Lee Michael C, Landers Kayla, Chan Jefferson
Department of Chemistry, Beckman Institute for Advanced Science and Technology, and Cancer Center at Illinois, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, United States.
ACS Bio Med Chem Au. 2023 Mar 10;3(3):223-232. doi: 10.1021/acsbiomedchemau.3c00009. eCollection 2023 Jun 21.
The earliest activity-based photoacoustic (PA) probes were developed as diagnostic agents for cancer. Since this seminal work over a decade ago that specifically targeted matrix metalloproteinase-2, PA instrumentation, dye platforms, and probe designs have advanced considerably, allowing for the detection of an impressive list of cancer types. However, beyond imaging for oncology purposes, the ability to selectively visualize a given disease biomarker, which can range from aberrant enzymatic activity to the overproduction of reactive small molecules, is also being exploited to study a myriad of noncancerous disease states. In this review, we have assembled a collection of recent papers to highlight the design principles that enable activity-based sensing PA imaging with respect to biomarker identification and strategies to trigger probe activation under specific conditions.
最早的基于活性的光声(PA)探针是作为癌症诊断剂开发的。自从十多年前这项专门针对基质金属蛋白酶-2的开创性工作以来,PA仪器、染料平台和探针设计有了很大进展,能够检测出种类繁多的癌症类型。然而,除了用于肿瘤学成像外,选择性可视化特定疾病生物标志物的能力(范围从异常酶活性到活性小分子的过量产生)也被用于研究多种非癌性疾病状态。在本综述中,我们汇集了一系列近期论文,以突出基于活性传感的PA成像在生物标志物识别方面的设计原则,以及在特定条件下触发探针激活的策略。