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8221por Posteraro, Brunella, Menchinelli, Giulia, Ivagnes, Vittorio, Cortazzo, Venere, Liotti, Flora Marzia, Falasca, Benedetta, Fiori, Barbara, D’Inzeo, Tiziana, Spanu, Teresa, De Angelis, Giulia, Sanguinetti, Maurizio“…Candida auris and other Candida species (C. albicans, C. glabrata, C. parapsilosis, C. tropicalis, and C. krusei) are important causes of bloodstream infection. …”
Publicado 2023
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8222por Thompson, G R, Soriano, A, Cornely, O A, Kullberg, B J, Kollef, M, Vazquez, J A, Das, A F, Locke, J B, Sandison, T, Pappas, P G“…Of the 204 isolates, Candida albicans was the most common species, followed by Candida glabrata, Candida tropicalis, and Candida parapsilosis; 61% of all baseline isolates were non-albicans Candida (Figure 3). …”
Publicado 2023
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8223“…Generally, similar performance regarding accuracy and counting time was observed with C. albicans. In conclusion, fully automatic counting showed low accuracy, especially for plates with very high or very low colony numbers. …”
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8224por Zhou, Heyang, Yang, Niao, Li, Wei, Peng, Xuemi, Dong, Jiaxiao, Jiang, Yuanying, Yan, Lan, Zhang, Dazhi, Jin, Yongsheng“…ABSTRACT: Baicalein (BE), the major component of Scutellaria Baicalensis, exhibited potently antifungal activity against drug-resistant Candida albicans, and strong inhibition on biofilm formation. …”
Publicado 2023
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8225por Duan, Yan, Zhao, Li-Juan, Zhou, Yan-Hui, Zhou, Qi-Zhi, Fang, Ai-Qing, Huang, Yu-Ting, Ma, Yuan, Wang, Zhi, Lu, Yu-Ting, Dai, Yu-Ping, Li, Shun-Xiang, Li, Juan“…In vitro validation trials have found that seven components, namely gallocatechin, gallic acid, epigallocatechin, theophylline, chlorogenic acid, puerarin, and phloretin, displayed substantial inhibitory effects on E. coli, S. aureus, P. aeruginosa, and C. albicans, and are typically present in tea oil, with a total content ranging from 15.87∼24.91 μg·g(−1). …”
Publicado 2023
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8226por Akgün Karapınar, Bahar, Çaklovica Küçükkaya, İlvana, Bölükbaşı, Yasemin, Küçükkaya, Sertaç, Erköse Genç, Gonca, Erturan, Zayre, Ağaçfidan, Ali, Öngen, Betigül“…The bacteria and fungi that were isolated at the highest rate in SARS-CoV-2-positive patients were methicillin-resistant coagulase-negative staphylococci (MR-CoNS) (21.5%), Escherichia coli (12.4%), Klebsiella pneumoniae (12.4%), Candida albicans (1.65%), and Candida glabrata complex (1.65%), while in the negative patients, the highest rates were for E. coli (21.3%), MR-CoNS (13.5%), K. pneumoniae (12.05%), C. albicans (2.1%), Candida parapsilosis (1.1%), and Candida tropicalis (0.9%). …”
Publicado 2023
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8227“…The best MB + KI-aPDT fungicidal effects (Y) against Candida albicans ATCC 90028 (Y(Ca)), Candida parapsilosis ATCC 22019 (Y(Cp)), and Candida glabrata ATCC 2950 (Y(Cg)) were investigated using a uniform design method. …”
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8228por Kaypetch, Rattiporn, Rudrakanjana, Pachara, Tua-ngam, Peerapong, Tosrisawatkasem, Orada, Thairat, Sarut, Tonput, Pairin, Tantivitayakul, Pornpen“…RESULTS: All denture cleansing agents tested could effectively kill oral bacteria and Candida albicans. Furthermore, after immersion for more than 3 h, the cleansers Polident®, GE and TM could efficiently penetrate and inhibit multispecies denture biofilms with effects similar to 10 min of immersion in 0.5% NaClO. …”
Publicado 2023
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8229por Rojas-Fermin, Rita A, Guzman-Marte, Anel E, Sanchez-Marmolejos, Ann Stephany, Cedeño-Bruzual, Maria Fernanda, Rojas-Jiménez, Javier, Rojas -Jiménez, Marlon“…The most frequently isolated species were C. tropicalis (40.4%), followed by C. parapsilopsis (23.8%) and C. albicans (20%). Fluconazole resistance was 6% (n=12) across all isolated species, with C. parapsilopsis having the highest prevalence 12% (n=6). …”
Publicado 2023
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8230por Timmer, Kyle D, Floyd, Daniel, Jeffries, Nathan E, Yvanovich, Emma, Sykes, David B, Mansour, Michael“…Finally, the functional capacity of ex vivo neutrophils, including phagocytosis, ectodomain shedding, and reactive oxygen species (ROS) production, was measured in response to the fungal pathogen Candida albicans. RESULTS: CB-derived HSCs were found to be superior in expansion capacity compared to LABM- or CABM-derived HSCs by 3-fold at day six. …”
Publicado 2023
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8231por Torosantucci, Antonella, Chiani, Paola, Bromuro, Carla, De Bernardis, Flavia, Palma, Angelina S., Liu, Yan, Mignogna, Giuseppina, Maras, Bruno, Colone, Marisa, Stringaro, Annarita, Zamboni, Silvia, Feizi, Ten, Cassone, Antonio“…Anti-β-glucan antibodies elicited by a laminarin-conjugate vaccine confer cross-protection to mice challenged with major fungal pathogens such as Candida albicans, Aspergillus fumigatus and Cryptococcus neoformans. …”
Publicado 2009
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8232por Chaudhuri, Rupanjali, Ansari, Faraz Alam, Raghunandanan, Muthukurussi Varieth, Ramachandran, Srinivasan“…We obtained an overall MCC value of 0.8702 considering all 8 pathogens, namely, C. albicans, C. glabrata, A. fumigatus, B. dermatitidis, C. immitis, C. posadasii, H. capsulatum and P. brasiliensis thus showing high sensitivity and specificity at a threshold of 0.511. …”
Publicado 2011
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8233por Kantheti, Lalith Prakash Chandra, Reddy, BVR, Ravikumar, Shamala, Anuradha, CH, Chandrasekhar, P, Rajeswari, M Raja“…The overall culture positivity was 35.3%. Candida albicans was the highest prevalent species (47.17% of the isolates). …”
Publicado 2012
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8234por Ako, Berenger Aristide, Offianan, André Toure, Johansson, Marnie, Penali, Louis Koné, Nguetta, Simon-Pierre Assanvo, Sibley, Carol Hopkin“…Despite this long history, little is known about the geographical distribution of drug resistance–conferring genotypes outside the capital city of Abidjan. In this work, we compared the prevalence of drug-resistant genotypes in Bonoua, an urban area, and Samo, a rural agricultural area, in southeastern Côte-d’Ivoire, about 59 km from Abidjan. …”
Publicado 2012
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8235por Awouafack, Maurice D, McGaw, Lyndy J, Gottfried, Sebastian, Mbouangouere, Roukayatou, Tane, Pierre, Spiteller, Michael, Eloff, Jacobus N“…An MIC of 65 μg/ml was obtained with robusflavones A (1) and B (2) against C. albicans and A. fumigatus, orostachyscerebroside A (3) against A. fumigatus, and robusflavone B (2) against C. neoformans. …”
Publicado 2013
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8236por Merseguel, Karina Bellinghausen, Nishikaku, Angela Satie, Rodrigues, Anderson Messias, Padovan, Ana Carolina, e Ferreira, Renata Carmona, Salles de Azevedo Melo, Analy, da Silva Briones, Marcelo Ribeiro, Colombo, Arnaldo Lopes“…Analysis of ITS variability revealed a greater number of haplotypes among C. albicans, C. tropicalis, C. glabrata and C. lusitaniae, which are predominantly related to endogenous sources of acquisition. …”
Publicado 2015
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8237por Matsushika, Akinori, Negi, Kanako, Suzuki, Toshihiro, Goshima, Tetsuya, Hoshino, Tamotsu“…Northern hybridization analyses indicated that, as for the C. albicans homologs, IoGAS1 expression was pH-dependent, with expression increasing with decreasing pH (from 4.0 to 2.0) of the medium. …”
Publicado 2016
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8238por Wijenayake, A. U., Abayasekara, C. L., Pitawala, H. M. T. G. A., Bandara, B. M. R.“…All tested components were inactive against C. albicans. Common mineral constituents of drugs are cinnabar, biotite and Fe-rich phases. …”
Publicado 2016
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8239por AbdelKhalek, Ahmed, Ashby, Charles R., Patel, Bhargav A., Talele, Tanaji T., Seleem, Mohamed N.“…In this study, we determined the spectrum of activity of seven rhodanine derivatives (compounds Rh 1–7) against clinical isolates of Gram-positive and Gram-negative bacterial strains and Candida albicans. We also synthesized and tested three additional compounds, ethyl ester and amide of rhodanine 2 (Rh 8 and Rh 10, respectively) and ethyl ester of rhodanine 3 (Rh 9) to determine the significance of the carboxyl group modification towards antibacterial activity and human serum albumin binding. …”
Publicado 2016
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8240por Neto, João X.S., Pereira, Mirella L., Oliveira, Jose T. A., Rocha-Bezerra, Lady C. B., Lopes, Tiago D. P., Costa, Helen P. S., Sousa, Daniele O. B., Rocha, Bruno A. M., Grangeiro, Thalles B., Freire, José E. C., Monteiro-Moreira, Ana Cristina O., Lobo, Marina D. P., Brilhante, Raimunda S. N., Vasconcelos, Ilka M.“…In addition, Mo-CBP(2) (18.90 μM) increased the cell membrane permeabilization and reactive oxygen species production in C. albicans and promoted degradation of circular plasmid DNA (pUC18) from Escherichia coli. …”
Publicado 2017
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