Nanocapsule-mediated sustained H<sub>2</sub> release in the gut ameliorates metabolic dysfunction-associated fatty liver disease.

Jin, Zhaokui; Sun, Yuan; Yang, Tian; Tan, Lunbo; Lv, Peixun; Xu, Qingqing; Tao, Geru; Qin, Shucun et al. · Biomaterials · 2021

basic_science · Level V

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Abstract

Metabolic dysfunction-associated fatty liver disease (MAFLD) is estimated to affect a quarter of all population and represents a major health threat to all societies. Yet, currently no approved pharmacological treatment is available for MAFLD. H<sub>2</sub>-rich water has recently been reported to reduce hepatic lipid accumulation in MAFLD patients but its efficacy is limited due to low H<sub>2</sub> dosage. Increasing H<sub>2</sub> dose may enhance its therapeutic effects but remains technically challenging. In this study, we designed and synthesized a hydrogen nanocapsule by encapsulating ammonia borane into hollow mesoporous silica nanoparticles to achieve ultrahigh and sustained H<sub>2</sub> release in the gut. We then investigated its efficacy in treating early-stage MAFLD and other metabolic dysfunctions such as obesity and diabetes. The hydrogen nanocapsule attenuated both diet-induced and genetic mutation induced early-stage MAFLD, obesity, and diabetes in mice, without any tissue toxicity. Mechanistically, we discovered that sustained and ultrahigh H<sub>2</sub> supply by hydrogen nanocapsule increased, among other species, the abundance of Akkermansia muciniphila, highlighting reshaped gut microbiota as a potential mechanism of H<sub>2</sub> in treating metabolic dysfunctions. Moreover, hepatic transcriptome showed a reprogramed liver metabolism profile with reduced lipid synthesis and increased fatty acid metabolism.

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