Department of Pharmaceutics, University of Washington, H272 Health Sciences Building, Seattle, WA, 98195-7610, USA.
Pharm Res. 2023 Nov;40(11):2667-2675. doi: 10.1007/s11095-023-03598-7. Epub 2023 Sep 13.
The brain is protected from circulating metabolites and xenobiotics by the blood-brain barrier (BBB) and the blood-cerebrospinal fluid (CSF) barrier. Previous studies report that P-glycoprotein (P-gp) and breast cancer resistance protein (Bcrp) are expressed apically or subapically at the blood-CSF barrier (BCSFB), implying a paradoxical function to mediate blood-to-CSF transport of xenobiotics. As evidence of P-gp and Bcrp activity at the BCSFB is limited, the goal of this study is to investigate functional activity of P-gp and Bcrp at the murine BCSFB using a live tissue imaging approach.
The choroid plexuses (CP) forming the BCSFB were freshly isolated from mouse brain ventricles and incubated with fluorescent probes calcein-AM and BODIPY FL-Prazosin. Using quantitative fluorescence microscopy, the functional contributions of Bcrp and P-gp were examined using inhibitors and mice with targeted deletion of the Abcb1a/b or Abcg2 gene.
Apical transport of calcein-AM in choroid plexus epithelial (CPE) cells is sensitive to inhibition by elacridar and Ko143 but is unaffected by P-gp deletion. In wild-type mice, elacridar increased CPE accumulation of BODIPY FL-Prazosin by 220% whereas deletion of Bcrp increased BODIPY FL-Prazosin accumulation by 43%. There was no change in Mdr1a/1b mRNA expression in CP tissues from the Bcrp mice.
This study demonstrated functional activity of Bcrp at the BCSFB apical membrane and provided evidence supporting an additional contribution by P-gp. These findings contribute to the understanding of transport mechanisms that regulate CSF drug concentrations, which may benefit future predictions of CNS drug disposition, efficacy, and toxicity.
血脑屏障 (BBB) 和血脑脊液 (CSF) 屏障保护大脑免受循环代谢物和外源性物质的侵害。先前的研究报告称,P 糖蛋白 (P-gp) 和乳腺癌耐药蛋白 (Bcrp) 在上皮细胞的顶侧或亚顶侧表达于血脑脊液屏障 (BCSFB),暗示其具有介导外源性物质从血液向 CSF 转运的矛盾功能。由于 BCSFB 中 P-gp 和 Bcrp 活性的证据有限,本研究旨在使用活体组织成像方法研究鼠 BCSFB 中 P-gp 和 Bcrp 的功能活性。
从鼠脑室内新鲜分离形成 BCSFB 的脉络丛 (CP),并用荧光探针 calcein-AM 和 BODIPY FL-Prazosin 孵育。使用定量荧光显微镜,使用抑制剂和靶向缺失 Abcb1a/b 或 Abcg2 基因的小鼠来检查 Bcrp 和 P-gp 的功能贡献。
calcein-AM 在脉络丛上皮 (CPE) 细胞中的顶侧转运对 elacridar 和 Ko143 的抑制敏感,但不受 P-gp 缺失的影响。在野生型小鼠中,elacridar 使 BODIPY FL-Prazosin 在 CPE 中的积累增加了 220%,而 Bcrp 缺失使 BODIPY FL-Prazosin 的积累增加了 43%。Bcrp 小鼠 CP 组织中的 Mdr1a/1b mRNA 表达没有变化。
本研究证明了 Bcrp 在 BCSFB 顶膜上的功能活性,并提供了支持 P-gp 额外贡献的证据。这些发现有助于理解调节 CSF 药物浓度的转运机制,这可能有益于未来对 CNS 药物处置、疗效和毒性的预测。