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1.
Int J Mol Sci ; 22(18)2021 Sep 11.
Artículo en Inglés | MEDLINE | ID: mdl-34575987

RESUMEN

Food-derived oligosaccharides show promising therapeutic potential in lowering blood pressure (BP), but the mechanism is poorly understood. Recently, the potential role of gut microbiota (GM) in hypertension has been investigated, but the specific GM signature that may participate in hypertension remains unclear. To test the potassium alginate oligosaccharides (PAO) mechanism in lowering BP and specific microbial signature changes in altering GM, we administered various dosages of PAO in 40 spontaneously hypertensive rats for a duration of six weeks. We analyzed BP, sequenced the 16S ribosomal DNA gene in the cecum content, and gathered RNA-seq data in cardiac tissues. We showed that the oral administration of PAO could significantly decrease systolic BP and mean arterial pressure. Transcriptome analyses demonstrated that the protective effects of developing heart failure were accompanied by down-regulating of the Natriuretic Peptide A gene expression and by decreasing the concentrations of angiotensin II and atrial natriuretic peptide in plasma. In comparison to the Vehicle control, PAO could increase the microbial diversity by altering the composition of GM. PAO could also decrease the ratio of Firmicutes to Bacteroidetes by decreasing the abundance of Prevotella and Phascolarctobacterium bacteria. The favorable effect of PAO may be added to the positive influence of the abundance of major metabolites produced by Gram-negative bacteria in GM. We suggest that PAO caused changes in GM, and thus, they played an important role in preventing the development of cardiovascular disease.


Asunto(s)
Alginatos/farmacología , Microbioma Gastrointestinal/efectos de los fármacos , Insuficiencia Cardíaca , Hipertensión , Oligosacáridos/farmacología , Animales , Insuficiencia Cardíaca/sangre , Insuficiencia Cardíaca/microbiología , Insuficiencia Cardíaca/fisiopatología , Insuficiencia Cardíaca/prevención & control , Hipertensión/sangre , Hipertensión/microbiología , Hipertensión/fisiopatología , Hipertensión/prevención & control , Masculino , Ratas , Ratas Endogámicas SHR
2.
Mar Drugs ; 17(3)2019 Mar 18.
Artículo en Inglés | MEDLINE | ID: mdl-30889794

RESUMEN

Alginate oligosaccharides (AlgO), agarose oligosaccharides (AO), and κ-carrageenan oligosaccharides (KCO) were obtained by specific enzymatic hydrolysis method. The molecular weight distributions of the three oligosaccharides were 1.0⁻5.0 kDa, 0.4⁻1.4 kDa, and 1.0⁻7.0 kDa, respectively. The culture medium was supplemented with the three oligosaccharides and fermented by pig fecal microbiota in vitro, for 24 h. Each oligosaccharide was capable of increasing the concentration of short-chain fatty acids (SCFAs), especially butyric acid, and altering the microbiota composition. Linear discriminant analysis effect size (LEfSe) analysis results showed that the opportunistic pathogenic bacteria Escherichia, Shigella, and Peptoniphilus, were significantly decreased in AlgO supplemented medium. AO could improve the gut microbiota composition by enriching the abundance of Ruminococcaceae, Coprococcus, Roseburia, and Faecalibacterium. Besides, KCO could increase the abundance of SCFA microbial producers and opportunistic pathogenic flora. Therefore, these results indicate that AlgO and AO can be used as gut microbial regulators and can potentially improve animal/human gastrointestinal health and prevent gut disease, whereas the physiological function of KCO needs further evaluation.


Asunto(s)
Organismos Acuáticos/química , Bacterias/efectos de los fármacos , Microbioma Gastrointestinal/efectos de los fármacos , Oligosacáridos/administración & dosificación , Prebióticos/administración & dosificación , Alginatos/administración & dosificación , Alginatos/química , Alginatos/aislamiento & purificación , Animales , Bacterias/aislamiento & purificación , Carragenina/administración & dosificación , Carragenina/química , Carragenina/aislamiento & purificación , Heces/microbiología , Hidrólisis , Oligosacáridos/química , Oligosacáridos/aislamiento & purificación , Phaeophyceae/química , Rhodophyta/química , Algas Marinas/química , Sefarosa/administración & dosificación , Sefarosa/química , Sefarosa/aislamiento & purificación , Porcinos
3.
Environ Pollut ; 247: 1064-1070, 2019 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-30823335

RESUMEN

Microcystin (MC) elimination is a global challenge that is necessary for the health of humans and ecosystems. Biodegradation of MC, one of the most environmental-friendly methods, had previously been focused on the aerobic condition. In this study, two enrichment cultures from Taihu sediments possessed high capacity for MC-leucine arginine (MC-LR) anaerobic biodegradation. Meanwhile, it was firstly found that MC-LR underwent similar degradation process under anaerobic conditions to that in aerobic condition. Furthermore, a novel degradation pathway, hydrolyzing of Ala-Mdha to form a new linear MC-LR intermediate, was proposed under anaerobic conditions. Combining MC-LR degradation with microbial community analysis, this study deduced that Candidatus Cloacamonas acidaminovorans str. Evry may play an important role in the degradation of MC-LR. These findings suggest an additional pathway involved in the environmental cycle of MC-LR, which implies that the biotransformation of MC-LR might play an important role in eliminating MC-LR in eutrophic lake sediments under anaerobic conditions.


Asunto(s)
Anaerobiosis , Bacterias/metabolismo , Biodegradación Ambiental , Biotransformación , Lagos/química , Microcistinas/metabolismo , China , Redes y Vías Metabólicas , Oxidación-Reducción
4.
Chemosphere ; 199: 138-146, 2018 May.
Artículo en Inglés | MEDLINE | ID: mdl-29433027

RESUMEN

Bensulfuron methyl (BSM), one of the most widely used herbicides in paddy soils, is frequently detected in natural and artificial aquatic systems. However, BSM transformation under methanogenic conditions has not been given sufficient attention. In this study, BSM elimination and transformation by anaerobic enrichment cultures were investigated. The results showed that BSM can be mineralized to methane through hydrolysis, adsorption, and biodegradation under a methanogenic environment. The adsorption led to protein static quenching in the extracellular polymeric substances (EPSs) of the enrichment cultures. Specifically, BSM mainly reacted with the amine, amide, amino acid, and amino sugar functional groups in proteins. BSM hydrolysis and biodegradation occurred through the breakage of the sulfonylurea bridge and sulfonyl amide linkage. The cleavage of the sulfonylurea bridge occurred in both hydrolysis and biodegradation, while the cleavage of the sulfonyl amide linkage only occurred in hydrolysis. These results elucidated the complex transformation of BSM under methanogenic conditions, which will advance the studies on sulfonylurea herbicide biotransformation and hazard assessment in the environment.


Asunto(s)
Biodegradación Ambiental , Compuestos de Sulfonilurea/química , Adsorción , Herbicidas/química , Hidrólisis , Metano/química , Microbiología del Suelo , Contaminantes del Suelo/metabolismo
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