Establishment and validation of preclinical models of SMARCA4-inactivated and ARID1A/ARID1B co-inactivated dedifferentiated endometrial carcinoma

SMARCA4型 ARID1A型 癌症研究 医学 表观遗传学 子宫内膜癌 体内 癌症 肿瘤科 内科学 生物 突变 基因 染色质重塑 遗传学
作者
Nelson K.Y. Wong,Marta Llauradó Fernández,F. Kommoss,Pooja Praveen Kumar,Hannah Kim,Jiahui Liu,Guihua Zhang,Mackenzie Coatham,Yen‐Yi Lin,Anne Haegert,Stanislav V. Volik,Stéphane Le Bihan,Colin C. Collins,YangXin Fu,Lynne‐Marie Postovit,Andreas von Deimling,Rebecca Wu,Hui Xue,Yuzhuo Wang,Martin Köbel,Mark Carey,Cheng‐Han Lee
出处
期刊:Gynecologic Oncology [Elsevier BV]
卷期号:176: 162-172 被引量:1
标识
DOI:10.1016/j.ygyno.2023.07.016
摘要

Dedifferentiated endometrial cancer (DDEC) is an uncommon and clinically highly aggressive subtype of endometrial cancer characterized by genomic inactivation of SWItch/Sucrose Non-Fermentable (SWI/SNF) complex protein. It responds poorly to conventional systemic treatment and its rapidly progressive clinical course limits the therapeutic windows to trial additional lines of therapies. This underscores a pressing need for biologically accurate preclinical tumor models to accelerate therapeutic development.DDEC tumor from surgical samples were implanted into immunocompromised mice for patient-derived xenograft (PDX) and cell line development. The histologic, immunophenotypic, genetic and epigenetic features of the patient tumors and the established PDX models were characterized. The SMARCA4-deficienct DDEC model was evaluated for its sensitivity toward a KDM6A/B inhibitor (GSK-J4) that was previously reported to be effective therapy for other SMARCA4-deficient cancer types.All three DDEC models exhibited rapid growth in vitro and in vivo, with two PDX models showing spontaneous development of metastases in vivo. The PDX tumors maintained the same undifferentiated histology and immunophenotype, and exhibited identical genomic and methylation profiles as seen in the respective parental tumors, including a mismatch repair (MMR)-deficient DDEC with genomic inactivation of SMARCA4, and two MMR-deficient DDECs with genomic inactivation of both ARID1A and ARID1B. Although the SMARCA4-deficient cell line showed low micromolecular sensitivity to GSK-J4, no significant tumor growth inhibition was observed in the corresponding PDX model.These established patient tumor-derived models accurately depict DDEC and represent valuable preclinical tools to gain therapeutic insights into this aggressive tumor type.

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