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A novel biosensor based on intestinal 3D organoids for detecting the function of BCRP

机译:一种基于肠道3D类器官的新型生物传感器,用于检测BCRP的功能

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Abstract Breast cancer resistance protein (BCRP), a key drug efflux transporter, significantly affects the therapeutic efficacy of many drugs. Thus, screening specific BCRP inhibitors and distinguishing between substrates and non-substrates of BCRP are valuable in drug discovery and development. This study presents a novel BCRP biosensor based on intestinal 3D organoids for rapid and sensitive detection of BCRP function. First, the crypts were isolated from mouse small intestine, and cultured in advanced DMEM/F12 medium to develop intestinal 3D organoids. Second, immunohistochemical studies demonstrated that BCRP protein in the organoids presented a similar expression and physiologic position to the small intestinal epithelium. Finally, the cultured organoids were treated in BCRP fluorogenic probe substrate Hoechst 33342 with or without BCRP inhibitor Ko143 and YHO-13177. The fluorescence intensity of Hoechst 33342 released from inner of the organoids was detected by microplate reader and the concentrations were calculated. Ko143 and YHO-13177 significantly inhibited the BCRP-mediated Hoechst 33342 transport in the 3D organoids. Consequently, a rapid and efficient biosensor has been successfully established to study BCRP, especially screening BCRP inhibitors in a high-throughput way.
机译:摘要乳腺癌耐药蛋白(BCRP)是一种重要的药物外排转运蛋白,对许多药物的治疗效果都有重要影响。因此,筛选特定的BCRP抑制剂并区分BCRP的底物和非底物在药物发现和开发中很有价值。这项研究提出了一种新颖的基于肠道3D类器官的BCRP生物传感器,用于快速灵敏地检测BCRP功能。首先,从小鼠小肠中分离出隐窝,并在高级DMEM / F12培养基中培养以形成肠3D类器官。其次,免疫组织化学研究表明类器官中的BCRP蛋白表现出与小肠上皮相似的表达和生理位置。最后,在带有或不带有BCRP抑制剂Ko143和YHO-13177的BCRP荧光探针底物Hoechst 33342中处理培养的类器官。通过酶标仪检测从类器官内部释放的Hoechst 33342的荧光强度,并计算浓度。 Ko143和YHO-13177显着抑制BCRP介导的Hoechst 33342在3D类器官中的转运。因此,已经成功地建立了快速有效的生物传感器来研究BCRP,特别是以高通量的方式筛选BCRP抑制剂。

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