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Bacteroides fragilis Supernatant Extracts Enriched in Phenylacetic Acid Induce a Cytotoxic Effect in Mammalian Cells
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作者 Laís S.Falcao Eduardo N.F.Antunes +9 位作者 Eliane O.Ferreira Heidi Pauer Maria Teresa V.Romanos Rossiane C.Vommaro Sérgio H.Seabra Daniela S.Alviano Celuta S.Alviano Antonio Jorge R.da Silva Leandro A.Lobo Regina Maria C.P.Domingues 《Advances in Microbiology》 2015年第10期730-736,共7页
Bacteroides species are nearly half of the fecal flora community and some are host symbionts crucial to host nutrition and systemic immunity. Among Bacteroides species B. fragilis strains are considered to be the oppo... Bacteroides species are nearly half of the fecal flora community and some are host symbionts crucial to host nutrition and systemic immunity. Among Bacteroides species B. fragilis strains are considered to be the opportunistic ones, being the most isolated anaerobic bacteria in clinical samples. Cell-free supernatants of 65 B. fragilis strains were assayed and they were capable of inducing vacuolating phenotype on Vero cells lineage. The supernatant of the Bacteroides fragilis ATCC 23745 strain was elicited to have the strongest vacuolating effect on Vero cells monolayers and peritoneal macrophages. Some drastic cell alterations were observed, such as a general disorganization of cytoplasm and chromatin condensation, evidencing cell death. By transmission electron microscopy it was confirmed that the vacuoles observed were, in fact, swollen mitochondria. An immunocytochemical assay, TUNEL, was used to confirm this hypothesis and showed that Vero cells and peritoneal macrophages were dying by apoptotic process after exposition of B. fragilis cell-free supernatant. Physical analysis of the apoptotic factor has revealed properties similar to short-chain fatty acids. After gas chromatography and mass spectrometry analysis, phenylacetic acid (PA) was characterized as the major compound present in the most purified active fraction. We believe that the PA is responsible for the pro-apoptotic effect elicited by the supernatant of B. fragilis cultures. 展开更多
关键词 Bacteroides fragilis Vacuolization APOPTOSIS Vero cells Lineage Peritoneal Macrophages Phenylacetic Acid
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Neuroprotection induced by NMDA preconditioning as a strategy to understand brain tolerance mechanism
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作者 Leandra C.Constantino Samuel Vandresen-Filho Carla I.Tasca 《Neural Regeneration Research》 SCIE CAS CSCD 2015年第4期542-543,共2页
Excitotoxicity refers to toxicity caused by abnormal concentrations of glutamate in the synaptic cleft that may lead to neuronal death.Since its description,the phenomenon of glutamatergic excitotoxicity has been impl... Excitotoxicity refers to toxicity caused by abnormal concentrations of glutamate in the synaptic cleft that may lead to neuronal death.Since its description,the phenomenon of glutamatergic excitotoxicity has been implicated in the physiopathology of a wide range of neurological and psychiatric disorders,from acute brain 展开更多
关键词 神经保护 NMDA 耐受机制 阿尔茨海默氏病 预处理 兴奋性毒性 谷氨酸受体 帕金森氏症
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