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首页> 外文期刊>Scientific reports. >Image-Guided Focused-Ultrasound CNS Molecular Delivery: An Implementation via Dynamic Contrast-Enhanced Magnetic-Resonance Imaging
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Image-Guided Focused-Ultrasound CNS Molecular Delivery: An Implementation via Dynamic Contrast-Enhanced Magnetic-Resonance Imaging

机译:图像引导聚焦超声CNS分子递送:通过动态对比度增强磁共振成像的实现

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摘要

Focused ultrasound (FUS) exposure with microbubbles can transiently open the blood-brain barrier (BBB) to deliver therapeutic molecules into CNS tissues. However, delivered molecular distribution/concentration at the target need to be controlled. Dynamic Contrast-Enhanced Magnetic-Resonance Imaging (DCE-MRI) is a well-established protocol for monitoring the pharmacokinetic/pharmacodynamic behavior of FUS-BBB opening. This study investigates the feasibility of using DCE-MRI to estimate molecular CNS penetration under various exposure conditions and molecule sizes. In the 1st stage, a relationship among the imaging index Ktrans, exposure level and molecular size was calibrated and established. In the 2nd stage, various exposure levels and distinct molecules were applied to evaluate the estimated molecular concentration discrepancy with the quantified ones. High correlation (r2?=?0.9684) between Ktrans and transcranial mechanical index (MI) implies Ktrans can serve as an in vivo imaging index to mirror FUS-BBB opening scale. When testing various molecules with the size ranging 1–149?kDa, an overall correlation of r2?=?0.9915 between quantified and predicted concentrations was reached, suggesting the established model can provide reasonably accurate estimation. Our work demonstrates the feasibility of estimating molecular penetration through FUS-BBB opening via DCE-MRI and may facilitate development of FUS-induced BBB opening in brain drug delivery.
机译:聚焦超声(FUS)曝光与微泡可以瞬时打开血脑屏障(BBB)以将治疗分子递送到CNS组织中。然而,需要控制目标的分子分布/浓度。动态对比度增强的磁共振成像(DCE-MRI)是用于监测FUS-BBB开放的药代动力学/药物动力学行为的良好方案。本研究研究了使用DCE-MRI在各种暴露条件和分子尺寸下估计分子CNS渗透的可行性。在第1阶段,校准成像指数Ktrans,暴露水平和分子大小之间的关系并建立。在第二阶段,施加各种曝光水平和不同分子以评估估计的分子浓度差异与量化的水平。 Ktrans与经颅机械指数(MI)之间的高相关(R2?= 0.9684)意味着Ktrans可以用作体内成像指数以镜像FUS-BBB开度。当用尺寸测距1-149ΩkDa测试各种分子时,达到量化和预测浓度之间的R2 = 0.9915的总相关性,建议既定的模型可以提供合理准确的估计。我们的作品展示了通过DCE-MRI通过FUS-BBB开放估算分子渗透的可行性,并且可以促进脑药输送中的Fus诱导的BBB开放的发展。

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