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Biodegradable polymer based theranostic agents for photoacoustic imaging and cancer therapy

机译:基于可生物降解的聚合物的光声成像和癌症治疗的治疗剂

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In this study, multifunctional theranostic agents for photoacoustic (PA), ultrasound (US), fluorescent imaging, and for therapeutic drug delivery were developed and tested. These agents consisted of a shell made from a biodegradable Poly(lactide-co-glycolic acid) (PLGA) polymer, loaded with perfluorohexane (PFH) liquid and gold nanoparticles (GNPs) in the core, and lipophilic carbocyanines fluorescent dye DiD and therapeutic drug Paclitaxel (PAC) in the shell. Their multifunctional capacity was investigated in an in vitro study. The PLGA/PFH/DiD-GNPs particles were synthesized by a double emulsion technique. The average PLGA particle diameter was 560 nm, with 50 nm diameter silica-coated gold nano-spheres in the shell. MCF7 human breast cancer cells were incubated with PLGA/PFH/DiD-GNPs for 24 hours. Fluorescent and PA images were recorded using a fluorescent/PA microscope using a 1000 MHz transducer and a 532 nm pulsed laser. For the particle vaporization and drug delivery test, MCF7 cells were incubated with the PLGA/PFH-GNPs-PAC or PLGA/PFH-GNPs particles for 6, 12 and 24 hours. The effects of particle vaporization and drug delivery inside the cells were examined by irradiating the cells with a laser fluence of 100 mJ/cm~2, and cell viability quantified using the MTT assay. The PA images of MCF7 cells containing PLGA/PFH/DiD-GNPs were spatially coincident with the fluorescent images, and confirmed particle uptake. After exposure to the PLGA/PFH-GNP-PAC for 6,12 and 24 hours, the cell survival rate was 43%, 38%, and 36% respectively compared with the control group, confirming drug delivery and release inside the cells. Upon vaporization, cell viability decreased to 20%. The particles show potential as imaging agents and drug delivery vehicles.
机译:在该研究中,开发并测试了用于光声(PA),超声(US),荧光成像和治疗药物递送的多功能治疗剂。这些试剂由由可生物降解的聚(丙交酯 - 共乙醇酸)(PLGA)聚合物制成的壳,其中核心的全氟己烷(PFH)液体和金纳米颗粒(GNP),以及亲脂性碳碳糖荧光染料,并治疗药物紫杉醇(Pac)在壳中。在体外研究中研究了它们的多功能容量。通过双乳液技术合成PLGA / PFH / DID-GNPS颗粒。平均PLGA粒径为560nm,壳中的50nm直径直径的二氧化硅涂覆的金纳米球。将MCF7人乳腺癌细胞与PLGA / PFH / DID-GNP一起温育24小时。使用1000MHz换能器和532nm脉冲激光器使用荧光/ PA显微镜记录荧​​光和PA图像。对于粒子蒸发和药物递送试验,将MCF7细胞与PLGA / PFH-GNPS-PAC或PLGA / PFH-GNPS颗粒一起温育6,12和24小时。通过用激光量为100mJ / cm〜2的激光量来检查细胞内颗粒蒸发和药物递送的影响,并使用MTT测定量定量细胞活力。含有PLGA / PFH / DID-GNP的MCF7细胞的PA图像与荧光图像的空间一致,确认颗粒摄取。在暴露于PLGA / PFH-GNP-PAC 6,12和24小时后,与对照组相比,细胞存活率分别为43%,38%和36%,确认药物递送和释放细胞内。蒸发后,细胞活力降至20%。颗粒表现为成像剂和药物递送载体。

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