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1.
Rev Argent Microbiol ; 2023 Dec 27.
Artigo em Espanhol | MEDLINE | ID: mdl-38155042

RESUMO

Waterborne diseases can have different origins, micro-organisms such as bacteria and parasites being the most important ones. In this study, two recreational aquatic environments were studied in the province of Salta, Argentina. Water samples collected from three different locations, two from a creek and one from the outlet of a thermal complex, were monitored at four time points. Physicochemical and microbiological characterization of each point was conducted, as well as a search for parasites and amebae. Parasites were identified through optical microscopy observations and free-living amebae (FLA) were isolated by spiking in Petri dishes followed by subsequent molecular identification. Water samples from the outlet of the thermal complex showed different physicochemical characteristics from those of the creek. Bacterial indicators of contamination were detected at all points; however, the creek water had a significantly higher concentration of Pseudomonas sp. Sporadically, creek samples exhibited Ascaris spp. eggs, Giardia sp. cysts, and ancylostomid eggs. The presence of FLA was observed in all samples, 15 of which were isolated and identified as Acanthamoeba sp., mostly belonging to the T4 genotype. Parasite surveillance in recreational aquatic environments is an important complement to traditional microbial indicators for assessing water quality. The identified parasites represent a potential health risk for people using these environments.

2.
Food Microbiol ; 99: 103816, 2021 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-34119101

RESUMO

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.


Assuntos
Cryptosporidium parvum/isolamento & purificação , Parasitologia de Alimentos/métodos , Giardia/isolamento & purificação , Spinacia oleracea/parasitologia , Toxoplasma/isolamento & purificação , Animais , Azidas/química , Cryptosporidium parvum/química , Cryptosporidium parvum/genética , Cryptosporidium parvum/crescimento & desenvolvimento , Contaminação de Alimentos/análise , Giardia/química , Giardia/genética , Giardia/crescimento & desenvolvimento , Oocistos/química , Oocistos/crescimento & desenvolvimento , Oocistos/isolamento & purificação , Folhas de Planta/parasitologia , Propídio/análogos & derivados , Propídio/química , Reação em Cadeia da Polimerase em Tempo Real , Coloração e Rotulagem , Toxoplasma/química , Toxoplasma/genética , Toxoplasma/crescimento & desenvolvimento
3.
Food Microbiol ; 84: 103252, 2019 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-31421749

RESUMO

Pathogen contamination of fresh produce presents a health risk for consumers; however, the produce industry still lacks adequate tools for simultaneous detection of protozoan parasites. Here, a simple multiplex PCR (mPCR) assay was developed for detection of protozoan (oo)cysts and compared with previously published real-time PCR assays and microscopy methods. The assay was evaluated for simultaneous detection of Cryptosporidium, Giardia, Cyclospora cayetanensis, and Toxoplasma gondii followed by parasite differentiation via either a nested specific PCR or a restriction fragment length polymorphism (RFLP) assay. Spiking experiments using spinach as a model leafy green were performed for assay validation. Leaf-washing yielded higher recoveries and more consistent detection of parasites as compared with stomacher processing. Lowest limits of detection using the nested mPCR assay were 1-10 (oo)cysts/g spinach (in 10 g samples processed), and this method proved more sensitive than qPCR for parasite detection. Microscopy methods were more reliable for visual detection of parasites in lower spiking concentrations, but are more costly and laborious, require additional expertise, and lack molecular confirmation essential for accurate risk assessment. Overall, the nested mPCR assay provides a rapid (<24 h), inexpensive ($10 USD/sample), and simple approach for simultaneous detection of protozoan pathogens on fresh produce.


Assuntos
Parasitologia de Alimentos/métodos , Reação em Cadeia da Polimerase Multiplex/métodos , Oocistos/isolamento & purificação , Parasitos/isolamento & purificação , Spinacia oleracea/parasitologia , Animais , Cryptosporidium/isolamento & purificação , DNA de Protozoário/genética , Giardia/isolamento & purificação , Limite de Detecção , Reação em Cadeia da Polimerase em Tempo Real , Sensibilidade e Especificidade
4.
Water Res ; 75: 83-94, 2015 May 15.
Artigo em Inglês | MEDLINE | ID: mdl-25765167

RESUMO

Bacteroidales and viruses were contemporaneously measured during dry and wet weather conditions at a watershed-scale in a semi-arid watershed impacted by a mixture of agricultural runoff, municipal wastewater effluent and municipal runoff. The results highlight the presence of municipal wastewater effluent as a confounding factor for microbial source tracking (MST) studies, and thus data were segregated into groups based on whether they were impacted by wastewater effluent. In semi-arid environments such as the Calleguas Creek watershed, located in southern California, the relative contribution of municipal wastewater effluent is dependent on hydrology as storm events lead to conditions where agricultural and municipal stormwater dominate receiving waters (rather than municipal wastewater, which is the case during dry weather). As such, the approach to data segregation was dependent on hydrology/storm conditions. Storm events led to significant increases in ruminant- and dog-associated Bacteroidales concentrations, indicating that overland transport connects strong non-human fecal sources with surface waters. Because the dataset had a large number of non-detect samples, data handling included the Kaplan-Meir estimator and data were presented graphically in a manner that reflects the potential effect of detection limits. In surface water samples with virus detections, Escherichia coli concentrations were often below (in compliance with) the recreational water quality criteria. In fact, sites downstream of direct inputs of municipal wastewater effluent exhibited the lowest concentrations of E. coli, but the highest concentrations of human-associated Bacteroidales and highest detection rates of human viruses. The toolkit, comprised of the four Bacteroidales assays and human virus assays used, can be successfully applied to inform watershed managers seeking to comply with recreational water quality criteria. However, care should be taken when analyzing data to account for the effect of non-detect samples, sources with differing microbial viability, and diverging hydrologic conditions.


Assuntos
Monitoramento Ambiental , Rios , Vírus/isolamento & purificação , Águas Residuárias , Microbiologia da Água , Adenoviridae/isolamento & purificação , Animais , Bacteroidetes/isolamento & purificação , Biomarcadores/análise , California , Bovinos , Enterovirus/isolamento & purificação , Fezes/microbiologia , Fezes/virologia , Humanos , Hidrologia , Método de Monte Carlo , Rios/microbiologia , Rios/virologia , Estações do Ano , Águas Residuárias/microbiologia , Águas Residuárias/virologia
5.
Rev. argent. microbiol ; 46(2): 150-160, jun. 2014. tab, graf
Artigo em Espanhol | LILACS | ID: lil-734577

RESUMO

La contaminación microbiológica de aguas recreativas es un problema preocupante, ya que las personas que las utilizan pueden contraer enfermedades que podrían afectar su bienestar general. Para evaluar la calidad del agua, las legislaciones existentes solo establecen límites de indicadores bacterianos, los cuales no predicen con exactitud la presencia de parásitos. Además, la cantidad de parásitos presentes en el agua, aunque suficiente para producir enfermedad, suele ser pequeña, por lo que, se necesita una etapa previa de concentración para poder detectarlos. En este trabajo se monitorearon trimestralmente durante un año tres ambientes acuáticos de usos recreativos de la provincia de Salta, realizando la concentración de las muestras y la posterior preparación para la búsqueda de elementos parasitarios por microscopía. Adicionalmente, en cada ambiente se midieron mensualmente variables fisicoquímicas in situ y variables bacteriológicas por técnicas microbiológicas tradicionales. En cada ambiente se encontraron como mínimo 9 de los 14 parásitos detectados en conjunto. La presencia de los elementos parasitarios no presentó correlación con indicadores bacterianos en ningún ambiente ni en ninguna de las estaciones (p > 0,05). Mientras que en invierno la contaminación bacteriológica disminuyó entre un 76 % y un 99 %, los elementos parasitarios no presentaron disminución estacional. Los resultados permiten sugerir al género Entamoeba como indicador anual de contaminación parasitaria, ya que este fue encontrado en todos los ambientes con mínimas variaciones estacionales. Estos resultados poseen relevancia epidemiológica, dado que permitirán a los tomadores de decisiones proponer medidas para mejorar el bienestar de la población.


Microbiological pollution of recreational waters is a major problem for public health as it may transmit waterborne diseases. To assess water quality, current legislation only requires limits for bacterial indicators; however, these organisms do not accurately predict the presence of parasites. Small number of parasites is usually present in water and although they are capable of causing disease, they may not be high enough to be detected. Detection therefore requires water samples to be concentrated. In this work three recreational aquatic environments located in the province of Salta were monitored over one year. For parasite quantification, water samples were collected every three months and concentrated by ultrafiltration. Detection was performed by microscopy. In addition, monthly monitoring was carried out in each aquatic environment: physicochemical variables were measured in situ and bacteriological counts were determined by traditional microbiological techniques. Of 14 parasites identified, at least nine were detected in each aquatic environment sampled. While bacteriological contamination decreased in most cases during winter (76-99%), parasites were present year-round, becoming a continual threat to public health. Thus, we here propose that it is necessary to use specific parasitological indicators to prevent waterborne disease transmission. Our results suggest that Entamoeba would be a suitable indicator as it was found in all environments and showed minimal seasonal variation. The results obtained in this study have epidemiological relevance and will allow decision-makers to propose solutions for water protection in order to care for population health.


Assuntos
Animais , Rios/parasitologia , Argentina , Estações do Ano
6.
Rev. argent. microbiol ; 45(3): 191-204, set. 2013.
Artigo em Espanhol | LILACS | ID: lil-694912

RESUMO

Las parasitosis intestinales se encuentran ampliamente distribuidas en el mundo, con mayor prevalencia en los países en desarrollo. Principalmente afectan a los niños, en los que además provocan disminución del desarrollo físico y mental, situación que puede potenciarse enormemente cuando se suma a un estado nutricional deficiente. La Organización Mundial de la Salud las considera una de las principales causas de morbilidad, estrechamente ligada a la pobreza y relacionada con inadecuada higiene personal, incorrecta manipulación de los alimentos crudos, falta de servicios sanitarios, falta de provisión de agua potable y contaminación fecal del ambiente. Algunas enfermedades parasitarias se vinculan con condiciones de transmisión que existen universalmente, por lo que son cosmopolitas, mientras que otras tienen distribución geográfica variable. En los últimos años, debido a la globalización, el movimiento de personas de zonas endémicas a regiones no endémicas ha permitido la diseminación de ciertas parasitosis. Y aunque también influyen en la frecuencia de algunas de estas enfermedades las costumbres de los pueblos, las condiciones ambientales son un factor determinante para la supervivencia de los parásitos. En nuestro país, debido a la diversidad de suelos y condiciones climáticas que existen, es posible hallar variedad de agentes causales de estas parasitosis. El objetivo de este trabajo fue realizar una revisión bibliográfica de los agentes parasitarios causantes de enfermedades entéricas encontrados en la República Argentina, tanto en materia fecal de personas como en el ambiente, ya que la contaminación parasitaria de este último constituye un indicador directo del riesgo de infección por parásitos intestinales.


Intestinal parasitic diseases are widely spread in the world, with the highest prevalence in developing countries. Children are mainly affected, showing a decrease in physical and mental development, as well as the expected manifestations of the disease. This situation can be greatly enhanced in children with poor nutritional status. The World Health Organization considers intestinal parasitic diseases a major cause of morbidity, closely linked to poverty and poor personal hygiene, inappropriate handling of raw food, lack of sanitation, lack of potable water supply, and environmental fecal contamination. Some parasitic diseases are cosmopolitan while others have variable geographic distribution, due to different factors such as the presence of exclusive intermediate hosts. In the past few years, globalization allowed the spread of certain parasites from endemic to non-endemic regions. Even though people's customs influence on the frequency of certain parasites, environmental conditions are a determinant factor for parasite survival. In our country, due to the variety of soils and climatic conditions, several causative agents of these parasitoses can be found. The aim of this work was to review the literature on the intestinal parasitic agents found in Argentina in human fecal samples and its environment, as parasitic contamination constitutes a direct indicator of the infection risk by intestinal parasites.


Assuntos
Animais , Humanos , Fezes/parasitologia , Enteropatias Parasitárias/parasitologia , Solo/parasitologia , Água/parasitologia , Argentina , Infecções por Blastocystis/parasitologia , Blastocystis/isolamento & purificação , Meio Ambiente , Helmintíase/parasitologia , Helmintos/isolamento & purificação , Infecções por Protozoários/parasitologia
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