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用于癌症治疗和癌症基因治疗的荧光成像。

Fluorescent imaging for cancer therapy and cancer gene therapy.

作者信息

Woo Yanghee, Chaurasiya Shyambabu, O'Leary Michael, Han Ernest, Fong Yuman

机构信息

Department of Surgery, City of Hope Medical Center, 1500 East Duarte Road, Duarte, CA 91010, USA.

出版信息

Mol Ther Oncolytics. 2021 Jun 24;23:231-238. doi: 10.1016/j.omto.2021.06.007. eCollection 2021 Dec 17.

Abstract

The translation of laboratory science into effective clinical cancer therapy is gaining momentum more rapidly than any other time in history. Understanding cancer cell-surface receptors, cancer cell growth, and cancer metabolic pathways has led to many promising molecular-targeted therapies and cancer gene therapies. These same targets may also be exploited for optical imaging of cancer. Theoretically, any antibody or small molecule targeting cancer can be labeled with bioluminescent or fluorescent agents. In the laboratory setting, fluorescence imaging (FI) and bioluminescence imaging (BLI) have long been used in preclinical research for quantification of tumor bulk, assessment of targeting of tumors by experimental agents, and discrimination between primary and secondary effects of cancer treatments. Many of these laboratory techniques are now moving to clinical trials. Imageable engineered fluorescent probes that are highly specific for cancer are being advanced. This will allow for the identification of tumors for staging, tracking novel therapeutic agents, assisting in adequate surgical resection, and allowing image-guided biopsies. The critical components of FI include (1) a fluorescent protein that is biologically safe, stable, and distinctly visible with a high target to background ratio and (2) highly sensitive optical detectors. This review will summarize the most promising optical imaging agents and detection devices for cancer clinical research and clinical care.

摘要

将实验室科学转化为有效的临床癌症治疗,其发展势头比历史上任何时期都更为迅猛。对癌细胞表面受体、癌细胞生长以及癌症代谢途径的了解,催生了许多颇具前景的分子靶向疗法和癌症基因疗法。这些相同的靶点或许还可用于癌症的光学成像。理论上,任何靶向癌症的抗体或小分子都可用生物发光或荧光剂进行标记。在实验室环境中,荧光成像(FI)和生物发光成像(BLI)长期以来一直用于临床前研究,以量化肿瘤体积、评估实验药物对肿瘤的靶向性,以及区分癌症治疗的主要和次要效果。如今,许多此类实验室技术正迈向临床试验阶段。对癌症具有高度特异性的可成像工程荧光探针正在不断推进。这将有助于识别肿瘤以进行分期、追踪新型治疗药物、辅助进行充分的手术切除,并实现图像引导下的活检。荧光成像的关键组成部分包括:(1)一种生物安全、稳定且具有高靶本比、清晰可见的荧光蛋白;(2)高灵敏度的光学探测器。本综述将总结用于癌症临床研究和临床护理的最具前景的光学成像剂和检测设备。

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