Jin Birui, Lin Min, Zong Yujin, Wan Mingxi, Xu Feng, Duan Zhenfeng, Lu Tianjian
Nanotechnology. 2015 Aug 28;26(34):345601. doi: 10.1088/0957-4484/26/34/345601.
Bimodal imaging offers additional imaging signal thus finds wide spread application in clinical diagnostic imaging. Fluorescence/ultrasound bimodal imaging contrast agent using fluorescent dyes or quantum dots for fluorescence signal has emerged as a promising method, which however requires visible light or UV irradiation resulting in photobleaching, photo blinking,auto-fluorescence and limited tissue penetration depth. To surmount these problems, we developed a novel bimodal contrast agent using layer-by-layer assembly of up conversion nanoparticles onto the surface of microbubbles. The resulting microbubbles with average size of 2 μm provide enhanced ultrasound echo for ultrasound imaging and upconversion emission upon near infrared irradiation for fluorescence imaging. The developed bimodal contrast agent holds great potential to be applied in ultrasound target technique for targeted diseases diagnostics and therapy.
双模态成像提供了额外的成像信号,因此在临床诊断成像中得到了广泛应用。使用荧光染料或量子点产生荧光信号的荧光/超声双模态成像造影剂已成为一种有前景的方法,然而,这需要可见光或紫外线照射,会导致光漂白、光闪烁、自发荧光以及组织穿透深度受限。为克服这些问题,我们通过将上转换纳米颗粒逐层组装在微泡表面,开发了一种新型双模态造影剂。由此产生的平均尺寸为2μm的微泡为超声成像提供增强的超声回波,并在近红外照射下产生上转换发射用于荧光成像。所开发的双模态造影剂在超声靶向技术用于靶向疾病诊断和治疗方面具有巨大的应用潜力。