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推进髓母细胞瘤治疗:分子机制、药物重定位与精准疗法

英文原题:Advancing Medulloblastoma Treatment: Molecular Mechanisms, Drug Repurposing, and Precision Therapies.

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Advancing Medulloblastoma Treatment: Molecular Mechanisms, Drug Repurposing, and Precision Therapies.

PubMed 2025/10/31(内容时间) Mol Diagn Ther Q1 · IF 5.8(JCR 2025)

研究概要

髓母细胞瘤是最常见的儿童恶性脑肿瘤,约占儿童中枢神经系统癌症的20%。

中文摘要

髓母细胞瘤是儿童中最常见的恶性脑肿瘤,约占儿童中枢神经系统癌症的20%。这些肿瘤具有高度异质性,分为四个分子亚组——WNT、SHH、Group 3和Group 4——每个亚组具有不同的遗传和表观遗传特征,影响肿瘤行为、治疗反应和患者预后。分子诊断学的进展改善了髓母细胞瘤的亚分类,但高风险亚型尤其是Group 3的治疗结局仍然不佳,当前的治疗模式往往伴随严重的长期神经认知和全身毒性。跨越血脑屏障的有效药物递送仍是主要障碍,限制了靶向治疗的临床疗效。药物重定位提供了一种有前景的策略,通过利用美国食品药品监督管理局已批准的药物,包括氯硝柳胺、伊曲康唑和三氧化二砷,来靶向关键致癌通路并克服治疗耐药,从而加速治疗的可用性。然而,血脑屏障穿透有限以及缺乏儿科特异性药代动力学数据等挑战仍然存在。未来研究应侧重于整合全面的分子谱分析以指导个性化治疗选择、优化药物递送系统以及探索合理的药物组合。新兴技术,包括基于纳米技术的递送系统、CRISPR介导的基因编辑和CAR-T 细胞疗法,具有改变髓母细胞瘤治疗范式的巨大潜力,但需要进一步改进以解决毒性、脱靶效应和生物标志物开发等问题。通过整合分子诊断和精准治疗,推进创新、低毒性的治疗策略,对于改善髓母细胞瘤患儿的生存结局和生活质量至关重要。

展开英文摘要原文

Medulloblastomas are the most common malignant pediatric brain tumors, representing approximately 20% of the central nervous system cancers in children. These tumors are highly heterogeneous and classified into four molecular subgroups-WNT, SHH, Group 3, and Group 4-each with distinct genetic and epigenetic profiles that influence tumor behavior, therapeutic response, and patient outcomes. Advances in molecular diagnostics have improved the subclassification of medulloblastomas, yet treatment outcomes for high-risk subtypes, particularly Group 3, remain poor, with current modalities often associated with severe long-term neurocognitive and systemic toxicities. Effective drug delivery across the blood-brain barrier remains a major hurdle, limiting the clinical efficacy of targeted therapies. Drug repurposing offers a promising strategy to accelerate treatment availability by utilizing US Food and Drug Administration-approved agents, including niclosamide, itraconazole, and arsenic trioxide, to target critical oncogenic pathways and overcome therapeutic resistance. However, challenges such as limited blood-brain barrier penetration and the lack of pediatric-specific pharmacokinetic data persist. Future research should focus on integrating comprehensive molecular profiling to guide personalized therapy selection, optimizing drug-delivery systems, and exploring rational drug combinations. Emerging technologies, including nanotechnology-based delivery systems, CRISPR-mediated gene editing, and chimeric antigen receptor-T cell therapies, hold significant potential for transforming medulloblastoma treatment paradigms but require further refinement to address toxicity, off-target effects, and biomarker development. Advancing innovative, less toxic therapeutic strategies through the integration of molecular diagnostics and precision therapies is essential to improving survival outcomes and quality of life for children with medulloblastomas.

论文信息

作者
Abdel-Rasol MA、El-Sayed WM
第一作者单位
Department of Zoology, Faculty of Science, Ain Shams University, Abbassia, Cairo, 11566, Egypt.Egypt
通讯作者单位
Department of Zoology, Faculty of Science, Ain Shams University, Abbassia, Cairo, 11566, Egypt. wael_farag@sci.asu.edu.eg.Egypt
文献类型
综述 · 非美国政府资助研究
期刊
Molecular diagnosis & therapy2026 Jan
原文标识
PubMed 41168621 · DOI 10.1007/s40291-025-00817-2