Department of Pancreatic Surgery, Pancreatic Cancer Institute; Cancer Institute, Fudan University Shanghai Cancer Center, Shanghai, China.
Department of Oncology, Shanghai Medical College; Key Laboratory of Metabolism and Molecular Medicine, Ministry of Education, Department of Biochemistry and Molecular Biology, School of Basic Medical Sciences, Fudan University, Shanghai, China.
Int J Cancer. 2021 Jun 1;148(11):2815-2824. doi: 10.1002/ijc.33458. Epub 2021 Jan 5.
The canonical Wnt signaling pathway is activated in numerous contexts, including normal and cancerous tissues. Here, we describe a synthetic cell-based therapeutic strategy that inhibits aberrant Wnt activity in specific focuses without interfering with the normal tissues in vivo. As a proof of principle, we generated a triple transgenic zebrafish liver cancer model that conditionally expressed human MET and induced ectopic Wnt signaling in hepatocytes. Then, we generated a customized synthetic Notch receptor (synNotch) cascade to express Wnt inhibitor DKK1 in Jurkat T cells and human peripheral blood mononuclear cells (PBMCs) after recognizing MET as antigen. After that, the synNotch PBMCs were sorted and microinjected into different tissues of the zebrafish model. In MET-expressing cancerous liver tissues, the injected cells expressed DKK1 and inhibited the local proliferation and Wnt activity; while in the yolk sac without MET, the injected cells remained inactive. Overall, our studies revealed the use of synthetic cells with antigen receptors to improve the spatiotemporal accuracy of anti-Wnt therapy, and proposed that the genetically humanized zebrafish model may serve as a small-scale and highly optically accessible platform for the functional evaluation of human synthetic cells.
经典的 Wnt 信号通路在许多情况下被激活,包括正常组织和癌变组织。在这里,我们描述了一种合成的基于细胞的治疗策略,该策略可以在特定焦点抑制异常的 Wnt 活性,而不会干扰体内的正常组织。作为一个原理证明,我们生成了一个三重转基因斑马鱼肝癌模型,该模型条件性表达人 MET,并在肝细胞中诱导异位 Wnt 信号。然后,我们生成了一个定制的合成 Notch 受体(synNotch)级联反应,在 Jurkat T 细胞和人外周血单核细胞(PBMC)中表达 Wnt 抑制剂 DKK1,在识别 MET 作为抗原后。之后,对 synNotch PBMC 进行分选并微注射到斑马鱼模型的不同组织中。在表达 MET 的癌性肝组织中,注射的细胞表达 DKK1 并抑制局部增殖和 Wnt 活性;而在没有 MET 的卵黄囊中,注射的细胞仍然不活跃。总的来说,我们的研究揭示了使用带有抗原受体的合成细胞来提高抗 Wnt 治疗的时空准确性,并提出了基因人源化的斑马鱼模型可以作为一个小型、高度光学可及的平台,用于评估人类合成细胞的功能。