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Fluorescence Imaging After Indocyanine Green Injection for Detection of Peritoneal Metastases in Patients Undergoing Cytoreductive Surgery for Peritoneal Carcinomatosis From Colorectal Cancer: A Pilot Study.吲哚菁绿注射后荧光成像用于检测接受结直肠癌腹膜转移癌细胞减灭术患者的腹膜转移:一项初步研究
Ann Surg. 2016 Dec;264(6):1110-1115. doi: 10.1097/SLA.0000000000001618.
2
Imaging biomarker roadmap for cancer studies.癌症研究的影像生物标志物路线图。
Nat Rev Clin Oncol. 2017 Mar;14(3):169-186. doi: 10.1038/nrclinonc.2016.162. Epub 2016 Oct 11.
3
Diapeutic cancer-targeting alkylphosphocholine analogs may advance management of brain malignancies.具有治疗作用的靶向癌症的烷基磷胆碱类似物可能会推动脑恶性肿瘤的治疗进展。
CNS Oncol. 2016 Oct;5(4):223-31. doi: 10.2217/cns-2016-0017. Epub 2016 Sep 12.
4
Review of fluorescence guided surgery systems: identification of key performance capabilities beyond indocyanine green imaging.荧光引导手术系统的评价:超越吲哚菁绿成像的关键性能能力的识别。
J Biomed Opt. 2016 Aug 1;21(8):80901. doi: 10.1117/1.JBO.21.8.080901.
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Targeted Dual-Modality Imaging in Renal Cell Carcinoma: An Ex Vivo Kidney Perfusion Study.靶向双模态成像在肾细胞癌中的应用:一项肾脏灌注离体研究。
Clin Cancer Res. 2016 Sep 15;22(18):4634-42. doi: 10.1158/1078-0432.CCR-15-2937. Epub 2016 Apr 21.
6
Intraoperative imaging of folate receptor alpha positive ovarian and breast cancer using the tumor specific agent EC17.使用肿瘤特异性试剂EC17对叶酸受体α阳性卵巢癌和乳腺癌进行术中成像。
Oncotarget. 2016 May 31;7(22):32144-55. doi: 10.18632/oncotarget.8282.
7
Concordance of folate receptor-α expression between biopsy, primary tumor and metastasis in breast cancer and lung cancer patients.乳腺癌和肺癌患者活检组织、原发肿瘤及转移灶中叶酸受体-α表达的一致性。
Oncotarget. 2016 Apr 5;7(14):17442-54. doi: 10.18632/oncotarget.7856.
8
A Bright Future for Precision Medicine: Advances in Fluorescent Chemical Probe Design and Their Clinical Application.精准医学的光明未来:荧光化学探针设计的进展及其临床应用。
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9
Fluorescence Identification of Head and Neck Squamous Cell Carcinoma and High-Risk Oral Dysplasia With BLZ-100, a Chlorotoxin-Indocyanine Green Conjugate.使用氯毒素-吲哚菁绿偶联物BLZ-100对头颈部鳞状细胞癌和高危口腔发育异常进行荧光鉴定。
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10
A mouse-human phase 1 co-clinical trial of a protease-activated fluorescent probe for imaging cancer.一种用于癌症成像的蛋白酶激活荧光探针的小鼠-人类1期联合临床试验。
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超越边界:使用靶向荧光团进行癌症实时检测

Beyond the margins: real-time detection of cancer using targeted fluorophores.

作者信息

Zhang Ray R, Schroeder Alexandra B, Grudzinski Joseph J, Rosenthal Eben L, Warram Jason M, Pinchuk Anatoly N, Eliceiri Kevin W, Kuo John S, Weichert Jamey P

机构信息

Department of Radiology, University of Wisconsin-Madison (UW-Madison), 600 Highland Avenue, Madison, Wisconsin 53792, USA.

Department of Neurological Surgery, UW-Madison, 600 Highland Avenue, Madison, Wisconsin 53792, USA.

出版信息

Nat Rev Clin Oncol. 2017 Jun;14(6):347-364. doi: 10.1038/nrclinonc.2016.212. Epub 2017 Jan 17.

DOI:10.1038/nrclinonc.2016.212
PMID:28094261
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5683405/
Abstract

Over the past two decades, synergistic innovations in imaging technology have resulted in a revolution in which a range of biomedical applications are now benefiting from fluorescence imaging. Specifically, advances in fluorophore chemistry and imaging hardware, and the identification of targetable biomarkers have now positioned intraoperative fluorescence as a highly specific real-time detection modality for surgeons in oncology. In particular, the deeper tissue penetration and limited autofluorescence of near-infrared (NIR) fluorescence imaging improves the translational potential of this modality over visible-light fluorescence imaging. Rapid developments in fluorophores with improved characteristics, detection instrumentation, and targeting strategies led to the clinical testing in the early 2010s of the first targeted NIR fluorophores for intraoperative cancer detection. The foundations for the advances that underline this technology continue to be nurtured by the multidisciplinary collaboration of chemists, biologists, engineers, and clinicians. In this Review, we highlight the latest developments in NIR fluorophores, cancer-targeting strategies, and detection instrumentation for intraoperative cancer detection, and consider the unique challenges associated with their effective application in clinical settings.

摘要

在过去二十年中,成像技术的协同创新引发了一场革命,一系列生物医学应用如今都受益于荧光成像。具体而言,荧光团化学和成像硬件的进步,以及可靶向生物标志物的识别,现已将术中荧光定位为肿瘤外科医生的一种高度特异性实时检测方式。特别是,近红外(NIR)荧光成像更深的组织穿透深度和有限的自发荧光,相较于可见光荧光成像,提高了这种检测方式的转化潜力。具有改进特性的荧光团、检测仪器和靶向策略的快速发展,促使在21世纪10年代初对首批用于术中癌症检测的靶向近红外荧光团进行了临床试验。化学家、生物学家、工程师和临床医生的多学科合作持续为支撑这项技术进步的基础提供滋养。在本综述中,我们重点介绍近红外荧光团、癌症靶向策略和术中癌症检测的检测仪器的最新进展,并考虑其在临床环境中有效应用所面临的独特挑战。