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在活肿瘤中模拟抗体-靶标结合的动力学。

Modeling the dynamics of antibody-target binding in living tumors.

机构信息

Division of Pharmacotherapy and Experimental Therapeutics, UNC Eshelman School of Pharmacy, University of North Carolina, Chapel Hill, NC, 27599, USA.

Lineberger Comprehensive Cancer Center, School of Medicine, University of North Carolina, Chapel Hill, NC, 27599, USA.

出版信息

Sci Rep. 2020 Oct 7;10(1):16764. doi: 10.1038/s41598-020-73711-y.

Abstract

Antibodies have become an attractive class of therapeutic agents for solid tumors, mainly because of their high target selectivity and affinity. The target binding properties of antibodies are critical for their efficacy and toxicity. Our lab has developed a bioluminescence resonance energy transfer (BRET) imaging approach that directly supports the measurement of the binding dynamics between antibodies and their targets in the native tumor environment. In the present study, we have developed a spatially resolved computational model analyzing the longitudinal BRET imaging data of antibody-target binding and exploring the mechanisms of biphasic binding dynamics between a model antibody cetuximab and its target, the epidermal growth factor receptor (EGFR). The model suggested that cetuximab is bound differently to EGFR in the stroma-rich area than in stroma-poor regions, which was confirmed by immunofluorescence staining. Compared to the binding in vitro, cetuximab bound to EGFR to a "slower-but-tighter" degree in the living tumors. These findings have provided spatially resolved characterizations of antibody-target binding in living tumors and have yielded many mechanistic insights into the factors that affect antibody interactions with its targets and treatment efficacy.

摘要

抗体已成为实体瘤治疗药物中极具吸引力的一类,主要是因为它们具有很高的靶向选择性和亲和力。抗体的靶标结合特性对其疗效和毒性至关重要。我们实验室开发了一种生物发光共振能量转移(BRET)成像方法,该方法可直接支持在天然肿瘤环境中测量抗体与其靶标的结合动力学。在本研究中,我们开发了一种空间分辨计算模型,用于分析抗体-靶标结合的纵向 BRET 成像数据,并探索模型抗体西妥昔单抗与其靶标表皮生长因子受体(EGFR)之间双相结合动力学的机制。该模型表明,西妥昔单抗与富含基质的区域中的 EGFR 的结合方式与贫基质区域不同,这一发现通过免疫荧光染色得到了证实。与体外结合相比,西妥昔单抗在活肿瘤中与 EGFR 的结合程度“较慢但更紧密”。这些发现为活肿瘤中的抗体-靶标结合提供了空间分辨特征,并深入了解了影响抗体与其靶标相互作用和治疗效果的因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/909e/7542163/15a225ebd933/41598_2020_73711_Fig1_HTML.jpg

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