J Biomed Nanotechnol. 2020 Sep 1;16(9):1359-1369. doi: 10.1166/jbn.2020.2972.
Metal-organic frameworks (MOFs) are promising new nanocarriers with potential use in anticancer drug delivery. However, there is a scarcity of studies on the uptake and release of guest molecules associated with MOF nanovehicles, and their mechanism is poorly understood. In this work, newly developed iron-based MOFs, namely Fe-NDC nanorods, were investigated as potential nanocarriers for calcein (as a model drug/dye) and Doxorubicin (a chemotherapeutic drug (DOX)). Calcein was successfully loaded by equilibrating its solution with the MOFs nanoparticles under constant stirring. The calcein average encapsulation efficiency achieved was 43.13%, with a corresponding capacity of 17.74 wt.%. In-vitro calcein release was then carried out at 37°C in phosphate buffer saline (PBS) using ultrasound (US) as an external trigger. MOFs released an average of 17.8% (without US), whereas they released up to 95.2% of their contents when 40-kHz US at ~1 W/cm² was applied for 10 min. The Cytotoxic drug DOX was also encapsulated in Fe-NDC, and its In-vitro release profile was determined under the same conditions. DOX encapsulation efficiency and capacity were found to be 16.10% and 13.37 wt.%, respectively. release experiments demonstrated significant release, reaching 80% in 245 minutes, under acoustic irradiation, compared to around 6% in the absence of US. Additionally, experimental results showed that Fe-NDC nanoparticles are biocompatible even at relatively high concentrations, with an MCF-7 IC of 1022 g/ml. Our work provides a promising platform for anticancer drug delivery by utilizing biocompatible Fe-NDC nanoparticles and US as an external trigger mechanism.
金属有机骨架(MOFs)是一种很有前途的新型纳米载体,有望用于抗癌药物输送。然而,关于与 MOF 纳米载体相关的客体分子的摄取和释放的研究很少,其机制也知之甚少。在这项工作中,研究了新开发的基于铁的 MOFs,即 Fe-NDC 纳米棒,作为 calcein(作为模型药物/染料)和 Doxorubicin(一种化疗药物(DOX))的潜在纳米载体。通过在恒速搅拌下将 calcein 的溶液与 MOFs 纳米粒子平衡,成功地负载了 calcein。达到的 calcein 平均包封效率为 43.13%,对应的载药量为 17.74wt%。然后,在 37°C 下,在磷酸盐缓冲盐水(PBS)中进行 calcein 的体外释放,使用超声(US)作为外部触发。MOFs 在没有 US 的情况下平均释放 17.8%,而当施加 40-kHz 约 1 W/cm² 的 US 10 分钟时,它们释放了高达 95.2%的内容物。同样,将抗癌药物 DOX 包封在 Fe-NDC 中,并在相同条件下确定其体外释放曲线。发现 DOX 的包封效率和载药量分别为 16.10%和 13.37wt%。释放实验表明,在声辐射下,与没有 US 时的约 6%相比,达到 245 分钟时达到 80%的显著释放。此外,实验结果表明,即使在相对较高的浓度下,Fe-NDC 纳米粒子也是生物相容的,MCF-7 IC 为 1022 g/ml。我们的工作为利用生物相容的 Fe-NDC 纳米粒子和 US 作为外部触发机制进行抗癌药物输送提供了一个很有前途的平台。