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聚焦超声血脑屏障破坏对炎症的影响作为治疗参数函数的表征。

Characterization of focused ultrasound blood-brain barrier disruption effect on inflammation as a function of treatment parameters.

作者信息

Angolano Cleide, Hansen Emily, Ajjawi Hala, Nowlin Paige, Zhang Yongzhi, Thunemann Natalie, Ferran Christiane, Todd Nick

出版信息

bioRxiv. 2024 Jul 16:2024.07.10.602776. doi: 10.1101/2024.07.10.602776.

Abstract

The technology of focused ultrasound-mediated disruption of the blood-brain barrier (FUS- BBB opening) has now been used in over 20 Phase 1 clinical trials to validate the safety and feasibility of BBB opening for drug delivery in patients with brain tumors and neurodegenerative diseases. The primary treatment parameters, FUS intensity and microbubble dose, are chosen to balance sufficient BBB disruption to achieve drug delivery against potential acute vessel damage leading to microhemorrhage. This can largely be achieved based on both empirical results from animal studies and by monitoring the microbubble cavitation signal in real time during the treatment. However, other safety considerations due to second order effects caused by BBB disruption, such as inflammation and alteration of neurovascular function, are not as easily measurable, may take longer to manifest and are only beginning to be understood. This study builds on previous work that has investigated the inflammatory response following FUS-BBB opening. In this study, we characterize the effect of FUS intensity and microbubble dose on the extent of BBB disruption, observed level of microhemorrhage, and degree of inflammatory response at three acute post-treatment time points in the wild-type mouse brain. Additionally, we evaluate differences related to biological sex, presence and degree of the anti- inflammatory response that develops to restore homeostasis in the brain environment, and the impact of multiple FUS-BBB opening treatments on this inflammatory response.

摘要

聚焦超声介导的血脑屏障破坏技术(FUS-BBB开放)现已用于20多项1期临床试验,以验证在脑肿瘤和神经退行性疾病患者中开放血脑屏障用于药物递送的安全性和可行性。主要治疗参数,即FUS强度和微泡剂量,是为了在实现足够的血脑屏障破坏以实现药物递送与防止导致微出血的潜在急性血管损伤之间取得平衡而选择的。这在很大程度上可以基于动物研究的经验结果以及在治疗过程中实时监测微泡空化信号来实现。然而,由于血脑屏障破坏引起的二阶效应导致的其他安全考虑因素,如炎症和神经血管功能改变,不太容易测量,可能需要更长时间才能显现,并且才刚刚开始被了解。本研究基于之前对FUS-BBB开放后炎症反应的研究工作。在本研究中,我们在野生型小鼠大脑中,在三个急性治疗后时间点,表征了FUS强度和微泡剂量对血脑屏障破坏程度、观察到的微出血水平以及炎症反应程度的影响。此外,我们评估了与生物性别、为恢复脑环境稳态而产生的抗炎反应的存在和程度相关的差异,以及多次FUS-BBB开放治疗对这种炎症反应的影响。

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