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Indocyanine green-loaded perfluorocarbon nanoemulsions for bimodal 19F-magnetic resonanceearinfrared fluorescence imaging and subsequent phototherapy

机译:含吲哚菁绿的全氟化碳纳米乳剂用于双峰19F磁共振/神经红外荧光成像及随后的光疗

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摘要

We have developed an indocyanine green-loaded perfluorocarbon (ICG/PFCE) nanoemulsion as a multifunctional theranostic nanomedicine which enables not only 19F magnetic resonance (MR)ear-infrared fluorescence (NIRF) bimodal imaging but also subsequent photodynamic/photothermal dual therapy of cancer. The hydrodynamic size of ICG/PFCE nanoemulsions was 164.2 nm. The stability of indocyanine green (ICG) in aqueous solution was significantly improved when loaded on perfluorocarbon nanoemulsions. In addition, ICG/PFCE nanoemulsions showed good dispersion stability in aqueous media containing 10% fetal bovine serum, for at least 14 days.19F-MRI of ICG/PFCE nanoemulsions showed that the signal intensity increased with increasing nanoemulsion concentration with no signal observed from the surrounding background. Using NIRF imaging with perfluorocarbon nanoemulsion alone, without ICG, did not produce NIRF, while clear and bright fluorescent images were obtained with ICG/PFCE nanoemulsions at 10-µM ICG equivalent. The capacity of ICG-loaded nanoemulsions to generate heat following light irradiation by using an 810-nm laser was comparable to that of free ICG, while singlet oxygen generation of ICG-loaded nanoemulsions was significantly better than that of free ICG.In vitro cytotoxicity tests and fluorescence microscopy confirmed biocompatibility of the nanoemulsion. Upon light irradiation, U87MG glioblastoma cells incubated with ICG/PFCE nanoemulsions underwent necrotic cell death. The therapeutic mechanism during light illumination appears to be mainly due to the photodynamic effect at lower ICG concentrations, whilst the photothermal effect became more obvious at increased ICG concentrations, enabling combined photodynamic/photothermal therapy of cancer cells.
机译:我们已经开发了一种吲哚菁绿负载的全氟化碳(ICG / PFCE)纳米乳剂,它是多功能的治疗性纳米医学,不仅可以实现 19 磁共振(MR)/近红外荧光(NIRF)双峰成像,而且还可以实现随后的光动力/光热双重癌症治疗。 ICG / PFCE纳米乳液的流体动力学尺寸为164.2 nm。当负载在全氟化碳纳米乳剂上时,吲哚菁绿(ICG)在水溶液中的稳定性得到显着改善。此外,ICG / PFCE纳米乳剂在含有10%胎牛血清的水性介质中表现出良好的分散稳定性,至少持续14天。 19 ICG / PFCE纳米乳剂的信号强度随信号强度的增加而增强。纳米乳液浓度不断增加,而周围的背景却未观察到任何信号。仅使用不带ICG的全氟化碳纳米乳剂进行NIRF成像不会产生NIRF,而使用ICG / PFCE纳米乳剂以10 µM ICG当量可获得清晰明亮的荧光图像。使用810 nm激光照射后,负载有ICG的纳米乳状液产生热量的能力与游离ICG相当,而承载ICG的纳米乳状液的单线态氧生成明显优于游离ICG。荧光显微镜证实了该纳米乳液的生物相容性。光照后,与ICG / PFCE纳米乳一起孵育的U87MG胶质母细胞瘤细胞发生坏死性细胞死亡。光照期间的治疗机制似乎主要是由于在较低ICG浓度下的光动力效应,而在增加ICG浓度时光热效应变得更加明显,从而使癌细胞能够进行光动力/光热疗法相结合。

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