Zawadzka Katarzyna, Wójcik Barbara, Jaworski Sławomir, Ostrowska Agnieszka, Małolepszy Artur, Mazurkiewicz-Pawlicka Marta, Pisarek Marcin, Frączek Wiktoria, Wierzbicki Mateusz
Department of Nanobiotechnology, Institute of Biology, Warsaw University of Life Sciences, Bldg. 23, rm. 133, 8 Ciszewskiego Str, Warsaw, 02-786, Poland.
Faculty of Chemical and Process Engineering, Warsaw University of Technology, Warsaw, 00-654, Poland.
Sci Rep. 2025 Aug 13;15(1):29670. doi: 10.1038/s41598-025-14943-8.
The high proangiogenic potential of tumors is often associated with poor prognosis due to increased invasiveness and malignancy. Diamond nanoparticles (NDs) are considered a promising anti-tumor agent with anti-angiogenic properties; however, their activity is strictly connected with their physicochemical parameters and surface chemical composition. One of the main factors characterizing detonation NDs is the sp surface carbon content, which can determine the character of nanoparticle-cell interaction. The primary objective of this study was to investigate the influence of different types of NDs on the proangiogenic potential of tumor cells distinguished by phenotype and invasiveness. NDs with a high sp/sp carbon ratio decreased the levels of crucial proangiogenic proteins secreted by T98G and HepG2 cells (IL-6, IL-8, ANG, TIMPs, and ANGPTs). Moreover, a lower sp carbon content on the surface of NDs reduced oxidative stress in both mesenchymal T98G and epithelial HepG2 tumor cells and affected the NF-κB activation state in a cell-specific manner. Modified NDs, by affecting the tumor cell secretome composition, indirectly inhibited endothelial cell migration and tube formation, demonstrating high cell type specificity. Taken together, the results presented here indicate the significance of the surface parameters of NDs in the indirect regulation of cellular signaling and the microenvironment.
肿瘤的高促血管生成潜力通常与侵袭性和恶性程度增加导致的预后不良有关。金刚石纳米颗粒(NDs)被认为是一种具有抗血管生成特性的有前景的抗肿瘤药物;然而,它们的活性与它们的物理化学参数和表面化学成分密切相关。表征爆轰NDs的主要因素之一是sp表面碳含量,它可以决定纳米颗粒与细胞相互作用的性质。本研究的主要目的是研究不同类型的NDs对以表型和侵袭性区分的肿瘤细胞促血管生成潜力的影响。具有高sp/sp碳比的NDs降低了T98G和HepG2细胞分泌的关键促血管生成蛋白(IL-6、IL-8、ANG、TIMPs和ANGPTs)的水平。此外,NDs表面较低的sp碳含量降低了间充质T98G和上皮HepG2肿瘤细胞中的氧化应激,并以细胞特异性方式影响NF-κB激活状态。修饰后的NDs通过影响肿瘤细胞分泌组的组成,间接抑制内皮细胞迁移和管形成,显示出高细胞类型特异性。综上所述,本文给出的结果表明NDs的表面参数在间接调节细胞信号传导和微环境中的重要性。