Department of Chemistry, Iran University of Science and Technology, Tehran, 16846-13114, Iran.
Nanotechnology Department, School of Advanced Technologies, Iran University of Science and Technology (IUST), Tehran, Iran.
J Biol Inorg Chem. 2021 Sep;26(6):689-704. doi: 10.1007/s00775-021-01887-3. Epub 2021 Aug 22.
A new multifunctional graphene oxide/Cu (II)-porphyrin MOF nanocomposite (CuG) comprised of Cu-TCPP MOF supported on graphene oxide (GO) nanosheets, has been fabricated by a solvothermal method at low temperature and one-pot process. Cu-TCPP MOF with universal advantages, such as high porosity, nontoxicity, large surface area, and safe biodegradation, combined with GO allows the achievement of an efficient doxorubicin loading (45.7%) and smart pH-responsive release for chemotherapy. More significantly, more than 97% of DOX was released by CuG at pH 5 which was more than that at pH 7.4 (~ 33.5%), while Cu-TCPP MOF displayed DOX release of 68.5% and 49% at pH 5 and 7.4, respectively, illustrating the effect of GO on the smart MOF construction for controllable releasing behavior in vitro. The results of in vitro anticancer experiments demonstrate that the developed nanocarrier exhibited slight or no cytotoxicity on normal cells, while the drug-loaded nanocarrier increased significant cancer cell-killing ability with higher therapeutic efficacy than free DOX, indicating the sustained release behavior of the CuG nanocarrier without any "burst effect". Moreover, the in vivo experiments demonstrated that the CuG-DOX exhibited significantly higher anticancer efficiency compared with free DOX. High anti-cancer therapeutic efficacy of this nanoscale carrier as an efficient pH sensitive agent, has the potential to enter further biomedical investigations. A new smart multifunctional graphene oxide-Cu (II)-porphyrin MOF nanocomposite (CuG) formed of Cu-TCPP MOF and graphene oxide (GO) has successfully fabricated and demonstrated an efficient pH-responsive drug release behavior in cancer therapy without using any targeting ligand.
一种新型多功能氧化石墨烯/Cu(II)-卟啉 MOF 纳米复合材料(CuG),由负载在氧化石墨烯(GO)纳米片上的 Cu-TCPP MOF 组成,是通过低温和一锅法的溶剂热法制备的。具有高孔隙率、无毒、大表面积和安全可生物降解等通用优势的 Cu-TCPP MOF 与 GO 结合,实现了阿霉素的高效负载(45.7%)和智能 pH 响应释放用于化疗。更重要的是,在 pH 5 时,CuG 释放了超过 97%的 DOX,而在 pH 7.4 时释放了约 33.5%;而 Cu-TCPP MOF 在 pH 5 和 7.4 时分别释放了 68.5%和 49%的 DOX,表明 GO 对智能 MOF 构建的影响对于体外可控释放行为。体外抗癌实验结果表明,所开发的纳米载体对正常细胞表现出轻微或无细胞毒性,而载药纳米载体增加了显著的癌细胞杀伤能力,具有比游离 DOX 更高的治疗效果,表明 CuG 纳米载体的持续释放行为没有任何“爆发效应”。此外,体内实验表明,CuG-DOX 与游离 DOX 相比表现出更高的抗癌效率。这种纳米载体作为高效 pH 敏感剂的高抗癌治疗效果,有可能进一步进行生物医学研究。一种新型智能多功能氧化石墨烯-Cu(II)-卟啉 MOF 纳米复合材料(CuG)由 Cu-TCPP MOF 和氧化石墨烯(GO)组成,成功制备并在癌症治疗中表现出高效 pH 响应药物释放行为,无需使用任何靶向配体。
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