抗 CD22/CD19 CAR-T 细胞疗法 CART2219.1 在成人和儿童复发/难治性 B-ALL 中的 I/II 期试验
A Phase I/II Trial of Anti-CD22/CD19 CAR-T Cell Therapy, CART2219.1, in Adult and Pediatric Relapsed/Refractory B-ALL.
在一项多中心I/II期试验中,所有患者(n=11;7名儿童,4名成人)在第28天均达到完全缓解(91%为微小残留病阴性)。
英文原题:MLL1 inhibits the neurogenic potential of SCAPs by interacting with WDR5 and repressing HES1.
MLL1 inhibits the neurogenic potential of SCAPs by interacting with WDR5 and repressing HES1.
我们的发现表明,MLL1 通过与 WDR5 相互作用并抑制 HES1 来抑制 SCAPs 的神经源性潜能。
间充质干细胞(MSC)疗法已成为脊髓损伤(SCI)的一种有前景治疗方法,但提高MSC神经发生潜能仍是挑战。混合谱系白血病蛋白1(MLL1)是一种H3K4me3甲基转移酶,可调节谱系特异性基因表达并影响神经发生。本研究探讨MLL1在根尖乳头干细胞(SCAP)神经发生中的作用及机制。研究通过观察神经元样细胞的动态变化、免疫荧光染色和SCI模型,检测SCAP神经标志物表达以及神经修复和再生能力;并采用共免疫沉淀(Co-IP)、实时RT-PCR、微阵列分析和染色质免疫沉淀(ChIP)研究分子机制。结果显示,敲低MLL1可提高SCAP中多种神经标志物表达,包括神经分化因子(NeuroD)、神经细胞黏附分子(NCAM)、酪氨酸羟化酶(TH)、III型微管蛋白和Nestin,并促进神经元样细胞形成。体内移植实验显示,耗竭SCAP中的MLL1可恢复SCI大鼠模型的运动功能。MLL1可与WD重复结构域5(WDR5)结合;WDR5会抑制SCAP中神经标志物表达。MLL1通过与WDR5相互作用,调节H3K4me3甲基化,并直接结合HES1启动子,从而调控HES1表达。此外,HES1可增强SCAP神经标志物表达。研究结果表明,MLL1通过与WDR5相互作用并抑制HES1,降低SCAP神经发生潜能,为促进SCI患者运动功能恢复提供了潜在治疗靶点。
Mesenchymal stem cell (MSC)-based therapy has emerged as a promising treatment for spinal cord injury (SCI), but improving the neurogenic potential of MSCs remains a challenge. Mixed lineage leukemia 1 (MLL1), an H3K4me3 methyltransferases, plays a critical role in regulating lineage-specific gene expression and influences neurogenesis. In this study, we investigated the role and mechanism of MLL1 in the neurogenesis of stem cells from apical papilla (SCAPs). We examined the expression of neural markers, and the nerve repair and regeneration ability of SCAPs using dynamic changes in neuron-like cells, immunofluorescence staining, and a SCI model. We employed a coimmunoprecipitation (Co-IP) assay, real-time RT-PCR, microarray analysis, and chromatin immunoprecipitation (ChIP) assay to investigate the molecular mechanism. The results showed that MLL1 knock-down increased the expression of neural markers, including neurogenic differentiation factor (NeuroD), neural cell adhesion molecule (NCAM), tyrosine hydroxylase (TH), III-tubulin and Nestin, and promoted neuron-like cell formation in SCAPs. In vivo, a transplantation experiment showed that depletion of MLL 1 in SCAPs can restore motor function in a rat SCI model. MLL1 can combine with WD repeat domain 5 (WDR5) and WDR5 inhibit the expression of neural markers in SCAPs. MLL1 regulates Hairy and enhancer of split 1 (HES1) expression by directly binds to HES1 promoters via regulating H3K4me3 methylation by interacting with WDR5. Additionally, HES1 enhances the expression of neural markers in SCAPs. Our findings demonstrate that MLL1 inhibits the neurogenic potential of SCAPs by interacting with WDR5 and repressing HES1. These results provide a potential therapeutic target for promoting the recovery of motor function in SCI patients.
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