Markelić Milica, Drača Dijana, Krajnović Tamara, Jović Zorana, Vuksanović Milica, Koruga Djuro, Mijatović Sanja, Maksimović-Ivanić Danijela
Faculty of Biology, University of Belgrade, 11000 Belgrade, Serbia.
Institute for Biological Research "Siniša Stanković", National Institute of Republic of Serbia, University of Belgrade, 11060 Belgrade, Serbia.
Nanomaterials (Basel). 2022 Apr 13;12(8):1331. doi: 10.3390/nano12081331.
(1) Background: Their unique structure and electron deficiency have brought fullerenes into the focus of research in many fields, including medicine. The hyper-harmonized hydroxylated fullerene water complex (3HFWC) formulation has solved the limitations of the poor solubility and bioavailability of fullerenes. To achieve better antitumor activity, 3HFWC was combined with short-term irradiation of cells with hyperpolarized light (HPL) generated by the application of a nanophotonic fullerene filter in a Bioptron device. The benefits of HPL were confirmed in the microcirculation, wound healing and immunological function. (2) Methods: B16, B16-F10 and A375 melanoma cells were exposed to a wide spectrum of 3HFWC doses and to a single short-term HPL irradiation. (3) Results: Apart from the differences in the redox status and level of invasiveness, the effects of the treatments were quite similar. Decreased viability, morphological alteration, signs of melanocytic differentiation and cellular senescence were observed upon the successful internalization of the nanoquantum substance. (4) Conclusions: Overall, 3HFWC/HPL promoted melanoma cell reprogramming toward a normal phenotype.
(1) 背景:富勒烯独特的结构和电子缺乏特性使其成为包括医学在内的许多领域的研究焦点。高度和谐的羟基化富勒烯水络合物(3HFWC)配方解决了富勒烯溶解度和生物利用度差的局限性。为了获得更好的抗肿瘤活性,3HFWC与通过在生物光子装置中应用纳米光子富勒烯滤光片产生的超极化光(HPL)对细胞进行短期照射相结合。HPL的益处已在微循环、伤口愈合和免疫功能方面得到证实。(2) 方法:将B16、B16-F10和A375黑色素瘤细胞暴露于多种3HFWC剂量下,并进行单次短期HPL照射。(3) 结果:除了氧化还原状态和侵袭水平的差异外,各处理的效果相当相似。在纳米量子物质成功内化后,观察到细胞活力下降、形态改变、黑素细胞分化迹象和细胞衰老。(4) 结论:总体而言,3HFWC/HPL促进黑色素瘤细胞重编程为正常表型。