Clostridial diarrheas in piglets: A review.
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[1] Qiuhong Wang,et al. Porcine epidemic diarrhea virus (PEDV): An update on etiology, transmission, pathogenesis, and prevention and control , 2020, Virus Research.
[2] B. Engelhardt,et al. CD31 (PECAM-1) Serves as the Endothelial Cell-Specific Receptor of Clostridium perfringens β-Toxin. , 2020, Cell host & microbe.
[3] H. Posthaus,et al. Clostridium perfringens type C necrotic enteritis in pigs: diagnosis, pathogenesis, and prevention , 2020, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[4] J. Weese,et al. Clostridium (Clostridioides) difficile in animals , 2020, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[5] J. Zentek,et al. Storage procedures and time influence the detectability of Clostridium difficile toxin A but not toxin B in porcine fecal specimens , 2019, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[6] Robert J. Moore,et al. Expansion of the Clostridium perfringens toxin-based typing scheme. , 2018, Anaerobe.
[7] M. Faldyna,et al. The emergence of Clostridium difficile PCR ribotype 078 in piglets in the Czech Republic clusters with Clostridium difficile PCR ribotype 078 isolates from Germany, Japan and Taiwan. , 2018, International journal of medical microbiology : IJMM.
[8] L. Larsen,et al. Diarrhoea in neonatal piglets: a case control study on microbiological findings , 2018, Porcine health management.
[9] B. McClane,et al. Mechanisms of Action and Cell Death Associated with Clostridium perfringens Toxins , 2018, Toxins.
[10] Bumseok Kim,et al. High prevalence of Clostridium difficile PCR ribotype 078 in pigs in Korea. , 2018, Anaerobe.
[11] E. Kuijper,et al. Understanding Clostridium difficile Colonization , 2018, Clinical Microbiology Reviews.
[12] E. Kuijper,et al. Molecular analysis of three Clostridium difficile strain genomes isolated from pig farm-related samples. , 2017, Anaerobe.
[13] K. Warriner,et al. Dissemination of Clostridium difficile in food and the environment: Significant sources of C. difficile community‐acquired infection? , 2017, Journal of applied microbiology.
[14] A. Dors,et al. Prevalence and factors associated with the occurrence of bacterial enteropathogens in suckling piglets in farrow-to-finish herds , 2016, Veterinary Record.
[15] J. Zentek,et al. Determination of the extent of Clostridium difficile colonisation and toxin accumulation in sows and neonatal piglets. , 2016, Anaerobe.
[16] P. Ascenzi,et al. Clostridium difficile Toxins A and B: Insights into Pathogenic Properties and Extraintestinal Effects , 2016, Toxins.
[17] J. Finnie,et al. Diseases Produced by Clostridium perfringens Type D , 2016 .
[18] J. Rood. General Physiological and Virulence Properties of the Pathogenic Clostridia , 2016 .
[19] F. Uzal. Diseases Produced by Clostridium perfringens Type A in Mammalian Species , 2016 .
[20] J. Prescott,et al. Toxins of Clostridium difficile , 2016 .
[21] J. Songer,et al. Diseases Produced by Clostridium difficile , 2016 .
[22] T. Riley,et al. Persistence of Clostridium difficile RT 237 infection in a Western Australian piggery. , 2016, Anaerobe.
[23] M. Mcelroy,et al. Typhlocolitis associated with Clostridium difficile ribotypes 078 and 110 in neonatal piglets from a commercial Irish pig herd , 2016, Irish Veterinary Journal.
[24] Keiko Kobayashi,et al. Role of P2X7 receptor in Clostridium perfringens beta-toxin-mediated cellular injury. , 2015, Biochimica et biophysica acta.
[25] M. Rupnik,et al. An Update on Clostridium difficile Toxinotyping , 2015, Journal of Clinical Microbiology.
[26] C. Nathues,et al. Binding Studies on Isolated Porcine Small Intestinal Mucosa and in vitro Toxicity Studies Reveal Lack of Effect of C. perfringens Beta-Toxin on the Porcine Intestinal Epithelium , 2015, Toxins.
[27] M. Popoff. Clostridial pore-forming toxins: powerful virulence factors. , 2014, Anaerobe.
[28] D. Harris,et al. Whole genome sequencing reveals potential spread of Clostridium difficile between humans and farm animals in the Netherlands, 2002 to 2011. , 2014, Euro surveillance : bulletin Europeen sur les maladies transmissibles = European communicable disease bulletin.
[29] T. Riley,et al. Nationwide Surveillance Study of Clostridium difficile in Australian Neonatal Pigs Shows High Prevalence and Heterogeneity of PCR Ribotypes , 2014, Applied and Environmental Microbiology.
[30] Jae-Young Song,et al. Distribution of Clostridium perfringens Isolates from Piglets in South Korea , 2014, The Journal of veterinary medical science.
[31] D. Gerding,et al. Clostridium difficile binary toxin CDT , 2013, Gut microbes.
[32] M. Unemo,et al. Clostridium difficile PCR ribotype 046 is common among neonatal pigs and humans in Sweden. , 2014, Clinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases.
[33] J. Prescott,et al. A retrospective study on the etiological diagnoses of diarrhea in neonatal piglets in Ontario, Canada, between 2001 and 2010. , 2013, Canadian journal of veterinary research = Revue canadienne de recherche veterinaire.
[34] B. Stoll,et al. Invited review: the preterm pig as a model in pediatric gastroenterology. , 2013, Journal of animal science.
[35] H. Neubauer,et al. Clostridium difficile Genotypes in Piglet Populations in Germany , 2013, Journal of Clinical Microbiology.
[36] M. Delmée,et al. Presence of Clostridium difficile in pigs and cattle intestinal contents and carcass contamination at the slaughterhouse in Belgium. , 2013, International journal of food microbiology.
[37] Xiaocen Wang,et al. A novel watery diarrhoea caused by the co-infection of neonatal piglets with Clostridium perfringens type A and Escherichia coli (K88, 987P). , 2013, Veterinary journal.
[38] L. Craig,et al. Type IV Pili in Gram-Positive Bacteria , 2013, Microbiology and Molecular Reviews.
[39] P. H. Arruda,et al. Effect of age, dose and antibiotic therapy on the development of Clostridium difficile infection in neonatal piglets. , 2013, Anaerobe.
[40] F. Pasmans,et al. Endothelial Binding of Beta Toxin to Small Intestinal Mucosal Endothelial Cells in Early Stages of Experimentally Induced Clostridium Perfringens Type C Enteritis in Pigs , 2013, Veterinary pathology.
[41] L. Lipman,et al. Clostridium difficile Infection Associated with Pig Farms , 2013, Emerging infectious diseases.
[42] K. D'Herde,et al. Clostridium perfringens Beta-Toxin Induces Necrostatin-Inhibitable, Calpain-Dependent Necrosis in Primary Porcine Endothelial Cells , 2013, PloS one.
[43] M. Kawanishi,et al. Clostridium difficile isolated from the fecal contents of swine in Japan. , 2013, The Journal of veterinary medical science.
[44] J. Prescott,et al. An investigation into the association between cpb2-encoding Clostridium perfringens type A and diarrhea in neonatal piglets. , 2013, Canadian journal of veterinary research = Revue canadienne de recherche veterinaire.
[45] B. McClane,et al. The effect of Clostridium perfringens type C strain CN3685 and its isogenic beta toxin null mutant in goats. , 2012, Veterinary microbiology.
[46] Francisco A Uzal,et al. Freezing or adding trypsin inhibitor to equine intestinal contents extends the lifespan of Clostridium perfringens beta toxin for diagnostic purposes. , 2012, Anaerobe.
[47] S. Thakur,et al. Antimicrobial Resistance, Toxinotype, and Genotypic Profiling of Clostridium difficile Isolates of Swine Origin , 2012, Journal of Clinical Microbiology.
[48] A. Daugschies,et al. Necrotic enteritis due to simultaneous infection with Isospora suis and clostridia in newborn piglets and its prevention by early treatment with toltrazuril , 2012, Parasitology Research.
[49] E. Kuijper,et al. High occurrence of various Clostridium difficile PCR ribotypes in pigs arriving at the slaughterhouse , 2011, The Veterinary quarterly.
[50] J. Weese,et al. Clostridium difficile and methicillin-resistant Staphylococcus aureus shedding by slaughter-age pigs , 2011, BMC veterinary research.
[51] R. Harvey,et al. Clostridium difficile in retail meat and processing plants in Texas , 2011, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[52] E. Kuijper,et al. Acquisition of Clostridium difficile by piglets. , 2011, Veterinary microbiology.
[53] Nigel P. Minton,et al. The role of toxin A and toxin B in Clostridium difficile infection , 2010, Nature.
[54] J. Weese,et al. Longitudinal investigation of Clostridium difficile shedding in piglets. , 2010, Anaerobe.
[55] M. Awad,et al. Novel Use of Tryptose Sulfite Cycloserine Egg Yolk Agar for Isolation of Clostridium perfringens during an Outbreak of Necrotizing Enterocolitis in a Neonatal Unit , 2010, Journal of Clinical Microbiology.
[56] Conrad von Schubert,et al. Rapid Cytopathic Effects of Clostridium perfringens Beta-Toxin on Porcine Endothelial Cells , 2010, Infection and Immunity.
[57] T. Rehberger,et al. Prevalence and Diversity of Toxigenic Clostridium perfringens and Clostridium difficile among Swine Herds in the Midwest , 2010, Applied and Environmental Microbiology.
[58] M. Rupnik,et al. Clostridium difficile: its potential as a source of foodborne disease. , 2010, Advances in food and nutrition research.
[59] B. McClane,et al. Development and Application of New Mouse Models To Study the Pathogenesis of Clostridium perfringens Type C Enterotoxemias , 2009, Infection and Immunity.
[60] S. Albini,et al. Retrospective study on necrotizing enteritis in piglets in Switzerland. , 2009, Schweizer Archiv fur Tierheilkunde.
[61] J. Blanco,et al. Prevalence of Clostridium difficile in diarrhoeic and non-diarrhoeic piglets. , 2009, Veterinary microbiology.
[62] E. Kuijper,et al. Clostridium difficile PCR ribotype 078 toxinotype V found in diarrhoeal pigs identical to isolates from affected humans. , 2009, Environmental microbiology.
[63] B. McClane,et al. Effects of Clostridium perfringens Beta-Toxin on the Rabbit Small Intestine and Colon , 2008, Infection and Immunity.
[64] S. Albini,et al. Real-time multiplex PCR assays for reliable detection of Clostridium perfringens toxin genes in animal isolates. , 2008, Veterinary microbiology.
[65] Phalguni Gupta,et al. Beta toxin is essential for the intestinal virulence of Clostridium perfringens type C disease isolate CN3685 in a rabbit ileal loop model , 2007, Molecular microbiology.
[66] L. Venturini,et al. Fibrinonecrotic enteritis of piglets in a commercial farm: a postmortem study of the prevalence and the role of lesion associated agents Isospora suis and Clostridium perfringens , 2007 .
[67] S. Weese,et al. Prevalence of PCR Ribotypes among Clostridium difficile Isolates from Pigs, Calves, and Other Species , 2007, Journal of Clinical Microbiology.
[68] J. Songer,et al. A Prospective, Case Control Study Evaluating the Association between Clostridium Difficile Toxins in the Colon of Neonatal Swine and Gross and Microscopic Lesions , 2007, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[69] J. Songer,et al. The Comparative Pathology of Clostridium difficile-associated Disease , 2006, Veterinary pathology.
[70] Francisco A. Uzal,et al. Clostridial Enteric Infections in Pigs , 2005, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[71] J. Ballard,et al. Clostridium difficile Toxins: Mechanism of Action and Role in Disease , 2005, Clinical Microbiology Reviews.
[72] Michel R. Popoff,et al. Genotyping and Phenotyping of Beta2-Toxigenic Clostridium perfringens Fecal Isolates Associated with Gastrointestinal Diseases in Piglets , 2003, Journal of Clinical Microbiology.
[73] S. J. Billington,et al. Prevalence of cpb2, encoding beta2 toxin, in Clostridium perfringens field isolates: correlation of genotype with phenotype. , 2003, Veterinary microbiology.
[74] Lorraine Hoffman,et al. A Survey of Agents Associated with Neonatal Diarrhea in Iowa Swine Including Clostridium Difficile and Porcine Reproductive and Respiratory Syndrome Virus , 2002, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[75] M. Delmée. Laboratory diagnosis of Clostridium difficile disease. , 2001, Clinical microbiology and infection : the official publication of the European Society of Clinical Microbiology and Infectious Diseases.
[76] N. French,et al. Occurrence of Clostridium perfringens β2-toxin amongst animals, determined using genotyping and subtyping PCR assays , 2000, Epidemiology and Infection.
[77] L. Petrie. Clostridial Diseases , 2000 .
[78] M. Popoff,et al. Detection of the beta2 toxin gene of Clostridium perfringens in diarrhoeic piglets in The Netherlands and Switzerland. , 1999, FEMS immunology and medical microbiology.
[79] Michel Popoff,et al. Prevalence of β2-Toxigenic Clostridium perfringens in Horses with Intestinal Disorders , 1999, Journal of Clinical Microbiology.
[80] E G Clark,et al. Typhlocolitis Caused by Clostridium Difficile in Suckling Piglets , 1998, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[81] M. Gibert,et al. Beta2 toxin, a novel toxin produced by Clostridium perfringens. , 1997, Gene.
[82] P. Ahrens,et al. Comparison of Toxicity Neutralization-, ELISA- and PCR Tests for Typing ofClostridium perfringensand Detection of the Enterotoxin Gene by PCR , 1996 .
[83] J. Songer. Clostridial enteric diseases of domestic animals , 1996, Clinical microbiology reviews.
[84] Y. Fujii,et al. Purification and characterization of Clostridium perfringens beta toxin. , 1987, Toxicon : official journal of the International Society on Toxinology.
[85] A. Jestin,et al. Epizootiologic investigations of a diarrheic syndrome in fattening pigs. , 1985, American journal of veterinary research.
[86] George M. Maxwell,et al. The Alimentary System , 1984 .
[87] M. A. Jones,et al. Isolation of Clostridium difficile from pigs , 1983, Veterinary Record.
[88] J. Haagsma,et al. Diarrhea in one to three week-old piglets associated with Clostridium perfringens type A. , 1983, Annales de recherches veterinaires. Annals of veterinary research.
[89] I. Månsson,et al. Atypical strains of Clostridium perfringens from swine. , 2009, Acta pathologica et microbiologica Scandinavica.
[90] N. Hightower. The digestive system. , 1962, Annual review of physiology.