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复发和难治性儿童 T 细胞急性淋巴细胞白血病治疗的基础生物学、挑战与新概念

英文原题:Underlying biology, challenges and emergent concepts in the treatment of relapsed and refractory pediatric T-cell acute lymphoblastic leukemia.

PubMed 2025/08/14(内容时间) Leukemia Q1 · IF 8.8(JCR 2025)

研究概要

对初始治疗复发或耐药的儿童预后极差,尽管采用强化治疗,生存率仍常低于 25%。

中文摘要

儿童 T 急性淋巴细胞白血病复发/难治性疾病(R/R T-ALL)仍是重大临床挑战。复发或对初始治疗耐药患儿的结局很差,即便接受强化治疗,生存率也常低于 25%。为降低毒性并改善结局,尤其需要采用个体化精准医疗,靶向 R/R T-ALL 的基础生物学特征。T-ALL 具有遗传、表观遗传和转录后异质性,并存在器官和生态位特异性(如中枢神经系统),这些因素共同促成疾病进展和治疗耐药。本文总结当前对儿童 T-ALL 生物学复杂性的认识及其临床转化可能,并强调需要创新治疗途径改善 R/R T-ALL 患儿结局。显示潜力或已取得明确结果的新兴方案包括蛋白酶体抑制剂、BCL-2 拮抗剂,以及针对 JAK 和 IL-7R 驱动病例的 JAK 抑制剂、针对 LCK 激活病例的 ABL 和 SRC 家族酪氨酸激酶抑制剂、MEK 抑制剂或 PI3K-mTOR 抑制剂。其他潜在药物干预包括靶向 MYC、DNA 去甲基化药物、组蛋白去乙酰化酶抑制剂、剪接调节剂,以及针对 T-ALL 代谢弱点的药物。免疫疗法也在开发中并日益受到关注,尤其是靶向 CD7 等标志物的 CAR-T 产品,以及靶向 CD38 等生物制剂。这些药物应依据遗传、表观遗传和转录后特征,合理整合进精准医疗联合方案,以优化风险分层并降低耐药风险。利用人工智能和机器学习的新策略有望加速发现并优化治疗框架。

展开英文摘要原文

Relapsed and refractory disease in children with T-cell acute lymphoblastic leukemia (R/R T-ALL) remains a major clinical challenge. Outcomes for children who relapse or exhibit resistance to initial treatments are dismal, with survival rates frequently below 25% despite aggressive therapy. To minimize toxicities and improve outcomes, individualized precision medicine approaches targeting the underlying biology of R/R T-ALL are especially important, considering that T-ALL is characterized by genetic, epigenetic and posttranscriptional heterogeneity, and organ and niche specificities (e.g. the central nervous system), all of which underlie disease progression and therapy resistance. Here, we summarize the current understanding of the complexity of pediatric T-ALL biology and how such knowledge may be clinically leveraged, emphasizing the need for innovative therapeutic routes to improve outcomes for children with R/R T-ALL. Emerging approaches that hold promise or show palpable results include proteasome inhibitors, BCL-2 antagonists, and JAK (for JAK- and IL-7R-driven cases), ABL and SRC family tyrosine kinase (for LCK-activated cases), MEK or PI3K-mTOR inhibitors. MYC-targeting agents, DNA demethylating agents, histone deacetylase inhibitors, splicing modulators, or drugs exploring T-ALL metabolic vulnerabilities, are other examples for potential pharmacological intervention. Immunotherapies, particularly CAR T-cell products targeting CD7 and other markers, but also biologics (e.g. targeting CD38), are under development and increasing interest. These agents should be rationally integrated into precision medicine combination therapies informed by genetic, epigenetic, and posttranscriptional insights that will be essential to refine risk stratification and minimize the risk of resistance. Novel strategies leveraging artificial intelligence and machine learning could accelerate discovery and optimize treatment frameworks.

论文信息

作者
Amaral P、Christie R、Gresham DOF、Lucas EJM、Xu LK、Behrmann L、Bond J、Degerman S
第一作者单位
GIMM - Gulbenkian Institute for Molecular Medicine, Lisbon, Portugal.Portugal
通讯作者单位
GIMM - Gulbenkian Institute for Molecular Medicine, Lisbon, Portugal. joao.barata@gimm.pt.Portugal
文献类型
综述 · 非美国政府资助研究
期刊
Leukemia2025 Nov
原文标识
PubMed 40813621 · DOI 10.1038/s41375-025-02723-2