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1.
PLoS Pathog ; 20(4): e1012199, 2024 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-38683868

RESUMEN

The microsporidian Enterocytozoon hepatopenaei (EHP) is a fungi-related, spore-forming parasite. EHP infection causes growth retardation and size variation in shrimp, resulting in severe economic losses. Studies on shrimp immune response have shown that several antimicrobial peptides (AMPs) were upregulated upon EHP infection. Among those highly upregulated AMPs is c-type lysozyme (LvLyz-c). However, the immune signaling pathway responsible for LvLyz-c production in shrimp as well as its function against the EHP infection are still poorly understood. Here, we characterized major shrimp immune signaling pathways and found that Toll and JAK/STAT pathways were up-regulated upon EHP infection. Knocking down of a Domeless (DOME) receptor in the JAK/STAT pathways resulted in a significant reduction of the LvLyz-c and the elevation of EHP copy number. We further elucidated the function of LvLyz-c by heterologously expressing a recombinant LvLyz-c (rLvLyz-c) in an Escherichia coli. rLvLyz-c exhibited antibacterial activity against several bacteria such as Bacillus subtilis and Vibrio parahaemolyticus. Interestingly, we found an antifungal activity of rLvLyz-c against Candida albican, which led us to further investigate the effects of rLvLyz-c on EHP spores. Incubation of the EHP spores with rLvLyz-c followed by a chitin staining showed that the signals were dramatically decreased in a dose-dependent manner, suggesting that rLvLyz-c possibly digest a chitin coat on the EHP spores. Transmission electron microscopy analysis revealed that an endospore layer, which is composed mainly of chitin, was digested by rLvLyz-c. Lastly, we observed that EHP spores that were treated with rLvLyz-c showed a significant reduction of the spore germination rate. We hypothesize that thinning of the endospore of EHP would result in altered permeability, hence affecting spore germination. This work provides insights into shrimp immune signaling pathways responsible for LvLyz-c production and its anti-EHP property. This knowledge will serve as important foundations for developing EHP control strategies.


Asunto(s)
Enterocytozoon , Muramidasa , Penaeidae , Transducción de Señal , Animales , Penaeidae/inmunología , Penaeidae/microbiología , Muramidasa/metabolismo , Enterocytozoon/metabolismo , Microsporidiosis/inmunología
2.
Emerg Infect Dis ; 30(3): 613-616, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-38407164

RESUMEN

We report a case of Enterocytozoon bieneusi infection in a pediatric hematopoietic stem cell transplant recipient in Argentina. Spores were visualized in feces using Calcofluor White and modified trichrome stainings. PCR and sequencing identified E. bieneusi genotype D in fecal samples and liver samples, confirming extraintestinal dissemination of the parasite.


Asunto(s)
Enterocytozoon , Trasplante de Células Madre Hematopoyéticas , Humanos , Niño , Argentina/epidemiología , Enterocytozoon/genética , Receptores de Trasplantes , Heces , Trasplante de Células Madre Hematopoyéticas/efectos adversos
3.
BMC Microbiol ; 24(1): 223, 2024 Jun 26.
Artículo en Inglés | MEDLINE | ID: mdl-38926815

RESUMEN

BACKGROUND: Enterocytozoon bieneusi is the most common species found in humans. Although E. bieneusi has been investigated in humans, genotype profile of E. bieneusi is not known in Türkiye. METHODS: In this study, we screened E. bieneusi in patients (n = 94) with different types of malignant solid tumors by Real Time PCR and then sequenced E. bieneusi positive samples. All cancer patients were undergoing chemotherapy and had diarrhea. Moreover, as control groups, we also screened E. bieneusi in patients with diarrhea (n = 50) and without diarrhea (n = 50). RESULTS: Among all patients analyzed, 33 (17%) were found to be E. bieneusi-positive. As the patients were categorized, the molecular prevalence of E. bieneusi increased to 25.5% among cancer patients with diarrhea. However, the molecular prevalence of E. bieneusi was found to be lower in patients with presenting only diarrhea (8%) and patients without diarrhea (10%). The high molecular prevalence value detected among cancer patients with diarrhea was also statistically significant compared to other patient groups (P = 0.00112 and P = 0.0269). Among the 33 Real Time PCR positive samples, 10 of them were amplified by nested PCR and among these 10 samples, 6 of them were successfully genotyped. The phylogenetic tree showed the presence of D and Type IV which were also identified in stray cats living in Izmir in our previous study. CONCLUSIONS: High molecular prevalence value indicates the importance of screening stool samples of cancer patients with diarrhea for E. bieneusi and genotyping results indicate that D and Type IV are circulating between humans and cats.


Asunto(s)
Diarrea , Enterocytozoon , Genotipo , Microsporidiosis , Neoplasias , Humanos , Enterocytozoon/genética , Enterocytozoon/aislamiento & purificación , Microsporidiosis/microbiología , Microsporidiosis/epidemiología , Microsporidiosis/veterinaria , Neoplasias/complicaciones , Neoplasias/tratamiento farmacológico , Masculino , Femenino , Diarrea/microbiología , Diarrea/epidemiología , Persona de Mediana Edad , Prevalencia , Adulto , Anciano , Reacción en Cadena en Tiempo Real de la Polimerasa , Adulto Joven , Filogenia , Análisis de Secuencia de ADN , Antineoplásicos , ADN de Hongos/genética , Anciano de 80 o más Años , Heces/microbiología
4.
Med Mycol ; 62(4)2024 Mar 28.
Artículo en Inglés | MEDLINE | ID: mdl-38499442

RESUMEN

Microsporidia is a diverse group of obligate, intracellular, and spore-forming parasites that infect a wide range of animals. Among them, Enterocytozoon bieneusi and Encephalitozoon spp. are the most frequently reported species in humans. Limited information is available about the presence and molecular diversity of microsporidian species in the endangered Iberian lynx (Lynx pardinus). Presence of Enterocytozoon bieneusi and Encephalitozoon spp. was investigated by molecular methods in wild and captive Iberian lynxes from Spain. Overall, E. bieneusi was detected in 3.2% (8/251) of the animals examined. None of the samples tested were positive for Encephalitozoon spp. Four known (D, EbfelA, PigEBITS7, and Type IV) and a novel (named as LynxSpEb1) E. bieneusi genotypes were identified. All the genotypes found belonged to the zoonotic Group 1 of E. bieneusi. This study provides the first genotyping data of E. bieneusi in Iberian lynx in Spain. Our result indicate that the Iberian lynx does not seem to play a relevant role in the epidemiology of Encephalitozoon spp., and that this endangered felid is likely acting as spillover host rather than a true reservoir of E. bieneusi. Additional studies should be conducted to assess the impact of this parasite in the health status of the endangered Iberian lynx.


Asunto(s)
Encephalitozoon , Enterocytozoon , Lynx , Microsporidios , Humanos , Animales , Genotipo , Lynx/parasitología , Enterocytozoon/genética , Prevalencia , Heces , Filogenia
5.
Med Mycol ; 62(8)2024 Aug 02.
Artículo en Inglés | MEDLINE | ID: mdl-39020251

RESUMEN

Enterocytozoon bieneusi microsporidia are emerging pathogens infecting a wide range of vertebrate and invertebrate hosts, known to have zoonotic features since they infect both wild and domestic animals, and humans. Despite their significance, there is very limited epidemiological data on microsporidia in hedgehogs, especially European hedgehogs (Erinaceus europaeus) and long-eared hedgehogs (Hemiechinus auritus), the former known as synantropic hedgehogs, and the latter suited as pets. As such, the present study aimed to assess the presence of E. bieneusi in hedgehogs from Portugal. For this purpose, fecal samples from 110 hedgehogs of three species-E. europaeus (n = 106), H. auritus (n = 1), and Atelerix albiventris (n = 3)-were collected and tested for E. bieneusi by PCR targeting the internal transcribed spacer region and the flanking small and large subunits of the rRNA. We found an overall occurrence of 22.7% (25/110; 95% confidence interval [CI]: 15.28-31.70), with 22.6% (24/106; 95% [CI]: 15.08-31.79) in E. europaeus, 100% (1/1) in H. auritus, and 0% in A. albiventris. Interestingly, three novel genotypes were identified, all belonging to the potentially zoonotic Group 1. Our findings highlight the importance of hedgehogs as potential reservoirs for E. bieneusi and emphasize the need for further research to understand their role in transmission dynamics and assess the associated risks to public and veterinary health.


Synanthropic hedgehogs were tested for Enterocytozoon bieneusi, the main cause of human microsporidiosis. Results showed 22.7% of hedgehogs were shedding E. bieneusi spores, with three new genotypes from the zoonotic Group 1. Hedgehogs may transmit to humans/animals, warranting more research.


Asunto(s)
ADN de Hongos , Enterocytozoon , Heces , Erizos , Microsporidiosis , Erizos/microbiología , Enterocytozoon/genética , Enterocytozoon/aislamiento & purificación , Enterocytozoon/clasificación , Animales , Microsporidiosis/veterinaria , Microsporidiosis/epidemiología , Microsporidiosis/microbiología , Portugal/epidemiología , Heces/microbiología , ADN de Hongos/genética , ADN Espaciador Ribosómico/genética , Reacción en Cadena de la Polimerasa , Filogenia , Análisis de Secuencia de ADN , Genotipo
6.
Med Mycol ; 62(3)2024 Mar 07.
Artículo en Inglés | MEDLINE | ID: mdl-38414255

RESUMEN

Enterocytozoon bieneusi is a microsporidia commonly found in the gastrointestinal tract of humans and a wide range of other animals, constituting a major cause of microsporidiosis in humans. Although E. bieneusi has been detected in humans, domestic, and wild animals in Portugal, and its presence in bats has been linked to zoonotic characteristics, its occurrence in bats within the country has not been reported. In this study, we investigated the presence of E. bieneusi in 380 bat fecal samples collected in mainland Portugal through a nested PCR assay targeting the internal transcribed spacer region and the flanking small and large subunits of the ribosomal RNA. Enterocytozoon bieneusi was detected in one bat sample (i.e., 0.26%; Pipistrellus pipistrellus). Additionally, another sample tested positive for Enterocytozoon sp. Phylogenetic analysis of the obtained ITS sequence of E. bieneusi revealed clustering within the potentially zoonotic Group 1. This study represents the first report of E. bieneusi in a bat from Europe. Findings presented here contribute to an enhanced understanding of E. bieneusi epidemiology.


Enterocytozoon bieneusi is the most frequent cause of microsporidiosis in humans. In this study, E. bieneusi, belonging to a potentially zoonotic Group, was detected in 0.26% bat samples from Portugal, highlighting bats' potential role in transmitting this microsporidia to humans and other animals.


Asunto(s)
Quirópteros , Enterocytozoon , Microsporidiosis , Animales , Humanos , Enterocytozoon/genética , Genotipo , Portugal/epidemiología , Filogenia , ADN Espaciador Ribosómico/genética , Prevalencia , Microsporidiosis/epidemiología , Microsporidiosis/veterinaria , Heces , China/epidemiología
7.
Fish Shellfish Immunol ; 151: 109704, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38880362

RESUMEN

White feces syndrome (WFS) is a multifactorial disease that affects global shrimp production. The diagnostic approach to identify WFS involves traditional and molecular scientific methods by examining histopathology, bioassays, PCR (polymerase chain reaction), and calorimetric estimation. The pathogenesis of WFS is closely associated with Vibrio spp., intestinal microbiota (IM) dysbiosis, and Enterocytozoon hepatopenaei (EHP). It also has caused over 10-15 % loss in the aquaculture industry and is also known to cause retardation, lethargy and slowly leading to high mortality in shrimp farms. Therefore, it is necessary to understand the molecular mechanisms processed under the association of IM dysbiosis, Vibrio spp., and EHP to analyze the impact of disease on the innate immune system of shrimp. However, only very few reviews have described the molecular pathways involved in WFS. Hence, this review aims to elucidate an in-depth analysis of molecular pathways involved in the innate immune system of shrimp and their response to pathogens. The analysis and understanding of the impact of shrimp's innate immune system on WFS would help in developing treatments to prevent the spread of disease, thereby improving the economic condition of shrimp farms worldwide.


Asunto(s)
Inmunidad Innata , Penaeidae , Animales , Penaeidae/inmunología , Penaeidae/genética , Penaeidae/microbiología , Inmunidad Innata/genética , Microbioma Gastrointestinal/inmunología , Vibrio/fisiología , Disbiosis/inmunología , Disbiosis/veterinaria , Enterocytozoon/genética , Enterocytozoon/inmunología , Acuicultura
8.
Parasitology ; 151(4): 351-362, 2024 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-38305092

RESUMEN

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.


Asunto(s)
Criptosporidiosis , Cryptosporidium , Enfermedades de los Perros , Enterocytozoon , Heces , Giardiasis , Microsporidiosis , Animales , Perros , Enfermedades de los Perros/parasitología , Enfermedades de los Perros/epidemiología , Enfermedades de los Perros/microbiología , Enterocytozoon/genética , Enterocytozoon/aislamiento & purificación , Enterocytozoon/clasificación , Cryptosporidium/genética , Cryptosporidium/aislamiento & purificación , Cryptosporidium/clasificación , Microsporidiosis/veterinaria , Microsporidiosis/epidemiología , Polonia/epidemiología , Criptosporidiosis/epidemiología , Criptosporidiosis/parasitología , Heces/parasitología , Heces/microbiología , República Checa/epidemiología , Giardiasis/veterinaria , Giardiasis/epidemiología , Giardiasis/parasitología , Prevalencia , Giardia/genética , Giardia/aislamiento & purificación , Giardia/clasificación , Genotipo , Giardia lamblia/genética , Giardia lamblia/aislamiento & purificación , Giardia lamblia/clasificación , Especificidad del Huésped
9.
BMC Vet Res ; 20(1): 53, 2024 Feb 10.
Artículo en Inglés | MEDLINE | ID: mdl-38341563

RESUMEN

BACKGROUND: Enterocytozoon bieneusi is a zoonotic pathogen widely distributed in animals and humans. It can cause diarrhea and even death in immunocompromised hosts. Approximately 800 internal transcribed spacer (ITS) genotypes have been identified in E. bieneusi. Farmed foxes and raccoon dogs are closely associated to humans and might be the reservoir of E. bieneusi which is known to have zoonotic potential. However, there are only a few studies about E. bieneusi genotype identification and epidemiological survey in foxes and raccoon dogs in Henan and Hebei province. Thus, the present study investigated the infection rates and genotypes of E. bieneusi in farmed foxes and raccoon dogs in the Henan and Hebei provinces. RESULT: A total of 704 and 884 fecal specimens were collected from foxes and raccoon dogs, respectively. Nested PCR was conducted based on ITS of ribosomal RNA (rRNA), and then multilocus sequence typing (MLST) was conducted to analyze the genotypes. The result showed that infection rates of E. bieneusi in foxes and raccoon dogs were 18.32% and 5.54%, respectively. Ten E. bieneusi genotypes with zoonotic potential (NCF2, NCF3, D, EbpC, CHN-DC1, SCF2, CHN-F1, Type IV, BEB4, and BEB6) were identified in foxes and raccoon dogs. Totally 178 ITS-positive DNA specimens were identified from foxes and raccoon dogs and these specimens were then subjected to MLST analysis. In the MLST analysis, 12, 2, 7 and 8 genotypes were identified in at the mini-/ micro-satellite loci MS1, MS3, MS4 and MS7, respectively. A total of 14 multilocus genotypes were generated using ClustalX 2.1 software. Overall, the present study evaluated the infection of E. bieneusi in foxes and raccoon dogs in the Henan and Hebei province, and investigated the zoonotic potential of the E. bieneusi in foxes and raccoon dogs. CONCLUSIONS: These findings expand the geographic distribution information of E. bieneusi' host in China and was helpful in preventing against the infection of E. bieneusi with zoonotic potential in foxes and raccoon dogs.


Asunto(s)
Enterocytozoon , Microsporidiosis , Humanos , Animales , Tipificación de Secuencias Multilocus/veterinaria , Enterocytozoon/genética , Zorros/genética , Perros Mapache , Epidemiología Molecular , Microsporidiosis/epidemiología , Microsporidiosis/veterinaria , Heces , Prevalencia , Filogenia , China/epidemiología , Genotipo
10.
BMC Vet Res ; 20(1): 309, 2024 Jul 10.
Artículo en Inglés | MEDLINE | ID: mdl-38987757

RESUMEN

BACKGROUND: Parasites Entamoeba spp., Enterocytozoon bieneusi and Blastocystis are prevalent pathogens causing gastrointestinal illnesses in animals and humans. Consequently, researches on their occurrence, distribution and hosts are crucial for the well-being of both animals and humans. Due to the confined spaces and frequent interaction between animals and humans, animal sanctuaries have emerged as potential reservoirs for these parasites. In this study, the wildlife sanctuary near the Huang Gorge of the Qinling Mountains in northwest China is chosen as an ideal site for parasite distribution research, considering its expansive stocking area and high biodiversity. RESULTS: We collected 191 fecal specimens from 37 distinct wildlife species and extracted genomic DNA. We identified these three parasites by amplifying specific gene regions and analyzed their characteristics and evolutionary relationships. All the parasites exhibited a high overall infection rate, reaching 90.05%. Among them, seven Entamoeba species were identified, accounting for a prevalence of 54.97%, with the highest infection observed in Entamoeba bovis. In total, 11 Enterocytozoon bieneusi genotypes were discovered, representing a prevalence of 35.08%, including three genotypes of human-pathogenic Group 1 and two novel genotypes (SXWZ and SXLG). Additionally, 13 Blastocystis subtypes were detected, showing a prevalence of 74.87% and encompassing eight zoonotic subtypes. All of the above suggests significant possibilities of parasite transmission between animals and humans. CONCLUSIONS: This study investigated the occurrence and prevalence of three intestinal parasites, enhancing our understanding of their genetic diversity and host ranges in northwest China. Furthermore, the distribution of these parasites implies significant potential of zoonotic transmission, underscoring the imperative for ongoing surveillance and implementation of control measures. These efforts are essential to mitigate the risk of zoonotic disease outbreaks originating from wildlife sanctuary.


Asunto(s)
Animales Salvajes , Blastocystis , Entamoeba , Enterocytozoon , Microsporidiosis , Zoonosis , Animales , Enterocytozoon/genética , Enterocytozoon/aislamiento & purificación , China/epidemiología , Blastocystis/genética , Blastocystis/clasificación , Blastocystis/aislamiento & purificación , Animales Salvajes/parasitología , Zoonosis/parasitología , Entamoeba/genética , Entamoeba/aislamiento & purificación , Entamoeba/clasificación , Microsporidiosis/veterinaria , Microsporidiosis/epidemiología , Filogenia , Heces/parasitología , Entamebiasis/veterinaria , Entamebiasis/epidemiología , Entamebiasis/parasitología , Infecciones por Blastocystis/veterinaria , Infecciones por Blastocystis/epidemiología , Infecciones por Blastocystis/transmisión , Infecciones por Blastocystis/parasitología , Prevalencia , Genotipo , Humanos
11.
J Invertebr Pathol ; 203: 108061, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-38244837

RESUMEN

This study explores the transcriptomic differences in two distinct phases of Ecytonucleospora hepatopenaei (EHP) in Litopenaeus vannamei, a crucial aspect in shrimp health management. We employed high-throughput sequencing to categorize samples into two phases, 'Phase A' and 'Phase B', defined by the differential expression of PTP2 and TPS1 genes. Our analysis identified 2057 genes, with 78 exhibiting significant variances, including 62 upregulated and 16 downregulated genes. Enrichment analyses via GO and KEGG pathways highlighted these genes' roles in cellular metabolism, signal transduction, and immune responses. Notably, genes like IQGAP2, Rhob, Pim1, and PCM1 emerged as potentially crucial in EHP's infection process and lifecycle. We hypothesize that these genes may influence trehalose metabolism and glucose provision, impacting the biological activities within EHP during different phases. Interestingly, a lower transcript count in 'Phase A' EHP suggests a reduction in biological activities, likely preparing for host cell invasion. This research provides a foundational understanding of EHP infection mechanisms, offering vital insights for future studies and therapeutic interventions.


Asunto(s)
Enterocytozoon , Penaeidae , Animales , Enterocytozoon/fisiología , Perfilación de la Expresión Génica , Transcriptoma , Penaeidae/genética , Alimentos Marinos
12.
J Invertebr Pathol ; 204: 108115, 2024 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-38719180

RESUMEN

To explore the relationship between the intestinal flora of Exopalaemon Carinicauda and infection by Enterocytozoo Hepatopenaei (EHP), we analyzed the species and richness of gut microbiota in infected individuals in different EHP load groups [i.e., control (C), high load (H), and low load (L)] using gene sequencing after infection. The results showed that the abundance of intestinal flora in the high-load EHP group was significantly lower than that in the healthy group. Based on the UPGMA cluster tree and PCoA analysis, with comparisons to healthy shrimp, the gut microbiota of the EHP high load and low load groups were clustered into one branch, which indicated that EHP infection changed the composition of the gut microbiota of infected shrimps. The heat map analysis of species abundance clustering revealed that the dominant bacteria in the low EHP load group and the control group were beneficial genera such as Lactococcus, Ligilactobacillius, and Bifidobacterium, but the dominant bacteria in the high EHP load group were harmful genera such as Pseudomonas, Photobacterium, and Candidatus hepatincola. The functions of the intestinal flora predicted that most genes related to metabolism were more abundant in healthy shrimp, most genes related to metabolism and the organisms' system were more abundant in the low EHP load group, and most genes related to diseases and environmental information processing were more abundant in the high EHP load group. After separation and purification, the dominant bacteria (Bifidobacterium animalis in healthy shrimp and Lactococcus garvieae in the low EHP load group) and the non-dominant bacteria (Macrococus caseolyticus in the low EHP load group) were obtained. Each of these isolated strains were used together with EHP to infect E. carinicauda, and the results showed that Bifidobacterium animali and Lactococcus garvieae significantly reduced the EHP load in EHP-infected individuals. At the same time, the morphology and structure of the hepatopancreas and intestinal tissue of EHP-infected E. carinicauda were improved. No improvement was seen in tissue that was infected with Macrococus caseolyticus.


Asunto(s)
Enterocytozoon , Microbioma Gastrointestinal , Palaemonidae , Animales , Palaemonidae/microbiología , Enterocytozoon/genética , Enterocytozoon/fisiología , Penaeidae/microbiología
13.
Parasitol Res ; 123(6): 233, 2024 Jun 08.
Artículo en Inglés | MEDLINE | ID: mdl-38850488

RESUMEN

Enterocytozoon bieneusi is a common cause of human microsporidiosis and can infect a variety of animal hosts worldwide. In Thailand, previous studies have shown that this parasite is common in domestic animals. However, information on the prevalence and genotypes of this parasite in other synanthropic wildlife, including bats, remains limited. Several pathogens have been previously detected in bats, suggesting that bats may serve as a reservoir for this parasite. In this study, a total of 105 bat guano samples were collected from six different sites throughout Thailand. Of these, 16 from Chonburi (eastern), Ratchaburi (western), and Chiang Rai (northern) provinces tested positive for E. bieneusi, representing an overall prevalence of 15.2%. Based on ITS1 sequence analysis, 12 genotypes were identified, including two known genotypes (D and type IV) frequently detected in humans and ten novel potentially zoonotic genotypes (TBAT01-TBAT10), all belonging to zoonotic group 1. Lyle's flying fox (Pteropus lylei), commonly found in Southeast Asia, was identified as the host in one sample that was also positive for E. bieneusi. Network analysis of E. bieneusi sequences detected in this study and those previously reported in Thailand also revealed intraspecific divergence and recent population expansion, possibly due to adaptive evolution associated with host range expansion. Our data revealed, for the first time, multiple E. bieneusi genotypes of zoonotic significance circulating in Thai bats and demonstrated that bat guano fertilizer may be a vehicle for disease transmission.


Asunto(s)
Quirópteros , Enterocytozoon , Genotipo , Microsporidiosis , Filogenia , Quirópteros/parasitología , Quirópteros/microbiología , Animales , Tailandia/epidemiología , Enterocytozoon/genética , Enterocytozoon/aislamiento & purificación , Enterocytozoon/clasificación , Microsporidiosis/veterinaria , Microsporidiosis/epidemiología , Microsporidiosis/microbiología , Prevalencia , Humanos , Análisis de Secuencia de ADN , Zoonosis/parasitología , ADN Espaciador Ribosómico/genética , ADN de Hongos/genética
14.
Parasitol Res ; 123(1): 108, 2024 Jan 24.
Artículo en Inglés | MEDLINE | ID: mdl-38263530

RESUMEN

Enterocytozoon bieneusi and Blastocystis may cause diarrhea in humans and various animals. However, little information is available regarding the prevalence and genetic diversity of E. bieneusi and Blastocystis in donkeys. To fill this gap, we molecularly assessed E. bieneusi and Blastocystis in fecal samples from donkeys (n = 815) in Shanxi Province, north China. The overall prevalence of E. bieneusi and Blastocystis in donkeys was 8.1% and 0.2%, respectively. Region and age were risk factors associated with E. bieneusi infection in donkeys. Three internal transcribed spacer (ITS) genotypes of E. bieneusi were identified in the current study, including two previously described genotypes (D and Henan-IV) and one novel genotype (named SXD1). Of which, genotype D was found to be the most prevalent. Phylogenetic analysis demonstrated that the three genotypes belonged to group 1, implying a potential of zoonotic transmission. Multilocus sequence typing showed that 19, 15, 13, and 22 types were identified at the loci MS1, MS3, MS4, and MS7, respectively, forming six multilocus genotypes (MLGs) distributed in the genotype D. One Blastocystis subtype (ST33) was identified, which has previously been reported only in horses. This is the first molecular-based description of E. bieneusi and Blastocystis infections in donkeys in Shanxi Province, north China, contributing to a better understanding of transmission dynamics and molecular epidemiological characteristics of the two intestinal protozoa.


Asunto(s)
Blastocystis , Enterocytozoon , Humanos , Caballos , Animales , Equidae , Filogenia , Prevalencia , China , Genotipo
15.
Parasitol Res ; 123(3): 158, 2024 Mar 09.
Artículo en Inglés | MEDLINE | ID: mdl-38460006

RESUMEN

Cryptosporidium spp., Enterocytozoon bieneusi and Encephalitozoon spp. are the most common protistan parasites of vertebrates. The results show that pigeon populations in Central Europe are parasitised by different species of Cryptosporidium and genotypes of microsporidia of the genera Enterocytozoon and Encephalitozoon. A total of 634 and 306 faecal samples of captive and feral pigeons (Columba livia f. domestica) from 44 locations in the Czech Republic, Slovakia and Poland were analysed for the presence of parasites by microscopy and PCR/sequence analysis of small subunit ribosomal RNA (18S rDNA), 60 kDa glycoprotein (gp60) and internal transcribed spacer (ITS) of SSU rDNA. Phylogenetic analyses revealed the presence of C. meleagridis, C. baileyi, C. parvum, C. andersoni, C. muris, C. galli and C. ornithophilus, E. hellem genotype 1A and 2B, E. cuniculi genotype I and II and E. bieneusi genotype Peru 6, CHN-F1, D, Peru 8, Type IV, ZY37, E, CHN4, SCF2 and WR4. Captive pigeons were significantly more frequently parasitised with screened parasite than feral pigeons. Cryptosporidium meleagridis IIIa and a new subtype IIIl have been described, the oocysts of which are not infectious to immunodeficient mice, whereas chickens are susceptible. This investigation demonstrates that pigeons can be hosts to numerous species, genotypes and subtypes of the studied parasites. Consequently, they represent a potential source of infection for both livestock and humans.


Asunto(s)
Criptosporidiosis , Cryptosporidium , Encephalitozoon , Enterocytozoon , Microsporidiosis , Humanos , Animales , Ratones , Columbidae , Enterocytozoon/genética , Cryptosporidium/genética , Encephalitozoon/genética , Criptosporidiosis/epidemiología , Criptosporidiosis/parasitología , Microsporidiosis/epidemiología , Microsporidiosis/veterinaria , Microsporidiosis/parasitología , Filogenia , Pollos , Europa (Continente)/epidemiología , ADN Ribosómico , Variación Genética , Genotipo , Heces/parasitología
16.
Int J Environ Health Res ; 34(5): 2180-2196, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-37266992

RESUMEN

This study aimed to assess the global status and genetic diversity of Microsporidia infection in different birds. An online search was conducted in international databases from 1 January 1990 to 30 June 2022. A total of 34 articles (including 37 datasets) were included for the final meta-analysis. The pooled global prevalence of Microsporidia infection in birds was 14.6% (95% CI: 11.6-18.1). The highest prevalence of Microsporidia was found in wild waterfowl which was 54.5% (28.1-78.6). In terms of detection methods, the pooled prevalence was estimated to be 21.2% (95% CI: 12.1-34.4) and 13.4% (95% CI: 10.3-17.3) for using microscopic and molecular detection methods, respectively. Enterocytozoon bieneusi was the most common pathogen (24/31; 77.42% of the studies) according to PCR-based methods, and genotype D was the highest reported genotype (nine studies). In conclusion, designing strategies for the control and prevention of Microsporidia infection in birds should be recommended.


Asunto(s)
Enterocytozoon , Microsporidios , Microsporidiosis , Animales , Aves , Enterocytozoon/genética , Heces , Genotipo , Microsporidios/genética , Microsporidiosis/epidemiología , Microsporidiosis/veterinaria , Microsporidiosis/diagnóstico , Filogenia , Prevalencia
17.
BMC Microbiol ; 23(1): 334, 2023 11 11.
Artículo en Inglés | MEDLINE | ID: mdl-37951859

RESUMEN

BACKGROUND: Enterocytozoon bieneusi, Encephalitozoon spp., Cryptosporidium spp., and Giardia duodenalis (G. intestinalis) are enteric pathogens that cause diarrhea in pigs. This study aimed to determine the prevalence of these enteric parasites and their coinfection with E. bieneusi in diarrheic pigs in Southwest China (Chongqing and Sichuan) using nested polymerase chain reaction (nPCR) based methods. RESULTS: A total of 514 fecal samples were collected from diarrheic pigs from 14 pig farms in Chongqing (five farms) and Sichuan (nine farms) Provinces. The prevalence of Encephalitozoon spp., Cryptosporidium spp. and G. duodenalis was 16.14% (83/514), 0% (0/514), and 8.95% (46/514), respectively. Nested PCR revealed 305 mono-infections of E. bieneusi, six of E. cuniculi, two of E. hellem, and nine of G. duodenalis and 106 concurrent infections of E. bieneusi with the other enteric pathogens. No infections of E. intestinalis and Cryptosporidium species were detected. The highest coinfection was detected between E. bieneusi and E. cuniculi (10.5%, 54/514), followed by E. bieneusi and G. duodenalis (5.8%, 30/514) and E. bieneusi and E. hellem (2.9%, 15/514). E. bieneusi was the most frequently detected enteric pathogen, followed by E. cuniculi, G. duodenalis and E. hellem. There was a significant age-related difference in the prevalence of E. cuniculi in fattening pigs (χ2 = 15.266, df = 3, P = 0.002) and G. duodenalis in suckling pigs (χ2 = 11.92, df = 3, P = 0.008) compared with the other age groups. Sequence analysis of the ITS region of Encephalitozoon species showed two genotypes (II and III) for E. cuniculi and one (TURK1B) for E. hellem. Only G. duodenalis assemblage A was identified in all nested PCR-positive samples. E. bieneusi was found more often than other enteric pathogens. CONCLUSIONS: This study showed that E. bieneusi, Encephalitozoon spp. [E. cuniculi and E. hellem] and G. duodenalis were common enteric parasites in diarrheic pigs in Chongqing and Sichuan Provinces. In case of both mono-infection and coinfection, E. bieneusi was the most common enteric pathogen in diarrheic pigs. Thus, it may be a significant cause of diarrhea in pigs. Precautions should be taken to prevent the spread of these enteric parasites.


Asunto(s)
Coinfección , Criptosporidiosis , Cryptosporidium , Encephalitozoon , Enterocytozoon , Giardia lamblia , Giardiasis , Microsporidiosis , Animales , Porcinos , Giardia lamblia/genética , Giardiasis/epidemiología , Giardiasis/veterinaria , Giardiasis/parasitología , Enterocytozoon/genética , Criptosporidiosis/epidemiología , Criptosporidiosis/parasitología , Cryptosporidium/genética , Coinfección/epidemiología , Coinfección/veterinaria , Microsporidiosis/epidemiología , Microsporidiosis/veterinaria , China/epidemiología , Genotipo , Heces/parasitología , Diarrea/epidemiología , Diarrea/veterinaria
18.
Microb Pathog ; 174: 105952, 2023 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-36528327

RESUMEN

Enterocytozoon bieneusi, Cryptosporidium spp. and Cyclospora cayetanensis are three important zoonotic pathogens which were a major cause of foodborne or waterborne intestinal diseases in humans and animals. However, very little data about occurrence and genotypes of the three parasites in Ningbo in the south wing of the Yangtze River Delta, China, which is important for a tourist city. In the present study, molecular characterization of E. bieneusi, C. cayetanensis and Cryptosporidium spp. in fecal samples from 489 diarrheal outpatients were carried out. As a result, a total of 35 (7.16%, 35/489) and three (0.61%, 3/489) samples were positive for E. bieneusi and C. cayetanensis respectively. No Cryptosporidium-positive sample or mixed-infections were detected. Four known E. bieneusi genotypes (Type IV, D, I and CHN4) and 8 novel genotypes (NBH1-NBH8) were identified with type IV was the dominant genotype (n = 14), followed by genotypes D (n = 5), NBH8 (n = 5) and NBH7 (n = 3). The remaining genotypes were found in one sample each, and these genotypes were belonged to the previously described high-potential zoonotic group 1. One novel sequence named NBC315, and the other two sequences (NBC30 and NBC370) identical with the reported sequence were detected. Therefore, the existence and importance of zoonotic potential of E. bieneusi and C. cayetanensis in diarrheal outpatients in Ningbo indicates the public health threats, and more investigations should be carried out in human populations, animals and other environmental sources from the One Health perspective.


Asunto(s)
Criptosporidiosis , Cyclospora , Enterocytozoon , Animales , Humanos , Enterocytozoon/genética , Cyclospora/genética , Pacientes Ambulatorios , China/epidemiología , Genotipo , Diarrea/epidemiología , Heces/parasitología , Filogenia , Criptosporidiosis/epidemiología , Criptosporidiosis/parasitología , Prevalencia
19.
Med Mycol ; 61(2)2023 Feb 03.
Artículo en Inglés | MEDLINE | ID: mdl-36746434

RESUMEN

The phylum Microsporidia encompasses a diverse group of obligate, intracellular, and spore-forming organisms able to infect a wide range of animal hosts. Among them, Enterocytozoon bieneusi is the most frequently reported species in humans and animals. Little is known about the presence and epidemiology of E. bieneusi in wildlife. We investigated E. bieneusi occurrence and genetic diversity in wild and domestic mammals, through molecular-detection methods, from different regions across Portugal. A total of 756 samples were collected from 288, 242, and 226 wild carnivores, wild ungulates, and domestic animals, respectively. Overall, eight specimens were E. bieneusi-positive (1.1%, 8/756) obtained from five wild (Iberian lynx, Iberian wolf, red fox, stone marten, and wild boar) and one domestic (sheep) host. Nucleotide sequence analysis identified four genotypes of E. bieneusi, Type IV, Wildboar3, BEB6, and PtEbIX. Three of those genotypes belong to Groups 1 (Type IV and Wildboar3) and 2 (BEB6), which are known to contain genotypes capable of infecting a variety of hosts, including humans, highlighting their public health importance. PtEbIX belongs to the dog-specific Group 11. This study represents the first, largest, and most comprehensive molecular-based epidemiology survey carried out in Portugal in wild and domestic animals to date and the first worldwide identification of E. bieneusi in wolf species. Our study showed that wild carnivores and ungulates may act as reservoirs of zoonotic genotypes of E. bieneusi, establishing their role in maintaining the sylvatic cycle of this parasite while representing a potential source of infection for humans and domestic animals.


The identification of human-pathogenic genotypes of fungi-related Enterocytozoon bieneusi in wild carnivores and ungulates in Portugal suggests cross-species infection events and overlapping of the sylvatic and domestic transmission cycles, demonstrating a potential transmission risk to humans.


Asunto(s)
Enfermedades de los Perros , Enterocytozoon , Microsporidiosis , Enfermedades de las Ovejas , Enfermedades de los Porcinos , Humanos , Porcinos , Animales , Perros , Ovinos , Animales Domésticos , Enterocytozoon/genética , Portugal , Microsporidiosis/epidemiología , Microsporidiosis/veterinaria , Filogenia , Sus scrofa , Genotipo , China/epidemiología , Prevalencia , Heces , Zoonosis/epidemiología , Enfermedades de las Ovejas/epidemiología
20.
Med Mycol ; 61(4)2023 Apr 03.
Artículo en Inglés | MEDLINE | ID: mdl-37024274

RESUMEN

Microsporidia are fungi-related eukaryotic intracellular parasites that opportunistically infect immunocompromised individuals such as those infected by the human immunodeficiency virus (HIV). Among them, Enterocytozoon bieneusi and Encephalitozoon spp. are the most clinically relevant species. We investigated the occurrence and genetic diversity of microsporidial and protist infections in mostly immunocompetent HIV-positive patients in Madrid, Spain. A structured questionnaire was used to retrieve data on factors potentially associated with an increased risk of infection, including sexual attitudes and sex-risk behaviour. Faecal samples (n = 96) from 81 HIV-positive patients were collected and analysed by molecular (PCR and Sanger sequencing) methods. Two microsporidial pathogens were detected: Ent. bieneusi (2.5%, 95% CI: 0.3-8.6) and Enc.intestinalis (4.9%, 95% CI: 1.4-12.2). The two Ent. bieneusi isolates were identified as zoonotic genotype A. Among protists, Entamoeba dispar was the species most prevalently found (33.3%, 95% CI: 23.2-44.7), followed by Blastocystis spp. (19.8%, 95% CI: 11.7-30.1), Giardia duodenalis (13.6%, 95% CI: 7.0-23.0), and Cryptosporidium spp. and Entamoeba histolytica (2.5%, 95% CI: 0.3-8.6 each). Cyclospora cayetanensis and Cystoisospora belli were not detected. Subtypes ST1 (70.6%, 12/17) and ST3 (29.4%, 5/17) were identified within Blastocystis sp., sub-assemblages AII and BIII (50%, 1/2 each) within G. duodenalis, and Cry. parvum and canine-adapted Cry. canis (50%, 1/2 each) within Cryptosporidium spp. Microsporidial and protist parasites were frequent in well-controlled, mostly immunocompetent HIV-positive patients and should be included in diagnostic algorithms when diarrhoea is present.


Opportunistic microsporidial and protist intestinal infections were relatively common in well-controlled HIV-positive patients in Madrid, Spain. These agents should be suspected and appropriately diagnosed in HIV-positive patients presenting with diarrhoea regardless of their immunological status.


Asunto(s)
Criptosporidiosis , Encephalitozoon , Enterocytozoon , Microsporidiosis , Infecciones por Protozoos , Animales , Perros , Humanos , Criptosporidiosis/complicaciones , Criptosporidiosis/epidemiología , Criptosporidiosis/parasitología , Cryptosporidium/genética , Encephalitozoon/genética , Enterocytozoon/genética , Heces , Genotipo , Infecciones por VIH/complicaciones , Infecciones por VIH/epidemiología , Infecciones por VIH/veterinaria , Microsporidios/genética , Prevalencia , España/epidemiología , Infecciones por Protozoos/complicaciones , Infecciones por Protozoos/epidemiología , Infecciones por Protozoos/parasitología , Microsporidiosis/complicaciones , Microsporidiosis/epidemiología , Microsporidiosis/microbiología
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