Antimicrobial effects and mechanisms of hydrogen sulphide against nail pathogens

7.4
来源: Nature 关键字: ML brain science
发布时间: 2025-11-01 03:37
摘要:

H2S exhibits significant antimicrobial effects against nail pathogens, particularly dermatophytes, which are challenging to treat with conventional antifungals. The study identifies novel mechanisms of action, including the inhibition of cytochrome C oxidase and the generation of reactive oxygen species, suggesting that H2S could serve as an innovative topical treatment for onychomycosis. The findings highlight the potential for H2S to penetrate the nail plate effectively, addressing a critical barrier in current treatment options.

原文: 查看原文

价值分投票

评分标准

新闻价值分采用0-10分制,综合考虑新闻的真实性、重要性、时效性、影响力等多个维度。 评分越高,表示该新闻的价值越大,越值得关注。

价值维度分析

domain_focus

1.0分+1.0分

business_impact

0.5分+0.5分

scientific_rigor

1.5分+1.5分

timeliness_innovation

1.5分+1.5分

investment_perspective

2.5分+2.5分

market_value_relevance

1.0分+1.0分

team_institution_background

0.5分+0.5分

technical_barrier_competition

1.0分+1.0分

关键证据

H2S has potent activity against causative agents of nail infections, including fungi and bacteria.
Transcriptomic analysis revealed a stress response, indicating efforts to reduce oxidative stress.
H2S inhibits cytochrome C oxidase, leading to increased reactive oxygen species.

真实性检查

AI评分总结

H2S exhibits significant antimicrobial effects against nail pathogens, particularly dermatophytes, which are challenging to treat with conventional antifungals. The study identifies novel mechanisms of action, including the inhibition of cytochrome C oxidase and the generation of reactive oxygen species, suggesting that H2S could serve as an innovative topical treatment for onychomycosis. The findings highlight the potential for H2S to penetrate the nail plate effectively, addressing a critical barrier in current treatment options.

评论讨论

发表评论