Cao Yuhong, Fang Jiahao, Shi Yiwei, Wang Hui, Chen Xiaofei, Liu Yue, Zhu Zhenyu, Cao Yan, Hong Zhanying, Chai Yifeng
School of Pharmacy, Second Military Medical University, Shanghai Key Laboratory for Pharmaceutical Metabolites Research, Shanghai 200433, China.
Zhejiang Institute for Food and Drug Control, Hangzhou 310057, China.
Acta Pharm Sin B. 2022 Jul;12(7):3113-3123. doi: 10.1016/j.apsb.2022.03.016. Epub 2022 Mar 29.
P-glycoprotein (P-gp) highly expressed in cancer cells can lead to multidrug resistance (MDR) and the combination of anti-cancer drugs with P-gp inhibitor has been a promising strategy to reverse MDR in cancer treatment. In this study, we established a label-free and detergent-free system combining surface plasmon resonance (SPR) biosensor with styrene maleic acid (SMA) polymer membrane proteins (MPs) stabilization technology to screen potential P-gp inhibitors. First, P-gp was extracted from MCF-7/ADR cells using SMA polymer to form SMA liposomes (SMALPs). Following that, SMALPs were immobilized on an SPR biosensor chip to establish a P-gp inhibitor screening system, and the affinity between P-gp and small molecule ligand was determined. The methodological investigation proved that the screening system had good specificity and stability. Nine P-gp ligands were screened out from 50 natural products, and their affinity constants with P-gp were also determined. The cell verification experiments demonstrated that tetrandrine, fangchinoline, praeruptorin B, neobaicalein, and icariin could significantly increase the sensitivity of MCF-7/ADR cells to Adriamycin (Adr). Moreover, tetrandrine, praeruptorin B, and neobaicalein could reverse MDR in MCF-7/ADR cells by inhibiting the function of P-gp. This is the first time that SMALPs-based stabilization strategy was applied to SPR analysis system. SMA polymer can retain P-gp in the environment of natural lipid bilayer and thus maintain the correct conformation and physiological functions of P-gp. The developed system can quickly and accurately screen small molecule ligands of complex MPs and obtain affinity between complex MPs and small molecule ligands without protein purification.
在癌细胞中高表达的P-糖蛋白(P-gp)可导致多药耐药(MDR),抗癌药物与P-gp抑制剂联合使用一直是癌症治疗中逆转MDR的一种有前景的策略。在本研究中,我们建立了一种无标记、无去污剂的系统,该系统将表面等离子体共振(SPR)生物传感器与苯乙烯马来酸(SMA)聚合物膜蛋白(MPs)稳定技术相结合,以筛选潜在的P-gp抑制剂。首先,使用SMA聚合物从MCF-7/ADR细胞中提取P-gp,形成SMA脂质体(SMALPs)。随后,将SMALPs固定在SPR生物传感器芯片上,建立P-gp抑制剂筛选系统,并测定P-gp与小分子配体之间的亲和力。方法学研究证明,该筛选系统具有良好的特异性和稳定性。从50种天然产物中筛选出9种P-gp配体,并测定了它们与P-gp的亲和常数。细胞验证实验表明,粉防己碱、防己诺林碱、前胡素B、新黄芩素和淫羊藿苷可显著提高MCF-7/ADR细胞对阿霉素(Adr)的敏感性。此外,粉防己碱、前胡素B和新黄芩素可通过抑制P-gp的功能逆转MCF-7/ADR细胞中的MDR。这是首次将基于SMALPs的稳定策略应用于SPR分析系统。SMA聚合物可以在天然脂质双层环境中保留P-gp,从而维持P-gp的正确构象和生理功能。所开发的系统可以快速、准确地筛选复杂MPs的小分子配体,无需蛋白质纯化即可获得复杂MPs与小分子配体之间的亲和力。