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Ultrasound-mediated delivery of RGD-conjugated nanobubbles loaded with fingolimod and superparamagnetic iron oxide nanoparticles: targeting hepatocellular carcinoma and enhancing magnetic resonance imaging

机译:超声介导的RGD缀合的纳米泡型加载用弓形纤维和超顺磁性氧化铁纳米粒子:靶向肝细胞癌和增强磁共振成像

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Nanobubbles (NBs) are considered to be a new generation of ultrasound-responsive nanocarriers that can effectively target tumors, accurately release multi-drugs at desired locations, as well as simultaneously perform diagnosis and treatment. In this study, we designed theranostic NBs (FTY720@SPION/PFP/RGD-NBs) composed of RGD-modified liposomes as the shell, and perflenapent (PFP), superparamagnetic iron oxide nanoparticles (SPION), and fingolimod (2-amino-2[2-(4-octylphenyl)ethyl]-1,3-propanediol, FTY720) encapsulated as the core. The prepared FTY720@SPION/PFP/RGD-NBs were black spheres with a diameter range of 160–220 nm, eligible for enhanced permeability and retention (EPR) effects. The calculated average drug loading efficiency (LE) and encapsulation efficiency (EE) of the FTY720@SPION/PFP/RGD-NBs were 9.18 ± 0.61% and 88.26 ± 2.31%, respectively. With the promotion of low-intensity focused ultrasound (LIFU), the amount and the rate of FTY720 released from the prepared NB complex were enhanced when compared to the samples without LIFU treatment. In vitro magnetic resonance imaging (MRI) trials showed that the prepared FTY720@SPION/PFP/RGD-NBs had a high relaxation rate and MRI T2-weighted imaging (T2WI) scanning sensitivity conditions. The cell viability studies demonstrated that both HepG2 and Huh7 cells co-cultured with FTY720@SPION/PFP/RGD-NB (100 μg mL ~(?1) ) + LIFU treatment had the lowest survival rate compared with the other groups at 24 h and 48 h, showing that FTY720@SPION/PFP/RGD-NB had the strongest anti-tumor efficiency among the prepared NBs. The cytotoxicity study also demonstrated that the prepared NBs had low toxicity to normal fibroblast 3T3 cells. Cellular uptake studies further indicated that both LIFU treatment and RGD modification could effectively improve the tumor-targeted effects, thereby enhancing the antitumor efficacy. The qRT-PCR results indicated that LIFU-mediated FTY720@SPION/PFP/RGD-NB could significantly cause the activation of Caspase3, Caspase9 and p53 compared to the control group, inducing HepG2 apoptosis. These results together indicated that FTY720@SPION/PFP/RGD-NBs combined with LIFU may serve as a multifunctional drug delivery platform for hepatocellular carcinoma treatment and provide a new strategy for tumor visualization by MRI.
机译:纳米泡(NBS)被认为是新一代超声响应纳米载体,可有效靶向肿瘤,准确地释放所需位置的多药,以及同时进行诊断和治疗。在这项研究中,我们设计了由RGD改性脂质体作为壳体的Theranostic NB(Fty720 @ Spion / PFP / RGD-NBS),以及灌注(PFP),超顺磁性氧化铁纳米粒子(Spion)和Fingolimod(2-氨基 - 2 [2-(4-辛基苯基)乙基] -1,3-丙二醇,FTY720包封作为核心。制备的FTY720 @ SPION / PFP / RGD-NBS是直径范围为160-220nm的黑球,符合增强的渗透性和保留(EPR)效应。 FTY720 @ SPION / PFP / RGD-NB的计算平均药物负荷效率(LE)和封装效率(EE)分别为9.18±0.61%和88.26±2.31%。随着低强度聚焦超声(LIFU)的促进,与没有LIFU处理的样品相比,从制备的NB复合物中释放的FTY720的量和速率增强。体外磁共振成像(MRI)试验表明,制备的FTY720 @ SPION / PFP / RGD-NB具有高弛豫率和MRI T2加权成像(T2WI)扫描敏感性条件。细胞活力研究表明,与FTY720 @ SPION / PFP / RGD-NB共同培养的HepG2和HUH7细胞(100μgmL〜(β1))+ LIFU治疗与24小时的其他组相比,存在最低的存活率和48小时,表明FTY720 @ SPION / PFP / RGD-NB在制备的NBS中具有最强的抗肿瘤效率。细胞毒性研究还证明,制备的NB对正常成纤维细胞3T3细胞具有低毒性。细胞吸收研究进一步表明,LIFU治疗和RGD修饰都可以有效改善肿瘤靶向效果,从而提高抗肿瘤功效。 QRT-PCR结果表明,与对照组相比,Lifu介导的Fty720 @ Spion / PFP / RGD-NB可以显着导致Caspase3,Caspase9和P53的激活,诱导Hepg2细胞凋亡。这些结果共同表明,与LIFU相结合的FTY720 @ SPION / PFP / RGD-NBS可以作为肝细胞癌处理的多功能药物递送平台,并为MRI提供了肿瘤可视化的新策略。

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