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建立免疫抑制猪人胰腺癌模型用于新型治疗方法的开发,采用不可逆电穿孔技术。

Establishing an immunocompromised porcine model of human cancer for novel therapy development with pancreatic adenocarcinoma and irreversible electroporation.

机构信息

Department of Biomedical Engineering and Mechanics, Virginia Polytechnic Institute and State University, Blacksburg, VA, 24061, USA.

Department of Biomedical Sciences and Pathobiology, Virginia-Maryland College of Veterinary Medicine, Blacksburg, VA, 24061, USA.

出版信息

Sci Rep. 2021 Apr 7;11(1):7584. doi: 10.1038/s41598-021-87228-5.

Abstract

New therapies to treat pancreatic cancer are direly needed. However, efficacious interventions lack a strong preclinical model that can recapitulate patients' anatomy and physiology. Likewise, the availability of human primary malignant tissue for ex vivo studies is limited. These are significant limitations in the biomedical device field. We have developed RAG2/IL2RG deficient pigs using CRISPR/Cas9 as a large animal model with the novel application of cancer xenograft studies of human pancreatic adenocarcinoma. In this proof-of-concept study, these pigs were successfully generated using on-demand genetic modifications in embryos, circumventing the need for breeding and husbandry. Human Panc01 cells injected subcutaneously into the ears of RAG2/IL2RG deficient pigs demonstrated 100% engraftment with growth rates similar to those typically observed in mouse models. Histopathology revealed no immune cell infiltration and tumor morphology was highly consistent with the mouse models. The electrical properties and response to irreversible electroporation of the tumor tissue were found to be similar to excised human pancreatic cancer tumors. The ample tumor tissue produced enabled improved accuracy and modeling of the electrical properties of tumor tissue. Together, this suggests that this model will be useful and capable of bridging the gap of translating therapies from the bench to clinical application.

摘要

迫切需要新的疗法来治疗胰腺癌。然而,有效的干预措施缺乏能够重现患者解剖结构和生理机能的强大临床前模型。同样,用于离体研究的人类原发性恶性组织的可用性也受到限制。这些都是生物医学设备领域的重大限制。我们使用 CRISPR/Cas9 技术作为一种大型动物模型,开发了 RAG2/IL2RG 缺陷猪,该模型的新颖应用是进行人类胰腺腺癌的异种移植研究。在这项概念验证研究中,这些猪是通过对胚胎进行按需基因修饰成功产生的,从而避免了繁殖和饲养的需要。将人 Panc01 细胞皮下注射到 RAG2/IL2RG 缺陷猪的耳朵中,显示出 100%的植入率,其生长速度与通常在小鼠模型中观察到的速度相似。组织病理学显示没有免疫细胞浸润,肿瘤形态与小鼠模型高度一致。肿瘤组织的电学特性和对不可逆电穿孔的反应被发现与切除的人类胰腺癌肿瘤相似。大量产生的肿瘤组织提高了对肿瘤组织电学特性的建模和准确性。总之,这表明该模型将非常有用,能够弥合将治疗方法从实验室转化为临床应用的差距。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a233/8027815/69e0f0a1e923/41598_2021_87228_Fig1_HTML.jpg

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