ArticleGels (Basel, Switzerland)2023
Bioengineered Water-Responsive Carboxymethyl Cellulose/Poly(vinyl alcohol) Hydrogel Hybrids for Wound Dressing and Skin Tissue Engineering Applications.
Article in Gels (Basel, Switzerland), 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 21 papers.
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Who cites it
21 citing papers in PubMed.
- Article
- Cellulose-Based Hydrogels for Chronic Wound Healing: Bridging Biomaterial Design and Clinical Unmet Needs.Gels (Basel, Switzerland) · 2026Review
- Evaluation of the Potential of a Fast-Curing Polymer Bioadhesive Hydrogel for Corneal Defect Repair.Gels (Basel, Switzerland) · 2026Article
- Multifunctional PVA-CMC/ZnO-Au Nanocomposite Films with Enhanced UV Shielding, Thermal Stability, and Antibacterial Performance.Polymers · 2026Article
- Novel NTA-NiPolymers · 2026Article
- Design and Application of Stimuli-Responsive Hydrogels for 4D Printing: A Review of Adaptive Materials in Engineering.Gels (Basel, Switzerland) · 2026Review
- Influence of Polymers Diversity on the Dissolution Kinetics of EncapsulatedGels (Basel, Switzerland) · 2025Article
- Physicochemical Characterization and Structural Tuning of PVA/CMC Composites Modified with Montmorillonite and Glycerol: Toward Sustainable Wound Dressings.International journal of molecular sciences · 2025Article
- Comparative Study Between Citric Acid and Glutaraldehyde in the Crosslinking of Gelatine Hydrogels Reinforced with Cellulose Nanocrystals (CNC).Gels (Basel, Switzerland) · 2025Article
- Advanced Hydrogels in Fibrocartilage Regeneration of the Glenoid Labrum.Gels (Basel, Switzerland) · 2025Review
- Antibacterial, self-healing, and pH-responsive PVA/ZIF-8@tannic acid nanocomposite hydrogel for sustained delivery of garlic extract.Scientific reports · 2025Article
- Development of Eco-Friendly Date Palm Biomass-Based Hydrogels for Enhanced Water Retention in Soil.Gels (Basel, Switzerland) · 2025Article
- Article
- Decellularized Macroalgae as Complex Hydrophilic Structures for Skin Tissue Engineering and Drug Delivery.Gels (Basel, Switzerland) · 2024Article
- Arginine-Biofunctionalized Ternary Hydrogel Scaffolds of Carboxymethyl Cellulose-Chitosan-Polyvinyl Alcohol to Deliver Cell Therapy for Wound Healing.Gels (Basel, Switzerland) · 2024Article
- Eco-Friendly Production of Polyvinyl Alcohol/Carboxymethyl Cellulose Wound Healing Dressing Containing Sericin.Gels (Basel, Switzerland) · 2024Article
- Article
- Article
- Wound Gel with Antimicrobial Effects Based on Polyvinyl Alcohol and Functional Aryloxycyclotriphosphazene.Polymers · 2023Article
- Functionalized bioadhesion-enhanced carboxymethyl cellulose/polyvinyl alcohol hybrid hydrogels for chronic wound dressing applications.RSC advances · 2023Article
Corrections and comments
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Authors and funding
5 authors.
Funding
Abstract
The burden of chronic wounds is growing due to the increasing incidence of trauma, aging, and diabetes, resulting in therapeutic problems and increased medical costs. Thus, this study reports the synthesis and comprehensive characterization of water-responsive hybrid hydrogels based on carboxymethyl cellulose (CMC) and poly(vinyl alcohol) (PVA) using citric acid (CA) as the chemical crosslinking agent, with tunable physicochemical properties suitable to be applied as a wound dressing for soft tissue engineering applications. They were produced through an eco-friendly process under mild conditions. The hydrogels were designed and produced with flexible swelling degree properties through the selection of CMC molecular mass (Mw = 250 and 700 kDa) and degree of functionalization (DS = 0.81), degree of hydrolysis of PVA (DH > 99%, Mw = 84-150 kDa) associated with synthesis parameters, CMC/PVA ratio and extension of chemical crosslinking (CA/CMC:PVA ratio), for building engineered hybrid networks. The results demonstrated that highly absorbent hydrogels were produced with swelling degrees ranging from 100% to 5000%, and gel fraction from 40% to 80%, which significantly depended on the concentration of CA crosslinker and the presence of PVA as the CMC-based network modifier. The characterizations indicated that the crosslinking mechanism was mostly associated with the chemical reaction of CA carboxylic groups with hydroxyl groups of CMC and PVA polymers forming ester bonds, rendering a hybrid polymeric network. These hybrid hydrogels also presented hydrophilicity, permeability, and structural features dependent on the degree of crosslinking and composition. The hydrogels were cytocompatible with in vitro cell viability responses of over 90% towards model cell lines. Hence, it is envisioned that this research provides a simple strategy for producing biocompatible hydrogels with tailored properties as wound dressings for assisting chronic wound healing and skin tissue engineering applications.
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