34 citations
,
September 2019 in “ACS Biomaterials Science & Engineering” In this study, probiotic-functionalized nanocomposite scaffolds accelerated wound healing and inhibited harmful bacteria in burn wounds on mice, suggesting a potential new approach for infection control and healing promotion.
20 citations
,
January 2022 in “Polymers” In this review, researchers reported that incorporating nanoparticles into natural-based biomaterials enhanced scaffolding properties, cellular interactions, and outcomes in wound healing, with promising implications for tissue engineering and regenerative medicine, although many signaling pathways involved are still not fully understood.
1 citations
,
February 2023 in “International Journal of Molecular Sciences” This review summarizes the research on bioactive materials that modulate the skin microenvironment to promote wound healing and highlights the essential role of the fascial layer, without presenting new experimental results.
4 citations
,
November 2023 in “Nano biomedicine and engineering” This review highlights the potential of nanomaterials in revolutionizing wound healing and infection control by promoting antibacterial, anti-inflammatory, and angiogenic activities, thereby enhancing the wound healing process and offering novel therapeutic strategies.
11 citations
,
November 2023 in “Journal of Functional Biomaterials” This study investigated nanocomposite scaffolds made from alginate, chitosan, and graphene oxide to promote the proliferation of spermatogonial stem cells, finding the ALGCS/GO30 scaffold to be particularly effective due to increased proliferation markers and PLZF protein expression compared to controls.