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辐射增强单核细胞作为纳米颗粒载体用于癌症治疗的能力。

Irradiation Enhances the Ability of Monocytes as Nanoparticle Carrier for Cancer Therapy.

作者信息

Jiang Pei-Shin, Yu Ching-Fang, Yen Chia-Yi, Woo Christopher William, Lo Shao-Hua, Huang Yu-Kuan, Hong Ji-Hong, Chiang Chi-Shiun

机构信息

Department of Biomedical Engineering and Environmental Sciences, National Tsing-Hua University, Hsinchu, Taiwan.

Department of Radiation Oncology, Chang Gung Memorial Hospital at Linkou, Taoyuan, Taiwan; Radiation Biology Research Center, Institute for Radiological Research, Chang Gung University / Chang Gung Memorial Hospital, Linkou, Taoyuan, Taiwan.

出版信息

PLoS One. 2015 Sep 29;10(9):e0139043. doi: 10.1371/journal.pone.0139043. eCollection 2015.

Abstract

The tumor-homing ability of monocytes renders them a potential cellular delivery system for alternative cancer therapies, although their migratory ability can be impaired following reagent uptake. Approaches that enhance monocyte tumor homing and promote their migration will improve the clinical value of these cells as cellular carriers. Previous studies have shown that irradiation (IR) can promote macrophage aggregation in hypoxic regions. To investigate whether IR enhances the infiltration of bone marrow-derived monocytes (BMDMs) into tumors, the infiltration of BMDMs from GFP-transgenic mice in a murine prostate adenocarcinoma TRAMP-C1 model was examined by fluorescence microscopy. IR did not increase the number of BMDMs that infiltrated initially, but did increase monocyte retention within IR-treated tumors for up to 2 weeks. We also showed that BMDMs can take up various imaging and therapeutic agents, although the mobility of BMDMs decreased with increasing load. When BMDMs were differentiated in IR-treated tumor-conditioned medium (IR-CM) in vitro, the nanoparticle load-mediated inhibition of migration was attenuated. These IR-CM-differentiated BMDMs delivered polymer vesicles encapsulating doxorubicin to radiation therapy (RT)-induced hypoxic tumor regions, and enhanced the efficacy of RT. The prolonged retention of monocytes within irradiated tumor tissues and the ability of IR-CM to enhance the migratory ability of cargo-laden BMDMs suggest that monocytes pre-conditioned by IR-CM can potentially act as cellular carriers for targeted therapy following conventional RT.

摘要

单核细胞的肿瘤归巢能力使其成为替代癌症疗法的潜在细胞递送系统,尽管在摄取试剂后其迁移能力可能会受到损害。增强单核细胞肿瘤归巢并促进其迁移的方法将提高这些细胞作为细胞载体的临床价值。先前的研究表明,辐射(IR)可促进巨噬细胞在缺氧区域聚集。为了研究IR是否能增强骨髓来源的单核细胞(BMDM)向肿瘤的浸润,通过荧光显微镜检查了GFP转基因小鼠的BMDM在小鼠前列腺腺癌TRAMP-C1模型中的浸润情况。IR并未增加最初浸润的BMDM数量,但确实增加了经IR处理的肿瘤内单核细胞的滞留时间,长达2周。我们还表明,BMDM可以摄取各种成像和治疗剂,尽管随着负载增加,BMDM的迁移能力下降。当BMDM在体外经IR处理的肿瘤条件培养基(IR-CM)中分化时,纳米颗粒负载介导的迁移抑制作用减弱。这些经IR-CM分化的BMDM将包裹阿霉素的聚合物囊泡递送至放射治疗(RT)诱导的缺氧肿瘤区域,并增强了RT的疗效。单核细胞在受照射肿瘤组织中的长时间滞留以及IR-CM增强负载货物的BMDM迁移能力的作用表明,经IR-CM预处理的单核细胞有可能作为传统RT后靶向治疗的细胞载体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13b9/4587928/fd7b92537a02/pone.0139043.g001.jpg

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