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用于超长肿瘤滞留和高度异质性癌症精确光热治疗的肿瘤定制二维超分子纳米盘

Tumor Customized 2D Supramolecular Nanodiscs for Ultralong Tumor Retention and Precise Photothermal Therapy of Highly Heterogeneous Cancers.

作者信息

Lin Peng, Xue Yucheng, Mu Xueluer, Shao Youyou, Lu Qian, Jin Xiangang, Yinwang Eloy, Zhang Zengjie, Zhou Hao, Teng Wangsiyuan, Sun Hangxiang, Chen Weida, Shi Wei, Shi Cangyi, Zhou Xianfeng, Jiang Xuesheng, Yu Xiaohua, Ye Zhaoming

机构信息

Orthopedics Research Institute of Zhejiang University, Department of Orthopedic Surgery, The Second Affiliated Hospital Zhejiang University School of Medicine, Hangzhou, 310000, P. R. China.

Key Laboratory of Motor System Disease Research and Precision Therapy of Zhejiang Province, Hangzhou, Zhejiang, 310000, P. R. China.

出版信息

Small. 2022 May;18(21):e2200179. doi: 10.1002/smll.202200179. Epub 2022 Apr 8.

Abstract

Target therapy for highly heterogeneous cancers represents a major clinical challenge due to the lack of recurrent therapeutic targets identified in these tumors. Herein, the authors report a tumor-customized targeting photothermal therapy (PTT) strategy for highly heterogeneous cancers, by which 2D supramolecular self-assembled nanodiscs are modified with tumor-specific binding peptides identified by phage display techniques. Taking osteosarcoma (OS) as a model heterogeneous cancer, an OS targeting peptide (OTP) is first selected after biopanning and is demonstrated to successfully bind to this heterogeneous cancer cells/tissues. Successful conjugation of OTP to heptamethine cyanine (Cy7)-based 2D nanodiscs Cy7-TCF (2-dicyanomethylene-3-cyano-4,5,5-trimethyl-2,5-dihydrofuran,TCF) enables the 2D nanodiscs to specifically target the heterogeneous tumor. Notably, a single dose injection of this targeted nanodisc (T-ND) not only effectively induces enhanced photothermal tumor ablation under near-infrared light, but also exhibits sevenfold increase of tumor retention time (more than 24 days) compared to generic nanomedicine. Thus, the authors' findings suggest that the combination of phage display-based affinity peptides selection and 2D supramolecular nanodiscs leads to the development of a platform technology for highly heterogeneous cancers precise therapy, offering specific tumor targeting, ultralong tumor retention, and precise PTT.

摘要

由于在这些肿瘤中缺乏已确定的复发性治疗靶点,针对高度异质性癌症的靶向治疗是一项重大的临床挑战。在此,作者报告了一种针对高度异质性癌症的肿瘤定制靶向光热疗法(PTT)策略,通过该策略,二维超分子自组装纳米盘用通过噬菌体展示技术鉴定的肿瘤特异性结合肽进行修饰。以骨肉瘤(OS)作为模型异质性癌症,首先通过淘选筛选出一种OS靶向肽(OTP),并证明其能成功结合这种异质性癌细胞/组织。将OTP成功偶联到基于七甲川花菁(Cy7)的二维纳米盘Cy7-TCF(2-二氰基亚甲基-3-氰基-4,5,5-三甲基-2,5-二氢呋喃,TCF)上,使二维纳米盘能够特异性靶向异质性肿瘤。值得注意的是,单次注射这种靶向纳米盘(T-ND)不仅能在近红外光下有效诱导增强的光热肿瘤消融,而且与普通纳米药物相比,其肿瘤滞留时间增加了七倍(超过24天)。因此,作者的研究结果表明,基于噬菌体展示的亲和肽筛选与二维超分子纳米盘的结合导致了一种用于高度异质性癌症精确治疗的平台技术的开发,该技术具有特异性肿瘤靶向、超长肿瘤滞留和精确PTT的特点。

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