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儿童横纹肌肉瘤治疗开发研讨会

英文原题:Paediatric Therapeutic Development Workshop on rhabdomyosarcoma.

PubMed 2026/06/13(内容时间) Br J Cancer Q1 · IF 7.8(JCR 2025)

研究概要

横纹肌肉瘤是儿童中最常见的软组织肉瘤,最低危疾病患者的生存率为 90%,但转移性疾病患儿的生存率仅为 20-30%。

中文摘要

第三届儿科治疗开发研讨会聚焦横纹肌肉瘤。横纹肌肉瘤是儿童最常见的软组织肉瘤,最低危患者的生存率为90%,而转移性疾病患儿仅为20%–30%。目前亟需为高危疾病开发靶向疗法并降低治疗毒性。针对FGFR4的CAR-T细胞及抗体-药物偶联物(ADC)试验结果备受期待,开发FGFR4降解剂是一项优先任务。直接靶向PAX3::FOXO1和PAX7::FOXO1融合蛋白也属高度优先事项。MYOD1降解策略在临床开发前需先开展体内研究。应对P300/CBP降解剂开展临床前评估,以考虑后续临床研究。ROR2是L122R突变型MYOD1横纹肌肉瘤的一个有趣靶点。开发TEAD降解剂是重要优先事项,且应评估其与Notch抑制剂联合应用。对于已有临床药物的靶点,靶向细胞表面抗原B7-H3/CD276的ADC在其他儿童癌症中显示临床前前景,因此也被列为横纹肌肉瘤研究的优先方向。依据现有证据,应评估MEK抑制剂,可能与BRAF或PI3K抑制剂联合,并在维持治疗阶段与化疗联用。要在患者中开展联合方案试验,必须阐明药物组合的作用机制、获取治疗药物并优化临床试验设计。

展开英文摘要原文

The third in a series of Paediatric Therapeutic Development Workshops focused on rhabdomyosarcoma. Rhabdomyosarcoma is the most common soft tissue sarcoma in children, with 90% survival for those with the lowest risk disease, but just 20-30% in children with metastatic disease. An urgent unmet need exists to develop targeted therapeutics for high-risk disease and to reduce the toxicity of treatment. The results of trials of CAR T-cells and ADCs against FGFR4 are awaited with great interest, and developing a FGFR4 degrader is a priority. Directly targeting PAX3::FOXO1 and PAX7::FOXO1 fusion proteins is a high priority. An in vivo study of a MYOD1 degrader approach is required prior to clinical development. Degraders of P300/CBP should be evaluated preclinically with a view to clinical investigation. ROR2 is an interesting target for the L122R mutant MYOD1 rhabdomyosarcoma. Development of a TEAD degrader is a high priority, and this should be evaluated in combination with a Notch inhibitor. Considering targets with existing clinical agents, antibody-drug conjugates targeting cell-surface antigen B7-H3/CD276 are showing preclinical promise in other paediatric cancers and are also deemed a high priority for evaluation in rhabdomyosarcoma. Based on currently available evidence, MEK inhibitors should be evaluated, potentially with BRAF or PI3K inhibitors, in combination with chemotherapy in the maintenance setting. Understanding the mechanism of action underpinning drug combinations, gaining access to therapeutics and optimising clinical trial design will be essential to enable combinatorial testing in patients.

论文信息

作者
Baxter JS、Montiel Equihua C、Molenaar JJ、Aye J、Bisogno G、Blanc P、Breunis W、Chisholm J
第一作者单位
LifeArc, London, UK.United Kingdom
通讯作者单位
LifeArc, London, UK. andy1pearson@btinternet.com.United Kingdom
文献类型
综述
期刊
British journal of cancer2026 Aug
原文标识
PubMed 42288687 · DOI 10.1038/s41416-026-03483-1