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2861por Marques, Lucas M., Rezende, Izadora S., Barbosa, Maysa S., Guimarães, Ana M. S., Martins, Hellen B., Campos, Guilherme B., do Nascimento, Naíla C., dos Santos, Andrea P., Amorim, Aline T., Santos, Verena M., Farias, Sávio T., Barrence, Fernanda Â. C., de Souza, Lauro M., Buzinhani, Melissa, Arana-Chavez, Victor E., Zenteno, Maria E., Amarante-Mendes, Gustavo P., Messick, Joanne B., Timenetsky, Jorge“…Genes related to pathogenicity, such as urease, phospholipase, hemolysin, and a Mycoplasma Ig binding protein (MIB)—Mycoplasma Ig protease (MIP) system were identified. …”
Publicado 2016
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2862por Gelormini, Giuseppina, Gauthier, Dominique, Vilei, Edy M., Crampe, Jean-Paul, Frey, Joachim, Ryser-Degiorgis, Marie-Pierre“…BACKGROUND: Infectious keratoconjunctivitis (IKC) is an ocular infectious disease caused by Mycoplasma conjunctivae which affects small domestic and wild mountain ruminants. …”
Publicado 2017
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2863por Hornok, Sándor, Sugár, László, Fernández de Mera, Isabel G., de la Fuente, José, Horváth, Gábor, Kovács, Tibor, Micsutka, Attila, Gönczi, Enikő, Flaisz, Barbara, Takács, Nóra, Farkas, Róbert, Meli, Marina L., Hofmann-Lehmann, Regina“…Furthermore, Mw was significantly more prevalent than CMh in buffaloes, red and roe deer. Mycoplasma ovis was detected in mouflons, M. suis in wild boars, R. helvetica in one fallow deer and one mouflon, and an unidentified Rickettsia sp. in a fallow deer. …”
Publicado 2018
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2864Prevalence of Chlamydia trachomatis in Pregnant Iranian Women: A Systematic Review and Meta-Analysispor Azami, Milad, Badfar, Gholamreza, Mansouri, Akram, Yekta Kooshali, Mohammad Hossein, Kooti, Wesam, Tardeh, Zeinab, Soleymani, Ali, Abbasalizadeh, Shamsi“…Several studies have been conducted regarding the prevalence of Chlamydia trachomatis, Mycoplasma hominis, and Ureaplasma urealyticum in pregnant Iranian women. …”
Publicado 2018
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2865“…Borrelia, Bartonella, and Mycoplasma species, as well as Babesia microti had variable manifestations and diverse seroreactivity, with evidence of persistence despite commonly prescribed courses of anti-infective therapies. …”
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2866por Bhuiyan, Mejbah Uddin, Snelling, Thomas L, West, Rachel, Lang, Jurissa, Rahman, Tasmina, Granland, Caitlyn, de Gier, Camilla, Borland, Meredith L, Thornton, Ruth B, Kirkham, Lea-Ann S, Sikazwe, Chisha, Martin, Andrew C, Richmond, Peter C, Smith, David W, Jaffe, Adam, Blyth, Christopher C“…Respiratory syncytial virus (RSV) detection was most strongly associated with pneumonia (aOR: 58.4; 95% CI: 15.6 to 217.5). Mycoplasma pneumoniae was the only bacteria associated with pneumonia (aOR: 14.5; 95% CI: 2.2 to 94.8). …”
Publicado 2019
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2867por Rimoldi, Simona, Gini, Elisabetta, Iannini, Federica, Gasco, Laura, Terova, Genciana“…Insect-meal inclusion in the diet increased the gut abundance of Mycoplasma, which was attributed the ability to produce lactic and acetic acid as final products of its fermentation. …”
Publicado 2019
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2868“…METHODS: We developed and tested a 23-plex PCR coupled with matrix-assisted laser desorption ionization-time of flight (MALDI-TOF) mass spectrometry (MS) assay (sexually transmitted infection-mass spectrometry, STI-MS) that simultaneously targets 11 different agents, including 8 most common clinical pathogens related to STIs (HSV-1, HSV-2, Neisseria gonorrhoeae, Chlamydia trachomatis, Treponema pallidum, Trichomonas vaginalis, Mycoplasma genitalium, and Haemophilus ducreyi) and 3 controversial microorganisms as pathogens (Mycoplasma hominis, Ureaplasma urealyticum, and Ureaplasma parvum). …”
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2869por Hu, Xiao-Mei, Xu, Jiang-Xia, Jiang, Li-Xia, Deng, Lian-Rui, Gu, Zhen-Mei, Xie, Xiao-Ying, Ji, Hui-Cai, Wang, Wei-Hua, Li, Li-Ming, Tian, Cheng-Nan, Song, Fang-Li, Huang, Shao, Zheng, Lei, Zhong, Tian-Yu“…In this study, we evaluated a novel multiplex real-time PCR melting curve assay method for the simultaneous detection of 9 STD pathogens, including Chlamydia trachomatis, Neisseria gonorrhoeae, Mycoplasma genitalium, Trichomonas vaginalis, Mycoplasma hominis, Ureaplasma urealyticum, Ureaplasma parvum, and herpes simplex virus. …”
Publicado 2019
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2870por Heys, C., Cheaib, B., Busetti, A., Kazlauskaite, R., Maier, L., Sloan, W. T., Ijaz, U. Z., Kaufmann, J., McGinnity, P., Llewellyn, M. S.“…Between gut compartments in a farmed system, we found a majority of operational taxonomic units (OTUs) that fit the neutral model, with Mycoplasma species among the key exceptions. In wild fish, deterministic processes account for more OTU differences across life stages than those observed across gut compartments. …”
Publicado 2020
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2871por Mendes-de-Almeida, Flavya, Labarthe, Norma, Guerrero, Jorge, Faria, Maria Carolina Ferreira, Branco, Aline Serricella, Pereira, Cássia Dias, Barreira, Jairo Dias, Pereira, Maria Julia Salim“…Prevalence of Cytauxzoon spp., Mycoplasma spp., T. gondii infections were variable among the 3 years, although differences were not significant. …”
Publicado 2007
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2872por Tumino, Serena, Tolone, Marco, Parco, Alessio, Puleio, Roberto, Arcoleo, Giuseppe, Manno, Claudia, Nicholas, Robin A.J., Loria, Guido Ruggero“…SIMPLE SUMMARY: Contagious agalactia (CA) is an infectious disease of small ruminants endemic in the Mediterranean countries, causing significant socioeconomic impacts predominantly on small-scale farmers who still subsist on marginal lands. Mycoplasma agalactiae is historically considered the principal etiological agent of CA, especially in sheep. …”
Publicado 2020
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2873por McMullen, Christopher, Alexander, Trevor W., Léguillette, Renaud, Workentine, Matthew, Timsit, Edouard“…This included a metacommunity found primarily in the lung and nasopharynx that was dominated by Mycoplasma. Further clustering at the SV level showed a shared metacommunity between the lung and nasopharynx that was dominated by Mycoplasma dispar. …”
Publicado 2020
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2874por Liebing, J., Völker, I., Curland, N., Wohlsein, P., Baumgärtner, W., Braune, S., Runge, M., Moss, A., Rautenschlein, S., Jung, A., Ryll, M., Raue, K., Strube, C., Schulz, J., Heffels-Redmann, U., Fischer, L., Gethöffer, F., Voigt, U., Lierz, M., Siebert, U.“…In 78% of the cases, various Mycoplasma spp. were isolated. Mycoplasma gallisepticum (MG) was not detected using an MG-specific PCR. …”
Publicado 2020
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2875“…CONCLUSIONS: Leukocytosis, co-infection with Mycoplasma pneumoniae, and high blood viral load may be risk factors for severe adenovirus pneumonia in immunocompetent children. …”
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2876por Taku, Ongeziwe, Brink, Adrian, Meiring, Tracy L., Phohlo, Keletso, Businge, Charles B., Mbulawa, Zizipho Z.A., Williamson, Anna-Lise“…The samples were tested for a panel of pathogenic STIs [Chlamydia trachomatis (serovars A-K & L1-L3), Haemophilus ducreyi, Herpes Simplex Virus (Types 1 & 2), Neisseria gonorrhoeae, Treponema pallidum, Trichomonas vaginalis (TV), and pathobionts [Mycoplasma genitalium (MG), Mycoplasma hominis (MH) and Ureaplasma spp. …”
Publicado 2021
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2877por Bai, Shun, Li, Yuan, Wan, Yangyang, Guo, Tonghang, Jin, Qi, Liu, Ran, Tang, Wenjuan, Sang, Meiying, Tao, Yuanyuan, Xie, Baoguo, Zhao, Yun, Li, Wei, Xu, Xiangdong, Yue, Qiuling, Hu, Xuechun, Xu, Bo“…The infection rates of Ureaplasma urealyticum (Uuu), Ureaplasma parvum (Uup), Mycoplasma hominis (MH), Mycoplasma genitalium (MG), Chlamydia trachomatis (CT), herpes simplex virus-2 (HSV-2) and Neisseria gonorrhoeae (NG) were 8.7 %, 21.0 %, 8.2 %, 2.1 %, 3.6 %, 1.0 and 0 %, respectively. …”
Publicado 2021
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2878“…RESULTS: We included 15 publications, eight addressing all-cause pneumonia and seven addressing Mycoplasma pneumoniae. Cough and fever were common in children aged 5-9 years with pneumonia. …”
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2879por Wang, Heping, Zheng, Yuejie, de Jonge, Marien I., Wang, Rongjun, Verhagen, Lilly M., Chen, Yunsheng, Li, Li, Xu, Zhi, Wang, Wenjian“…There were 99.4%, 16.0% and 1.26% reductions measured for Mycoplasma pneumoniae, influenza virus A and adenovirus, respectively. …”
Publicado 2022
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2880por Li, Jialin, Liu, Lesen, Zhang, Hua, Guo, Jing, Wei, Xiaoling, Xue, Min, Ma, Xiang“…With the widespread use of macrolide antibiotics in China, common pathogens causing children’s infections, such as Streptococcus pneumoniae, Streptococcus (including Group A streptococcus, Group B streptococcus), Staphylococcus aureus, Bordetella pertussis, and Mycoplasma pneumoniae, have shown varying degrees of drug resistance. …”
Publicado 2023
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