An adipose-derived mesenchymal stem cell-loaded polysaccharide hydrogel promotes wound healing through angiogenesis.
Zhu S., Li W., Wang K., Bin Hu, Huang S., Yang J.
Animal Study on Chronic Wound, published in J Mater Chem B (2026) — summary generated from the PubMed abstract.
Evidence from laboratory and animal studies provides groundwork for understanding mechanisms and potential before human studies continue.
- Level A · Stronger Clinical Evidence
- Level B · Emerging clinical evidence with positive signals
- Level C · Early human research exploring benefits
- Level D · Scientific groundwork from lab and animal studies
- Emerging · Emerging topic under active research
This page is generated from the PubMed record. The Thai description is an automated summary of bibliographic fields and the abstract, not a full translation, and is not medical advice.
- Study type
- Animal Study
- Journal
- J Mater Chem B (2026)
- Country
- England
- Reported sample size
- —
- Source database
- PubMed
- PMID
- 42012438
- DOI
- 10.1039/d5tb02872h
Abstract (original English)
Wound repair is a coordinated and sequential biological process involving multiple cells and phases, with inflammation, vascularization, re-epithelialization, collagen deposition, and remodeling being critical stages. Mesenchymal stem cells, capable of sensing the wound microenvironment and secreting cytokines to regulate the repair process, have garnered significant attention in wound repair. This study developed a self-healing polysaccharide-based hydrogel system using two widely sourced polysaccharides. The main components of the hydrogel are oxidized dextran (OD) and carboxymethyl chitosan (CMCS). This hydrogel features a simple preparation process and favorable biocompatibility, serving as a carrier for cell culture to enable three-dimensional (3D) cultivation of adipose-derived mesenchymal stem cells (ADSCs). Experiments on full-thickness skin defect repair in nude mice demonstrated that the ADSC-loaded polysaccharide hydrogel (OC-ADSCs) significantly promoted wound closure, collagen deposition, epidermal regeneration, as well as angiogenesis and vessel maturation. The OC-ADSC hydrogel can function as a novel cell delivery system, synergistically promoting wound healing and tissue regeneration by modulating the wound microenvironment, showing potential for clinical translation.
What this study does not prove
- • This study does not prove SVF is an approved treatment or a replacement for standard care.
- • This is preclinical work; animal or laboratory results cannot be applied to humans.
Evidence level
Evidence from laboratory and animal studies provides groundwork for understanding mechanisms and potential before human studies continue.
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