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基于聚乙烯亚胺功能化氮掺杂石墨烯量子点的钯金属纳米复合材料:合成、表征、密度泛函理论建模及对人卵巢癌细胞的细胞周期阻滞作用

Palladium Metal Nanocomposites Based on PEI-Functionalized Nitrogen-Doped Graphene Quantum Dots: Synthesis, Characterization, Density Functional Theory Modeling, and Cell Cycle Arrest Effects on Human Ovarian Cancer Cells.

作者信息

Gunes Buket Altinok, Kirlangic Omer Faruk, Kilic Murat, Sunguroglu Asuman, Ozgurtas Taner, Sezginer Ecem Kaya, Boyacioglu Bahadir, Unver Huseyin, Yildiz Mustafa

机构信息

Vocational School of Health Services, Ankara University, Ankara 06290, Turkiye.

Department of Medical Biology, School of Medicine, Ankara University, Ankara 06620, Turkiye.

出版信息

ACS Omega. 2024 Mar 6;9(11):13342-13358. doi: 10.1021/acsomega.3c10324. eCollection 2024 Mar 19.

Abstract

In this study, the synthesis, characterization, density functional theory calculations (DFT), and effect of polyethylenimine (PEI)-functionalized nitrogen-doped graphene quantum dots (PEI N-GQDs) and their palladium metal nanoparticles nanocomposites (PdNPs/PEI N-GQDs) on cancer cells were extensively investigated. The focus also includes investigating their cytotoxic and apoptotic effects on ovarian cancer cells, which pose a serious risk to women's health and have high death rates from delayed diagnosis, inadequate response to treatment, and decreased survival. Graphene quantum dots and their palladium nanocomposites were differentially effective against ovarian cancer cell lines. In particular, the smaller particle size and morphology of PdNPs/PEI N-GQDs nanocomposites compared with PEI N-GQDs probably enhance their activity through highly improved uptake by cells. These findings emphasize the importance of particle size in composite drugs for efficient cancer treatment. DFT results revealed that the Pd-containing nanocomposite, with a smaller highest occupied molecular orbital-lowest unoccupied molecular orbital gap, exhibited higher reactivity and anticancer effects in human ovarian cancer cell line, OVCAR-3. Significantly, the application of nanocomposites to ovarian cancer cells initiated apoptosis, offering valuable insights into the intricate interplay between nanomaterials and cancer biology.

摘要

在本研究中,对聚乙烯亚胺(PEI)功能化的氮掺杂石墨烯量子点(PEI N-GQDs)及其钯金属纳米颗粒纳米复合材料(PdNPs/PEI N-GQDs)的合成、表征、密度泛函理论计算(DFT)以及它们对癌细胞的作用进行了广泛研究。重点还包括研究它们对卵巢癌细胞的细胞毒性和凋亡作用,卵巢癌对女性健康构成严重风险,且由于诊断延迟、治疗反应不足和生存率降低而死亡率很高。石墨烯量子点及其钯纳米复合材料对卵巢癌细胞系具有不同的有效性。特别是,与PEI N-GQDs相比,PdNPs/PEI N-GQDs纳米复合材料的粒径更小且形态不同,这可能通过细胞对其摄取的大幅提高来增强它们的活性。这些发现强调了复合药物中粒径对于有效癌症治疗的重要性。DFT结果表明,含钯纳米复合材料的最高占据分子轨道-最低未占据分子轨道间隙较小,在人卵巢癌细胞系OVCAR-3中表现出更高的反应活性和抗癌效果。值得注意的是,纳米复合材料应用于卵巢癌细胞引发了凋亡,为纳米材料与癌症生物学之间复杂的相互作用提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a083/10956410/ac36caddc088/ao3c10324_0013.jpg

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