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Active Antioxidizing Particles for On-Demand Pressure-Driven Molecular Release

机译:用于按需压力驱动的分子释放的活性抗氧化颗粒

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摘要

Overproduced reactive oxygen species (ROS) are closely related to various health problems including inflammation, infection, and cancer. Abnormally high ROS levels can cause serious oxidative damage to biomolecules, cells, and tissues. A series of nano- or microsized particles has been developed to reduce the oxidative stress level by delivering antioxidant drugs. However, most systems are often plagued by slow molecular discharge, driven by diffusion. Herein, this study demonstrates the polymeric particles whose internal pressure can increase upon exposure to H2O2, one of the ROS, and in turn, discharge antioxidants actively. The on-demand pressurized particles are assembled by simultaneously encapsulating water-dispersible manganese oxide (MnO2) nanosheets and green tea derived epigallocatechin gallate (EGCG) molecules into a poly(lactic-co-glycolic acid) (PLGA) spherical shell. In the presence of H2O2, the MnO2 nanosheets in the PLGA particle generate oxygen gas by decomposing H2O2 and increase the internal pressure. The pressurized PLGA particles release antioxidative EGCG actively and, in turn, protect vascular and brain tissues from oxidative damage more effectively than the particles without MnO2 nanosheets. This H2O2 responsive, self-pressurizing particle system would be useful to deliver a wide array of molecular cargos in response to the oxidation level.
机译:过度的反应性氧(ROS)与各种健康问题密切相关,包括炎症,感染和癌症。异常高的ROS水平可对生物分子,细胞和组织造成严重的氧化损伤。已经开发了一系列纳米或微晶颗粒以通过递送抗氧化药物来降低氧化应激水平。然而,大多数系统通常被扩散驱动的分子放电慢。这里,该研究证明了其内部压力在暴露于H 2 O 2的内部压力,其中一种ROS和反过来的放电抗氧化剂的聚合物颗粒。通过将水分散性锰氧化物(MNO2)纳米片和绿茶衍生的EPIGALLOCATECHIN本糖酸酯(EGCG)分子同时包封在氧化物 - 共乙酰乙醇酸)(PLGA)球形壳中。在H 2 O 2的存在下,PLGA颗粒中的MNO2纳米晶片通过分解H 2 O 2产生氧气并增加内部压力。加压的PLGA颗粒主动释放抗氧化EGCG,并且又保护血管和脑组织的氧化损伤,比没有MNO2纳米片的颗粒更有效地保护。这种H2O2响应性,自加压颗粒系统可用于响应于氧化水平提供各种分子尸体。

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