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Fluorescent image-guided surgery in breast cancer by intravenous application of a quenched fluorescence activity-based probe for cysteine cathepsins in a syngeneic mouse model

机译:静脉内施用乳腺癌在同鼠模型中的半胱氨酸组织蛋白酶骤冷荧光活性探针荧光图像引导手术

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摘要

Mode of action and structure of VGT-309 and in vitro binding to active cysteine cathepsins. a Mode of action of VGT-309. Cathepsins covalently and irreversibly bind VGT-309, displacing the quencher QC-1. With the quencher displaced, the ICG fluorescence of VGT-309 is no longer quenched and the probe becomes fluorescent. b Structure of VGT-309. The phenoxymethyl ketone electrophile (red) forms a covalent bond with the active cysteine of cathepsins. The fluorophore ICG (green) is for visualization and the quencher (gray) prevents fluorescent signal in the free, unbound probe. c VGT-309 labeling of endogenously expressed cathepsins in RAW-264.7 cells. Cells were treated with probe for 30 min in the presence or absence of cysteine cathepsin inhibitor E64d followed by lysis and analysis by SDS-PAGE and scanning for fluorescent labeled proteins. The locations of cathepsin X, B/L, and S are indicated
机译:VGT-309的作用和结构模式及其对活性半胱氨酸的体外结合。 VGT-309的作用方式。组织蛋白酶共价和不可逆地结合VGT-309,使猝灭剂QC-1移位。随着猝灭剂移位,VGT-309的ICG荧光不再淬灭,探针变为荧光。 B VGT-309的结构。苯氧基甲基酮电泳(红色)与组织蛋白酶的活性半胱氨酸形成共价键。荧光团Icg(绿色)是用于可视化,猝灭剂(灰色)可防止自由的未结合探针中的荧光信号。 C VGT-309在Raw-264.7细胞中标记内源性表达的组织蛋白酶。在存在或不存在半胱氨酸组织蛋白蛋白抑制剂E64D的情况下用探针处理30分钟,然后通过SDS-PAGE裂解和分析并扫描荧光标记的蛋白质。表示表明X,B / L和S的位置

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