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微泡增强超声破坏肿瘤新生血管:一种新的抗血管生成物理治疗方法。

Disruption of tumor neovasculature by microbubble enhanced ultrasound: a potential new physical therapy of anti-angiogenesis.

机构信息

Department of Ultrasound, Xinqiao Hospital, The Third Military Medical University, Chongqing, China.

出版信息

Ultrasound Med Biol. 2012 Feb;38(2):253-61. doi: 10.1016/j.ultrasmedbio.2011.11.007. Epub 2011 Dec 16.

Abstract

Tumor angiogenesis is of vital importance to the growth and metastasis of solid tumors. The angiogenesis is featured with a defective, leaky and fragile vascular construction. Microbubble enhanced ultrasound (MEUS) cavitation is capable of mechanical disruption of small blood vessels depending on effective acoustic pressure amplitude. We hypothesized that acoustic cavitation combining high-pressure amplitude pulsed ultrasound (US) and circulating microbubble could potentially disrupt tumor vasculature. A high-pressure amplitude, pulsed ultrasound device was developed to induce inertial cavitation of circulating microbubbles. The tumor vasculature of rat Walker 256 was insonated percutaneously with two acoustic pressures, 2.6 MPa and 4.8 MPa, both with intravenous injection of a lipid microbubble. The controls were treated by the ultrasound only or sham ultrasound exposure. Contrast enhanced ultrasound (CEUS) and histology were performed to assess tumor circulation and pathological changes. The CEUS results showed that the circulation of Walker 256 tumors could be completely blocked off for 24 hours in 4.8 MPa treated tumors. The CEUS gray scale value (GSV) indicated that there was significant GSV drop-off in both of the two experimental groups but none in the controls. Histology showed that the tumor microvasculature was disrupted into diffuse hematomas accompanied by thrombosis, intercellular edema and multiple cysts formation. The 24 hours of tumor circulation blockage resulted in massive necrosis of the tumor. MEUS provides a new, simple physical method for anti-angiogenic therapy and may have great potential for clinical applications.

摘要

肿瘤血管生成对于实体瘤的生长和转移至关重要。血管生成的特点是血管结构缺陷、渗漏和脆弱。微泡增强超声(MEUS)空化能够根据有效声压幅度机械破坏小血管。我们假设,声空化结合高幅值脉冲超声(US)和循环微泡可能破坏肿瘤血管。我们开发了一种高幅值、脉冲超声设备,以诱导循环微泡的惯性空化。Walker 256 大鼠肿瘤的血管通过两种声压(2.6 MPa 和 4.8 MPa)经皮进行超声照射,同时静脉注射脂质微泡。对照组仅接受超声或假超声照射。通过对比增强超声(CEUS)和组织学评估肿瘤循环和病理变化。CEUS 结果显示,在 4.8 MPa 治疗的肿瘤中,Walker 256 肿瘤的循环可以完全阻断 24 小时。CEUS 灰度值(GSV)表明,两个实验组的 GSV 均有显著下降,但对照组没有。组织学显示肿瘤微血管破裂成弥漫性血肿,伴有血栓形成、细胞间水肿和多个囊肿形成。肿瘤循环阻断 24 小时导致肿瘤大量坏死。MEUS 为抗血管生成治疗提供了一种新的、简单的物理方法,可能具有很大的临床应用潜力。

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