Goyal Prateek, Soppina Pushpanjali, Misra Superb K, Valsami-Jones Eugenia, Soppina Virupakshi, Chakraborty Swaroop
Materials Engineering, Indian Institute of Technology Gandhinagar, Gandhinagar, India.
Biotechnology and Bioinformatics, Sambalpur University, Burla, India.
Front Toxicol. 2022 Jul 1;4:917749. doi: 10.3389/ftox.2022.917749. eCollection 2022.
Metal Organic Frameworks (MOFs) are extensively used for a wide range of applications due to their exceptionally high surface area. MOF particles are conventionally in micron size, but the nanosized MOFs show good transportation/mobility due to their small size, and when combined with the high surface area of MOFs, it makes MOF nanoparticles an ideal candidate to study for environmental remediation. Therefore, it is important to study the ecotoxicological impact of these MOFs. In this study, we developed rhodamine labelled nanoparticles of zinc imidazolate metal organic framework (ZIF-8 MOFs) as a means of tracing the MOF translocation in . Rhodamine B isothiocyanate functionalized ZIF-8 MOFs nanoparticles (RBITC@ZIF-8 MOF nanoparticles; size 44 ± 7 nm) were fed to the worms naturally within a concentration range of 0.16-16.4 μg mg. Fluorescence was detected in the pharyngeal and gut lumen regions of the worms after 4 h of treatment, for exposure concentrations >0.163 μg mg. A higher intensity of fluorescence was observed at the end of 24 h for all exposure concentrations. Worms treated with RBITC@ZIF-8 MOF concentrations of ≥1.63 μg mg for 24 h showed a bright stable fluorescence signal at the tail region. The uptake of RBITC@ZIF-8 MOF for an exposure concentration of 0.163, 1.63, and 8.2 μg mg was found to be 52.1, 11.4 and 28.6%, respectively. Through this study, we showed that RBITC@ZIF-8 MOFs can be exposed to and imaged at low concentrations of ∼0.16 μg mg.
金属有机框架材料(MOFs)因其极高的比表面积而被广泛应用于众多领域。传统的MOF颗粒尺寸为微米级,但纳米级的MOFs由于其尺寸小而具有良好的传输/流动性,并且与MOFs的高比表面积相结合,使得MOF纳米颗粒成为环境修复研究的理想候选材料。因此,研究这些MOFs的生态毒理学影响具有重要意义。在本研究中,我们开发了罗丹明标记的咪唑锌金属有机框架(ZIF-8 MOFs)纳米颗粒,作为追踪MOF在[具体对象]中转运的一种手段。将异硫氰酸罗丹明B功能化的ZIF-8 MOFs纳米颗粒(RBITC@ZIF-8 MOF纳米颗粒;尺寸为44±7 nm)以0.16 - 16.4 μg mg的浓度范围自然投喂给蠕虫。处理4小时后,对于暴露浓度>0.163 μg mg的蠕虫,在其咽部和肠道内腔区域检测到荧光。在24小时结束时,所有暴露浓度下均观察到更高强度的荧光。用≥1.63 μg mg浓度的RBITC@ZIF-8 MOF处理24小时的蠕虫在尾部区域显示出明亮稳定的荧光信号。发现暴露浓度为0.163、1.63和8.2 μg mg时,RBITC@ZIF-8 MOF的摄取率分别为52.1%、11.4%和28.6%。通过本研究,我们表明RBITC@ZIF-8 MOFs在约0.16 μg mg的低浓度下即可暴露并成像。