大气压等离子体
微波食品加热
大气压力
喷射(流体)
等离子体化学
等离子体
材料科学
等离子体诊断
化学
分析化学(期刊)
环境化学
物理
热力学
气象学
核物理学
量子力学
作者
Yutian Yu,Bo Yang,Qianyu Wang,Naoki Shinohara,Wenqi Chen,Yu Zhong,Xian Liu,Wenting Qi,Kama Huang,Li Wu
摘要
The microwave-induced room-temperature atmospheric pressure plasma jet (MW-RTAPPJ) offers a noninvasive therapeutic approach for deep-tissue treatment, targeting subdermal pathogens. Despite its clinical potential, translational applications remain underdeveloped, with scarce quantitative microbial analyses. This study comprehensively evaluates MW-RTAPPJ's antimicrobial performance using equivalent human skin tissue (EHST), demonstrating robust efficacy even at 1.25 mm tissue thickness or subphysiological temperatures (33 °C). Systematic spectral profiling of MW-RTAPPJ emissions and post-penetration reactive nitrogen and oxygen species (RONS) quantification revealed a strong correlation between RONS concentration changes and disinfection rate, elucidating mechanistic foundations. Vesicular biosensors are employed to evaluate plasma-induced tissue effects under diverse experimental conditions. Furthermore, in vivo experiments with subcutaneous xenograft tumors validated MW-RTAPPJ's capacity for substantial tumor ablation through segmented noninvasive treatments. These results collectively validate MW-RTAPPJ's potential for deep-tissue disinfection and antitumor, particularly highlighting its transformative applications in noninvasive therapies such as dermatological disease management, cervical cancer prevention, and other subcutaneous malignancy treatments.
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