Inhalation of acidic nanoparticles prevents doxorubicin cardiotoxicity through improvement of lysosomal function

吸入酸性纳米颗粒可通过改善溶酶体功能来预防阿霉素心脏毒性

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作者:Yohan Santin, Karina Formoso, Fraha Haidar, Maria Del Pilar Oreja Fuentes, Florence Bourgailh, Nesrine Hifdi, Karim Hnia, Yosra Doghri, Jessica Resta, Camille Champigny, Séverine Lechevallier, Maximin Détrait, Grégoire Cousin, Malik Bisserier, Angelo Parini, Frank Lezoualc'h, Marc Verelst, Jeanne Mi

Conclusion

Our findings demonstrate a pivotal role for lysosomal dysfunction in Dox-induced cardiomyopathy and highlight for the first time that pulmonary-driven NPs-PLGA administration is a promising strategy against anthracycline cardiotoxicity.

Methods

We designed novel poly(lactic-co-glycolic acid) (PLGA)-grafted silica nanoparticles (NPs) and investigated their therapeutic potential in the primary prevention of Dox cardiotoxicity in cardiomyocytes and mice.

Results

We showed that NPs-PLGA internalized rapidly in cardiomyocytes and accumulated inside the lysosomes. Mechanistically, NPs-PLGA restored lysosomal acidification in the presence of doxorubicin or bafilomycin A1, thereby improving lysosomal function and autophagic flux. Importantly, NPs-PLGA mitigated Dox-related mitochondrial dysfunction and oxidative stress, two main mechanisms of cardiotoxicity. In vivo, inhalation of NPs-PLGA led to effective and rapid targeting of the myocardium, which prevented Dox-induced adverse remodeling and cardiac dysfunction in mice.

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