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Bacterial cellulose (BC)-based dressings exhibit favorable hydrogel characteristics, including high biocompatibility, moisture regulation, and mechanical adaptability, making them suitable candidates for biomedical applications. In this study, an integrated approach was employed to develop multifunctional, bioactive bionanocomposites. A cellulose-producing bacterial strain, Limosilactobacillus fermentum 6BC (accession number OM978241.1), was isolated from spoiled grapes and identified through 16 S rRNA gene sequencing. The structural and chemical characteristics of the synthesized BC were analyzed using Transmission electron microscopy (TEM), scanning electron microscopy (SEM), Fourier-transform infrared spectroscopy (FTIR), and X-ray diffraction (XRD). To enhance the biological functionality of BC, zinc oxide (ZnO) nanoparticles were incorporated via a sono-coprecipitation method to produce ZnO-decorated BC (BCZO). The resulting BCZO was subsequently integrated into a hydroxypropyl ethyl cellulose (HPEC) matrix, forming a bionanoplatform designed for the immobilization of bioactive agents, specifically curcumin (Cc) and propolis extract (Pp). TEM was used to examine the nanoscale distribution of ZnO, while FTIR, XRD, SEM, and EDS were employed to characterize the composite structure and confirm drug incorporation. The fabricated scaffolds were further subjected to comprehensive antimicrobial, antioxidant, cytocompatibility, and in vitro wound healing assessments to evaluate their biological performance. The antimicrobial assays demonstrated effective inhibition of L. monocytogenes, S. aureus, E. coli, Salmonella sp., and the fungus C. albicans. The bionanoplatforms also exhibited concentration-dependent antioxidant activity in DPPH and ABTS assays (ascorbic acid as control). The cytocompatibility tests on human skin fibroblasts (HFB-4) showed excellent cell viability across all formulations. Among them, Cc/Pp50@BCZO/HPEC displayed the exciting antimicrobial and antioxidant performance, coupled with desirable cytocompatibility. Thus this study offers a systematic framework for engineering cellulose-based bioplatforms as bioactive materials for potential drug delivery and wound-healing applications.
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http://dx.doi.org/10.1186/s12934-025-02826-6 | DOI Listing |
Beilstein J Nanotechnol
August 2025
Institute of Chemical and Industrial Bioengineering, Jilin Engineering Normal University, Changchun 130052, Jilin, People's Republic of China.
To address the issue of biological pollution in cellulose triacetate (CTA) membranes during seawater desalination, silver (Ag) nanoparticles were incorporated onto the CTA surface using polydopamine (PDA). PDA, which contains phenolic and amino groups, exhibits excellent adhesiveness and provides active sites for the attachment and reduction for Ag nanoparticles. Various characterizations confirm the successful introduction of Ag nanoparticles onto the surface of the PDA-modified CTA (PCTA) membrane and the preservation of CTA microstructures.
View Article and Find Full Text PDFInt J Pharm
September 2025
Department of Pharmacy, The First Hospital of China Medical University, Shenyang 110001, China. Electronic address:
Emodin is a natural anthraquinone derivative with poor water solubility, which limits its antibacterial activity. The purpose of this work is to investigate the antibacterial activity of emodin nanocrystals (EMD-NCs) with different particle sizes against Staphylococcus aureus (S. aureus) and explores its underlying mechanisms.
View Article and Find Full Text PDFFood Res Int
November 2025
College of Food Science and Engineering, Northwest A&F University, Yangling 712100, Shaanxi, China. Electronic address:
Development of effective, safe, and degradable food packaging is essential to meet the demands of consumers and to ensure the continued growth of the food industry. In this study, superabsorbent bioactive aerogels based on cellulose and polyvinyl alcohol combined with the antibacterial bioactive extracts extracted from Portulaca oleracea were fabricated for the preservation of chilled meats. The main physicochemical and mechanical properties of the bioactive aerogels were characterized and evaluated.
View Article and Find Full Text PDFACS Nano
September 2025
State Key Laboratory of Flexible Electronics (LoFE) & Institute of Advanced Materials (IAM), Nanjing University of Posts & Telecommunications, 9 Wenyuan Road, Nanjing 210023, China.
Bimorph soft actuators, traditionally composed of two materials with distinct responses to external stimuli, often face durability challenges due to structural incompatibility. Here, we propose an alternative design employing free-standing, isostructural heterogeneous Janus (IHJ) films that harmonize stability with high actuation efficiency. These IHJ films were fabricated through a vacuum self-assembly process, consisting of TiCT MXene nanosheets and hybrid graphene oxide (GO)-biomass bacterial cellulose (BC), with a well-matched two-dimensional lattice structure.
View Article and Find Full Text PDFMacromol Biosci
September 2025
IMEM-BRT Group, Departament d'Enginyeria Química, EEBE, Universitat Politècnica de Catalunya, Barcelona, Spain.
This study investigates a multifunctional hydrogel system integrating carboxymethyl cellulose (CMC) in a 3D-printed limonene (LIM) scaffold coated with poly(3,4-ethylenedioxythiophene): polystyrene sulfonate (PEDOT:PSS). The system allows to enhance wound healing, prevent infections, and monitor the healing progress. CMC is crosslinked with citric acid (CA) to form the hydrogel matrix (CMC-CA), while the 3D-printed limonene (LIM) scaffold is embedded within the hydrogel to provide mechanical support.
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