4.6 Article

Bacteria-Loaded Gastro-Retention Oral Delivery System for Alcohol Abuse

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ACS BIOMATERIALS SCIENCE & ENGINEERING
卷 9, 期 3, 页码 1460-1471

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AMER CHEMICAL SOC
DOI: 10.1021/acsbiomaterials.3c00009

关键词

oral delivery; bacteria-loaded; gastro-retention; alcohol abuse

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This study reported a new strategy of directly decreasing alcohol absorption by utilizing bacteria in the upper gastrointestinal (GI) tract. The researchers constructed a bacteria-loaded gastro-retention oral delivery system with a pore structure, which successfully relieved acute alcohol intoxication in mice. The system displayed good protection for the bacteria, decreased alcohol concentration, and reduced alcohol absorption in vitro and in vivo experiments, suggesting its potential in the treatment of alcohol abuse.
Alcohol abuse is harmful to human health, and many strategies have been developed to retard this harm through protecting liver or activating relative enzymes. In this study, a new strategy of decreasing the alcohol absorption directly depending on the dealcoholization by the bacteria in the upper gastrointestinal (GI) tract was reported. To realize this, a bacteria-loaded gastro-retention oral delivery system with pore structure was constructed through emulsification/internal gelation, which could relieve acute alcohol intoxication in mice successfully. It was found that this bacteria-loaded system kept the above 30% suspension ratio in the simulated gastric fluid for 4 min, displayed good protection effect for the bacteria, and decreased the alcohol concentration from 50 to 30% below within 24 h in vitro. The in vivo imaging results demonstrated that it remained in the upper GI tract until 24 hand reduced 41.9% alcohol absorption. The mice with oral administration of the bacteria-loaded system were found with normal gait, smooth coat, and less liver damage. Although the intestinal flora distribution was influenced slightly during the oral administration, it could restore to normal levels only one day after stopping oral administration quickly, suggesting good biosafety. In conclusion, these results revealed that the bacteria-loaded gastro-retention oral delivery system might intake alcohol molecules rapidly and has huge potential in the treatment of alcohol abuse.

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