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温和热疗增强肿瘤内纳米颗粒的外渗和渗透。

Improved intratumoral nanoparticle extravasation and penetration by mild hyperthermia.

机构信息

Laboratory Experimental Surgical Oncology, Section Surgical Oncology, Department of Surgery, Erasmus Medical Center, 3000CA Rotterdam, The Netherlands.

出版信息

J Control Release. 2013 Apr 28;167(2):130-7. doi: 10.1016/j.jconrel.2013.01.026. Epub 2013 Feb 4.

Abstract

Accumulation of nanoparticles in solid tumors depends on their extravasation. However, vascular permeability is very heterogeneous within a tumor and among different tumor types, hampering efficient delivery. Local hyperthermia at a tumor can improve nanoparticle delivery by increasing tumor vasculature permeability, perfusion and interstitial fluid flow. The aim of this study is to investigate hyperthermia conditions required to improve tumor vasculature permeability, subsequent liposome extravasation and interstitial penetration in 4 tumor models. Tumors are implanted in dorsal skin flap window chambers and observed for liposome (~85 nm) accumulation by intravital confocal microscopy. Local hyperthermia at 41°C for 30 min initiates liposome extravasation through permeable tumor vasculature in all 4 tumor models. A further increase in nanoparticle extravasation occurs while continuing heating to 1h, which is a clinically relevant duration. After hyperthermia, the tumor vasculature remains permeable for 8h. We visualize gaps in the endothelial lining of up to 10 μm induced by HT. Liposomes extravasate through these gaps and penetrate into the interstitial space to at least 27.5 μm in radius from the vessel walls. Whole body optical imaging confirms HT induced extravasation while liposome extravasation was absent at normothermia. In conclusion, a thermal dose of 41°C for 1h is effective to induce long-lasting permeable tumor vasculature for liposome extravasation and interstitial penetration. These findings hold promise for improved intratumoral drug delivery upon application of local mild hyperthermia prior to administration of nanoparticle-based drug delivery systems.

摘要

纳米粒子在实体瘤中的积累取决于它们的渗出。然而,肿瘤内和不同肿瘤类型之间的血管通透性非常不均匀,阻碍了有效的传递。肿瘤局部热疗可以通过增加肿瘤血管通透性、灌注和间质液流来改善纳米颗粒的传递。本研究旨在探讨提高肿瘤血管通透性、随后脂质体渗出和间质渗透所需的热疗条件在 4 种肿瘤模型中的应用。在背部皮肤瓣窗室中植入肿瘤,并通过活体共聚焦显微镜观察脂质体(~85nm)的积累。4 种肿瘤模型中,41°C 局部热疗 30 分钟即可启动通透性肿瘤血管中的脂质体渗出。持续加热至 1 小时会进一步增加纳米颗粒的渗出,这是一个临床相关的持续时间。热疗后,肿瘤血管保持通透性 8 小时。我们可以观察到 HT 诱导的内皮衬里间隙高达 10μm。脂质体通过这些间隙渗出并渗透到间质空间,距离血管壁至少 27.5μm。全身光学成像证实了 HT 诱导的渗出,而在正常体温下没有脂质体渗出。总之,41°C 热疗 1 小时的热剂量可有效诱导持久的肿瘤血管通透性,以促进脂质体渗出和间质渗透。这些发现为局部温和热疗在纳米药物输送系统给药前应用于改善肿瘤内药物输送提供了希望。

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