98%
921
2 minutes
20
Hydrogel-based delivery systems have now emerged as a pivotal platform for addressing chronic tissue defects, leveraging their innate capacity to suppress pathogenic infections and facilitate expedited tissue regeneration. In this work, an injectable hydrogel dressing, termed AgNPs-dermal matrix hydrogel (Ag@ADMH), has been designed to expedite the healing process of wounds afflicted with methicillin-resistant Staphylococcus aureus (MRSA), featuring sustained antibacterial efficacy. The synthesis of the hydrogel dressing entailed a self-assembly process of collagen fibers within an acellular dermal matrix to construct a three-dimensional scaffold, encapsulated with plant polyphenol-functionalized silver nanoparticles (AgNPs). The Ag@ADMH demonstrated exceptional biocompatibility, and enables a sustained release of AgNPs, ensuring prolonged antimicrobial activity. Moreover, the in vitro RT-qPCR analysis revealed that compared with ADMH, Ag@ADMH diminish the expression of iNOS while augmenting CD206 expression, thereby mitigating the inflammatory response and fostering wound healing. Especially, the Ag@ADMH facilitated a reduction in M1 macrophage polarization, as evidenced by a significant decrement in the M1 polarization trend and an enhanced M2/M1 ratio in dermal matrix hydrogels laden with AgNPs, corroborated by confocal microscopy and flow cytometry analyses of macrophage phenotypes. The in vivo assessments indicated that Ag@ADMH minimized fibrous capsule formation. In a full-thickness skin defect model of MRSA infection, the formulation significantly attenuated the inflammatory response by reducing MPO and CD68 expression levels, concurrently promoting collagen synthesis and CD34 expression, pivotal for vasculogenesis, thereby accelerating the resolution of MRSA-infected wounds. These attributes underscore the injectable extracellular matrix hydrogel as a formidable strategy for the remediation and regeneration of infected wounds.
Download full-text PDF |
Source |
---|---|
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11486888 | PMC |
http://dx.doi.org/10.1186/s40580-024-00447-0 | DOI Listing |
Injury
August 2025
Department of Trauma Surgery, University and University Hospital of Zurich, Raemistr. 100, 8091 Zurich, Switzerland; Center for Preclinical Development, University and University Hospital of Zurich, Raemistr. 100, 8091 Zurich, Switzerland. Electronic address:
Background: Critical size bone defects represent a clinical challenge, associated with considerable morbidity, and frequently trigger the requirement of secondary procedure. To fill osseous gaps, multiple steps are required, such as proliferation and differentiation on the cellular level and the building of extracellular matrix. In addition, the osteogenic potential of cell-derived extracellular matrices (CD-ECM) is known to enhance bone healing.
View Article and Find Full Text PDFAnn Plast Surg
September 2025
From the University of Tennessee Health Sciences Center-College of Medicine, Chattanooga, TN.
Introduction: Implant-based breast reconstruction after skin-sparing mastectomy remains one of the most frequently used methods of breast reconstruction in the US. Patients with large, ptotic breasts often face poorer outcomes. We hypothesized that implant-based breast reconstruction with auto-augmentation techniques can minimize problems with acellular dermal matrices (ADM) by using less, and providing the benefit of prepectoral placement.
View Article and Find Full Text PDFMol Med Rep
November 2025
Department of Biochemistry, Faculty of Medicine, Chulalongkorn University, Bangkok 10330, Thailand.
Aberrant extracellular matrix (ECM) production by dermal fibroblasts drives fibrotic skin diseases, which has an adverse impact on the lives of patients. Current treatments are limited; therefore, the development of new antifibrotic strategies is necessary. The aim of the present study was to investigate zinc finger 469 (ZNF469) as a potential ECM regulator in skin fibrosis.
View Article and Find Full Text PDFChronic wounds represent significant challenges to the healthcare system. Their incidence increases with increase in age, especially in individuals suffering from chronic disorders like diabetes. The process of wound healing consists of a series of coordinated biological events triggered by tissue damage, ultimately leading to the repair and restoration of damaged tissues.
View Article and Find Full Text PDFBiomaterials
August 2025
Nebraska Translational Research Center (NTRC), Department of Growth and Development, College of Dentistry, University of Nebraska Medical Center, Omaha, NE, USA. Electronic address:
Large, complex wounds frequently exhibit suboptimal healing, leading to scarring and functional impairment. While bioactive materials and electrical stimulation (ES) show promise, their individual limitations call for novel approaches. This study investigates the combined effects of combining 4-aminopyridine (4AP) and electrical stimulation (ES) on human dermal fibroblasts (hDFBs) using a stable, ionically conductive (IC) chitosan-based scaffold for controlled drug delivery.
View Article and Find Full Text PDF