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医用气体等离子体技术与抗黑色素瘤疗法相结合,促进免疫检查点疗法的反应。

Medical Gas Plasma Technology Combines with Antimelanoma Therapies and Promotes Immune-Checkpoint Therapy Responses.

机构信息

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

ZIK plasmatis , Leibniz Institute for Plasma Science and Technology (INP), 17489, Greifswald, Germany.

出版信息

Adv Sci (Weinh). 2023 Oct;10(28):e2303183. doi: 10.1002/advs.202303183. Epub 2023 Aug 4.

Abstract

Strategies to improve activity and selectivity are major goals in oncological drug development. Medical gas plasma therapy has been subject to intense research in dermatooncology recently. Based on partial gas ionization, this approach is exceptional in generating a variety of reactive oxygen species simultaneously that can be applied locally at the tumor side. It is hypothesized that combined gas plasma treatment can potentiate drug responses in the treatment of melanoma. Using a plasma jet approved as medical device in Europe, a systematic screening of 46 mitochondria-targeted drugs identifies five agents synergizing in vitro and in vivo. Increased intratumoral leucocyte infiltration points to immunomodulatory aspects of the treatment, motivating to investigate responses to immune checkpoint blockade in combination with plasma. Tumor growth is monitored based on bioluminescent imaging, and single-cell suspensions are retrieved from each tumor to characterize tumor-infiltrating leucocytes using multicolor flow cytometry. Gene expression profiling is done using a validated NanoString panel targeting 770 genes specifically designed for immuno-oncological research. Cell type abundancies are characterized from bulk RNA samples using the CIBERSORT computational framework. Collectively, the results indicate that local application of medical gas plasma technology synergizes with mitochondria-targeted drugs and anti-PD1 checkpoint therapy in treating melanoma.

摘要

提高活性和选择性的策略是肿瘤药物开发的主要目标。近年来,医用气体等离子体疗法在皮肤肿瘤学领域受到了广泛的研究。基于部分气体电离,这种方法在产生各种活性氧物种方面具有独特的优势,这些活性氧物种可以局部应用于肿瘤部位。据推测,联合气体等离子体治疗可以增强黑色素瘤治疗中的药物反应。本研究使用一种已在欧洲被批准为医疗器械的等离子体喷枪,对 46 种靶向线粒体的药物进行了系统筛选,发现有 5 种药物在体外和体内具有协同作用。肿瘤内白细胞浸润的增加表明治疗具有免疫调节作用,这促使我们研究联合使用免疫检查点阻断与等离子体治疗的反应。基于生物发光成像监测肿瘤生长,并从每个肿瘤中提取单细胞悬液,使用多色流式细胞术对肿瘤浸润白细胞进行特征分析。使用专门为免疫肿瘤学研究设计的经验证的 NanoString 面板(靶向 770 个基因)进行基因表达谱分析。使用 CIBERSORT 计算框架从批量 RNA 样本中对细胞类型丰度进行特征分析。总的来说,这些结果表明,医用气体等离子体技术的局部应用与靶向线粒体的药物和抗 PD1 检查点治疗联合应用于治疗黑色素瘤具有协同作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0adf/10558686/037c4bb2d9cd/ADVS-10-2303183-g003.jpg

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