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modifying cellulose fibers with carbon dots: a promising approach for development of antimicrobial fibers

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DataONE2024-09-12 更新2025-08-23 收录
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This study focuses on the development of antimicrobial fibers for use in medical and healthcare textile industries. Carbon dots (CDs) were designed with boronic acid groups to attach to cellulose fibers found in cotton textiles and enhance their attachment to glycogens on bacterial surfaces. Boronic acid- (BACD) and curcumin-based CDs (PBA-CCMCD) were prepared and characterized using various techniques, showing a nanoscale size and zeta potential values. The CDs inhibited the growth of both Staphylococcus epidermidis and Escherichia coli bacteria, with UV-activated CDs demonstrating improved antibacterial activity. The antimicrobial activity of the CDs was then tested, revealing strong adherence to the cellulose paper fibers with no CD diffusion and potent inhibition of bacterial growth. Cytotoxicity assays on human cell lines showed no toxicity towards cells at concentrations up to 100 µg/mL, but exhibited increased toxicity at concentrations exceeding 1000 µg/mL. However, CD-modified ..., , , # Data from: modifying cellulose fibers with carbon dots: a promising approach for development of antimicrobial fibers [https://doi.org/10.5061/dryad.6hdr7sr71](https://doi.org/10.5061/dryad.6hdr7sr71) ## Description of the data and file structure 1\)     Absorption and Emission properties of CDs. (File: Data_for_FIGURE_1) Absorption and emission spectra of BACDs (Figure 1A) and PBA-CCMCDs (Figure 1B) in PBS buffer (pH 7.4). The fluorescence with the aqueous solutions of CDs in PBS excited at 270 nm for BACDs and 315 nm for PBA-CCMCDs. 2\)     Quantification of the inhibitory concentrations of CDs (File: Data_for_FIGURE_6) Relative growth of bacteria to control in wells of the control and CD-treated bacterial cell suspension at different CD concentrations based on absorbance values (A600). 3\)     Quantification of the inhibitory effect of BACD-modified paper discs (File: Data_for_FIGURE_7) Relative growth of bacteria to control in wells of the control and modified-disc treate...
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2025-08-04
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