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Vaporization of perfluorocarbon droplets using optical irradiation

机译:使用光辐射蒸发全氟化碳液滴

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Micron-sized liquid perfluorocarbon (PFC) droplets are currently being investigated as activatable agents for medical imaging and cancer therapy. After injection into the bloodstream, superheated PFC droplets can be vaporized to a gas phase for ultrasound imaging, or for cancer therapy via targeted drug delivery and vessel occlusion. Droplet vaporization has been previously demonstrated using acoustic methods. We propose using laser irradiation as a means to induce PFC droplet vaporization using a method we term optical droplet vaporization (ODV). In order to facilitate ODV of PFC droplets which have negligible absorption in the infrared spectrum, optical absorbing nanoparticles were incorporated into the droplet. In this study, micron-sized PFC droplets loaded with silica-coated lead sulfide (PbS) nanoparticles were evaluated using a 1064 nm laser and ultra-high frequency photoacoustic ultrasound (at 200 and 375 MHz). The photoacoustic response was proportional to nanoparticle loading and successful optical droplet vaporization of individual PFC droplets was confirmed using photoacoustic, acoustic, and optical measurements. A minimum laser fluence of 1.4 J/cm2 was required to vaporize the droplets. The vaporization of PFC droplets via laser irradiation can lead to the activation of PFC agents in tissues previously not accessible using standard ultrasound-based techniques.
机译:目前正在研究微米大小的液态全氟化碳(PFC)液滴作为可激活的药物,用于医学成像和癌症治疗。注入血液后,过热的PFC液滴可汽化为气相,以进行超声成像或通过靶向药物输送和血管闭塞进行癌症治疗。先前已经使用声学方法证明了液滴汽化。我们建议使用激光辐照作为一种手段,使用一种我们称为光学液滴蒸发(ODV)的方法来诱导PFC液滴蒸发。为了促进在红外光谱中具有可忽略的吸收的PFC液滴的ODV,将吸收光的纳米粒子掺入到液滴中。在这项研究中,使用1064 nm激光和超高频光声超声(分别在200和375 MHz下)评估了装载有二氧化硅涂层的硫化铅(PbS)纳米颗粒的微米级PFC液滴。光声响应与纳米颗粒负载成正比,并且使用光声,声学和光学测量结果证实了各个PFC液滴的成功光滴蒸发。要使液滴汽化,需要的最小激光通量为1.4 J / cm2。经由激光照射的PFC液滴的汽化会导致以前使用基于标准超声的技术无法获得的组织中PFC试剂的活化。

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