新型l-精氨酸/阿霉素集成Cu(II)/Sr(II)金属-磷酸盐-有机骨架杂化纳米材料:制备、表征和体外细胞毒性活性

IF 4.3 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
ACS Omega Pub Date : 2025-08-06 DOI:10.1021/acsomega.5c01679
Rümeysa B. Taşdemi̇R, Başak Çelebi̇, Funda Ö. GüNey, Fatmanur Uyan, Hatice Bekci̇ and Serkan Dayan*, 
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引用次数: 0

摘要

纳米材料由于其独特的物理化学性质和功能的多功能性,在靶向癌症治疗中具有重要的前景。其中,金属-磷酸盐-有机框架(MPOFs)已成为药物输送应用中特别有吸引力的候选者。在本研究中,合成了铜(II)和锶(II)基MPOFs,并负载l-精氨酸、阿霉素(DOX)或两者,并评估了它们对MCF-7和A549癌细胞的细胞毒性作用。合成的纳米材料包括l-Arg@Cu(II)MPOF、DOX/l-Arg@Cu(II)MPOF、DOX@Cu(II)MPOF、l-Arg@Sr(II)MPOF、DOX/l-Arg@Sr(II)MPOF和DOX@Sr(II)MPOF。在不同的pH值(5、7.4、9和11)下进行合成。Cu(II)基MPOFs在pH为5、7.4和9的条件下成功合成,而Sr(II)基MPOFs只能在pH为11的条件下合成。利用FT-IR和x射线衍射光谱对合成的MPOFs进行了结构表征和化学成分表征。场发射扫描电子显微镜(FESEM), EDX和元素映射分析也被用来确定表面形貌和元素组成。FESEM图像显示,Cu(II)MPOFs的表面形貌具有清晰的晶体多孔纳米花结构,尺寸在6.3 ~ 18.1 μm之间。有趣的是,l-Arg@Sr(II)MPOFs也形成了堆叠的多孔花状结构,但DOX的加入干扰了这种结构,从而形成了纳米片状结构。MTT法检测合成的MPOFs对MCF-7和A549细胞株的细胞毒性,IC50值为4.19 ~ 22.83 μg/mL。在两种细胞系中,以DOX为唯一配体的MPOFs显示出最高的细胞毒活性。在pH为9时制备的DOX@Cu(II)MPOF对MCF-7和A549细胞的IC50分别为4.73 μg/mL和4.19 μg/mL,显示出最大的抗癌活性。基于Sr(II)的mpfs对A549细胞系具有更强的细胞毒性。其中,DOX@Sr(II)MPOF对A549细胞的IC50为5.51 μg/mL,活性最强。这些结果确定了制备的MPOFs有希望的细胞毒性,并介绍了它们作为新的靶向癌症治疗平台的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel l-Arginine/Doxorubicin-Integrated Cu(II)/Sr(II) Metal–Phosphate–Organic Framework Hybrid Nanomaterials: Fabrication, Characterization, and In Vitro Cytotoxic Activities

Nanomaterials hold significant promise in targeted cancer therapy due to their unique physicochemical properties and functional versatility. Among these, metal–phosphate–organic frameworks (MPOFs) have emerged as particularly attractive candidates for drug delivery applications. In this study, copper(II)- and strontium(II)-based MPOFs were synthesized and loaded with l-arginine, doxorubicin (DOX), or both, and their cytotoxic effects were evaluated against MCF-7 and A549 cancer cell lines. The synthesized nanomaterials included l-Arg@Cu(II)MPOF, DOX/l-Arg@Cu(II)MPOF, DOX@Cu(II)MPOF, l-Arg@Sr(II)MPOF, DOX/l-Arg@Sr(II)MPOF, and DOX@Sr(II)MPOF. The synthesis was performed at different pH values (5, 7.4, 9, and 11). The Cu(II)-based MPOFs were successfully synthesized at pH 5, 7.4, and 9, while the Sr(II)-based MPOFs could be obtained only at pH 11. The FT-IR and X-ray diffraction spectra of the synthesized MPOFs were used to characterize their structural and chemical compositions. Field emission scanning electron microscopy (FESEM), EDX, and elemental mapping analyses were also used to identify the surface morphology and elemental makeup. The surface morphology of the Cu(II)MPOFs, as shown by the FESEM images, had a well-defined crystalline porous nanoflower architecture with a size between 6.3 and 18.1 μm. Interestingly, the l-Arg@Sr(II)MPOFs also developed a stacked porous flower-like architecture, but the inclusion of DOX interfered with this architecture such that the nanosheet-like architecture was formed. The cytotoxicity of the synthesized MPOFs was determined by MTT assays in MCF-7 and A549 cell lines with IC50 values ranging from 4.19 to 22.83 μg/mL. The highest cytotoxic activity was shown by MPOFs with DOX as the only ligand in both cell lines. Also, the DOX@Cu(II)MPOF prepared at pH 9 revealed maximum anticancer activity, with an IC50 of 4.73 μg/mL against MCF-7 and 4.19 μg/mL against A549 cells. Sr(II)-based MPOFs proved to be more cytotoxic toward the A549 cell line. Specifically, the DOX@Sr(II)MPOF proved to be most active, with an IC50 of 5.51 μg/mL against A549 cells. These results identify the promising cytotoxicity of the prepared MPOFs and introduce their prospects as new targeted cancer therapy platforms.

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来源期刊
ACS Omega
ACS Omega Chemical Engineering-General Chemical Engineering
CiteScore
6.60
自引率
4.90%
发文量
3945
审稿时长
2.4 months
期刊介绍: ACS Omega is an open-access global publication for scientific articles that describe new findings in chemistry and interfacing areas of science, without any perceived evaluation of immediate impact.
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