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用于通过双模态计算机断层扫描和荧光成像标记和追踪T细胞的多功能树枝状大分子包裹金纳米颗粒

Multifunctional Dendrimer-Entrapped Gold Nanoparticles for Labeling and Tracking T Cells Via Dual-Modal Computed Tomography and Fluorescence Imaging.

作者信息

Chen Meixiu, Betzer Oshra, Fan Yu, Gao Yue, Shen Mingwu, Sadan Tamar, Popovtzer Rachela, Shi Xiangyang

机构信息

State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, International Joint Laboratory for Advanced Fiber and Low-dimension Materials, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, P. R. China.

Faculty of Engineering and the Institute of Nanotechnology & Advanced Materials, Bar-Ilan University, Ramat Gan 5290002, Israel.

出版信息

Biomacromolecules. 2020 Apr 13;21(4):1587-1595. doi: 10.1021/acs.biomac.0c00147. Epub 2020 Mar 24.

Abstract

Nanosystems for monitoring and tracking T cells provide an important basis for evaluating the functionality and efficacy of T cell-based immunotherapy. To this end, we designed herein an efficient nanoprobe for T cell monitoring and tracking using poly(amidoamine) (PAMAM) dendrimer-entrapped gold nanoparticles (Au DENPs) conjugated with Fluo-4 for dual-mode computed tomography (CT) and fluorescence imaging. In this study, PAMAM dendrimers of generation 5 (G5) were modified with hydroxyl-terminated polyethylene glycol (PEG) and then used to entrap 2.0 nm Au NPs followed by acetylation of the excess amine groups on the dendrimer surface. Subsequently, the calcium ion probe was covalently attached to the dendrimer nanohybrids through the PEG hydroxyl end groups to gain the functional {(Au)-G5.NHAc-(PEG)-(Fluo-4)} nanoprobe. This nanoprobe had excellent water solubility, high X-ray attenuation coefficient, and good cytocompatibility in the given concentration range, as well as a high T cell labeling efficiency. Confocal microscopy and flow cytometry results demonstrated that the nanoprobe was able to fluorescently sense activated T cells. Moreover, the nanoprobe was able to realize both CT and fluorescence imaging of subcutaneously injected T cells in vivo. Thus, the developed novel dendrimer-based nanosystem may hold great promise for advancing and improving the clinical application of T cell-based immunotherapy.

摘要

用于监测和追踪T细胞的纳米系统为评估基于T细胞的免疫疗法的功能和疗效提供了重要依据。为此,我们在此设计了一种高效的纳米探针,用于使用与Fluo-4共轭的聚(酰胺胺)(PAMAM)树枝状大分子包裹的金纳米颗粒(Au DENPs)对T细胞进行监测和追踪,以实现双模态计算机断层扫描(CT)和荧光成像。在本研究中,第5代(G5)PAMAM树枝状大分子用羟基封端的聚乙二醇(PEG)进行修饰,然后用于包裹2.0 nm的金纳米颗粒,随后对树枝状大分子表面的过量胺基进行乙酰化。随后,通过PEG羟基端基将钙离子探针共价连接到树枝状大分子纳米杂化物上,以获得功能性{(Au)-G5.NHAc-(PEG)-(Fluo-4)}纳米探针。该纳米探针在给定浓度范围内具有优异的水溶性、高X射线衰减系数和良好的细胞相容性,以及高T细胞标记效率。共聚焦显微镜和流式细胞术结果表明,该纳米探针能够荧光检测活化的T细胞。此外,该纳米探针能够在体内实现皮下注射T细胞的CT和荧光成像。因此,所开发的新型基于树枝状大分子的纳米系统在推进和改善基于T细胞的免疫疗法的临床应用方面可能具有巨大潜力。

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