Article
Resveratrol-Loaded Lipid-Core Nanocapsules Modulate Acute Lung Inflammation and Oxidative Imbalance Induced by LPS in Mice
Registro en:
OLIVEIRA, Maria Talita Pacheco de et al. Resveratrol-Loaded Lipid-Core Nanocapsules Modulate Acute Lung Inflammation and Oxidative Imbalance Induced by LPS in Mice. Pharmaceutics, v. 13, n.683, 17 p, May 2021.
1999-4923
10.3390/pharmaceuthics13050683
Autor
Oliveira, Maria Talita Pacheco de
Coutinho, Diego de Sá
Guterres, Sílvia Stanisçuaski
Pohlmann, Adriana Raffin
Silva, Patrícia Machado Rodrigues e
Martins, Marco Aurélio
Bernardi, Andressa
Resumen
Acute lung injury (ALI) and acute respiratory distress syndrome (ARDS) are inflammatory
and oxidative imbalance lung conditions with no successful pharmacological therapy and a high
mortality rate. Resveratrol (RSV) is a plant-derived stilbene that presents anti-inflammatory and an tioxidant effects. However, its therapeutic application remains limited due to its poor bioavailability,
which can be solved by the use of nanocarriers. Previously, we demonstrated that nanoencapsulated
RSV (RSV-LNC) pre-treatment, performed 4 h before lipopolysaccharide (LPS) stimulation in mice,
increased its anti-inflammatory properties. In this study, we evaluated the anti-inflammatory and
antioxidant effects, and lung distribution of RSV-LNCs administered therapeutically (6 h post LPS
exposure) in a lung injury mouse model. The results showed that RSV-LNCs posttreatment improved
lung function and diminished pulmonary inflammation. Moreover, RSV-LNC treatment enhanced
the antioxidant catalase level together with a decrease in the oxidative biomarker in mouse lungs,
which was accompanied by an increase in pulmonary Nrf2 antioxidant expression. Finally, the
presence of RSV in lung tissue was significantly detected when mice received RSV-LNCs but not
when they received RSV in its free form. Together, our results confirm that RSV nanoencapsulation
promotes an increase in RSV bioavailability, enhancing its therapeutic effects in an LPS-induced lung
injury model.