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评估一种在 7T 小动物 MRI 中开发的 MRI 引导聚焦超声系统,并在前列腺癌异种移植模型中进行概念验证,以改善放射治疗。

Evaluation of a Developed MRI-Guided Focused Ultrasound System in 7 T Small Animal MRI and Proof-of-Concept in a Prostate Cancer Xenograft Model to Improve Radiation Therapy.

机构信息

Innovation Center Computer Assisted Surgery, 04103 Leipzig, Germany.

Fraunhofer Institute for Cell Therapy and Immunology and Fraunhofer Cluster of Excellence for Immune-Mediated Disease, 04103 Leipzig, Germany.

出版信息

Cells. 2023 Feb 2;12(3):481. doi: 10.3390/cells12030481.

Abstract

Focused ultrasound (FUS) can be used to physiologically change or destroy tissue in a non-invasive way. A few commercial systems have clinical approval for the thermal ablation of solid tumors for the treatment of neurological diseases and palliative pain management of bone metastases. However, the thermal effects of FUS are known to lead to various biological effects, such as inhibition of repair of DNA damage, reduction in tumor hypoxia, and induction of apoptosis. Here, we studied radiosensitization as a combination therapy of FUS and RT in a xenograft mouse model using newly developed MRI-compatible FUS equipment. Xenograft tumor-bearing mice were produced by subcutaneous injection of the human prostate cancer cell line PC-3. Animals were treated with FUS in 7 T MRI at 4.8 W/cm to reach ~45 °C and held for 30 min. The temperature was controlled via fiber optics and proton resonance frequency shift (PRF) MR thermometry in parallel. In the combination group, animals were treated with FUS followed by X-ray at a single dose of 10 Gy. The effects of FUS and RT were assessed via hematoxylin-eosin (H&E) staining. Tumor proliferation was detected by the immunohistochemistry of Ki67 and apoptosis was measured by a TUNEL assay. At 40 days follow-up, the impact of RT on cancer cells was significantly improved by FUS as demonstrated by a reduction in cell nucleoli from 189 to 237 compared to RT alone. Inhibition of tumor growth by 4.6 times was observed in vivo in the FUS + RT group (85.3%) in contrast to the tumor volume of 393% in the untreated control. Our results demonstrated the feasibility of combined MRI-guided FUS and RT for the treatment of prostate cancer in a xenograft mouse model and may provide a chance for less invasive cancer therapy through radiosensitization.

摘要

聚焦超声(FUS)可用于非侵入性地生理改变或破坏组织。一些商业系统已获得临床批准,可用于热消融实体瘤,以治疗神经疾病和缓解骨转移的疼痛。然而,已知 FUS 的热效应会导致各种生物学效应,例如抑制 DNA 损伤修复、减少肿瘤缺氧和诱导细胞凋亡。在这里,我们使用新开发的 MRI 兼容 FUS 设备,在异种移植小鼠模型中研究了 FUS 与 RT 的组合治疗作为放射增敏作用。通过皮下注射人前列腺癌细胞系 PC-3 来制备异种移植肿瘤荷瘤小鼠。将动物在 7T MRI 中以 4.8 W/cm 的 FUS 进行处理,以达到约 45°C 并保持 30 分钟。通过光纤和质子共振频率偏移(PRF)MR 测温法进行温度控制。在联合组中,动物在接受 FUS 治疗后接受单次 10Gy 的 X 射线照射。通过苏木精-伊红(H&E)染色评估 FUS 和 RT 的效果。通过 Ki67 的免疫组化检测肿瘤增殖,通过 TUNEL 测定法测量细胞凋亡。在 40 天的随访中,与单独 RT 相比,FUS 显著改善了 RT 对癌细胞的作用,表现为细胞核仁从 189 个减少到 237 个。在 FUS+RT 组中观察到体内肿瘤生长抑制 4.6 倍(85.3%),而未治疗对照组的肿瘤体积为 393%。我们的结果证明了在异种移植小鼠模型中,MRI 引导的 FUS 与 RT 联合治疗前列腺癌的可行性,并可能通过放射增敏为更具侵袭性的癌症治疗提供机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c031/9914251/3b0c2f1bcd2c/cells-12-00481-g001.jpg

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