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生存在陆地地下栖息地的痤疮丙酸杆菌生态型的光保护和抗原毒性特性。

Photoprotective and antigenotoxic properties of Cutibacterium acnes ecotypes native to terrestrial subsurface habitats.

机构信息

Laboratorio de Microbiología y Mutagénesis Ambiental (LMMA), Grupo de Investigación en Microbiología y Genética (COL0083849), Escuela de Biología, Facultad de Ciencias, Universidad Industrial de Santander (UIS) Calle 9na y carrera 27, Bucaramanga Santander, Colombia.

出版信息

FEMS Microbiol Lett. 2023 Jan 17;370. doi: 10.1093/femsle/fnad108.

Abstract

Actinobacteria are known to produce a variety of secondary metabolites with skin-protective properties. This study aimed to investigate the photoprotective and antigenotoxic properties against UVB of extracts obtained from Cutibacterium acnes strains. Bacterial growth was measured spectrophotometrically and the constant maximum growth rate (μ) value to each strain, were calculated. In vitro photoprotection efficacy was evaluated using in vitro indices such as sun protection factor (SPFespectrophotometric) and critical wavelength (λc). UVB-antigenotoxicity was also evaluated using the SOS Chromotest. Correlation analysis was used to examine the relationship between SPFespectrophotometric and extract concentration and the %GI estimates. Among the studied strains, one showed low (6.0 ≤ SPFespectrophotometric ≤ 14.9) and eight showed media (15.0 ≤ SPFespectrophotometric ≤ 29.9) UVB photoprotection efficacy. All of them resulted in broad-spectrum (UVA-UVB) photoprotection (λc > 370 nm). In total, two C. acnes ecotypes with different growth rates were evidenced, but the protective metabolites in the extracts were produced without the influence of growth rate. Photoprotective efficacy depended on the extract concentration and was correlated with antigenotoxicity. We demonstrated that C. acnes extracts can be used as sunscreen ingredients that reduce UVB-induced genotoxicity.

摘要

放线菌被认为能产生多种具有皮肤保护特性的次生代谢物。本研究旨在探讨从痤疮丙酸杆菌菌株中提取的物质的防晒和抗 UVB 抗原毒性的特性。通过分光光度法测量细菌生长,并计算每个菌株的最大恒定增长率(μ)值。通过体外指标如防晒因子(SPFespectrophotometric)和临界波长(λc)来评估体外防晒效果。还使用 SOS 显色试验评估了 UVB 抗原毒性。采用相关分析来研究 SPFespectrophotometric 和提取物浓度与 GI%估计值之间的关系。在所研究的菌株中,有一株表现出低(6.0≤SPFespectrophotometric≤14.9),八株表现出中(15.0≤SPFespectrophotometric≤29.9)的 UVB 防晒效果。所有这些都产生了广谱(UVA-UVB)防晒(λc>370nm)。总的来说,证明了两种具有不同生长速率的痤疮丙酸杆菌生态型,但提取物中的保护代谢物是在不受生长速率影响的情况下产生的。防晒效果取决于提取物的浓度,并与抗原毒性相关。我们证明了痤疮丙酸杆菌提取物可用作防晒霜成分,可减少 UVB 诱导的遗传毒性。

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