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首页> 外文期刊>Scientific reports. >Multiphoton imaging reveals that nanosecond pulsed electric fields collapse tumor and normal vascular perfusion in human glioblastoma xenografts
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Multiphoton imaging reveals that nanosecond pulsed electric fields collapse tumor and normal vascular perfusion in human glioblastoma xenografts

机译:多光子成像显示,纳秒脉冲电场塌陷肿瘤和常规血管灌注在人胶质母细胞瘤异种移植物中

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摘要

Despite the biomedical advances of the last century, many cancers including glioblastoma are still resistant to existing therapies leaving patients with poor prognoses. Nanosecond pulsed electric fields (nsPEF) are a promising technology for the treatment of cancer that have thus far been evaluated in vitro and in superficial malignancies. In this paper, we develop a tumor organoid model of glioblastoma and apply intravital multiphoton microscopy to assess their response to nsPEFs. We demonstrate for the first time that a single 10?ns, high voltage electric pulse (35-45?kV/cm), collapses the perfusion of neovasculature, and also alters the diameter of capillaries and larger vessels in normal tissue. These results contribute to the fundamental understanding of nsPEF effects in complex tissue environments, and confirm the potential of nsPEFs to disrupt the microenvironment of solid tumors such as glioblastoma.
机译:尽管上世纪的生物医学进步,但许多癌症在内的胶质母细胞瘤仍然对现有疗法的疗法仍然抵抗,使患者预测患者。纳秒脉冲电场(NSPEF)是迄今为止在体外评估的癌症和浅表性恶性肿瘤的有希望的技术。在本文中,我们开发了胶质母细胞瘤的肿瘤有机体模型,并施用流体多光子显微镜,评估它们对NPSPEF的反应。我们首次证明了单个10?NS,高压电脉冲(35-45 kV / cm),沉积新生种系统的灌注,并且还改变了毛细血管的直径和较大的血管在正常组织中。这些结果有助于对复杂组织环境中NPSPEF效应的基本理解,并确认NPEFS的潜力破坏胶质母细胞瘤等实体肿瘤的微环境。

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