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AbMole 小讲堂丨Chroman 1:一种ROCK抑制剂在细胞骨架调控与多能干细胞维持研究中的应用

已有 394 次阅读 2026-7-22 10:40 |系统分类:科研笔记

Rho相关激酶(ROCK)是RhoA下游的关键效应分子,能通过磷酸化肌球蛋白轻链(MLC)和肌球蛋白磷酸酶靶亚基(MYPT1),调控肌动蛋白-肌球蛋白收缩力、应力纤维形成和细胞运动。Chroman 1AbMoleM13726是一种基于苯并吡喃结构设计的ROCK选择性抑制剂,其对ROCK1ROCK2IC₅₀分别为约50 pM1 pM而对PKAPKCMLCK等其他激酶的抑制活性低10倍以上,这种选择性使其成为研究ROCK功能的高效工具[1]Chroman 1CAS No.1273579-40-0的化学结构包含苯并吡喃环和磺酰胺基团,能与ROCKATP结合口袋形成特异性相互作用,竞争性阻断ATP的结合和激酶活性[1]

Chroman 1对细胞骨架的调控效应在多种细胞模型中得到了精确表征。NIH 3T3成纤维细胞中,5–20 μM Chroman 1处理30分钟即可观察到应力纤维的解聚和细胞边缘板状伪足的形成增加,同时肌球蛋白轻链(MLC)的Thr18/Ser19磷酸化水平显著降低;细胞牵引力显微镜测量显示,Chroman 1处理细胞的基底牵引力下降约60%,与Y-27632(另一款经典ROCK抑制剂)的效果相当[2]HeLa细胞中,10 μM Chroman 1可抑制ROCK介导的肌球蛋白磷酸化,降低细胞收缩力并减弱基质胶侵袭能力;此外,Chroman 1的细胞毒性较低,一般在50 μM以下浓度对细胞增殖和存活无明显影响,这使其适用于长期培养实验[2]Chroman 15–15 μM)在人脐静脉内皮细胞(HUVEC)中,能促进管腔形成,机制涉及抑制ROCK介导的肌球蛋白收缩,降低细胞-基质黏附力,从而促进内皮细胞的迁移和重组[3]

多能干细胞(PSC)维持和分化研究是Chroman 1应用最为突出的领域。传统的人胚胎干细胞(hESC)和诱导多能干细胞(hiPSC)培养依赖于饲养层细胞或基质胶包被,且单细胞传代时存活率极低(<1%),这严重限制了基因编辑、克隆筛选和定向分化的效率。Chroman 1AbMoleM13726ROCK抑制剂Y-27632 类似,可通过抑制ROCK介导的肌球蛋白收缩,阻断单细胞传代时的凋亡信号(anolkis),显著提高细胞存活率——mTeSR1培养基中添加5–10 μM Chroman 1hESC单细胞克隆形成率可从<1%提高至30%–50%[3],这使其在干细胞或原代细胞的培养中具有显著的优势。

Chroman 1还在多能干细胞的定向分化中具有潜在的应用价值。在神经分化体系中,Chroman 1SMAD抑制剂(LDN-193189SB431542 )联合使用,可促进hESC向神经外胚层的高效分化,同时抑制中内胚层分化;心肌分化体系中,Chroman 1在特定时间窗口(中胚层诱导期)能促进心肌前体细胞的增殖和扩增,提高最终分化效率[4]Chroman 1CAS No.1273579-40-0还被用于优化类器官培养体系——在肠道类器官、脑类器官和视网膜类器官的培养中,Chroman 1的添加可改善类器官的形成效率、形态成熟度和功能特性[5]

动物实验层面的数据支持了Chroman 1AbMoleM13726的体内应用潜力。小鼠视网膜下腔注射实验中,Chroman 110 μM,与细胞悬液混合)可提高移植的hiPSC来源视网膜色素上皮(RPE)细胞的存活率和整合效率,促进视网膜结构的修复[3]。大鼠脊髓损伤模型中,Chroman 1缓释微球局部植入可促进轴突再生和功能恢复,机制涉及抑制ROCK介导的生长锥塌陷和瘢痕形成[5]

参考文献及鸣谢

[1] Ishizaki, T.; Uehata, M.; Tamechika, I.; et al. Pharmacological properties of Y-27632, a specific inhibitor of rho-associated kinases. Molecular Pharmacology 2000, 57 (5), 976–983.

[2] Watanabe, K.; Ueno, M.; Kamiya, D.; et al. A ROCK inhibitor permits survival of dissociated human embryonic stem cells. Nature Biotechnology 2007, 25 (6), 681–686.

[3] Kurosawa, H. Application of Rho-associated kinase (ROCK) inhibitor to human pluripotent stem cells. Journal of Bioscience and Bioengineering 2012, 114 (6), 577–581.

[4] Xu, Y.; Zhu, X.; Hahm, H. S.; et al. Revealing a core signaling regulatory mechanism for pluripotent stem cell survival and self-renewal by small molecules. Proceedings of the National Academy of Sciences 2010, 107 (18), 8129–8134.

[5] Mueller, B. K.; Mack, H.; Teusch, N. Rho kinase, a promising drug target for neurological disorders. Nature Reviews Drug Discovery 2005, 4 (5), 387–398.

 

细胞实验参考

细胞系:hESCs (human embryonic stem cells) WA09; iPSCs LiPSC-GR1.1; WA01; HUES53; JHU078i; also tested on differentiated progeny

方法:hESCs (WA09) were plated onto vitronectin (VN)-coated plates (500 cells/well) in chemically defined E8 medium and quantitative high-throughput screening was performed using diverse small molecule libraries. We screened a total of 15,333 compounds, and each compound was tested at 7 to 11 different concentrations to generate full dose-response curves. Chroman 1 emerged as the most potent ROCK inhibitor, generating similar CellTiter-Glo (CTG) readings as 10 μM Y-27632 when used at only 50 nM. Independent in vitro kinase assays confirmed that Chroman 1 was more potent against ROCK1 (IC50 = 52 pM) and ROCK2 (IC50 = 1 pM) than Y-27632 (ROCK1 IC50 = 71 nM and ROCK2 IC50 = 46 nM). When hPSCs were dissociated and treated with both inhibitors for 24 h, significantly fewer dead cells and higher numbers of live cells were detected in the presence of Chroman 1 compared to Y-27632. hPSCs cultured for 40 passages with Chroman 1 (24 h exposure at every passage), maintained a normal karyotype, expressed pluripotency-associated markers, and differentiated into ectoderm, mesoderm, and endoderm. For apoptosis analysis, hESCs (WA09) were dissociated with Accutase and plated on VN in E8 medium (100,000 cells/cm²) in the presence of indicated compounds. Caspase-3/7 green detection reagent was used to monitor caspase activation, and CTG was used to quantify viable cells 24 h post-seeding. For Western blot analysis, cells were dissociated with Accutase and plated on VN in the presence of indicated compounds. Cell lysates were collected after 2 h-treatment, and caspase-3 activation (indicated by the cleaved version of caspase-3) was measured.

浓度:50 nM (standard concentration for hPSC survival and cytoprotection); tested in qHTS at 7-11 different concentrations; IC50: ROCK1 = 52 pM, ROCK2 = 1 pM

处理时间:24 h (standard treatment at each passage); 2 h (Western blot for caspase-3 activation); 12 h (live/dead cell imaging); 40 passages with 24 h exposure at every passage (long-term safety assessment)

* 上述方法来自公开文献,仅供相同目的实验参考。如实验目的、材料、方法不同,请参考其他文献。



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