three parasite species in the samples tested. CONCLUSIONS: Based on these results of fecal sample testing for parasites, we conclude that animals and human share species of the three genera (Cryptosporidium, Cyclospora, Giardia), with the parasitic species mostly found in animals also found in human samples, and vice-versa. The presence of enteric parasites as mixed infections in asymptomatic humans and animal species indicates that they are reservoirs of infections. This is the first study to report the presence of C. cayetanensis and C. hominis in animals from Ghana. Our findings highlight the need for a detailed description of these parasites using high-throughput genetic tools to further understand these parasites and the neglected tropical diseases they cause in Ghana where such information is scanty.


Subject(s)
Animals, Domestic , Animals, Wild , Cryptosporidiosis , Cryptosporidium , Cyclospora , Cyclosporiasis , Feces , Animals , Ghana/epidemiology , Cyclospora/genetics , Cyclospora/isolation & purification , Cyclospora/classification , Cryptosporidium/genetics , Cryptosporidium/isolation & purification , Cryptosporidium/classification , Feces/parasitology , Cyclosporiasis/epidemiology , Cyclosporiasis/parasitology , Cyclosporiasis/veterinary , Animals, Wild/parasitology , Cryptosporidiosis/parasitology , Cryptosporidiosis/epidemiology , Cryptosporidiosis/transmission , Humans , Child , Animals, Domestic/parasitology , Rats , DNA, Protozoan/genetics , RNA, Ribosomal, 18S/genetics , Giardiasis/veterinary , Giardiasis/parasitology , Giardiasis/epidemiology , Diarrhea/parasitology , Diarrhea/veterinary , Diarrhea/epidemiology , Phylogeny , Giardia/genetics , Giardia/isolation & purification , Giardia/classification
7.
Parasitology ; 151(4): 351-362, 2024 Apr.
Article in English | MEDLINE | ID: mdl-38305092

ABSTRACT

Cryptosporidium spp., Giardia intestinalis and microsporidia are unicellular opportunistic pathogens that can cause gastrointestinal infections in both animals and humans. Since companion animals may serve as a source of infection, the aim of the present screening study was to analyse the prevalence of these intestinal protists in fecal samples collected from dogs living in 10 animal shelters in central Europe (101 dogs from Poland and 86 from the Czech Republic), combined with molecular subtyping of the detected organisms in order to assess their genetic diversity. Genus-specific polymerase chain reactions were performed to detect DNA of the tested species and to conduct molecular subtyping in collected samples, followed by statistical evaluation of the data obtained (using χ2 or Fisher's tests). The observed prevalence was 15.5, 10.2, 1 and 1% for G. intestinalis, Enterocytozoon bieneusi, Cryptosporidium spp. and Encephalitozoon cuniculi, respectively. Molecular evaluation has revealed the predominance of dog-specific genotypes (Cryptosporidium canis XXe1 subtype; G. intestinalis assemblages C and D; E. cuniculi genotype II; E. bieneusi genotypes D and PtEbIX), suggesting that shelter dogs do not pose a high risk of human transmission. Interestingly, the percentage distribution of the detected pathogens differed between both countries and individual shelters, suggesting that the risk of infection may be associated with conditions typical of a given location.


Subject(s)
Cryptosporidiosis , Cryptosporidium , Dog Diseases , Enterocytozoon , Feces , Giardiasis , Microsporidiosis , Animals , Dogs , Dog Diseases/parasitology , Dog Diseases/epidemiology , Dog Diseases/microbiology , Enterocytozoon/genetics , Enterocytozoon/isolation & purification , Enterocytozoon/classification , Cryptosporidium/genetics , Cryptosporidium/isolation & purification , Cryptosporidium/classification , Microsporidiosis/veterinary , Microsporidiosis/epidemiology , Poland/epidemiology , Cryptosporidiosis/epidemiology , Cryptosporidiosis/parasitology , Feces/parasitology , Feces/microbiology , Czech Republic/epidemiology , Giardiasis/veterinary , Giardiasis/epidemiology , Giardiasis/parasitology , Prevalence , Giardia/genetics , Giardia/isolation & purification , Giardia/classification , Genotype , Giardia lamblia/genetics , Giardia lamblia/isolation & purification , Giardia lamblia/classification , Host Specificity
8.
PLoS Negl Trop Dis ; 16(2): e0009971, 2022 02.
Article in English | MEDLINE | ID: mdl-35148325

ABSTRACT

INTRODUCTION: Parasitic infections, especially intestinal protozoan parasites (IPPs) remain a significant public health issue in Africa, where many conditions favour the transmission and children are the primary victims. This systematic review and meta-analysis was carried out with the objective of assessing the prevalence of IPPs among school children in Africa. METHODS: Relevant studies published between January 2000 and December 2020 were identified by systematic online search on PubMed, Web of Science, Embase and Scopus databases without language restriction. Pooled prevalence was estimated using a random-effects model. Heterogeneity of studies were assessed using Cochrane Q test and I2 test, while publication bias was evaluated using Egger's test. RESULTS: Of the 1,645 articles identified through our searches, 46 cross-sectional studies matched our inclusion criteria, reported data from 29,968 school children of Africa. The pooled prevalence of intestinal protozoan parasites amongst African school children was 25.8% (95% CI: 21.2%-30.3%) with E. histolytica/ dispar (13.3%; 95% CI: 10.9%-15.9%) and Giardia spp. (12%; 95% CI: 9.8%-14.3%) were the most predominant pathogenic parasites amongst the study participants. While E. coli was the most common non-pathogenic protozoa (17.1%; 95% CI: 10.9%-23.2%). CONCLUSIONS: This study revealed a relatively high prevalence of IPPs in school children, especially in northern and western Africa. Thus, poverty reduction, improvement of sanitation and hygiene and attention to preventive control measures will be the key to reducing protozoan parasite transmission.


Subject(s)
Intestinal Diseases, Parasitic/epidemiology , Intestinal Diseases, Parasitic/parasitology , Parasites/isolation & purification , Students/statistics & numerical data , Adolescent , Africa/epidemiology , Animals , Child , Cross-Sectional Studies , Cryptosporidium/classification , Cryptosporidium/genetics , Cryptosporidium/isolation & purification , Entamoeba/classification , Entamoeba/genetics , Entamoeba/isolation & purification , Female , Giardia/classification , Giardia/genetics , Giardia/isolation & purification , Humans , Hygiene , Male , Parasites/classification , Parasites/genetics
9.
Sci Total Environ ; 807(Pt 3): 151053, 2022 Feb 10.
Article in English | MEDLINE | ID: mdl-34673065

ABSTRACT

The State of Nevada, USA Administrative Code requires a 12-log enteric virus reduction/inactivation, 10-log Giardia cyst reduction, and 10-log Cryptosporidium oocyst reduction for Category A+ reclaimed water suitable for indirect potable reuse (IPR) based on raw wastewater to potable reuse water. Accurately demonstrating log10 reduction values (LRVs) through secondary biological treatment prior to an advanced water treatment train enables redundancy and resiliency for IPR projects while maintaining a high level of public confidence. LRVs for Cryptosporidium and Giardia resulting from secondary biological treatment are not fully established due to a wide range of performance variabilities resulting from different types of secondary biological treatment processes employed in water reclamation. A one-year investigation of two full-scale northern Nevada (e.g. ≤4 mgd; 1.5 × 107 L/day) water reclamation facilities (WRFs) was conducted to monitor Cryptosporidium oocysts and Giardia cysts in untreated wastewater and secondary effluent. This study aimed at establishing secondary treatment LRVs, monitor WRF performance and attempted to correlate performance to protozoan reduction. California's IPR regulations, in which Nevada IPR regulations were modeled after, were based on a maximum concentration of 5-logs (cysts/L) of Giardia and 4-logs (oocysts/L) of Cryptosporidium. The recovery-corrected Giardia and Cryptosporidium concentrations measured in untreated influent (20 samples each at each WRF) were below 5-log cysts/L at the 99th percentile (maximum 4.4-log cysts/L) and 4-log oocysts/L (maximum 2.7 log oocysts/L), respectively. Both secondary treatment WRFs produced secondary effluent that is consistently better than federal and the State of Nevada requirements and perform within an operating envelop for other secondary facilities. Given the results, it appears that a minimum conservative estimate for LRVs for well-operated secondary activated sludge treatment plants (at the 5th percentile) of 0.5 LRV credit for Cryptosporidium and 2.0 LRV for Giardia is warranted. These minimum LRVs are consistent with a conservative review of the available literature.


Subject(s)
Cryptosporidium , Giardia/isolation & purification , Water Purification , Cryptosporidium/isolation & purification , Nevada , Oocysts/isolation & purification , Wastewater
10.
F1000Res ; 11: 1401, 2022.
Article in English | MEDLINE | ID: mdl-39148497

ABSTRACT

Introduction: Diarrhea is a significant health problem in the Third World. Identification of the pathogen that causes diarrhea is vital for measures to prevent and control this disease. There are also very few reports of diarrhea in Sudan. Our study aimed to determine the Prevalence of specific protozoan pathogens ( Entamoeba histolytica, Cryptosporidium parvum., and Giardia spp) in children in Khartoum, Sudan. Methods: We conducted a cross-sectional survey among children under five years of age who were hospitalized with acute diarrhea between April and December 2014. Diarrheal stool samples were collected and E. histolytica, C. parvum, and Giardia spp were examined using multiplex real-time PCR. Results: Four hundred and thirty-seven children with acute diarrheawere included in this study; the higher Prevalence of diarrhea was in the age less than ≤ 2 years old (403,92.2%). The male-to-female ratio in this study was 1:1.7. infection with intestinal parasite was found in 155 (35.5%) cases, and co-infection was detected in 16 (10.3%) cases. Giardia spp(18.8%) and C. parvum (15.8 %) were the most frequently identified parasites, followed by E. histolytica (0.9). The parasite infection rate was highest and lowest in the under 2-year-old group (92.3%) and the 2-4-year-old group (7.3%). The infection rate was higher in boys (67.1%) than in girls (32.9%). The incidence of protozoan infection was higher in the rainy season (August to December) (92.2%), corresponding with that in the dry Season (April to June). (7.8%). Discussion: Our present study demonstrated the high prevalence of Giardia spp and C. parvum in children with diarrhea in the Khartoum region and the usefulness of the multiplex real-time method in disclosing pathogenic protozoal agents. Our result highlighted the necessity of developing intervention measurement and control strategies to deal with childhood parasitic diarrhea in this region.


Subject(s)
Diarrhea , Humans , Sudan/epidemiology , Female , Diarrhea/parasitology , Diarrhea/epidemiology , Child, Preschool , Male , Infant , Cross-Sectional Studies , Giardia/genetics , Giardia/isolation & purification , Prevalence , Entamoeba histolytica/isolation & purification , Entamoeba histolytica/genetics , Cryptosporidium parvum/genetics , Cryptosporidiosis/epidemiology , Cryptosporidiosis/parasitology
11.
J Microbiol Methods ; 189: 106320, 2021 10.
Article in English | MEDLINE | ID: mdl-34478762

ABSTRACT

Exposure to enteric pathogens in the environment poses a serious risk for infection and disease. The accurate detection and quantification of enteric pathogens in environmental samples is critical for understanding pathogen transport and fate and developing risk assessment models. In this study, we successfully applied TaqMan real-time PCR assays to quantitatively detect five human-specific pathogens (Shigella/EIEC, Salmonella Typhi, Vibrio cholera, Norovirus, and Giardia) in samples from open drains, canals, floodwater, septic tanks, and anaerobic baffled reactors (ABR) collected in Mirpur, Dhaka, Bangladesh from April to October 2019. Overall, the grab and sediment samples showed low inhibition but the ultrafiltration samples collected from open drain had significantly higher (P = 0.0049) degree of PCR inhibition (median Ct = 31.06) compared to the extraction controls (Ct = 28.54). We developed a two-step method to adjust underestimation of pathogen quantities due to PCR inhibition and non-optimum PCR efficiency. Compared to other sample types, ultrafiltration samples demonstrated a wide range of concentration increase (1.0%-182.5%) by pathogens after adjusting for PCR inhibition and non-optimum efficiencies. These quantitative qPCR assays are successful in quantifying multiple enteric pathogens in environmental samples, and the adjustment method would be useful for correcting underestimates of pathogen quantities due to partial PCR inhibition and non-optimum efficiency.


Subject(s)
Genome, Bacterial/genetics , Genome, Viral/genetics , Real-Time Polymerase Chain Reaction/methods , Real-Time Polymerase Chain Reaction/standards , Specimen Handling/methods , Bacteria/genetics , Bacteria/isolation & purification , Environmental Microbiology , Feces/microbiology , Feces/parasitology , Feces/virology , Giardia/genetics , Giardia/isolation & purification , Ultrafiltration , Vibrio cholerae/genetics , Vibrio cholerae/isolation & purification , Viruses/genetics , Viruses/isolation & purification , Wastewater/microbiology , Wastewater/parasitology , Wastewater/virology
12.
Biomed Environ Sci ; 34(6): 493-498, 2021 Jun 20.
Article in English | MEDLINE | ID: mdl-34284858

ABSTRACT

We aimed to assess the risks of Cryptosporidium and Giardia infections associated with drinking water for local residents, based on a quantitative microbial risk assessment, in three densely populated regions of China. In total, 45 source water samples and 45 treated water samples were collected from June to December 2014. Five Cryptosporidium-positive samples and 5 Giardia-positive samples were found. The annual probability of infection for individuals in Jintan (6.27 × 10 -4-2.05 × 10 -3 for Cryptosporidium and 7.18 × 10 -4-2.32 × 10 -3 for Giardia), Ezhou (6.27 × 10 -4-1.10 × 10 -2 for Cryptosporidium and 3.65 × 10 -4-1.20 × 10 -3 for Giardia), and Binyang (3.79 × 10 -4-1.25 × 10 -3 for Cryptosporidium) exceeded the tolerable risk of infection of 10 -4 set by the United States Environmental Protection Agency. Moreover, the corresponding disease burdens of cryptosporidiosis and giardiasis, due to direct drinking and residual water in these regions, exceeded the threshold of 10 -6 disability-adjusted life years per person per year set by the World Health Organization. These results provide insights into strategies to improve the safety of drinking water.


Subject(s)
Cryptosporidium/isolation & purification , Giardia/isolation & purification , Water Microbiology , Water Supply/statistics & numerical data , China , Cryptosporidiosis/microbiology , Giardiasis/microbiology , Humans , Risk Assessment
13.
Food Microbiol ; 99: 103816, 2021 Oct.
Article in English | MEDLINE | ID: mdl-34119101

ABSTRACT

Protozoan contamination in produce is of growing importance due to their capacity to cause illnesses in consumers of fresh leafy greens. Viability assays are essential to accurately estimate health risk caused by viable parasites that contaminate food. We evaluated the efficacy of reverse transcription quantitative PCR (RT-qPCR), propidium monoazide coupled with (q)PCR, and viability staining using propidium iodide through systematic laboratory spiking experiments for selective detection of viable Cryptosporidium parvum, Giardia enterica, and Toxoplasma gondii. In the presence of only viable protozoa, the RT-qPCR assays could accurately detect two to nine (oo)cysts/g spinach (in 10 g processed). When different proportions of viable and inactivated parasite were spiked, mRNA concentrations correlated with increasing proportions of viable (oo)cysts, although low levels of false-positive mRNA signals were detectable in the presence of high amounts of inactivated protozoa. Our study demonstrated that among the methods tested, RT-qPCR performed more effectively to discriminate viable from inactivated C. parvum, G. enterica and T. gondii on spinach. This application of viability methods on leafy greens can be adopted by the produce industry and regulatory agencies charged with protection of human public health to screen leafy greens for the presence of viable protozoan pathogen contamination.


Subject(s)
Cryptosporidium parvum/isolation & purification , Food Parasitology/methods , Giardia/isolation & purification , Spinacia oleracea/parasitology , Toxoplasma/isolation & purification , Animals , Azides/chemistry , Cryptosporidium parvum/chemistry , Cryptosporidium parvum/genetics , Cryptosporidium parvum/growth & development , Food Contamination/analysis , Giardia/chemistry , Giardia/genetics , Giardia/growth & development , Oocysts/chemistry , Oocysts/growth & development , Oocysts/isolation & purification , Plant Leaves/parasitology , Propidium/analogs & derivatives , Propidium/chemistry , Real-Time Polymerase Chain Reaction , Staining and Labeling , Toxoplasma/chemistry , Toxoplasma/genetics , Toxoplasma/growth & development
14.
Folia Parasitol (Praha) ; 682021 Apr 20.
Article in English | MEDLINE | ID: mdl-33938815

ABSTRACT

Cats are important hosts for different zoonotic parasites that can be hazardous to human health. To date, few studies have attempted to identify the factors affecting parasitic infections in shelter animals. This study aims to analyse the presence of endoparasites in shelter cats in Tartu, Estonia, and identify factors affecting endoparasite prevalence and intensity. The risk factors considered were age, location (urban vs rural cats) and time spent in shelter. In total, 290 faecal samples were collected from cats at an animal shelter in 2015-2016 and investigated for endoparasites using the concentration flotation technique. In total, 138 shelter cats (47.6%) were infected with endoparasites and their overall prevalence was: Toxocara cati (36.6%), Cystoisospora spp. (12.4%), Taeniidae gen. sp. (4.1%), Toxoplasma gondii/Hammondia hammondi (3.4%), Eucoleus aerophilus (2.1%), Cryptosporidium spp. (2.1%), Ancylostoma sp. (0.7%) and Giardia sp. (0.7%). Coinfections occurred in 38 cats (13.1%) most frequently of T. cati and Cystoisospora spp. (4.5%), Cystoisospora spp. and T. gondii/H. hammondi (2.1%). Where species identification of cestode and nematode samples was not possible according to morphology, genetic analysis of the mitochondrial cox1 gene was carried out. DNA was successfully analysed for 6 out of 13 samples that required genetic identification, revealing Ancylostoma tubaeforme in one nematode sample and Hydatigera taeniaeformis in five cestode samples. Cats from rural areas had significantly higher endoparasite prevalence than cats from urban areas. Helminth prevalence decreased to some extent due to anthelmintic treatment in cats available for adoption (held ≥15 days in the shelter), whereas the prevalence of infection with protists increased significantly in these animals. It is important to note that the analysis revealed lower infection intensity for quarantine cats (held 1-14 days in the shelter) compared with cats available for adoption. The relatively high prevalence of endoparasites (including zoonotic) in shelter cats ready for adoption suggests that current anthelminthic procedures require improvements.


Subject(s)
Cats/parasitology , Parasites , Toxocara/isolation & purification , Age Factors , Ancylostoma/isolation & purification , Animals , Cestoda/isolation & purification , Coccidia/isolation & purification , Cryptosporidium/isolation & purification , Electron Transport Complex IV/genetics , Estonia/epidemiology , Feces/parasitology , Genes, Helminth , Giardia/isolation & purification , Giardiasis , Helminths , Nematoda/isolation & purification , Parasites/classification , Parasites/isolation & purification , Parasites/pathogenicity , Prevalence , Risk Factors , Toxoplasma/isolation & purification , Zoonoses/parasitology
15.
Turkiye Parazitol Derg ; 45(1): 39-44, 2021 03 02.
Article in English | MEDLINE | ID: mdl-33685067

ABSTRACT

Objective: Immunocompromised patients are at a greater risk of developing intestinal parasite infections. In this study, we examined the presence of Enterocytozoon bieneusi, Encaphalitozoon intestinalis and other intestinal protozoa in stool samples of immunosuppressed patients. Methods: A total of 100 stool samples were obtained from patients receiving chemotherapy because of solid organ tumour with haematological malignancies and those receiving immunosuppressive treatment because of rheumatic diseases, organ transplant patients and patients receiving treatment for HIV-related infections. Stool samples were examined by using the native-lugol method in which the stool concentration, modified Kinyoun acid-fast and trichrome staining methods and parasite presence were analysed. The stool samples were also examined for the presence of Enterocytozoon bieneusi and Encephalitozoon intestinalis using an indirect fluorescent antibody method. Results: Intestinal parasites were detected in 12% of all patients. The distribution of intestinal parasites in patients were 7% Blastocystis spp., 2% Blastocystis spp. + Dientamoeba fragilis, 1% Blastocystis spp. + Entamoeba coli, 1% Blastocystis spp. + Giardia intestinalis and 1% G. intestinalis. Microsporidia spp. were detected in 4% of all patients by the IFAT method and in 8% of all patients by calcoflour staining method. Conclusion: In our study, the most prevalent parasite detected in the immunosuppressed patients was Blastocystis spp. The pathogenesis of Blastocystis spp. remains to be controversial, and their role in immunocompromised patients continues to remain unknown. Although these rates detected in our study are similar to the prevalence in the normal population, it is important to study these microorganisms in immunocompromised patients in terms of the associated decreasing morbidity and mortality rates.


Subject(s)
Immunocompromised Host , Intestinal Diseases, Parasitic/epidemiology , Intestinal Diseases, Parasitic/parasitology , Blastocystis/isolation & purification , Dientamoeba/isolation & purification , Entamoeba/isolation & purification , Feces/microbiology , Feces/parasitology , Giardia/isolation & purification , Hospitals, University , Humans , Intestinal Diseases, Parasitic/immunology , Intestinal Diseases, Parasitic/microbiology , Microsporidia/isolation & purification , Prevalence
16.
PLoS Negl Trop Dis ; 15(3): e0009232, 2021 03.
Article in English | MEDLINE | ID: mdl-33657123

ABSTRACT

Intestinal parasitic infections, caused by helminths and protozoa, are globally distributed and major causes of worldwide morbidity. The gut microbiota may modulate parasite virulence and host response upon infection. The complex interplay between parasites and the gut microbiota is poorly understood, partly due to sampling difficulties in remote areas with high parasite burden. In a large study of children in Guinea-Bissau, we found high prevalence of intestinal parasites. By sequencing of the 16S rRNA genes of fecal samples stored on filter paper from a total of 1,204 children, we demonstrate that the bacterial microbiota is not significantly altered by helminth infections, whereas it is shaped by the presence of both pathogenic and nonpathogenic protozoa, including Entamoeba (E.) spp. and Giardia (G.) lamblia. Within-sample diversity remains largely unaffected, whereas overall community composition is significantly affected by infection with both nonpathogenic E. coli (R2 = 0.0131, P = 0.0001) and Endolimax nana (R2 = 0.00902, P = 0.0001), and by pathogenic E. histolytica (R2 = 0.0164, P = 0.0001) and G. lamblia (R2 = 0.00676, P = 0.0001). Infections with multiple parasite species induces more pronounced shifts in microbiota community than mild ones. A total of 31 bacterial genera across all four major bacterial phyla were differentially abundant in protozoan infection as compared to noninfected individuals, including increased abundance of Prevotella, Campylobacter and two Clostridium clades, and decreased abundance of Collinsella, Lactobacillus, Ruminococcus, Veillonella and one Clostridium clade. In the present study, we demonstrate that the fecal bacterial microbiota is shaped by intestinal parasitic infection, with most pronounced associations for protozoan species. Our results provide insights into the interplay between the microbiota and intestinal parasites, which are valuable to understand infection biology and design further studies aimed at optimizing treatment strategies.


Subject(s)
Gastrointestinal Microbiome , Protozoan Infections/microbiology , Protozoan Infections/parasitology , Adolescent , Animals , Bacteria/classification , Bacteria/genetics , Child , Child, Preschool , Coinfection/microbiology , Coinfection/parasitology , Entamoeba/isolation & purification , Feces/microbiology , Feces/parasitology , Female , Giardia/isolation & purification , Guinea-Bissau , Helminths/isolation & purification , Humans , Intestinal Diseases, Parasitic/epidemiology , Intestinal Diseases, Parasitic/parasitology , Male , RNA, Ribosomal, 16S
17.
Am J Trop Med Hyg ; 104(3): 910-916, 2021 01 18.
Article in English | MEDLINE | ID: mdl-33534771

ABSTRACT

Giardia intestinalis is one of the most common causes of parasite-induced diarrhea, abdominal pain, flatulence, and malabsorption. Yet, data on the epidemiology of G. intestinalis infections in North Africa are limited. The purpose of this study was to carry out a retrospective survey on the level of intestinal parasitism with a particular emphasis on G. intestinalis in children and adults in Algiers, Algeria. A total of 2,054 individuals from outpatient clinics or hospitalized at Beni-Messous University Hospital of Algiers undergoing stool microscopy for ova and parasites were included. The overall parasite infection rate was 28%. In the 567 parasite-positive samples, Blastocystis was found most frequently (57.3%), followed in frequency by Endolimax nana (41.0%), Entamoeba histolytica/dispar (19.6%), G. intestinalis (17.1%), Entamoeba coli (13.9%), Chilomastix mesnili (1.0%), Iodamoeba bütschlii (0.7%), Entamoeba hartmanni (0.5%), and Cryptosporidium spp. (0.2%). Intestinal parasites were generally more common in adults than in children, except for Giardia, which was more common in children (P = 0.0001). Giardia infection was independent of gender (P = 0.94). Compared with other intestinal parasitic infections, clinical manifestations, such as abdominal pain (P = 0.28) and diarrhea (P = 0.82), were found not to be significantly linked to Giardia infection. In conclusion, G. intestinalis is common in individuals referred to the University Hospital of Beni-Messous with digestive symptoms, particularly so in children. However, in our study, intestinal symptoms appeared not to be more linked to Giardia than to other intestinal parasites.


Subject(s)
Epidemiological Monitoring , Feces/parasitology , Giardiasis/diagnosis , Giardiasis/epidemiology , Intestinal Diseases, Parasitic/diagnosis , Intestinal Diseases, Parasitic/epidemiology , Adolescent , Adult , Age Factors , Aged , Aged, 80 and over , Algeria/epidemiology , Animals , Child , Child, Preschool , Female , Giardia/isolation & purification , Humans , Infant , Infant, Newborn , Male , Middle Aged , Prevalence , Retrospective Studies , Sex Factors , Young Adult
18.
Parasitol Res ; 120(3): 1131-1135, 2021 Mar.
Article in English | MEDLINE | ID: mdl-33511472

ABSTRACT

Giardia comprises one genus with several morphologically distinct species described in mammals (including humans, marsupials, rodents), birds, and amphibians. This group of protists provokes diarrhoea diseases in humans and animals worldwide. Transmission of the parasite occurs through the faecal-oral route. Regarding the presence of Giardia in invertebrates, some works have shown that flies can transmit Giardia cysts by contact and transport between contaminated faeces and food. In this way, flies would eventually transmit this parasite. To date, Giardia's presence in the gut of other invertebrates has not been described in the literature. Here we show by first time, using scanning electron microscopy, the presence of Giardia-like trophozoites in the gut of termite Heterotermes tenuis. Two groups of Giardia were found based exclusively on the size and the flange shape of the protozoa: one presented eight flagella, a ventral disc, size, and shape very similar to Giardia intestinalis. In contrast, other cells were smaller and showed some differences in the external morphology. We cannot exclude the possibility that they correspond to the same species and that these differences result from protozoan heterogeneity.


Subject(s)
Giardia/isolation & purification , Giardiasis/parasitology , Isoptera/parasitology , Animals , Brazil , Feces/parasitology , Flagella/ultrastructure , Giardia/classification , Giardia/ultrastructure , Giardiasis/transmission , Microscopy, Electron, Scanning , Organelles/ultrastructure , Trophozoites/cytology
19.
Mem Inst Oswaldo Cruz ; 115: e200431, 2021.
Article in English | MEDLINE | ID: mdl-33503146

ABSTRACT

Giardia duodenalis infection is distributed worldwide and can achieve prevalence around 60%, especially in developing countries. This protozoan is divided into eight assemblages, in which A and B have high zoonotic potential, whereas C to H are host-specific. This scenario is changing as molecular studies progress, highlighting that knowledge on host-specificity still has a long way to go. Understanding the players involved in transmission routes enables rational designs of control strategies. Considering the high prevalence of giardiasis, this review aims to gather together the data on available studies on the distribution of G. duodenalis assemblages in Brazil until September 2020.


Subject(s)
Feces/parasitology , Giardia/classification , Giardia/genetics , Giardiasis/diagnosis , Animals , Brazil/epidemiology , Genotype , Giardia/isolation & purification , Giardiasis/epidemiology , Giardiasis/parasitology , Giardiasis/veterinary , Humans , Prevalence , Real-Time Polymerase Chain Reaction , Zoonoses
20.
Parasit Vectors ; 14(1): 89, 2021 Jan 29.
Article in English | MEDLINE | ID: mdl-33514412

ABSTRACT

BACKGROUND: Fecal examinations in pet cats and dogs are key components of routine veterinary practice; however, their accuracy is influenced by diagnostic methodologies and the experience level of personnel performing the tests. The VETSCAN IMAGYST system was developed to provide simpler and easier fecal examinations which are less influenced by examiners' skills. This system consists of three components: a sample preparation device, an automated microscope scanner, and analysis software. The objectives of this study were to qualitatively evaluate the performance of the VETSCAN IMAGYST system on feline parasites (Ancylostoma and Toxocara cati) and protozoan parasites (Cystoisospora and Giardia) and to assess and compare the performance of the VETSCAN IMAGYST centrifugal flotation method to reference centrifugal and passive flotation methods. METHODS: To evaluate the diagnostic performance of the scanning and algorithmic components of the VETSCAN IMAGYST system, fecal slides were prepared by the VETSCAN IMAGYST centrifugal flotation technique with pre-screened fecal samples collected from dogs and cats and examined by both an algorithm and parasitologists. To assess the performance of the VETSCAN IMAGYST centrifugal flotation technique, diagnostic sensitivity and specificity were calculated and compared to those of conventional flotation techniques. RESULTS: The performance of the VETSCAN IMAGYST algorithm closely correlated with evaluations by parasitologists, with sensitivity of 75.8-100% and specificity of 93.1-100% across the targeted parasites. For samples with 50 eggs or less per slide, Lin's concordance correlation coefficients ranged from 0.70 to 0.95 across the targeted parasites. The results of the VETSCAN IMAGYST centrifugal flotation method correlated well with those of the conventional centrifugal flotation method across the targeted parasites: sensitivity of 65.7-100% and specificity of 97.6-100%. Similar results were observed for the conventional passive flotation method compared to the conventional centrifugal flotation method: sensitivity of 56.4-91.7% and specificity of 99.4-100%. CONCLUSIONS: The VETSCAN IMAGYST scanning and algorithmic systems with the VETSCAN IMAGYST fecal preparation technique demonstrated a similar qualitative performance to the parasitologists' examinations with conventional fecal flotation techniques. Given the deep learning nature of the VETSCAN IMAGYST system, its performance is expected to improve over time, enabling it to be utilized in veterinary clinics to perform fecal examinations accurately and efficiently.


Subject(s)
Cat Diseases/parasitology , Deep Learning , Dog Diseases/parasitology , Parasites/isolation & purification , Parasitic Diseases, Animal/diagnosis , Algorithms , Ancylostoma/isolation & purification , Animals , Cats , Centrifugation/methods , Diagnostic Tests, Routine , Dogs , Feces/parasitology , Giardia/isolation & purification , Hospitals, Animal , Oocysts/isolation & purification , Parasite Egg Count/methods , Parasitic Diseases, Animal/parasitology , Sensitivity and Specificity , Toxocara/isolation & purification
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