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利用 Histotripsy 技术在新型原位猪模型中成功靶向胰腺肿瘤。

Successful In Situ Targeting of Pancreatic Tumors in a Novel Orthotopic Porcine Model Using Histotripsy.

机构信息

Graduate Program in Translational Biology, Medicine and Health, Virginia Polytechnic Institute and State University, Roanoke, VA, USA; Department of Biomedical Sciences and Pathobiology, Virginia-Maryland College of Veterinary Medicine, Blacksburg, VA, USA.

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

出版信息

Ultrasound Med Biol. 2023 Nov;49(11):2361-2370. doi: 10.1016/j.ultrasmedbio.2023.07.013. Epub 2023 Aug 16.

Abstract

OBJECTIVE

New therapeutic strategies and paradigms are direly needed to treat pancreatic cancer. The absence of a suitable pre-clinical animal model of pancreatic cancer is a major limitation to biomedical device and therapeutic development. Traditionally, pigs have proven to be ideal models, especially in the context of designing human-sized instruments, perfecting surgical techniques and optimizing clinical procedures for use in humans. However, pig studies have typically focused on healthy tissue assessments and are limited to general safety evaluations because of the inability to effectively model human tumors.

METHODS

Here, we establish an orthotopic porcine model of human pancreatic cancer using RAG2/IL2RG double-knockout immunocompromised pigs and treat the tumors ex vivo and in vivo with histotripsy.

RESULTS

Using these animals, we describe the successful engraftment of Panc-1 human pancreatic cancer cell line tumors and characterize their development. To illustrate the utility of these animals for therapeutic development, we determine for the first time, the successful targeting of in situ pancreatic tumors using histotripsy. Treatment with histotripsy resulted in partial ablation in vivo and reduction in collagen content in both in vivo tumor in pig pancreas and ex vivo patient tumor.

CONCLUSION

This study presents a first step toward establishing histotripsy as a non-invasive treatment method for pancreatic cancer and exposes some of the challenges of ultrasound guidance for histotripsy ablation in the pancreas. Simultaneously, we introduce a highly robust model of pancreatic cancer in a large mammal model that could be used to evaluate a variety biomedical devices and therapeutic strategies.

摘要

目的

亟需新的治疗策略和范式来治疗胰腺癌。缺乏合适的胰腺癌临床前动物模型是生物医学设备和治疗开发的主要限制。传统上,猪已被证明是理想的模型,尤其是在设计适合人体尺寸的仪器、完善手术技术和优化临床程序以用于人体方面。然而,猪的研究通常侧重于健康组织评估,并且由于无法有效模拟人类肿瘤,因此仅限于一般安全性评估。

方法

在这里,我们使用 RAG2/IL2RG 双重敲除免疫缺陷猪建立了人胰腺癌的原位猪模型,并使用组织微爆破对肿瘤进行离体和体内治疗。

结果

使用这些动物,我们描述了成功植入 Panc-1 人胰腺癌细胞系肿瘤及其发展情况。为了说明这些动物在治疗开发中的实用性,我们首次确定了使用组织微爆破成功靶向原位胰腺肿瘤。组织微爆破治疗导致体内肿瘤部分消融,并且猪胰腺中的体内肿瘤和离体患者肿瘤中的胶原含量减少。

结论

本研究朝着将组织微爆破确立为胰腺癌的非侵入性治疗方法迈出了第一步,并揭示了超声引导在胰腺中进行组织微爆破消融的一些挑战。同时,我们在大型哺乳动物模型中引入了一种高度稳健的胰腺癌模型,可用于评估各种生物医学设备和治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41cf/10529075/874b48f71b2c/nihms-1921481-f0001.jpg

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