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Spatial and temporal profile of cisplatin delivery by ultrasound-assisted intravesical chemotherapy in a bladder cancer model

机译:膀胱癌模型中超声辅助膀胱内灌注化疗顺铂的时空分布

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摘要

Non-muscle invasive bladder cancer is one of the most common tumors of the urinary tract. Despite the current multimodal therapy, recurrence and progression of disease have been challenging problems. We hereby introduced a new approach, ultrasound-assisted intravesical chemotherapy, intravesical instillation of chemotherapeutic agents and microbubbles followed by ultrasound exposure. We investigated the feasibility of the treatment for non-muscle invasive bladder cancer. In order to evaluate intracellular delivery and cytotoxic effect as a function to the thickness, we performed all experiments using a bladder cancer mimicking 3D culture model. Ultrasound-triggered microbubble cavitation increased both the intracellular platinum concentration and the cytotoxic effect of cisplatin at the thickness of 70 and 122 μm of the culture model. The duration of enhanced cytotoxic effect of cisplatin by ultrasound-triggered microbubble cavitation was approximately 1 hr. Based on the distance and duration of delivery, we further tested the feasibility of repetition of the treatment. Triple treatment increased the effective distance by 1.6-fold. Our results clearly showed spatial and temporal profile of delivery by ultrasound-triggered microbubble cavitation in a tumor-mimicking structure. Furthermore, we demonstrated that the increase in intracellular concentration results in the enhancement of the cytotoxic effect in a structure with the certain thickness. Repetition of ultrasound exposure would be treatment of choice in future clinical application. Our results suggest ultrasound-triggered microbubble cavitation can be repeatable and is promising for the local control of non-muscle invasive bladder cancer.
机译:非肌肉浸润性膀胱癌是泌尿道最常见的肿瘤之一。尽管当前有多模式疗法,但是疾病的复发和进展一直是具有挑战性的问题。我们在此引入了一种新方法,即超声辅助膀胱内化疗,膀胱内滴注化学治疗剂和微泡,然后进行超声暴露。我们调查了非肌肉浸润性膀胱癌治疗的可行性。为了评估细胞内传递和细胞毒性作用与厚度的关系,我们使用了模仿3D培养模型的膀胱癌进行了所有实验。超声触发的微泡空化在培养模型的厚度为70和122μm时增加了细胞内铂浓度和顺铂的细胞毒性作用。超声触发的微泡空化作用增强顺铂细胞毒作用的持续时间约为1小时。根据距离和分娩时间,我们进一步测试了重复治疗的可行性。三重治疗使有效距离增加了1.6倍。我们的结果清楚地显示了在模仿肿瘤的结构中通过超声触发的微泡空化传递的时空分布。此外,我们证明了细胞内浓度的增加导致具有一定厚度的结构中细胞毒性作用的增强。重复超声暴露将是未来临床应用中的治疗选择。我们的结果表明,超声触发的微泡空化作用是可重复的,并且有望用于非肌肉浸润性膀胱癌的局部控制。

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