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气体等离子体与放射疗法联合应用在体外具有免疫刺激潜力和附加毒性,并可抑制小鼠黑素瘤细胞生长。

Combination of Gas Plasma and Radiotherapy Has Immunostimulatory Potential and Additive Toxicity in Murine Melanoma Cells in Vitro.

机构信息

ZIK plasmatis, Leibniz Institute for Plasma Science and Technology, Felix-Hausdorff-Str. 2, 17489 Greifswald, Germany.

Department of General, Visceral, Thoracic and Vascular Surgery, Greifswald University Medical Center, Ferdinand-Sauerbruch-Str., 17475 Greifswald, Germany.

出版信息

Int J Mol Sci. 2020 Feb 18;21(4):1379. doi: 10.3390/ijms21041379.

Abstract

Despite continuous advances in therapy, malignant melanoma is still among the deadliest types of cancer. At the same time, owing to its high plasticity and immunogenicity, melanoma is regarded as a model tumor entity when testing new treatment approaches. Cold physical plasma is a novel anticancer tool that utilizes a plethora of reactive oxygen species (ROS) being deposited on the target cells and tissues. To test whether plasma treatment would enhance the toxicity of an established antitumor therapy, ionizing radiation, we combined both physical treatment modalities targeting B16F10 murine melanoma cell in vitro. Repeated rather than single radiotherapy, in combination with gas plasma-introduced ROS, induced apoptosis and cell cycle arrest in an additive fashion. In tendency, gas plasma treatment sensitized the cells to subsequent radiotherapy rather than the other way around. This was concomitant with increased levels of TNFα, IL6, and GM-CSF in supernatants. Murine JAWS dendritic cells cultured in these supernatants showed an increased expression of cell surface activation markers, such as MHCII and CD83. For PD-L1 and PD-L2, increased expression was observed. Our results are the first to suggest an additive therapeutic effect of gas plasma and radiotherapy, and translational tumor models are needed to develop this concept further.

摘要

尽管治疗方法不断进步,但恶性黑色素瘤仍然是最致命的癌症类型之一。同时,由于其高度的可塑性和免疫原性,黑色素瘤被认为是测试新治疗方法的模型肿瘤实体。冷等离子体是一种新型的抗癌工具,它利用大量沉积在靶细胞和组织上的活性氧物质 (ROS)。为了测试等离子体处理是否会增强已建立的抗肿瘤治疗的毒性,即电离辐射,我们将这两种物理治疗方法结合起来,在体外靶向 B16F10 鼠黑色素瘤细胞。重复而不是单次放射治疗与气体等离子体引入的 ROS 联合使用,以附加的方式诱导细胞凋亡和细胞周期停滞。从趋势上看,气体等离子体处理使细胞对随后的放射治疗敏感,而不是相反。这伴随着上清液中 TNFα、IL6 和 GM-CSF 水平的增加。在这些上清液中培养的小鼠 JAWS 树突状细胞显示细胞表面激活标志物(如 MHCII 和 CD83)的表达增加。对于 PD-L1 和 PD-L2,观察到表达增加。我们的结果首次表明气体等离子体和放射治疗具有附加的治疗效果,需要转化肿瘤模型来进一步发展这一概念。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16b0/7073141/c622e74214be/ijms-21-01379-g001.jpg

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