Institute of Biophysics, Biological Research Centre, Hungarian Research Network, Szeged H-6726, Hungary.
Doctoral School of Biology, University of Szeged, Szeged H-6720, Hungary.
Proc Natl Acad Sci U S A. 2024 May 21;121(21):e2316006121. doi: 10.1073/pnas.2316006121. Epub 2024 May 15.
Blood-brain barrier (BBB) models derived from human stem cells are powerful tools to improve our understanding of cerebrovascular diseases and to facilitate drug development for the human brain. Yet providing stem cell-derived endothelial cells with the right signaling cues to acquire BBB characteristics while also retaining their vascular identity remains challenging. Here, we show that the simultaneous activation of cyclic AMP and Wnt/β-catenin signaling and inhibition of the TGF-β pathway in endothelial cells robustly induce BBB properties in vitro. To target this interaction, we present a small-molecule cocktail named cARLA, which synergistically enhances barrier tightness in a range of BBB models across species. Mechanistically, we reveal that the three pathways converge on Wnt/β-catenin signaling to mediate the effect of cARLA via the tight junction protein claudin-5. We demonstrate that cARLA shifts the gene expressional profile of human stem cell-derived endothelial cells toward the in vivo brain endothelial signature, with a higher glycocalyx density and efflux pump activity, lower rates of endocytosis, and a characteristic endothelial response to proinflammatory cytokines. Finally, we illustrate how cARLA can improve the predictive value of human BBB models regarding the brain penetration of drugs and targeted nanoparticles. Due to its synergistic effect, high reproducibility, and ease of use, cARLA has the potential to advance drug development for the human brain by improving BBB models across laboratories.
血脑屏障 (BBB) 模型来源于人类干细胞,是增进我们对脑血管疾病的理解并促进人脑药物开发的有力工具。然而,要使干细胞衍生的内皮细胞获得 BBB 特性,同时保留其血管特性,仍然具有挑战性。在这里,我们表明,内皮细胞中环腺苷酸 (cAMP) 和 Wnt/β-连环蛋白信号的同时激活以及 TGF-β 通路的抑制,可在体外强力诱导 BBB 特性。为了靶向这种相互作用,我们提出了一种名为 cARLA 的小分子鸡尾酒,它在多种物种的 BBB 模型中协同增强屏障的紧密性。从机制上讲,我们揭示了这三条通路汇聚于 Wnt/β-连环蛋白信号,通过紧密连接蛋白 Claudin-5 介导 cARLA 的作用。我们证明,cARLA 使人类干细胞衍生的内皮细胞的基因表达谱向体内脑内皮特征转移,表现为糖萼密度和外排泵活性增加、内吞作用率降低以及内皮细胞对促炎细胞因子的特征性反应。最后,我们说明了 cARLA 如何提高人类 BBB 模型在药物和靶向纳米颗粒向大脑渗透方面的预测价值。由于其协同作用、高重现性和易用性,cARLA 有可能通过改善跨实验室的 BBB 模型来促进人脑药物的开发。