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Fig. 1 — Endogenous stimuli-responsive separating microneedles to inhibit hypertrophic sc

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paper figure Created: 2026-04-21T18:29:40 By: paper_figures_tool Quality: 50% 🔗 External ID: paper-fig-paper-3223c7eb7722-1
Fig. 1 — Endogenous stimuli-responsive separating microneedles to inhibit hypertrophic sc
Fig. 1Figure 1
Schematic diagram of the separating MN patch as a pathological microenvironment-responsive peptide prodrug delivery platform. a Schematic illustration of the fabrication process of a separating MN patch via a step-by-step method. GelMA was mixed with peptide prodrug and photo-initiator to form a precursor solution, poured into MN moulds and crosslinked by UV light. The gelatin solution was then secondarily perfused into the MN mould to form MN base layer. After drying and curing, MN patches were peeled off from the MN mould. b Schematic illustration of the drug-loaded MNs on HS treatment. After crosslinked drug-loaded tips penetrate HS tissue, the MN base layer is removed. The slow and sustained drug release from MN tips in response to the HS pathological microenvironment leads to fibroblast apoptosis and down-regulation of collagen fibril organization, simultaneously stimulating the inflammatory response and mediating keratinocyte differentiation to inhibit collagen synthesis of HS
PubMed: paper-3223c7eb7722
Metadata
pmidpaper-3223c7eb7722
captionSchematic diagram of the separating MN patch as a pathological microenvironment-responsive peptide prodrug delivery platform. a Schematic illustration of the fabrication process of a separating MN pa
image_urlhttps://www.ebi.ac.uk/europepmc/articles/PMC10917775/bin/41467_2024_46328_Fig1_HTML.jpg
paper_titleEndogenous stimuli-responsive separating microneedles to inhibit hypertrophic scar through remodeling the pathological microenvironment.
figure_labelFig. 1
figure_number1
_schema_version1
source_strategypmc_api
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