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免疫功能正常尤文肉瘤小鼠模型揭示放疗期间抑制 TGFβ可增强尤文肿瘤免疫浸润

英文原题:Immunocompetent murine model of Ewing sarcoma reveals role for TGFβ inhibition to enhance immune infiltrates in Ewing tumors during radiation.

查看英文原题

Immunocompetent murine model of Ewing sarcoma reveals role for TGFβ inhibition to enhance immune infiltrates in Ewing tumors during radiation.

PubMed 2024/05/10(内容时间) bioRxiv

研究概要

尤因肉瘤(ES)是一种在青少年和年轻成人中诊断出的侵袭性癌症。

中文摘要

Ewing肉瘤(ES)是一种在青少年和年轻成人中诊断出的侵袭性癌症。已知驱动Ewing肉瘤的融合癌蛋白(EWSR1::FLI1)会下调TGFBR2表达(TGFβ受体的一部分)。由于TGFBR2被下调,人们曾认为TGFβ在Ewing生物学中可能起无关紧要的作用。然而,鉴于历史上缺乏免疫活性临床前模型,TGFβ在Ewing肿瘤免疫微环境(TIME)中的表达及其在TIME中的功能影响在很大程度上仍不清楚。在此,我们利用对人类Ewing肿瘤的单细胞RNAseq分析表明,免疫细胞(如NK细胞)是人类Ewing肿瘤中TGFβ产生的最大来源。我们开发了一种人源化(免疫活性)ES小鼠模型,并证明与免疫缺陷小鼠中生长的肿瘤相比,这些模型具有不同的TME特征和转移潜能。利用这种人源化模型,我们研究了放疗期间TGFβ抑制对Ewing TME的影响,放疗既能增强TGFβ激活,又用于治疗侵袭性ES。利用三价配体TGFβ TRAP抑制TGFβ,我们证明与放疗联合时,TGFβ抑制在体内既增加了ES免疫细胞浸润,又减少了肺转移负荷。这些数据的高潮证明了人源化模型在解决Ewing肉瘤免疫生物学临床前问题方面的价值,并提示TGFβ抑制作为放疗期间促进转移性肿瘤控制的一种有前景的干预措施。

展开英文摘要原文

Ewing sarcoma (ES) is an aggressive cancer diagnosed in adolescents and young adults. The fusion oncoprotein (EWSR1::FLI1) that drives Ewing sarcoma is known to downregulate TGFBR2 expression (part of the TGFβ receptor). Because TGFBR2 is downregulated, it was thought that TGFβ likely plays an inconsequential role in Ewing biology. However, the expression of TGFβ in the Ewing tumor immune microenvironment (TIME) and functional impact of TGFβ in the TIME remains largely unknown given the historical lack of immunocompetent preclinical models. Here, we use single-cell RNAseq analysis of human Ewing tumors to show that immune cells, such as NK cells, are the largest source of TGFβ production in human Ewing tumors. We develop a humanized (immunocompetent) mouse model of ES and demonstrate distinct TME signatures and metastatic potential in these models as compared to tumors developed in immunodeficient mice. Using this humanized model, we study the effect of TGFβ inhibition on the Ewing TME during radiation therapy, a treatment that both enhances TGFβ activation and is used to treat aggressive ES. Utilizing a trivalent ligand TGFβ TRAP to inhibit TGFβ, we demonstrate that in combination with radiation, TGFβ inhibition both increases ES immune cell infiltration and decreases lung metastatic burden in vivo . The culmination of these data demonstrates the value of humanized models to address immunobiologic preclinical questions in Ewing sarcoma and suggests TGFβ inhibition as a promising intervention during radiation therapy to promote metastatic tumor control.

论文信息

作者
Daley JD、Mukherjee E、Tufino AC、Bailey N、Bhaskar S、Periyapatna N、MacFawn I、Kunning S
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2024 May 10
原文标识
PubMed 38766091 · DOI 10.1101/2024.05.07.592974