January 2025 in “Journal of Inorganic Materials” This review highlights how silicate-based bioceramics and bioglasses could enhance skin regeneration for wound healing by promoting angiogenesis, stimulating collagen deposition, and providing anti-infection benefits, while also examining their integration with emerging technologies and current applications.
1 citations
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August 2023 in “Composites Part B: Engineering” In this study, researchers developed a composite electrospun wound dressing containing strontium zinc silicon bioceramics, which significantly activated hair follicle stem cells and promoted hair follicle and capillary regeneration in deep burn wounds, suggesting a promising approach for burn wound healing.
50 citations
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December 2020 in “Bioactive Materials” This study suggests that a sandwich-structured wound dressing with bioceramic and polylactic acid layers may improve burn wound healing by absorbing exudates and promoting hair follicle regeneration.
40 citations
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September 2024 in “Heliyon” This review discusses the role of bioceramics, highlighting their bactericidal activity, lack of side effects, and ability to release metallic ions for hard and soft tissue repair. The authors suggest that integrating bioceramics with other biomaterials could offer a cost-effective, efficient alternative for wound healing.
7 citations
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April 2025 in “Science Advances” This study suggests that a biomaterial-based approach using microneedles and ion solutions to deliver SiO3 2− ions may disrupt inflammatory cycles and improve outcomes in inflammatory dilated cardiomyopathy (iDCM).