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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Recombinant Protein-Stabilized Monodisperse Microbubbles with Tunable Size Using a Valve-Based Microfluidic Device
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Recombinant Protein-Stabilized Monodisperse Microbubbles with Tunable Size Using a Valve-Based Microfluidic Device

机译:使用基于阀的微流控装置可调节大小的重组蛋白稳定的单分散微泡。

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Microbubbles are used as contrast enhancing agents in ultrasound sonography and more recently have shown great potential as theranostic agents that enable both diagnostics and therapy. Conventional production methods lead to highly polydisperse microbubbles, which compromise the effectiveness of ultrasound imaging and therapy. Stabilizing microbubbles with surfactant molecules that can impart functionality and properties that are desirable for specific applications would enhance the utility of microbubbles. Here we generate monodisperse microbubbles with a large potential for functionalization by combining a microfluidic method and recombinant protein technology. Our microfluidic device uses an air-actuated membrane valve that enables production of monodisperse microbubbles with narrow size distribution. The size of microbubbles can be precisely tuned by dynamically changing the dimension of the channel using the valve. The microbubbles are stabilized by an amphiphilic protein, oleosin, which provides versatility in controlling the functionalization of microbubbles through recombinant biotechnology. We show that it is critical to control the composition of the stabilizing agents to enable formation of highly stable and monodisperse microbubbles that are echogenic under ultrasound insonation. Our protein-shelled microbubbles based on the combination of microfluidic generation and recombinant protein technology provide a promising platform for ultrasound-related applications.
机译:微泡在超声超声检查中被用作造影剂,并且最近显示出其作为能够同时进行诊断和治疗的治疗治疗剂的巨大潜力。常规的生产方法导致高度多分散的微气泡,这损害了超声成像和治疗的有效性。用可以赋予特定应用所需的功能和特性的表面活性剂分子稳定微泡将增强微泡的实用性。在这里,我们通过结合微流控方法和重组蛋白技术,产生具有巨大功能化潜力的单分散微泡。我们的微流控设备使用气动膜阀,可生产尺寸分布狭窄的单分散微气泡。通过使用阀门动态更改通道尺寸,可以精确调整微气泡的大小。微泡被两亲蛋白油质蛋白稳定,该蛋白通过重组生物技术提供了控制微泡功能性的多功能性。我们表明至关重要的是控制稳定剂的成分,以使能够形成高度稳定和单分散的微泡,在超声声波作用下产生回声。我们基于微流体生成和重组蛋白质技术的蛋白质外壳微泡为超声相关应用提供了有希望的平台。

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