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天然聚合物修饰的 MOF-MXene 纳米载体用于阿霉素/ pCRISPR 的共递送

Natural Polymers Decorated MOF-MXene Nanocarriers for Co-delivery of Doxorubicin/pCRISPR.

机构信息

Department of Chemistry, Sharif University of Technology, Tehran 11155-3516, Iran.

Center of Excellence in Electrochemistry, School of Chemistry, College of Science, University of Tehran, Tehran142411, Iran.

出版信息

ACS Appl Bio Mater. 2021 Jun 21;4(6):5106-5121. doi: 10.1021/acsabm.1c00332. Epub 2021 May 8.

Abstract

A one-pot and facile method with assistance of high gravity was applied for the synthesis of inorganic two-dimensional MOF-5 embedded MXene nanostructures. The innovative inorganic MXene/MOF-5 nanostructure was applied in co-delivery of drug and gene, and to increase its bioavailability and interaction with the pCRISPR, the nanomaterial was coated with alginate and chitosan. The polymer-coated nanosystems were fully characterized, and the sustained DOX delivery and comprehensive cytotoxicity studies were conducted on the HEK-293, PC12, HepG2, and HeLa cell lines, demonstrating acceptable and excellent cell viability at both very low (0.1 μg.mL) and high (10 μg·mL) concentrations. The chitosan-coated nanocarriers showed superior relative cell viability compared to others, more than 60% on average of relative cell viability in all of the cell lines. Then, alginate-coated nanocarriers ranked at second place on the higher relative cell viability, more than 50% on average for all of the cell lines. Also, MTT results showed a complete dose-dependence, and by increasing the time of treatment from 24 to 72 h, the relative cell viability decreased by a meaningful slope; however, this decrease was optimized by coating the nanocarrier with chitosan and alginate. The nanosystems were also tagged with pCRISPR to analyze the potential application in the co-delivery of drug/gene. CLSM images of the HEK-293 and HeLa cell lines unveiled successful delivery of pCRISPR into the cells, and the enhanced green fluorescent protein (EGFP) reached up to 26% for the HeLa cell line. Also, a considerable drug payload of 35.7% was achieved, which would be because of the interactions between the nanocarrier and the doxorubicin. In this unprecedented report pertaining to the synthesis of MXene assisted by a MOF and high-gravity technique, the methodology and the optimized ensuing MXene/MOF-5 nanosystems can be further developed for the co-delivery of drug/gene in animal models.

摘要

一种一锅法和简易方法在高重力的辅助下应用于合成无机二维 MOF-5 嵌入 MXene 纳米结构。创新的无机 MXene/MOF-5 纳米结构被应用于药物和基因的共递药,为了提高其生物利用度和与 pCRISPR 的相互作用,纳米材料用藻酸盐和壳聚糖进行了涂层。对聚合物涂层纳米系统进行了全面的表征,并在 HEK-293、PC12、HepG2 和 HeLa 细胞系上进行了持续的 DOX 递药和综合细胞毒性研究,在非常低(0.1 μg.mL)和高(10 μg·mL)浓度下,显示出可接受和优异的细胞活力。壳聚糖涂层纳米载体的相对细胞活力优于其他载体,在所有细胞系中平均超过 60%的相对细胞活力。然后,藻酸盐涂层纳米载体的相对细胞活力排名第二,在所有细胞系中平均超过 50%。此外,MTT 结果显示出完全的剂量依赖性,通过将治疗时间从 24 小时增加到 72 小时,相对细胞活力以有意义的斜率下降;然而,通过用壳聚糖和藻酸盐对纳米载体进行涂层,可以优化这种下降。该纳米系统还被标记上了 pCRISPR,以分析在药物/基因共递药方面的潜在应用。HEK-293 和 HeLa 细胞系的 CLSM 图像揭示了 pCRISPR 成功递送到细胞内,并且绿色荧光蛋白(EGFP)在 HeLa 细胞系中达到了 26%。此外,还实现了相当大的 35.7%的药物载药量,这可能是由于纳米载体和阿霉素之间的相互作用。在这篇前所未有的关于 MOF 和高重力技术辅助的 MXene 合成的报告中,该方法和优化后的 MXene/MOF-5 纳米系统可以进一步开发用于动物模型中的药物/基因共递药。

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