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Understanding the Differences Between Antimicrobial and Cytotoxic Properties of Plasma Activated Liquids

机译:了解血浆活性液体抗菌药物和细胞毒性特性的差异

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The aqueous environment plays an important role in the transmission of cold plasma effects to both prokaryotic and eukaryotic cells. The exposure of liquids to cold atmospheric plasma discharges results in the generation of secondary reactive species; specifically, hydrogen peroxide (H2O) seems to be one of the most important amongst the reactive species contained in plasma activated liquids (PALs) in causing cytotoxicity. Detailed understanding of the effects of PALs on cells is essential to harness this new technology. Liquids acting as models for non-complex solutions were generated using a dielectric barrier discharge atmospheric cold plasma (DBD-ACP) system. The chemical characterization of the PAL included its pH and concentrations of hydrogen peroxide, nitrite, and nitrate. The antimicrobial effects of PALs on Gram-positive and Gram-negative bacteria were examined, and cytotoxicity assays were used to elucidate the cytotoxic properties of PALs. The research outcomes showed acidification of plasma activated nonbuffered solutions and differences in concentrations of hydrogen peroxide, nitrite, and nitrate. PALs with different compositions varied in their antibacterial activity and cytotoxic effects, indicating that different reactive species may be responsible for these inactivation processes. Our results suggest that antimicrobial and cytotoxic effects are distinct from each other, which may offer promising approaches for future targeted applications in medicine.
机译:含水环境在对原核和真核细胞的冷等离子体效应的传播中起重要作用。液体暴露于冷大气等离子体排出的产生导致二次反应性物种的产生;具体地,过氧化氢(H 2 O)似乎是血浆活性液体(PALS)中包含的反应性物质中最重要的一种引起细胞毒性。详细了解PAL对细胞对细胞的影响对于利用这项新技术至关重要。使用介质阻挡放电大气冷等离子体(DBD-ACP)系统产生作为非复合溶液模型的液体。 PAL的化学表征包括其pH和过氧化氢浓度,亚硝酸盐和硝酸盐。检查PAL对革兰氏阳性和革兰阴性细菌的抗微生物作用,并且使用细胞毒性测定来阐明PAL的细胞毒性。研究结果表明血浆激活的非残疾溶液酸化和过氧化氢浓度,亚硝酸盐和硝酸盐的差异。具有不同组成的PALS在它们的抗菌活性和细胞毒性作用中变化,表明不同的反应性物质可能对这些灭活方法负责。我们的研究结果表明,抗微生物和细胞毒性效应彼此不同,这可能为未来的医学应用提供有希望的方法。

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