Key result
Engineered neutrophil apoptotic bodies loaded with hexyl 5-aminolevulinate hydrochloride effectively targeted macrophages, promoted anti-inflammatory polarization, and ameliorated cardiac function in a rat model of myocardial infarction.
Why the study?
Neutrophil apoptosis and macrophage ingestion promote inflammation resolution and regeneration after MI, but therapeutic strategies simulating and enhancing this process have not been established.
Engineered neutrophil apoptotic bodies loaded with HAL can modulate inflammation and improve cardiac function in a preclinical model of myocardial infarction.
Hypothesis-generating for post-MI inflammation modulation; clinical translation requires prospective human trials.
Inflammatory response plays a critical role in myocardial infarction (MI) repair. The neutrophil apoptosis and subsequent macrophage ingestion can result in inflammation resolution and initiate regeneration, while the therapeutic strategy that simulates and enhances this natural process has not been established. Here, we constructed engineered neutrophil apoptotic bodies (eNABs) to simulate natural neutrophil apoptosis, which regulated inflammation response and enhanced MI repair. The eNABs were fabricated by combining natural neutrophil apoptotic body membrane which has excellent inflammation-tropism and immunoregulatory properties, and mesoporous silica nanoparticles loaded with hexyl 5-aminolevulinate hydrochloride (HAL). The eNABs actively targeted to macrophages and the encapsulated HAL simultaneously initiated the biosynthesis pathway of heme to produce anti-inflammatory bilirubin after intracellular release, thereby further enhancing the anti-inflammation effects. In in vivo studies, the eNABs efficiently modulated inflammation responses in the infarcted region to ameliorate cardiac function. This study demonstrates an effective biomimetic construction strategy to regulate macrophage functions for MI repair.
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Bao et al. (2021) studied Myocardial Infarction. Engineered neutrophil apoptotic bodies loaded with hexyl 5-aminolevulinate hydrochloride (eNABHAL) vs. PBS, eNABnull, or MSNHAL was evaluated on Cardiac function (LVEF and LVFS) and inflammation resolution. Engineered neutrophil apoptotic bodies loaded with hexyl 5-aminolevulinate hydrochloride effectively targeted macrophages, promoted anti-inflammatory polarization, and ameliorated cardiac function in a rat model of myocardial infarction.
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