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The Effect of Sonication on Extravasation and Distribution of Nanoparticles and Dextrans in Tumor Tissue Imaged by Multiphoton Microscopy

机译:超声对多光子显微镜成像的肿瘤组织中纳米颗粒和葡聚糖外渗和分布的影响

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Ultrasound (US)and systemic administration of microbubbles (MBs)have been shown to improve the delivery of drugs and nanoparticles (NPs)to tumor tissue. A better understanding of the mechanisms is crucial for effective delivery of NPs and drugs. To elucidate the kinetics of extravasation events, and relate it to the vessel diameter and flow, we have performed real-time intravital multiphoton microscopy during US sonication of tumors growing in dorsal window chambers. We studied the effects of four different mechanical index (MI)levels (0.2 to 0.8)while injecting SonoVue® or in-house made MBs with NPs in the shell (NPMB). We found that high MI of 0.8 induced a violent extravasation of both NPs and dextrans. Using lower MIs (0.2-0.6), less extravasation was detected and it occurred in vessels with larger diameters compared to sonication at MI 0.8. The rate of extravasation of both NPs and dextrans, and the displacement of NPs and dextrans from the vessel into the tumor tissue, correlated with MI. The observed extravasation events happened within milliseconds to minutes after the US exposure started. Moreover, we have observed a change of blood flow rate and direction with all the MIs tested.
机译:超声波(US)和微泡(MBs)的全身给药已显示可改善药物和纳米颗粒(NPs)向肿瘤组织的递送。更好地了解这些机制对于有效递送NP和药物至关重要。为了阐明外渗事件的动力学,并将其与血管直径和流量相关联,我们在超声处理背窗腔中生长的肿瘤的过程中进行了实时活体多光子显微镜检查。我们在注射SonoVue®或内部带有NP的外壳MB(NPMB)时研究了四种不同的机械指数(MI)水平(0.2至0.8)的影响。我们发现0.8的高MI会引起NP和右旋糖酐的剧烈外渗。使用较低的心梗(0.2-0.6),与在MI 0.8超声处理相比,发现的渗出较少,并且发生在直径较大的血管中。 NP和葡聚糖的外渗速率以及NP和葡聚糖从血管向肿瘤组织的移位与MI相关。观察到的外渗事件发生在美国暴露开始后数毫秒至数分钟内。此外,我们观察到所有MIs的血流速度和方向都有变化。

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