Nanomedicine has long pursued the goal of targeted delivery to specific organs and cell types but has yet to achieve this goal with the vast majority of targets. One rare example of success in this pursuit has been the 25+ years of studies targeting the lung endothelium using nanoparticles conjugated to antibodies against endothelial surface molecules. However, here we show that such "endothelial-targeted" nanocarriers also effectively target the lungs' numerous marginated neutrophils, which reside in the pulmonary capillaries and patrol for pathogens. We show that marginated neutrophils' uptake of many of these "endothelial-targeted" nanocarriers is on par with endothelial uptake. This generalizes across diverse nanomaterials and targeting moieties and was even found with physicochemical lung tropism (i.e., without targeting moieties). Further, we observed this in ex vivo human lungs and in vivo healthy mice, with an increase in marginated neutrophil uptake of nanoparticles caused by local or distant inflammation. These findings have implications for nanomedicine development for lung diseases. These data also suggest that marginated neutrophils, especially in the lungs, should be considered a major part of the reticuloendothelial system (RES), with a special role in clearing nanoparticles that adhere to the lumenal surfaces of blood vessels.
Marginated Neutrophils in the Lungs Effectively Compete for Nanoparticles Targeted to the Endothelium, Serving as a Part of the Reticuloendothelial System.
肺部边缘中性粒细胞有效地竞争靶向内皮的纳米颗粒,作为网状内皮系统的一部分发挥作用
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作者:Zamora Marco E, Essien Eno-Obong, Bhamidipati Kartik, Murthy Aditi, Liu Jing, Kim Hyunjun, Patel Manthan N, Nong Jia, Wang Zhicheng, Espy Carolann, Chaudhry Fatima N, Ferguson Laura T, Tiwari Sachchidanand, Hood Elizabeth D, Marcos-Contreras Oscar A, Omo-Lamai Serena, Shuvaeva Tea, Arguiri Evguenia, Wu Jichuan, Rauova Lubica, Poncz Mortimer, Basil Maria C, Cantu Edward, Planer Joseph D, Spiller Kara, Zepp Jarod, Muzykantov Vladimir R, Myerson Jacob W, Brenner Jacob S
| 期刊: | ACS Nano | 影响因子: | 16.000 |
| 时间: | 2024 | 起止号: | 2024 Aug 20; 18(33):22275-22297 |
| doi: | 10.1021/acsnano.4c06286 | 研究方向: | 细胞生物学 |
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