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用于人体成像的荧光探针:我们现在在哪里?

Fluorescent Probes for Imaging in Humans: Where Are We Now?

机构信息

School of Chemistry, Chemical Engineering and Biotechnology, Nanyang Technological University Singapore 637371, Singapore.

Centre for Inflammation Research, The University of Edinburgh, EH16 4UU Edinburgh, U.K.

出版信息

ACS Nano. 2023 Oct 24;17(20):19478-19490. doi: 10.1021/acsnano.3c03564. Epub 2023 Oct 3.

Abstract

Optical imaging has become an indispensable technology in the clinic. The molecular design of cell-targeted and highly sensitive materials, the validation of specific disease biomarkers, and the rapid growth of clinically compatible instrumentation have altogether revolutionized the way we use optical imaging in clinical settings. One prime example is the application of cancer-targeted molecular imaging agents in both trials and routine clinical use to define the margins of tumors and to detect lesions that are "invisible" to the surgeons, leading to improved resection of malignant tissues without compromising viable structures. In this Perspective, we summarize some of the key research advances in chemistry, biology, and engineering that have accelerated the translation of optical imaging technologies for use in human patients. Finally, our paper comments on several research areas where further work will likely render the next generation of technologies for translational optical imaging.

摘要

光学成像是临床中不可或缺的技术。细胞靶向和高灵敏度材料的分子设计、特定疾病生物标志物的验证以及与临床兼容的仪器的快速发展,共同彻底改变了我们在临床环境中使用光学成像的方式。一个主要的例子是将癌症靶向的分子成像剂应用于临床试验和常规临床使用中,以确定肿瘤的边缘并检测到外科医生无法“看到”的病变,从而在不损害活组织的情况下提高恶性组织的切除率。在本观点文章中,我们总结了一些化学、生物学和工程学方面的关键研究进展,这些进展加速了光学成像技术在人类患者中的转化。最后,我们的论文还讨论了几个可能会使下一代转化光学成像技术进一步发展的研究领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7671/10604082/46628507a70e/nn3c03564_0001.jpg

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