Suppr超能文献

用于时间分辨成像诊断和光控癌症治疗的上转换光遗传学工程细菌系统

Upconversion Optogenetic Engineered Bacteria System for Time-Resolved Imaging Diagnosis and Light-Controlled Cancer Therapy.

作者信息

Zhang Yingying, Xue Xin, Fang Mingxi, Pang Gaoju, Xing Yujuan, Zhang Xinyu, Li Lianyue, Chen Qu, Wang Yuxin, Chang Jin, Zhao Peiqi, Wang Hanjie

机构信息

School of Medical Imaging, Xuzhou Medical University, Xuzhou, Jiangsu 221004, People's Republic of China.

School of Life Sciences, Tianjin University and Tianjin Engineering Center of Micro-Nano Biomaterials and Detection-Treatment Technology, Tianjin Key Laboratory of Function and Application of Biological Macromolecular Structures, Tianjin 300072, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2022 Oct 19;14(41):46351-46361. doi: 10.1021/acsami.2c14633. Epub 2022 Oct 6.

Abstract

Engineering bacteria can achieve targeted and controllable cancer therapy using synthetic biology technology and the characteristics of tumor microenvironment. Besides, the accurate tumor diagnosis and visualization of the treatment process are also vital for bacterial therapy. In this paper, a light control engineered bacteria system based on upconversion nanoparticles (UCNP)-mediated time-resolved imaging (TRI) was constructed for colorectal cancer theranostic and therapy. UCNP with different luminous lifetimes were separately modified with the tumor targeting molecule (folic acid) or anaerobic bacteria (Nissle 1917, EcN) to realize the co-localization of tumor tissues, thus improving the diagnostic accuracy based on TRI. In addition, blue light was used to induce engineered bacteria (EcN-pDawn-φx174E/TRAIL) lysis and the release of tumor apoptosis-related inducing ligand (TRAIL), thus triggering tumor cell death. and results indicated that this system could achieve accurate tumor diagnosis and light-controlled cancer therapy. EcN-pDawn-φx174E/TRAIL with blue light irradiation could inhibit 53% of tumor growth in comparison to that without blue light irradiation (11.8%). We expect that this engineered bacteria system provides a new technology for intelligent bacterial therapy and the construction of cancer theranostics.

摘要

工程菌可利用合成生物学技术和肿瘤微环境的特点实现靶向可控的癌症治疗。此外,准确的肿瘤诊断以及治疗过程的可视化对于细菌疗法也至关重要。本文构建了一种基于上转换纳米颗粒(UCNP)介导的时间分辨成像(TRI)的光控工程菌系统,用于结直肠癌的诊疗和治疗。将具有不同发光寿命的UCNP分别用肿瘤靶向分子(叶酸)或厌氧细菌(Nissle 1917,EcN)进行修饰,以实现肿瘤组织的共定位,从而提高基于TRI的诊断准确性。此外,利用蓝光诱导工程菌(EcN-pDawn-φx174E/TRAIL)裂解并释放肿瘤凋亡相关诱导配体(TRAIL),从而引发肿瘤细胞死亡。结果表明,该系统能够实现准确的肿瘤诊断和光控癌症治疗。与未进行蓝光照射相比(肿瘤生长11.8%),经蓝光照射的EcN-pDawn-φx174E/TRAIL可抑制53%的肿瘤生长。我们期望这种工程菌系统为智能细菌疗法和癌症诊疗的构建提供一种新技术。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验