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The Optimized Fabrication of Nanobubbles as Ultrasound Contrast Agents for Tumor Imaging

机译:纳米气泡作为超声造影剂在肿瘤成像中的优化制备。

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Nanobubbles, which have the potential for ultrasonic targeted imaging and treatment in tumors, have been a research focus in recent years. With the current methods, however, the prepared uniformly sized nanobubbles either undergo post-formulation manipulation, such as centrifugation, after the mixture of microbubbles and nanobubbles, or require the addition of amphiphilic surfactants. These processes influence the nanobubble stability, possibly create material waste, and complicate the preparation process. In the present work, we directly prepared uniformly sized nanobubbles by modulating the thickness of a phospholipid film without the purification processes or the addition of amphiphilic surfactants. The fabricated nanobubbles from the optimal phospholipid film thickness exhibited optimal physical characteristics, such as uniform bubble size, good stability, and low toxicity. We also evaluated the enhanced imaging ability of the nanobubbles both in vitro and in vivo . The in vivo enhancement intensity in the tumor was stronger than that of SonoVue after injection (UCA; 2?min: 162.47?±?8.94?dB vs. 132.11?±?5.16?dB, P
机译:纳米气泡具有在肿瘤中进行超声靶向成像和治疗的潜力,近年来已成为研究重点。然而,利用当前的方法,在微泡和纳米泡的混合物之后,所制备的均匀尺寸的纳米泡要么经过配制后的处理,例如离心,要么需要添加两亲性表面活性剂。这些过程影响纳米气泡的稳定性,可能产生材料浪费,并使制备过程复杂化。在目前的工作中,我们通过调节磷脂膜的厚度而无需纯化过程或添加两亲性表面活性剂,直接制备均一尺寸的纳米气泡。由最佳磷脂膜厚度制成的纳米气泡具有最佳的物理特性,例如均匀的气泡大小,良好的稳定性和低毒性。我们还评价了增强的纳米气泡的体外和体内成像能力。注射后肿瘤的体内增强强度比SonoVue强(UCA; 2?min:162.47?±?8.94?dB与132.11?±?5.16?dB,P

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