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一种用于木质素衍生化合物和全氟碳的共递纳米平台,用于调节肿瘤微环境中的白介素-25 分泌和氧水平,以改善肿瘤放射治疗。

A co-delivery nanoplatform for a lignan-derived compound and perfluorocarbon tuning IL-25 secretion and the oxygen level in tumor microenvironments for meliorative tumor radiotherapy.

机构信息

Laboratory of Stem Cell Biology, and Huaxi MR Research Center (HMRRC), Department of Radiology, National Clinical Research Center for Geriatrics, West China Hospital, Sichuan University, Chengdu 610041, China.

出版信息

Nanoscale. 2021 Aug 28;13(32):13681-13692. doi: 10.1039/d1nr03738b. Epub 2021 Aug 6.

Abstract

A hypoxic environment in tumors hampers the therapeutic efficacy of radiotherapy. Moreover, radiotherapy, a localized treatment technique, can barely control tumor metastases. Herein, poly(lactic-co-glycolic acid) was used to encapsulate perfluorocarbon (PFC) for increasing the oxygen level and a lignan-derived compound (Q1) for enhancing IL-25 secretion from fibroblasts, thereby boosting the radiotherapeutic effect on local and distant tumors. The prepared co-delivery nanoplatform, PFC-Q1@PLGA, has a nano-scale size of around 160 nm and a negative zeta potential (about -13 mV). PFC-Q1@PLGA treatment leads to an arrest of the G2 phase (4n) in the cell cycle and reduces the mitochondria membrane potential. A high expression level of IL-25 in fibroblasts is detected after the cells are treated with PFC-Q1@PLGA, which increases the late apoptosis percentage of 4T1 cells after treatment with IL-25-containing conditional medium from fibroblasts. The oxygen level in tumors is significantly promoted to about 52.3% after injection of oxygen-saturated PFC-Q1@PLGA (O), which is confirmed from the functional magnetic resonance images of the tumor site in mice. The in vivo study demonstrates that the injection of PFC-Q1@PLGA (O) into local tumors significantly enhances the radiotherapeutic effect on local tumors and also inhibits the growth of remote tumors by an enhanced abscopal effect. This study presents a novel radiotherapy strategy to enable synergistic whole-body therapeutic responses after localized treatment with PFC-Q1@PLGA (O).

摘要

肿瘤中的缺氧环境会阻碍放射疗法的疗效。此外,放射疗法作为一种局部治疗技术,几乎无法控制肿瘤转移。在此,我们使用聚(乳酸-共-乙醇酸)(PLGA)包裹全氟化碳(PFC)以提高氧水平,并使用一种木脂素衍生化合物(Q1)增强成纤维细胞中 IL-25 的分泌,从而增强局部和远处肿瘤的放射治疗效果。所制备的共递送纳米平台 PFC-Q1@PLGA 的尺寸约为 160nm,具有负的 zeta 电位(约-13mV)。PFC-Q1@PLGA 处理会导致细胞周期中 G2 期(4n)停滞,并降低线粒体膜电位。用 PFC-Q1@PLGA 处理细胞后,检测到成纤维细胞中 IL-25 的高表达水平,这增加了用含有 IL-25 的条件培养基处理后 4T1 细胞的晚期凋亡百分比。肿瘤中的氧水平经注射氧饱和的 PFC-Q1@PLGA(O)后显著提高至约 52.3%,这从荷瘤小鼠肿瘤部位的功能磁共振成像中得到证实。体内研究表明,局部注射 PFC-Q1@PLGA(O)可显著增强局部肿瘤的放射治疗效果,并通过增强的远隔效应抑制远处肿瘤的生长。这项研究提出了一种新的放射治疗策略,可在局部治疗 PFC-Q1@PLGA(O)后实现协同的全身治疗反应。

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