Antibacterial and physicomechanical properties of cellulosic nonwovens functionalized with chitosan: a study on interaction effects of influencing factors and assessment methods.

IF 4.3 3区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Esubalew Kasaw Gebeyehu, Rekha Shresth, Tonmoy Saha, Jenni Tienaho, Ulla Jauhiainen, Ali Amin Tarhini, Ali Reza Tehrani-Bagha
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Abstract

The growing demand for antimicrobial textiles and environmental concerns over synthetic agents have driven interest in biobased agents like chitosan, an eco-friendly alternative reported with variable effectiveness on textiles. This research investigates the effects of chitosan's molecular weight, concentration, treatment method, and their interaction effects on the antibacterial and physicomechanical properties of cellulosic nonwovens. The role of culture medium dynamics in antibacterial testing was also examined. Chitosan with low (30 kDa), medium (250 kDa) and high (2100 kDa) molecular weights at concentrations of 1 to 15 g/L was applied using pad-dry and dip-dry methods, with dip coating resulting in higher chitosan deposition. Antibacterial activity against Escherichia coli (E. coli) was assessed using three methods: agar diffusion, a luminescent bacterial biosensor assay, and log reduction of colony-forming units (CFU/mL) in a time-kill test. While the first two test methods showed no antibacterial effect, CFU/mL revealed significant activity with interaction effects showing that the dip-coated, 30 kDa chitosan above a concentration of 5 g/L achieved complete bacterial reduction. The enhanced antibacterial performance of chitosan-coated cellulosic substrates, compared to chitosan in a culture medium, highlighted the role of cellulosic nonwoven in boosting antibacterial effectiveness, likely through improved contact and interaction with bacterial cells. The study demonstrated that chitosan-treated cellulosic nonwovens, particularly with dip-dry coating altered tensile strength and increased the bending resistance and bending stiffness.

壳聚糖功能化纤维素非织造布的抗菌性能和物理力学性能:影响因素的相互作用及评价方法研究。
对抗菌纺织品的需求不断增长,以及对合成剂的环境担忧,促使人们对壳聚糖等生物基剂产生了兴趣,壳聚糖是一种环保替代品,据报道对纺织品的效果不同。研究了壳聚糖的分子量、浓度、处理方法及其相互作用对纤维素非织造布的抗菌性能和物理力学性能的影响。探讨了培养基动力学在抗菌试验中的作用。采用1 ~ 15 g/L的低分子量(30 kDa)、中分子量(250 kDa)和高分子量(2100 kDa)的壳聚糖,分别采用垫干法和浸干法对壳聚糖进行涂膜,浸干法涂膜后壳聚糖的沉积量更高。采用琼脂扩散法、发光细菌生物传感器法和时间杀伤试验中菌落形成单位(CFU/mL)的对数减少法三种方法评估对大肠杆菌(E. coli)的抗菌活性。前两种方法均无抑菌效果,但CFU/mL显示出显著的抑菌活性,且相互作用表明,浸包30 kDa的壳聚糖在浓度为5 g/L以上时可实现完全抑菌。与培养基中的壳聚糖相比,壳聚糖包被的纤维素基质的抗菌性能增强,突出了纤维素非织造布在提高抗菌效果方面的作用,可能是通过改善与细菌细胞的接触和相互作用。研究表明,壳聚糖处理的纤维素非织造布,特别是浸干涂层改变了拉伸强度,增加了抗弯性能和抗弯刚度。
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来源期刊
Bioresources and Bioprocessing
Bioresources and Bioprocessing BIOTECHNOLOGY & APPLIED MICROBIOLOGY-
CiteScore
7.20
自引率
8.70%
发文量
118
审稿时长
13 weeks
期刊介绍: Bioresources and Bioprocessing (BIOB) is a peer-reviewed open access journal published under the brand SpringerOpen. BIOB aims at providing an international academic platform for exchanging views on and promoting research to support bioresource development, processing and utilization in a sustainable manner. As an application-oriented research journal, BIOB covers not only the application and management of bioresource technology but also the design and development of bioprocesses that will lead to new and sustainable production processes. BIOB publishes original and review articles on most topics relating to bioresource and bioprocess engineering, including: -Biochemical and microbiological engineering -Biocatalysis and biotransformation -Biosynthesis and metabolic engineering -Bioprocess and biosystems engineering -Bioenergy and biorefinery -Cell culture and biomedical engineering -Food, agricultural and marine biotechnology -Bioseparation and biopurification engineering -Bioremediation and environmental biotechnology
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