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Characterization of mechano-sensitive nano-containers for targeted vasodilation

机译:机械敏感纳米容器的表征靶向血管血管

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Cardiovascular diseases are the worldwide number one cause of mortality. The blood flow in diseased human coronary arteries differs from the blood flow in the healthy vessels. This fact should be used for designing targeted localized delivery of vasodilators with a purely physical drug release trigger. Thus, we have proposed mechano-sensitive liposomes as mechano-sensitive containers. One has to tailor the liposome's properties, so that containers are stable under physiological conditions in health, but release their cargo near the constricted vessels at body temperature. In order to determine the shear stress threshold for release, both the morphology of the healthy and diseased human arteries and the mechanical property of the liposomes have to be known. We have shown that micro computed tomography (μCT) techniques allow visualizing the lumen of human coronary arteries and provide the basis for flow simulations to extract the wall shear stress of healthy and stenosed regions in human coronary arteries. The behavior of the mechano-sensitive liposomes is currently investigated by means of microfluidics and spatially resolved small-angle X-ray scattering. The liposomes are injected into micro-channels mimicking in vivo situation. The scattering signal from the liposomes reveals information about their size, shape, and wall thickness.
机译:心血管疾病是全球性的一个死亡原因。患病人冠状动脉的血流与健康血管中的血流不同。这一事实应用于设计具有纯物理药物释放触发器的血管扩张器的目标局部递送。因此,我们提出了机械敏感的脂质体作为机械敏感容器。一个人必须定制脂质体的性质,使容器在健康状况的生理条件下稳定,但在体温下释放其附近的货物。为了确定释放的剪切应力阈值,必须知道健康和患病的人动脉的形态和脂质体的力学性质。我们已经表明,微计算机断层扫描(μCT)技术允许可视化人冠状动脉的内腔,并为流动模拟提供基础,以提取人冠状动脉中健康和狭窄区域的壁剪应力。目前通过微流体和空间分离的小角X射线散射研究了机械敏感脂质体的行为。将脂质体注入微观的微观通道中。来自脂质体的散射信号揭示了关于它们的尺寸,形状和壁厚的信息。

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