Procter and Gamble, Newcastle Innovation Centre, Whitley Road, Newcastle upon Tyne, NE12 9BZ, UK.
School of Natural and Environmental Sciences, Newcastle University, Devonshire Building, Newcastle upon Tyne, NE1 7RU, UK.
Sci Rep. 2021 Nov 2;11(1):21542. doi: 10.1038/s41598-021-98939-0.
Washed textiles can remain malodorous and dingy due to the recalcitrance of soils. Recent work has found that 'invisible' soils such as microbial extracellular DNA (eDNA) play a key role in the adhesion of extracellular polymeric substances that form matrixes contributing to these undesirable characteristics. Here we report the application of an immunostaining method to illustrate the cleaning mechanism of a nuclease (DNase I) acting upon eDNA. Extending previous work that established a key role for eDNA in anchoring these soil matrixes, this work provides new insights into the presence and effective removal of eDNA deposited on fabrics using high-resolution in-situ imaging. Using a monoclonal antibody specific to Z-DNA, we showed that when fabrics are washed with DNase I, the incidence of microbial eDNA is reduced. As well as a quantitative reduction in microbial eDNA, the deep cleaning benefits of this enzyme are shown using confocal microscopy and imaging analysis of T-shirt fibers. To the best of our knowledge, this is the first time the use of a molecular probe has been leveraged for fabric and homecare-related R&D to visualize eDNA and evaluate its removal from textiles by a new-to-laundry DNase enzyme. The approaches described in the current work also have scope for re-application to identify further cleaning technology.
由于土壤的顽固性,洗涤后的纺织品可能仍然会有异味和暗淡。最近的研究发现,“看不见”的土壤,如微生物细胞外 DNA(eDNA),在形成基质的细胞外聚合物的附着中起着关键作用,这些基质导致了这些不理想的特性。在这里,我们报告了一种免疫染色方法的应用,该方法说明了核酸酶(DNase I)作用于 eDNA 的清洁机制。这项工作扩展了先前的研究,即 eDNA 在固定这些土壤基质方面起着关键作用,它为使用高分辨率原位成像在织物上存在和有效去除 eDNA 提供了新的见解。使用针对 Z-DNA 的单克隆抗体,我们表明,当用 DNase I 洗涤织物时,微生物 eDNA 的发生率会降低。除了微生物 eDNA 的定量减少外,还使用共聚焦显微镜和 T 恤纤维的成像分析显示了这种酶的深层清洁益处。据我们所知,这是第一次利用分子探针来进行与织物和家居护理相关的研发,以可视化 eDNA 并评估新型洗衣用 DNase 酶从纺织品上去除它。目前工作中描述的方法也有机会重新应用于识别进一步的清洁技术。