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Dual-mode imaging and therapeutic effects of drug-loaded phase-transition nanoparticles combined with near-infrared laser and low-intensity ultrasound on ovarian cancer

机译:载药相变纳米粒子结合近红外激光和低强度超声对卵巢癌的双模式成像及治疗作用

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摘要

Chemotherapy and photo-sonodynamic therapy (PSDT) can be combined through drug delivery nano-platforms to enhance the anti-tumor efficacy, however, which is limited by hypoxia in tumor, thereby causing chemotherapy resistance. Perfluoropentane (PFP) has the ability to carry oxygen and to enhance ultrasound or photoacoustic imaging after vaporization. Herein, we constructed a kind of nanoparticles (PTX/ICG and oxygen loaded PLGA nanoparticles (PIO_NPs)), which had PFP core carrying oxygen and PLGA shell loaded indocyanine green (ICG) and paclitaxel (PTX). PIO_NPs harbored good optical stability and the ability to transit phase. Moreover, it could rapidly release PTX and generate ROS under the mediation by near-infrared laser and low-intensity ultrasound. The PIO_NPs enhanced contrast of the ultrasound and PA imaging. In particular, PIO_NPs may be used to monitor and guide treatment for the accumulation of PIO_NPs at tumor site can be observed by PA imaging. Compared with PTX or other nanoparticles, PIO_NPs combined with laser and ultrasound (L.U) significantly induced apoptosis of SKOV3 cells and inhibited SKOV3 tumor growth. Therefore, PIO_NPs are of great potential in cancer imaging and therapy.
机译:可以通过药物递送纳米平台将化学疗法和光声动力学疗法(PSDT)结合使用,以增强抗肿瘤功效,但是,这受到肿瘤缺氧的限制,从而导致了化疗耐药性。全氟戊烷(PFP)具有在蒸发后携带氧气并增强超声或光声成像的能力。本文中,我们构建了一种纳米颗粒(PTX / ICG和载有氧的PLGA纳米颗粒(PIO_NPs)),该颗粒具有载有氧的PFP核以及载有吲哚菁绿(ICG)和紫杉醇(PTX)的PLGA壳。 PIO_NP具有良好的光学稳定性和过渡相的能力。而且,它可以在近红外激光和低强度超声的作用下迅速释放PTX并产生ROS。 PIO_NPs增强了超声和PA成像的对比度。特别地,PIO_NP可以用于监测和指导治疗,因为可以通过PA成像观察到PIO_NP在肿瘤部位的积累。与PTX或其他纳米粒子相比,PIO_NPs与激光和超声(L.U)结合可显着诱导SKOV3细胞凋亡并抑制SKOV3肿瘤生长。因此,PIO_NP在癌症成像和治疗中具有巨大潜力。

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