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Ultrasound-induced and MRI-monitored CuO nanoparticles release from micelle encapsulation

机译:超声诱导和MRI监测的CuO纳米粒子从胶束封装中释放

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摘要

Copper oxide nanoparticles (CuO NPs) have anticancer and antimicrobial activities. Moreover, they have a contrast enhancing effect in both MRI and ultrasound. Nonetheless, encapsulation is needed to control their toxic side effects and a mechanism for release on demand is required. A methodology is introduced herein for encapsulating and releasing CuO NPs from micelles by ultrasound induced hyperthermia and monitoring the process by MRI. For this aim, CuO NPs loaded poly(ethylene glycol)-block-poly(D,L-lactic acid) (PEG-b-PLA) micelles were prepared. Then, the profile of copper release with application of ultrasound was examined as a function of time and temperature using a colorimetric method. Finally, T1 weighted MRI images of suspensions and ex vivo poultry liver samples containing the CuO NPs loaded micelles were acquired before and after ultrasound application. The results confirmed that: (i) encapsulated NPs are detectible by MRI T1 mapping, depicting substantial T1 shortening from 1872 62 ms to 683 20 ms. (ii) Ultrasonic hyperthermia stimulated the NPs release with an about threefold increase compared to non-treated samples. (iii) Releasing effect was clearly visible by T1-weighted imaging (mean signal increase ratio of 2.29). These findings can potentially lead to the development of a new noninvasive methodology for CuO NPs based theranostic process.
机译:氧化铜纳米颗粒(CuO-NPs)具有抗癌和抗菌活性。此外,它们在MRI和超声波中都具有增强对比度的效果。尽管如此,需要进行封装以控制其毒副作用,并且需要一种按需释放的机制。本文介绍了一种通过超声诱导热疗从胶束中包封和释放CuO NP,并通过MRI监测过程的方法。为此,制备了负载CuO纳米粒子的聚乙二醇嵌段聚(D,L-乳酸)(PEG-b-PLA)胶束。然后,使用比色法检测了超声波作用下铜释放曲线随时间和温度的变化。最后,在超声应用前后获得了含有CuO-NPs负载胶束的悬浮液和离体禽肝样品的T1加权MRI图像。结果证实:(i)通过MRI T1标测可检测到包裹的NPs,显示T1从1872 62 ms大幅缩短至683 20 ms。(ii)超声热疗刺激NPs释放,与未处理样品相比增加约三倍。(iii)通过T1加权成像,释放效应清晰可见(平均信号增加率为2.29)。这些发现可能会为基于CuO-NPs的治疗过程开发一种新的无创方法。

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