Wang Wei, Yin Linliang, Gonzalez-Malerva Laura, Wang Shaopeng, Yu Xiaobo, Eaton Seron, Zhang Shengtao, Chen Hong-Yuan, LaBaer Joshua, Tao Nongjian
State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.
1] Center for Bioelectronics and Biosensors, Biodesign Institute, Arizona State University, Tempe, AZ 85287, USA [2] School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 400044, China.
Sci Rep. 2014 Oct 14;4:6609. doi: 10.1038/srep06609.
Many drugs are effective in the early stage of treatment, but patients develop drug resistance after a certain period of treatment, causing failure of the therapy. An important example is Herceptin, a popular monoclonal antibody drug for breast cancer by specifically targeting human epidermal growth factor receptor 2 (Her2). Here we demonstrate a quantitative binding kinetics analysis of drug-target interactions to investigate the molecular scale origin of drug resistance. Using a surface plasmon resonance imaging, we measured the in situ Herceptin-Her2 binding kinetics in single intact cancer cells for the first time, and observed significantly weakened Herceptin-Her2 interactions in Herceptin-resistant cells, compared to those in Herceptin-sensitive cells. We further showed that the steric hindrance of Mucin-4, a membrane protein, was responsible for the altered drug-receptor binding. This effect of a third molecule on drug-receptor interactions cannot be studied using traditional purified protein methods, demonstrating the importance of the present intact cell-based binding kinetics analysis.
许多药物在治疗初期有效,但患者在治疗一段时间后会产生耐药性,导致治疗失败。一个重要的例子是赫赛汀,这是一种通过特异性靶向人类表皮生长因子受体2(Her2)治疗乳腺癌的常用单克隆抗体药物。在此,我们展示了药物-靶点相互作用的定量结合动力学分析,以研究耐药性的分子尺度起源。利用表面等离子体共振成像,我们首次测量了单个完整癌细胞中原位的赫赛汀-Her2结合动力学,并观察到与赫赛汀敏感细胞相比,赫赛汀耐药细胞中赫赛汀-Her2相互作用显著减弱。我们进一步表明,膜蛋白粘蛋白-4的空间位阻是药物-受体结合改变的原因。使用传统的纯化蛋白方法无法研究第三种分子对药物-受体相互作用的这种影响,这证明了当前基于完整细胞的结合动力学分析的重要性。