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Biomedical Applications of the Cold Atmospheric Plasma: Cell Responses.

机译:冷大气血浆的生物医学应用:细胞反应。

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摘要

Current breakthrough research on cold atmospheric plasma (CAP) demonstrates that CAP has great potential in various areas, including medicine and biology, thus providing a new tool for living tissue treatment. Depending on the configuration the cold plasma sources can be used in the following areas: wound healing, skin diseases, hospital hygiene, sterilization, antifungal treatments, dental care, cosmetics targeted cell/tissue removal, and cancer treatments.;This dissertation is focused on the studies of biomedical applications of cold atmospheric plasma jet based on helium flow and resultant cell responses to the cold plasma treatment. The studies were carried out on extra-cellular and intra-cellular levels in vitro. The main practical applications are wound healing and alternative to existing cancer therapy methods, areas of great interest and significant challenges. The CAP jet was built in the Micropropulsion and Nanotechnology Laboratory of Dr. Michael Keidar, as a part of multidisciplinary collaboration with the GW Medical School (Dr. M.A. Stepp) concerned with plasma medicine and bioengineering studies.;Normal and cancer cells have two fundamental behavioral properties, proliferation and motility, which can be evaluated through cell migration rates and cell cycle progression. Various microscopic, spectroscopic and flow cytometry techniques were used to characterize cell responses to the cold plasma treatment.;It was found that CAP effect on the cells is localized within the area of the treatment (of around ∼ 5mm in diameter). The migration rates of the normal skin cells can be reduced up to ∼ 40%. However, depending on the cell type the required treatment time is different, thus differential treatment of various cells presented in tissue is possible. The CAP effect on the migration was explained through the changes of the cell surface proteins/integrins. It was also found that normal and cancer cells respond differently to the CAP treatment under the same experimental conditions. CAP is currently being evaluated as a new highly selective alternative addition to existing cancer therapies. It was shown that the increased sensitivity of cancer cells to CAP treatment is caused by differences in the distribution of cancer cells and normal cells within the cell cycle. It was also shown that the expression of gammaH2A.X (pSer139), an oxidative stress reporter indicating S-phase damage, is enhanced specifically within CAP treated cells in the S phase of the cell cycle together with significant decrease in EdU-signal of DNA-replicating cells.;Thus, newly developed CAP technology was proven to be of a great interest for practical applications in the areas of wound healing and cancer treatment. The identification and explanation of the mechanisms by which CAP affects the cells was presented.
机译:当前对冷大气等离子体(CAP)的突破性研究表明,CAP在医学和生物学等各个领域具有巨大的潜力,从而为活体组织治疗提供了新的工具。根据配置的不同,冷等离子体源可用于以下领域:伤口愈合,皮肤疾病,医院卫生,灭菌,抗真菌治疗,牙科护理,靶向性的去除细胞/组织的化妆品以及癌症治疗。基于氦气流和由此产生的细胞对冷等离子体处理的反应的冷大气等离子体射流的生物医学应用研究。该研究是在体外在细胞外和细胞内水平上进行的。主要的实际应用是伤口愈合和现有癌症治疗方法的替代方法,这是引起人们极大兴趣和重大挑战的领域。 CAP喷气式飞机是由Michael Keidar博士的微推进和纳米技术实验室制造的,这是与GW医学院(MA Stepp博士)进行多学科合作的一部分,该实验室致力于血浆医学和生物工程研究。正常细胞和癌细胞具有两个基本原理行为特性,增殖和运动性,可以通过细胞迁移率和细胞周期进程进行评估。各种显微镜,光谱学和流式细胞术技术被用来表征细胞对冷等离子体处理的反应。;发现CAP对细胞的作用局限于处理区域内(直径约5mm)。正常皮肤细胞的迁移率最多可降低40%。但是,根据细胞类型的不同,所需的处理时间也不同,因此可以对组织中存在的各种细胞进行差异处理。 CAP对迁移的影响通过细胞表面蛋白/整合素的变化来解释。还发现在相同的实验条件下,正常细胞和癌细胞对CAP治疗的反应不同。 CAP目前正在评估,作为现有癌症疗法的一种新的高度选择性替代品。结果表明,癌细胞对CAP治疗的敏感性增加是由于癌细胞与正常细胞在细胞周期内分布的差异所致。还显示,在细胞周期的S期中,经CAP处理的细胞内,γ氧化应激报告基因gammaH2A.X(pSer139)的表达特别增强,同时DNA的EdU信号显着降低。复制细胞;因此,事实证明,新开发的CAP技术对于伤口愈合和癌症治疗领域的实际应用具有极大的兴趣。介绍了CAP影响细胞的机制的鉴定和解释。

著录项

  • 作者

    Volotskova, Olga.;

  • 作者单位

    The George Washington University.;

  • 授予单位 The George Washington University.;
  • 学科 Biology Cell.;Engineering Biomedical.;Physics Fluid and Plasma.
  • 学位 D.Sc.
  • 年度 2012
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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