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3521por Lipsit, Sean, Facciuolo, Antonio, Scruten, Erin, Wilkinson, James, Plastow, Graham, Kusalik, Anthony, Napper, Scott“…We previously vaccinated piglets (n = 117) against a commercial Mycoplasma hyopneumoniae vaccine (RespiSure-One) and observed in low vaccine responder piglets, as defined by serum IgG antibody titers, differential phosphorylation of peptides involved in pro-inflammatory cytokine signaling within peripheral blood mononuclear cells (PBMCs) prior to vaccination, elevated plasma interferon-gamma concentrations, and lower birth weight compared to high vaccine responder piglets. …”
Publicado 2022
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3522por Weitzman, Chava L., Belden, Lisa K., May, Meghan, Langager, Marissa M., Dalloul, Rami A., Hawley, Dana M.“…In house finches (Haemorhous mexicanus), the bacterial pathogen Mycoplasma gallisepticum (MG) causes conjunctivitis, with ocular inflammation mediated by pro- and anti-inflammatory cytokines and infection triggering MG-specific antibodies. …”
Publicado 2022
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3523por Hille, Matthew M., Spangler, Matthew L., Clawson, Michael L., Heath, Kelly D., Vu, Hiep L. X., Rogers, Rachel E. S., Loy, John Dustin“…Calves were randomly assigned each year to one of three arms: an autogenous vaccine treatment that included Moraxella bovis (M. bovis), Moraxella bovoculi, and Mycoplasma bovoculi antigens, a commercial M. bovis vaccine treatment, or a sham vaccine treatment that consisted only of adjuvant. …”
Publicado 2022
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3524por Manlove, Kezia R., Roug, Annette, Sinclair, Kylie, Ricci, Lauren E., Hersey, Kent R., Martinez, Cameron, Martinez, Michael A., Mower, Kerry, Ortega, Talisa, Rominger, Eric, Ruhl, Caitlin, Tatman, Nicole, Taylor, Jace“…Here, we compare disease dynamics of a Mycoplasma ovipneumoniae spillover event that affected bighorn sheep populations in two contrasting ecological contexts. …”
Publicado 2022
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3525“…RESULTS: At the genus level, there were four significantly different genera among the three groups, namely Acidaminococcus, Alloprevotella, Mycoplasma, and Sphingobacterium, while Acidaminococcus significantly decreased with the order of Control-AD-CRC (P < 0.05). …”
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3526“…Several potential beneficial bacteria such as Bacillus and Mycoplasma spp. were significantly more abundant in the prebiotic-fed groups compared to the control. …”
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3527“…The prevalence of respiratory pathogens was 84.37% at farm-level and 45.50% at calf-level, and Pasteurella multocida (P. multocida) was the most prevalent pathogen. The presence of Mycoplasma bovis (M. bovis), P. multocida, Mannheimia haemolytica (M. haemolytica) and Histophilus somni (H. somni) were all higher in BRD positive calves than BRD negative calves, but only in H. somni was significant (P<0.001). …”
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3528por Peng, Li, Liu, Silan, Xie, Tian, Li, Yu, Yang, Zhuojie, Chen, Yongqi, Deng, Liangji, Huang, Han, Ding, Xiaofang, Chen, Min, Lin, Lin, Wei, Sangzi, Zhong, Lili“…C-reactive protein (CRP), lactate dehydrogenase (LDH), D-dimer (DD), and AdV load levels were higher in the MBP group. AdV load, Mycoplasma coinfection, DD, heat range, and LDH were independent risk factors for BMP, among which AdV load was the most significant (AUC = 0.819). …”
Publicado 2022
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3529por Vekšins, Armands“…PCR test showed that the most cause of rhinosinusitis was Mycoplasma felis. Nasopharyngeal polyp as the primary diagnosis was identified in 14 cats from 3 months to 6 years, with an average age of 1.85 ± 1.915 years, and 54% of cats were female. …”
Publicado 2022
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3530por Luo, Chunchou, Yang, Yanzhen, Li, Peiling, Chen, Xiangui, Cai, Mengyun, Wang, Yijun“…The proportions of bacterial, mycoplasma, and viral infections were 51.65%, 15.38%, and 12.09%, respectively, of which the proportions of mixed infection of two bacteria and mixed infection of bacteria and non-bacteria were 5.50% and 5.50%, respectively. …”
Publicado 2021
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3531por Imoto, Hiroharu, Yoshioka, Satoshi, Nakagawa, Daishi, Hasegawa, Kohei, Kuroda, Hirokazu, Hasuike, Toshikazu, Doi, Asako, Kusumoto, Toshiko, Ishikawa, Takayuki“…The two COVID‐19 cases with a high CA titer showed no hemolysis or thrombosis. Mycoplasma pneumoniae is known to cause CAS, but not all patients who have a high CA titer show hemolysis. …”
Publicado 2022
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3532por Ma, Jun-e, Ma, Qing-feng, Wang, Wei, Zeng, Yan, Cui, Xiang-hua, Wang, Guo-lei, Liu, Si-yu, Wang, Zhen, Xiao, Xuan, Xia, Zu-neng, Zhu, Heng-cheng, Zhu, Cheng-liang“…Respiratory infected pathogens [adenovirus (ADV), influenza virus A/B (Flu A/B), parainfluenza virus 1/2/3 (PIV1/2/3), respiratory syncytial virus (RSV), Mycoplasma pneumoniae (MP), and Chlamydia pneumoniae (CP)] were detected. …”
Publicado 2022
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3533“…We found a significant difference in nasal microbial diversity between diseased and healthy bovines; notably, the relative abundance of Mycoplasma bovis and Pasteurella increased. This indicated that the composition of the microbial community had changed in diseased bovines compared with healthy ones. …”
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3534por Plummer, Erica L., Ratten, Larissa K., Vodstrcil, Lenka A., Murray, Gerald L., Danielewski, Jennifer A., Fairley, Christopher K., Garland, Suzanne M., Chow, Eric P. F., Bradshaw, Catriona S.“…Men with NGU who tested negative for established causes of NGU (Chlamydia trachomatis, Mycoplasma genitalium, Trichomonas vaginalis, adenoviruses, herpes simplex virus [HSV]-1, and/or HSV-2) were classified as idiopathic cases, and the controls were men reporting no current urethral symptoms. …”
Publicado 2022
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3535por Karlsen, Christian, Tzimorotas, Dimitrios, Robertsen, Espen Mikal, Kirste, Katrine Hånes, Bogevik, André Sture, Rud, Ida“…Digesta-specific microbiomes were identified, though they were mainly enriched by a few taxa, such as Mycoplasma and Ruminococcaceae. Overall, findings are consistent with a model wherein gut microbial profiles are to a different degree influenced by bacterial DNA present in the feed itself through a “feed microbiome” carry-over effect.…”
Publicado 2022
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3536por Barnewall, RJ, Marsh, IB, Williams, TM, Cusack, PMV, Sales, N, Galea, F, Szentirmay, AN, Quinn, JC“…Bovine respiratory disease (BRD) is the most prevalent disease in feedlot cattle worldwide with Bovine alphaherpesvirus 1 (BoAHV1), Histophilus somni, Mannheimia haemolytica, Mycoplasma bovis, Pasteurella multocida and Trueperella pyogenes accepted to be common etiological agents associated with BRD. …”
Publicado 2022
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3537“…Bacteria for example Streptococcus pneumoniae, Staphylococcus aureus, Klebsiella pneumoniae, Mycoplasma pneumoniae, Chlamydia pneumonia, Legionella pneumophila etc and viruses such as influenza, coronavirus, rhinovirus/enterovirus, parainfluenza, metapneumovirus, influenza B virus etc are identified as co-pathogens. …”
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3538por Polo, Coral, García-Seco, Teresa, Díez-Guerrier, Alberto, Briones, Víctor, Domínguez, Lucas, Pérez-Sancho, Marta“…The most cited pathogens were BoHV (described by 26.3% of the papers), Campylobacter fetus (23.7%), Tritrichomonas foetus (18.4%), and BVDV, Ureaplasma spp., and Mycoplasma spp. (10.5% each). Despite the general trend towards an increasing number of publications about bull-infertility problems, a number of pathogens potentially transmitted through both natural breeding and seminal doses given to females and associated with infertility within herds were not ranked in the study (e.g., Chlamydia spp.). …”
Publicado 2023
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3539por Headley, Selwyn Arlington, Fritzen, Juliana Torres Tomazi, Silva, Denise Correia, Xavier, Ana Aparecida Correa, Yasumitsu, Carolina Yuka, Silva, Flavia Helena Pereira, Alfieri, Alice Fernandes, Soethe, Ailton Maziero, Alfieri, Amauri Alcindo“…However, the nucleic acids of Mannheimia haemolytica, Pasteurella multocida, Mycoplasma bovis, bovine respiratory syncytial virus, bovine alphaherpesvirus virus 1 and 5, bovine coronavirus, and bovine parainfluenza virus 3 were not amplified from any of the tissues analyzed, suggesting that these pathogens did not participate in the development of the lesions herein described. …”
Publicado 2023
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3540por Lin, Xia, Zhang, Chunyan, Cao, Kailin, Li, Zhendong, Zhao, Zhongshen, Li, Xiaoqin, Leng, Xiangjun“…In intestinal microbiota, the supplementation of 2.0 g/kg SB significantly increased the abundance of Proteobacteria and Aeromonas, and decreased the abundance of Firmicutes and Mycoplasma (P < 0.05), but the flora at genus and phylum level were not affected by SB supplementation in low fishmeal diet (P > 0.05). …”
Publicado 2023
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