National Laboratory of Solid State Microstructures, Collaborative Innovation Center of Advanced Microstructures, School of Physics, Nanjing University, Nanjing 210093, China.
National Laboratory of Solid State Microstructures, Collaborative Innovation Center of Advanced Microstructures, Chemistry and Biomedicine Innovation Center, College of Engineering and Applied Sciences, Jiangsu Key Laboratory of Artificial Functional Materials, Nanjing University, Nanjing 210093, China.
ACS Nano. 2023 Sep 12;17(17):16461-16477. doi: 10.1021/acsnano.3c00227. Epub 2023 Aug 19.
Cytokine storm is a common complication of COVID-19 pneumonia and has been proven to contribute to high mortality rates. However, current treatment approaches exhibit limited potential to balance immune response and overproduction of inflammatory cytokines, leading to poor therapeutic outcomes. Herein, a smart bioengineered neutrophil, Extinguisher, composed of live neutrophils encapsulating the liposome formulation of NF-κB suppressor MLN4924 and STING inhibitor H-151 (Lip@MH), is developed for alleviating the hyperinflammatory cytokine storm. Extinguisher inherits motility and chemotaxis characteristics of neutrophils, allowing for the specific delivery and sustained release of Lip@MH within inflamed tissues. Subsequently, Lip@MH effectively transports anti-inflammatory agents into macrophages and synergistically inhibits inflammatory pathways of NF-κB and STING, leading to decreased production of cytokines. studies demonstrate that Extinguisher not only selectively accumulates at the site of pneumonia caused by -induced acute lung injury but inhibits the production of inflammatory factors through regulating NF-κB/STING signaling pathways, thereby effectively calming cytokine storm. Importantly, Extinguisher significantly improves therapeutic benefits and survival in mice with acute pneumonia. Therefore, Extinguisher represents an appropriate combination of cell therapy and immunoregulation for cytokine storm intervention and may bring insights into the treatment of COVID-19 pneumonia.
细胞因子风暴是 COVID-19 肺炎的常见并发症,已被证明可导致高死亡率。然而,目前的治疗方法在平衡免疫反应和过度产生炎症细胞因子方面表现出有限的潜力,导致治疗效果不佳。在此,开发了一种智能生物工程化中性粒细胞 Extinguisher,由封装 NF-κB 抑制剂 MLN4924 和 STING 抑制剂 H-151(Lip@MH)的脂质体配方的活中性粒细胞组成,用于缓解过度炎症细胞因子风暴。Extinguisher 继承了中性粒细胞的运动和趋化性特征,允许 Lip@MH 在炎症组织中特异性递送和持续释放。随后,Lip@MH 有效地将抗炎剂递送至巨噬细胞中,并协同抑制 NF-κB 和 STING 炎症途径,从而减少细胞因子的产生。研究表明,Extinguisher 不仅选择性地积累在由脂多糖诱导的急性肺损伤引起的肺炎部位,而且通过调节 NF-κB/STING 信号通路抑制炎症因子的产生,从而有效地平息细胞因子风暴。重要的是,Extinguisher 显著提高了急性肺炎小鼠的治疗效果和生存率。因此,Extinguisher 代表了细胞治疗和免疫调节的恰当结合,用于细胞因子风暴干预,并可能为 COVID-19 肺炎的治疗提供新的思路。