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黑色素瘤细胞重编程与抗肿瘤免疫的唤醒作为超协调羟基化富勒烯水络合物(3HFWC)和超极化光应用的特征

Melanoma Cell Reprogramming and Awakening of Antitumor Immunity as a Fingerprint of Hyper-Harmonized Hydroxylated Fullerene Water Complex (3HFWC) and Hyperpolarized Light Application .

作者信息

Markelić Milica, Mojić Marija, Bovan Dijana, Jelača Sanja, Jović Zorana, Purić Milica, Koruga Djuro, Mijatović Sanja, Maksimović-Ivanić Danijela

机构信息

Faculty of Biology, University of Belgrade, 11000 Belgrade, Serbia.

Institute for Biological Research "Siniša Stanković"- National Institute of the Republic of Serbia, University of Belgrade, 11060 Belgrade, Serbia.

出版信息

Nanomaterials (Basel). 2023 Jan 17;13(3):372. doi: 10.3390/nano13030372.

Abstract

In our recent study, we showed that treatment of melanoma cells with hyperpolarized light (HPL) as well as with the second derivative of fullerene, hyper-harmonized hydroxylated fullerene water complex (3HFWC) reduced viability of cells by decreasing their proliferative capacity and inducing senescence and reprogramming towards a normal, melanocytic phenotype. Therefore, we wanted to determine whether these effects persisted in the syngeneic mouse melanoma model with a combined treatment of HPL irradiation and 3HFWC . Our results demonstrated the potent antitumor effects of 3HFWC nanosubstance assisted by HPL irradiation. These effects were primarily driven by the stimulation of melanoma cell growth arrest, the establishment of a senescent phenotype, and melanocytic differentiation on the one hand, and the awakening of the antitumor immune response on the other. In addition, the combined treatment reduced the protumorigenic activity of immune cells by depleting T regulatory cells, myeloid-derived suppressors, and M2 macrophages. The support of the 3HFWC substance by HPL irradiation may be the axis of the new approach design based on tumor cell reprogramming synchronized with the mobilization of the host's protective immune response.

摘要

在我们最近的研究中,我们发现用超极化光(HPL)以及富勒烯的二阶衍生物——超协调羟基化富勒烯水络合物(3HFWC)处理黑色素瘤细胞,可通过降低其增殖能力、诱导衰老以及使其重编程为正常的黑素细胞表型来降低细胞活力。因此,我们想确定在同基因小鼠黑色素瘤模型中,HPL照射与3HFWC联合治疗时这些效应是否持续存在。我们的结果证明了在HPL照射辅助下3HFWC纳米物质具有强大的抗肿瘤作用。这些效应一方面主要由刺激黑色素瘤细胞生长停滞、建立衰老表型和黑素细胞分化驱动,另一方面由唤醒抗肿瘤免疫反应驱动。此外,联合治疗通过消耗调节性T细胞、髓源性抑制细胞和M2巨噬细胞降低了免疫细胞的促肿瘤活性。HPL照射对3HFWC物质的支持可能是基于与宿主保护性免疫反应动员同步的肿瘤细胞重编程的新方法设计的轴心。

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