Rahmani Erfan, Pourmadadi Mehrab, Ghorbanian Sohrab Ali, Yazdian Fatemeh, Rashedi Hamid, Navaee Mona
School of Chemical Engineering College of Engineering University of Tehran Tehran Iran.
Department of Life Science Engineering Faculty of New Science and Technologies University of Tehran Tehran Iran.
Eng Life Sci. 2022 Sep 13;22(10):634-649. doi: 10.1002/elsc.202200016. eCollection 2022 Oct.
Despite its widespread usage as a chemotherapy drug in cancer treatment, doxorubicin (DOX) has limitations such as short in vivo circulation time, low solubility, and poor permeability. In this regard, a pH-responsive chitosan (CS)- montmorillonite (MMT)- nitrogen-doped carbon quantum dots (NCQDs) nanocomposite was first developed, loaded with DOX, and then incorporated into a double emulsion to further develop the sustained release. The incorporated NCQDs into the CS-MMT hydrogel exhibited enhanced loading and entrapment efficiencies. The presence of NCQDs nanoparticles in the CS-MMT hydrogel also resulted in an extended pH-responsive release of DOX over a period of 96 h compared to that of CS-MMT-DOX nanocarriers at pH 5.4. Based on the Korsmeyer-Peppas model, there was a controlled DOX release at pH 5.4, while no diffusion was observed at pH 7.4, indicating fewer side effects. MTT assay showed that the cytotoxicity of DOX-loaded CS-MMT-NCQDs hydrogel nanocomposite was significantly higher than those of free DOX ( < 0.001) and CS-MMT-NCQDs ( < 0.001) on MCF-7 cells. Flow cytometry results demonstrated that a higher apoptosis induction achieved after incorporating NCQDs nanoparticles into CS-MMT-DOX nanocarrier. These findings suggest that the DOX-loaded nanocomposite is a promising candidate for the targeted treatment of cancer cells.
尽管阿霉素(DOX)作为一种化疗药物在癌症治疗中被广泛使用,但它存在诸如体内循环时间短、溶解度低和渗透性差等局限性。在这方面,首先开发了一种pH响应性壳聚糖(CS)-蒙脱石(MMT)-氮掺杂碳量子点(NCQDs)纳米复合材料,负载DOX,然后将其掺入双乳液中以进一步实现缓释。掺入CS-MMT水凝胶中的NCQDs表现出提高的负载率和包封率。与CS-MMT-DOX纳米载体在pH 5.4时相比,CS-MMT水凝胶中NCQDs纳米颗粒的存在还导致DOX在96小时内实现延长的pH响应性释放。基于Korsmeyer-Peppas模型,在pH 5.4时有可控的DOX释放,而在pH 7.4时未观察到扩散,表明副作用较少。MTT分析表明,负载DOX的CS-MMT-NCQDs水凝胶纳米复合材料对MCF-7细胞的细胞毒性显著高于游离DOX(<0.001)和CS-MMT-NCQDs(<0.001)。流式细胞术结果表明,将NCQDs纳米颗粒掺入CS-MMT-DOX纳米载体后实现了更高的凋亡诱导率。这些发现表明,负载DOX的纳米复合材料是用于靶向治疗癌细胞的有前景的候选物。