Sprayable Carbopol hydrogel with soluble beta‐1,3/1,6‐glucan as an active ingredient for wound healing – Development and in‐vivo evaluation
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Summary
The in vivo efficacy of the formulations, evaluated in the modified diabetic male mice, showed that Carbopol alone was unable to induce improved healing and caused adverse reactions in some wounds, thus a more suitable thickening agent should be investigated for further development of a sprayable wound care product.
- Type
- article
- Published
- 2017-09-30
- Cited by
- 55
- References
- 44
- Access
- Open access
- OpenAlex
- https://openalex.org/W2658624491
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:13460458
Keywords
Self-healing hydrogels, Active ingredient, Beta-glucan, Wound healing, In vivo
References
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- The effect of soluble beta-1,3-glucan and lipopolysaccharide on cytokine production and coagulation activation in whole blood.
- Bacillus thuringiensis fermentation of hydrolyzed sludge--rheology and formulation studies.
- Rheological Characterization of Isabgol Husk, Gum Katira Hydrocolloids, and Their Blends
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- Niosomal Gel of Lornoxicam for Topical Delivery: In vitro Assessment and Pharmacodynamic Activity
- Macrophage stimulating agent soluble yeast β‐1,3/1,6‐glucan as a topical treatment of diabetic foot and leg ulcers: A randomized, double blind, placebo‐controlled phase II study
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- The Fat-Fed Apolipoprotein E Knockout Mouse Brachiocephalic Artery in the Study of Atherosclerotic Plaque Rupture
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- An insight into anti-inflammatory effects of fungal beta-glucans
- Animal Models in Burn Research
- Effect of Air Exposure and Occlusion on Experimental Human Skin Wounds
Cited by
- Revisiting in vitro release test for topical gel formulations: The effect of osmotic pressure explored for better bio‐relevance
- Beta‐glucan‐loaded nanofiber dressing improves wound healing in diabetic mice
- Multifunctional smart hydrogels: potential in tissue engineering and cancer therapy.
- Preparation and evaluation of β-glucan hydrogel prepared by the radiation technique for drug carrier applications.
- β-Glucan-Based Wet Dressing for Cutaneous Wound Healing
- Synthesis and optimization of immunomodulating hydrogel for biomedical application
- Physiological functionalities and mechanisms of β-glucans
- An alternative approach to wound healing field; new composite films from natural polymers for mupirocin dermal delivery
- Embroidered electrodes for bioelectrical impedance analysis: impact of surface area and stitch parameters
- Enhancement in Site-Specific Delivery of Carvacrol against Methicillin Resistant Staphylococcus aureus Induced Skin Infections Using Enzyme Responsive Nanoparticles: A Proof of Concept Study
- Hydrogel based scaffolding polymeric biomaterials: Approaches towards skin tissue regeneration
- Antibiotic Delivery Strategies to Treat Skin Infections When Innate Antimicrobial Defense Fails
- Castor oil reinforced polymer hybrids for skin tissue augmentation
- Film-Forming Sprays for Topical Drug Delivery
- Alginate-gum acacia based sponges as potential wound dressings for exuding and bleeding wounds.
- Preparation and Characterization of Fish Skin Collagen Material Modified with β-Glucan as Potential Wound Dressing
- Development of Hydrogel‐Based Sprayable Wound Dressings for Second‐ and Third‐Degree Burns
- β-glucan, “the knight of health sector”: critical insights on physiochemical heterogeneities, action mechanisms and health implications
- Barley β-glucan gelatin sponge improves impaired wound healing in diabetic and immunosuppressed mice by regulating macrophage polarization
- Biomimetic Hydrogels to Promote Wound Healing
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