首页> 外文期刊>International journal of hyperthermia: The official journal of European Society for Hyperthermic Oncology, North American Hyperthermia Group >Formulation and characterisation of magnetic resonance imageable thermally sensitive liposomes for use with magnetic resonance-guided high intensity focused ultrasound
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Formulation and characterisation of magnetic resonance imageable thermally sensitive liposomes for use with magnetic resonance-guided high intensity focused ultrasound

机译:用于磁共振引导的高强度聚焦超声的可磁共振成像的热敏脂质体的配方和表征

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Purpose: Objectives of this study were to: 1) develop iLTSL, a low temperature sensitive liposome co-loaded with an MRI contrast agent (ProHance? Gd-HP-DO3A) and doxorubicin, 2) characterise doxorubicin and Gd-HP-DO3A release from iLTSL and 3) investigate the ability of magnetic resonance-guided high intensity focused ultrasound (MR-HIFU) to induce and monitor iLTSL content release in phantoms and in?vivo. Methods: iLTSL was passively loaded with Gd-HP-DO3A and actively loaded with doxorubicin. Doxorubicin and Gd-HP-DO3A release was quantified by fluorescence and spectroscopic techniques, respectively. Release with MR-HIFU was examined in tissue-mimicking phantoms containing iLTSL and in a VX2 rabbit tumour model. Results: iLTSL demonstrated consistent size and doxorubicin release kinetics after storage at 4°C for 7 days. Release of doxorubicin and Gd-HP-DO3A from iLTSL was minimal at 37°C but fast when heated to 41.3°C. The magnitude of release was not significantly different between doxorubicin and Gd-HP-DO3A over 10?min in HEPES buffer and plasma at 37°, 40° and 41.3°C (p??0.05). Relaxivity of iLTSL increased significantly (p??0.0001) from 1.95?±?0.05 to 4.01?±?0.1?mMssup?1/sup when heated above the transition temperature. Signal increase corresponded spatially and temporally to MR-HIFU-heated locations in phantoms. Signal increase was also observed in?vivo after iLTSL injection and after each 10-min heating (41°C), with greatest increase in the heated tumour region. Conclusion: An MR imageable liposome formulation co-loaded with doxorubicin and an MR contrast agent was developed. Stability, imageability, and MR-HIFU monitoring and control of content release suggest that MR-HIFU combined with iLTSL may enable real-time monitoring and spatial control of content release.
机译:目的:这项研究的目的是:1)开发iLTSL,一种与MRI造影剂(ProHance?Gd-HP-DO3A)和阿霉素共同装载的低温敏感脂质体,2)表征阿霉素和Gd-HP-DO3A的释放来自iLTSL和3)的研究探讨了磁共振引导的高强度聚焦超声(MR-HIFU)诱导和监测幻影和体内iLTSL含量释放的能力。方法:iLTSL被动加载Gd-HP-DO3A,主动加载阿霉素。阿霉素和Gd-HP-DO3A的释放分别通过荧光和光谱技术进行定量。在含有iLTSL的组织模拟体模和VX2兔肿瘤模型中检查了MR-HIFU的释放。结果:iLTSL在4°C储存7天后显示出一致的大小和阿霉素释放动力学。从iLTSL释放阿霉素和Gd-HP-DO3A的温度在37°C时极少,但在加热至41.3°C时很快。在37°,40°和41.3°C的HEPES缓冲液和血浆中,阿霉素和Gd-HP-DO3A在10?min内的释放量没有显着差异(p?>?0.05)。当加热到转变温度以上时,iLTSL的弛豫度从1.95±0.05显着增加(p <0.0001)至4.01±0.1 0.1mMs ≤1。信号的增加在空间和时间上对应于幻像中MR-HIFU加热的位置。注射iLTSL后以及每加热10分钟(41°C)后,在体内也观察到信号增强,在加热的肿瘤区域中最大。结论:开发了可与阿霉素和MR造影剂共同负载的MR可成像脂质体制剂。稳定性,可成像性以及MR-HIFU监视和控制内容发布表明,MR-HIFU与iLTSL结合可以实现内容发布的实时监视和空间控制。

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