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Imaging and Characterization of Sustained Gadolinium Nanoparticle Release from Next Generation Radiotherapy Biomaterial

机译:下一代放射疗法持续钆纳米粒子释放的成像和表征

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摘要

Smart radiotherapy biomaterials (SRBs) present a new opportunity to enhance image-guided radiotherapy while replacing routinely used inert radiotherapy biomaterials like fiducials. In this study the potential of SRBs loaded with gadolinium-based nanoparticles (GdNPs) is investigated for magnetic resonance imaging (MRI) contrast. GdNP release from SRB is quantified and modelled for accurate prediction. SRBs were manufactured similar to fiducials, with a cylindrical shell consisting of poly(lactic-co-glycolic) acid (PLGA) and a core loaded with GdNPs. Magnetic resonance imaging (MRI) contrast was investigated at 7T in vitro (in agar) and in vivo in subcutaneous tumors grown with the LLC1 lung cancer cell line in C57/BL6 mice. GdNPs were quantified in-phantom and in tumor and their release was modelled by the Weibull distribution. Gd concentration was linearly fitted to the R1 relaxation rate with a detection limit of 0.004 mmol/L and high confidence level (R2 = 0.9843). GdNP loaded SRBs in tumor were clearly visible up to at least 14 days post-implantation. Signal decrease during this time showed GdNP release in vivo, which was calculated as 3.86 ± 0.34 µg GdNPs release into the tumor. This study demonstrates potential and feasibility for SRBs with MRI-contrast, and sensitive GdNP quantification and release from SRBs in a preclinical animal model. The feasibility of monitoring nanoparticle (NP) concentration during treatment, allowing dynamic quantitative treatment planning, is also discussed.
机译:智能放射疗法生物材料(SRBS)提出了一种新的机会,可以增强图像引导的放射疗法,同时更换常规使用的惰性放射疗法生物材料如基准。在这项研究中,研究了由基于钆的纳米颗粒(GDNP)的SRB的潜力用于磁共振成像(MRI)对比度。 SRB的GDNP释放量化并为精确的预测建模。 SRBS类似于基准,具有由聚(乳酸二乙醇酸)酸(PLGA)组成的圆柱壳,以及装载有GDNP的核心。磁共振成像(MRI)对比度在7T体外(琼脂)和体内用LLC1肺癌细胞系C57 / BL6小鼠生长的皮下肿瘤进行了对比。 GDNPS在幽灵中含有幽灵和肿瘤,并通过Weibull分布进行模拟的释放。 GD浓度线性地装配到R1弛豫速率,检测限为0.004mmol / L和高置信水平(R2 = 0.9843)。肿瘤中的GDNP加载的SRB可明显可见至少14天的植入后。在此期间的信号降低显示体内GDNP释放,其计算为3.86±0.34μgGDNPS释放到肿瘤中。本研究表明,SRB具有MRI - 对比度的潜力和可行性,并在临床前动物模型中从SRBS中释放敏感的GDNP量化和释放。还讨论了治疗期间监测纳米粒子(NP)浓度的可行性,允许动态定量治疗计划。

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