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利用安全的上转换纳米平台的双靶点肽引导方法实现精准递送与癌症监测

Dual-Targeting Peptide-Guided Approach for Precision Delivery and Cancer Monitoring by Using a Safe Upconversion Nanoplatform.

作者信息

Zha Shuai, Chau Ho-Fai, Chau Wai Yin, Chan Lai Sheung, Lin Jun, Lo Kwok Wai, Cho William Chi-Shing, Yip Yim Ling, Tsao Sai Wah, Farrell Paul J, Feng Liang, Di Jin Ming, Law Ga-Lai, Lung Hong Lok, Wong Ka-Leung

机构信息

Department of Chemistry, Hong Kong Baptist University, 224 Waterloo Road, Kowloon, Hong Kong SAR, 000000, P. R. China.

Department of Biology, Hong Kong Baptist University, 224 Waterloo Road, Kowloon, Hong Kong SAR, 000000, P. R. China.

出版信息

Adv Sci (Weinh). 2021 Jan 6;8(5):e2002919. doi: 10.1002/advs.202002919. eCollection 2021 Mar.

Abstract

Using Epstein-Barr virus (EBV)-induced cancer cells and HeLa cells as a comparative study model, a novel and safe dual-EBV-oncoproteins-targeting pH-responsive peptide engineering, coating, and guiding approach to achieve precision targeting and treatment strategy against EBV-associated cancers is introduced. Individual functional peptide sequences that specifically bind to two overexpressed EBV-specific oncoproteins, EBNA1 (a latent cellular protein) and LMP1 (a transmembrane protein), are engineered in three different ways and incorporated with a pH-sensitive tumor microenvironment (TME)-cleavable linker onto the upconversion nanoparticles (UCNP) NaGdF:Yb, Er@NaGdF (UCNP-P , = 5, 6, and 7). A synergistic combination of the transmembrane LMP1 targeting ability and the pH responsiveness of UCNP-P is found to give specific cancer differentiation with higher cellular uptake and accumulation in EBV-infected cells, thus a lower dose is needed and the side effects and health risks from treatment would be greatly reduced. It also gives responsive UC signal enhancement upon targeted dual-protein binding and shows efficacious EBV cancer inhibition in vitro and in vivo. This is the first example of simultaneous imaging and inhibition of two EBV latent proteins, and serves as a blueprint for next-generation peptide-guided precision delivery nanosystem for the safe monitoring and treatment against one specific cancer.

摘要

利用爱泼斯坦-巴尔病毒(EBV)诱导的癌细胞和HeLa细胞作为比较研究模型,介绍了一种新颖且安全的靶向EBV两种癌蛋白的pH响应性肽工程、包被和引导方法,以实现针对EBV相关癌症的精准靶向和治疗策略。以三种不同方式设计了分别特异性结合两种过表达的EBV特异性癌蛋白EBNA1(一种潜伏细胞蛋白)和LMP1(一种跨膜蛋白)的单个功能肽序列,并将其与pH敏感的肿瘤微环境(TME)可裂解连接体结合到上转换纳米颗粒(UCNP)NaGdF:Yb, Er@NaGdF(UCNP-P , = 5、6和7)上。发现跨膜LMP1靶向能力与UCNP-P的pH响应性的协同组合可在EBV感染的细胞中实现具有更高细胞摄取和积累的特异性癌症分化,因此所需剂量更低,治疗的副作用和健康风险将大大降低。它还在靶向双蛋白结合时实现响应性UC信号增强,并在体外和体内显示出有效的EBV癌症抑制作用。这是同时成像和抑制两种EBV潜伏蛋白的首个实例,并为用于安全监测和治疗一种特定癌症的下一代肽引导精准递送纳米系统提供了蓝图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bc2/7927616/ffa14d4e9c1e/ADVS-8-2002919-g003.jpg

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