PO.CL07.05 · 临床研究

TM4SF1作为胆道癌中一种可被免疫效应细胞疗法靶向的新型肿瘤相关抗原

TM4SF1 as a novel tumor-associated antigen in biliary tract cancers targetable by immune effector cell therapy

海报缩略图:TM4SF1作为胆道癌中一种可被免疫效应细胞疗法靶向的新型肿瘤相关抗原
编号 2667 展板 19 时间 4/20 09:00–12:00 区域 Section 49 主讲 Lorraine Nuniz, BS
分会场 Targeted Antigen Therapies and Immunity
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作者与单位 Authors & Affiliations

Lorraine Nuniz*, Julia Pham, Juliette Jacques, Josephine Hinneh, Jocelin Chen, Corynn Kasap, Jon Akutagawa, Chih-Hao Chang, Robin K. Kelley, Arun Wiita, Jonathan Chou, Kwun Wah Wen, Vipul Kumar*, Franklin Huang

University of California, San Francisco, San Francisco, CA

摘要 Abstract

中文摘要
胆道癌(BTC)是一组罕见的、遗传上异质且侵袭性强的恶性肿瘤,其特点是就诊晚、预后差且有效疗法有限。因此,开发新型治疗策略存在未被满足的临床需求。识别独特表达的细胞表面肿瘤相关抗原(TAA)在上皮性肿瘤中总体上具有前景,因为它们可作为多种疗法(包括CAR-T细胞疗法)的配体。然而,由于在正常肝组织中的表达,BTC中的TAA识别一直受到限制。在此,我们将细胞表面蛋白跨膜4L六家族成员1(TM4SF1)确定为一种可被CAR-T疗法靶向的潜在BTC TAA。我们发现,在TCGA数据集中,相对于正常肝/胆组织,TM4SF1在BTC中的表达在mRNA水平上上调。相应地,我们采用免疫组化发现原发性BTC存档组织中的TM4SF1在蛋白水平上上调。为验证TM4SF1作为BTC中一个可靶向的TAA,我们证明TM4SF1靶向CAR-T细胞在体外对人源BTC细胞系表现出强健的、剂量依赖性的生长抑制作用,并在体内异位BTC细胞系源性异种移植模型中表现出显著的抗肿瘤活性。总之,我们的数据支持TM4SF1作为BTC中一种有前景的TAA,可用于合理开发靶向TM4SF1的治疗手段(包括CAR-T细胞),惠及存在重大未被满足需求的患者人群。 *作者贡献相同
查看英文原文 English abstract
Biliary tract cancers (BTC) are a rare set of genetically heterogeneous and aggressive malignancies associated with late presentation, poor prognosis and limited effective therapies. Thus, there is an unmet clinical need for the development of novel therapeutic strategies. Identification of uniquely expressed cell-surface tumor-associated antigens (TAA) holds promise in epithelial tumors more generally, as they can serve as ligands for a variety of therapeutics, including CAR-T cell therapy. However, TAA identification in BTCs has been limited by expression in normal liver tissue. Here, we identify the cell-surface protein transmembrane 4 L six family member 1 (TM4SF1) as a potential BTC TAA targetable by CAR-T therapy. We find TM4SF1 expression is upregulated in BTC relative to normal hepatic/biliary tissue at the mRNA level in the TCGA dataset. Correspondingly, we find that TM4SF1 in primary BTC archival tissue is upregulated at the protein level using immunohistochemistry. To validate TM4SF1 as a targetable TAA in BTC, we show that TM4SF1-directed CAR-T cells demonstrate robust, dose-dependent growth inhibition of human-derived BTC cell lines in vitro and significant anti-tumor activity in a heterotopic BTC cell line-derived xenograft model in vivo. Together, our data provide support for TM4SF1 as a promising TAA in BTCs that can be used for the rational development of therapeutic modalities targeting TM4SF1, including CAR-T cells, in a patient population with significant unmet need. *Authors contributed equally
利益披露 Disclosure
L. Nuniz*, None.. J. Pham, None.. J. Jacques, None.. J. Hinneh, None.. J. Chen, None.. C. Kasap, None.. J. Akutagawa, None.. C. Chang, None.. R. K. Kelley, None.. A. Wiita, None.. J. Chou, None.. K. Wen, None.. V. Kumar*, None.. F. Huang, None.

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