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作为天然微飞行器的光学操控中性粒细胞

Optically Manipulated Neutrophils as Native Microcrafts .

作者信息

Liu Xiaoshuai, Gao Qing, Wu Shuai, Qin Haifeng, Zhang Tiange, Zheng Xianchuang, Li Baojun

机构信息

Institute of Nanophotonics, Jinan University, Guangzhou 511443, China.

出版信息

ACS Cent Sci. 2022 Jul 27;8(7):1017-1027. doi: 10.1021/acscentsci.2c00468. Epub 2022 Jul 13.

Abstract

As the first line of host defense against invading pathogens, neutrophils have an inherent phagocytosis capability for the elimination of foreign agents and target loading upon activation, as well as the ability to transmigrate across blood vessels to the infected tissue, making them natural candidates to execute various medical tasks . However, most of the existing neutrophil-based strategies rely on their spontaneous chemotactic motion, lacking in effective activation, rapid migration, and high navigation precision. Here, we report an optically manipulated neutrophil microcraft through the organic integration of endogenous neutrophils and scanning optical tweezers, functioning as a native biological material and wireless remote controller, respectively. The neutrophil microcrafts can be remotely activated by light and then navigated to the target position along a designated route, followed by the fulfillment of its task , such as active intercellular connection, targeted delivery of nanomedicine, and precise elimination of cell debris, free from the extra construction or modification of the native neutrophils. On the basis of the innate immunologic function of neutrophils and intelligent optical manipulation, the proposed neutrophil microcraft might provide new insight for the construction of native medical microdevices for drug delivery and precise treatment of inflammatory diseases.

摘要

作为宿主抵御入侵病原体的第一道防线,中性粒细胞具有内在的吞噬能力,可在激活时清除外来病原体并进行靶向负载,还具有穿越血管迁移至感染组织的能力,使其成为执行各种医学任务的天然候选者。然而,大多数现有的基于中性粒细胞的策略依赖于它们的自发趋化运动,缺乏有效的激活、快速迁移和高导航精度。在此,我们报道了一种通过内源性中性粒细胞与扫描光镊的有机整合构建的光控中性粒细胞微载体,它们分别作为天然生物材料和无线遥控器发挥作用。中性粒细胞微载体可以被光远程激活,然后沿着指定路线导航至目标位置,随后完成其任务,如主动细胞间连接、纳米药物的靶向递送以及精确清除细胞碎片,而无需对天然中性粒细胞进行额外的构建或修饰。基于中性粒细胞的固有免疫功能和智能光操控,所提出的中性粒细胞微载体可能为构建用于药物递送和炎症性疾病精确治疗的天然医学微器件提供新的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/165e/9336151/0c95539b58bc/oc2c00468_0001.jpg

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