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冷大气等离子体诱导的氧化应激及随之产生的免疫反应——免疫治疗的新视野。

Cold atmospheric plasma-induced oxidative stress and ensuing immunological response - a Neo-Vista in immunotherapy.

作者信息

P R Sreedevi, K Suresh, S Yugeswaran

机构信息

Department of Physics, Surface and Environmental Control Plasma Laboratory, Bharathiar University, Coimbatore, India.

Department of Physics, Applied Thermal Plasma Laboratory, Pondicherry University, Pondicherry, India.

出版信息

Free Radic Res. 2022 Jul-Aug;56(7-8):498-510. doi: 10.1080/10715762.2022.2139691. Epub 2022 Nov 1.

Abstract

Plasma, the fourth state of matter could be artificially generated at room temperature under atmospheric pressure - termed as cold atmospheric plasma (CAP). The reactive oxygen and nitrogen radicals emanated during plasma discharge accord manifold applications in medicine and have proven clinical applications in cancer treatment, dentistry, and dermatology. Developments in the field termed "Plasma medicine" has inclined research toward its prospects in immunotherapy. Controlled generation of reactive oxygen and nitrogen radicals during plasma formation produces oxidative stress on tissue of concern, selectively and activates a number of cytological and molecular reactions, triggering immunological response. Plasma treatment induces immunogenic cell death (ICD) in tumor cells and elicits enhanced adaptive and systemic immune response with memory cells, conferring better defense to cancer. HIV inactivation, reduced viral replication, reversal of latency in HIV-infected cells, and augmented infected cell opsonization has been observed with CAP treatment. Plasma-treated medium has shown to deactivate virus (HSV-1) in human corneal explants and epithelial cells, and lessen the severity of herpes simplex keratitis. Perception of cellular changes that triggers innate and adaptive immune response during CAP treatment is quintessential for understanding and expansion of research in this arena. This review mentions the inimitable properties of plasma that makes it a safe and sensitive immunotherapeutic tool. The methods of plasma generation relied for the purpose are elucidated. The cellular mechanism of immunological stimulation in cancer, HIV, and keratitis during CAP treatment is detailed. The future prospects and challenges are briefly addressed.HighlightsReactive oxygen and nitrogen radicals produced by cold atmospheric plasma (CAP) triggers oxidative stress in exposed cells.Cells in oxidative stress incite immunological response that could be suitably manipulated for immunotherapy.The role of reactive radicals and methods of plasma generation for immunotherapy is elucidated.The cellular and molecular cascade of reactions leading to immunological cell death in cancer cells is detailed.The mechanism of HIV inactivation and reduced infection; further, deactivation of HSV in Herpes keratitis in intact human corneal explants is also described.

摘要

等离子体,物质的第四态,可在室温及大气压下人工生成,称为冷大气等离子体(CAP)。等离子体放电过程中产生的活性氧和氮自由基在医学领域有多种应用,并且在癌症治疗、牙科和皮肤病学方面已得到临床验证。“等离子体医学”领域的发展使研究倾向于其在免疫治疗方面的前景。等离子体形成过程中活性氧和氮自由基的可控生成会在相关组织上产生氧化应激,具有选择性,并激活一些细胞学和分子反应,从而触发免疫反应。等离子体治疗可诱导肿瘤细胞发生免疫原性细胞死亡(ICD),并引发具有记忆细胞的更强适应性和全身性免疫反应,为癌症提供更好的防御。已观察到CAP治疗可使HIV失活、减少病毒复制、逆转HIV感染细胞的潜伏期,并增强感染细胞的调理作用。经等离子体处理的培养基已显示可使人类角膜外植体和上皮细胞中的病毒(HSV-1)失活,并减轻单纯疱疹性角膜炎的严重程度。了解CAP治疗期间触发先天和适应性免疫反应的细胞变化对于理解和扩展该领域的研究至关重要。本综述提到了等离子体使其成为安全且灵敏的免疫治疗工具的独特特性。阐述了为此目的所依赖的等离子体生成方法。详细介绍了CAP治疗期间癌症、HIV和角膜炎中免疫刺激的细胞机制。简要讨论了未来的前景和挑战。

重点

冷大气等离子体(CAP)产生的活性氧和氮自由基会在暴露的细胞中引发氧化应激。

处于氧化应激状态的细胞会激发免疫反应,可对其进行适当调控以用于免疫治疗。

阐明了活性自由基在免疫治疗中的作用以及等离子体生成方法。

详细介绍了导致癌细胞发生免疫性细胞死亡的细胞和分子反应级联。

还描述了HIV失活和感染减少的机制;此外,完整人类角膜外植体中单纯疱疹性角膜炎中HSV的失活情况。

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