化学
离体
颗粒酶B
免疫疗法
体内
颗粒酶
颗粒酶A
人口
癌症研究
癌症免疫疗法
荧光
生物标志物
荧光寿命成像显微镜
分子生物学
分子探针
肽
免疫系统
临床前影像学
细胞毒性T细胞
体外
作者
Muhammad Kazim,Arghya Ganguly,Sebastian M. Malespini,Lai Thang,Nimit L. Patel,Caleb Kim,Kalyani Thakur,Joseph D. Kalen,Claudia Calcagno,Simone Difilippantonio,Euna Yoo
摘要
High Resolution Image Download MS PowerPoint Slide Molecular imaging of immune activation holds tremendous potential for the development of novel immunotherapies. In particular, chemical probes capable of detecting immune responses before changes in tumor size occur can guide early therapeutic strategies. Here, we present a quenched activity-based probe targeting granzyme B as a biomarker of antitumor immunity. Through optimization of the peptide recognition element and functional chemical warhead, we have developed an optical imaging probe, Cy5-IEPCya PhP -QSY21, which rapidly reacts with granzyme B at substoichiometric concentrations and enables efficient, selective labeling of the active enzyme in a complex proteome. With high specificity and minimal background signal, this probe produces granzyme B-induced near-infrared fluorescence signals in the tumors of living mice shortly after injection. Both in vivo and ex vivo fluorescence signals correlate with granzyme B expression and activity, and the population of CD8+ cells in tumor tissues. Moreover, it demonstrates the potential to track tumor response to immunotherapy. Thus, this study offers a chemical tool for assessing immune-mediated anticancer activity using noninvasive optical imaging.
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