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Dual-Frequency Ultrasound-Mediated Delivery of Rapamycin from Microbubbles Decreases Drug Dose Needed to Reduce Neointima Formation In Vivo

机译:双频超声介导的微泡的雷帕霉素的递送降低了减少体内内部形成所需的药物剂量

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Ultrasound-mediated drug delivery from microbubbles has been investigated as an alternative therapy for hyper-proliferation of cells connected to the process of restenosis (reocclusion of blood vessels). In this study, rats underwent arterial balloon injury to induce neointima formation - a hyper-proliferation of smooth muscle cells. High (10~9) or low (10~8) doses of microbubbles carrying rapamycin (anti-proliferative drug) were injected via the jugular vein. Acoustic radiation force (1.2 MHz, 65kPa, 100% duty cycle) and contrast-destruction pulses (5MHz, 1.5 MPa, 0.5% duty cycle) were applied focally to enhance drug delivery to the arteries. The addition of acoustic radiation force enhanced drug-mimicking DiI delivery by 90% compared to burst ultrasound alone. Applying both modes of ultrasound using a low dose of microbubbles resulted in a 35.9% reduction in neointima formation, compared to a 34.9% reduction from a high dose of microbubbles without ultrasound. These results validate the ability of ultrasound to provide equivalent drug delivery at 10% of the original dose, and thereby enhancing the "therapeutic window" of targeted drug therapy.
机译:从微泡超声介导的药物递送已被研究作为用于连接到再狭窄的过程(血管再闭塞)细胞的过度增殖的替代疗法。在这项研究中,大鼠接受了动脉气球损伤以诱导新内膜地层 - 平滑肌细胞的超增殖。高(10〜9)或低(10〜8)的剂量携带雷帕霉素(抗增殖药)的微泡被通过颈静脉注射。求声辐射力(1.2MHz,65kPa,100%占空比)和对比度破坏脉冲(5MHz,1.5MPa,0.5%占空比)综注地应用,以增强给动脉的药物递送。与单独的突发超声相比,添加声学辐射力增强了90%的药物模拟DII递送。使用低剂量的微泡应用两种超声波导致内部地段的35.9%降低,而没有超声波的高剂量微泡减少34.9%。这些结果验证了超声波来在原始剂量的10%提供等效的药物递送,并由此增强靶向药物治疗的“治疗窗”的能力。

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