Brannon Emma R, Piegols Logan D, Cady Gillian, Kupor Daniel, Chu Xueqi, Guevara M Valentina, Lima Mariana R N, Kanthi Yogendra, Pinsky David J, Uhrich Kathryn E, Eniola-Adefeso Omolola
Department of Chemical Engineering, University of Michigan, 2800 Plymouth Road, NCRC B28, Ann Arbor, MI, 48109, USA.
Division of Cardiovascular Medicine, Samuel and Jean Frankel Cardiovascular Center, University of Michigan, Ann Arbor, MI, 48109, USA.
Adv Healthc Mater. 2025 Feb;14(5):e2400443. doi: 10.1002/adhm.202400443. Epub 2024 Jun 19.
Neutrophils can contribute to inflammatory disease propagation via innate mechanisms intended for inflammation resolution. For example, neutrophil extracellular traps (NETs) are necessary for trapping pathogens but can contribute to clot formation and blood flow restriction, that is, ischemia. Currently, no therapeutics in the clinic directly target NETs despite the known involvement of NETs contributing to mortality and increased disease severity. Vascular-deployed particle-based therapeutics are a novel and robust alternative to traditional small-molecule drugs by enhancing drug delivery to cells of interest. This work designs a high-throughput assay to investigate the immunomodulatory behavior and functionality of salicylic acid-based polymer-based particle therapeutics against NETosis in human neutrophils. Briefly, this work finds that polymeric composition plays a role, and particle size can also influence rates of NETosis. Salicylate-based polymeric (Poly-SA) particles are found to functionally inhibit NETosis depending on the particle size and concentration exposed to neutrophils. This work demonstrates the high throughput method can help fast-track particle-based therapeutic optimization and design, more efficiently preparing this innovative therapeutics for the clinic.
中性粒细胞可通过旨在解决炎症的固有机制促进炎症性疾病的传播。例如,中性粒细胞胞外陷阱(NETs)对于捕获病原体是必要的,但会导致血栓形成和血流受限,即局部缺血。目前,尽管已知NETs会导致死亡率上升和疾病严重程度增加,但临床上尚无直接针对NETs的治疗方法。通过增强对目标细胞的药物递送,基于血管部署的颗粒疗法是传统小分子药物的一种新颖且强大的替代方法。这项工作设计了一种高通量检测方法,以研究基于水杨酸的聚合物颗粒疗法对人中性粒细胞NETosis的免疫调节行为和功能。简而言之,这项工作发现聚合物组成起作用,并且颗粒大小也会影响NETosis的速率。发现基于水杨酸盐的聚合物(Poly-SA)颗粒根据暴露于中性粒细胞的颗粒大小和浓度在功能上抑制NETosis。这项工作表明,高通量方法有助于快速推进基于颗粒的治疗优化和设计,更有效地为临床准备这种创新疗法。