Collagen fibril formation in a wound healing model.
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Summary
Collagen fibril formation in a wound healing model in which the newly formed fibrils were kept distinct from preexisting tissue through use of a porous tubular biomaterial implant shows a normal wound healing response, with significant collagen formation at 14 and 28 days.
- Type
- article
- Published
- 2002-01-01
- Cited by
- 31
- References
- 33
- OpenAlex
- https://openalex.org/W1977090031
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:17098896
Keywords
Fibril, Immunoelectron microscopy, Collagen fibril, Biomaterial, Wound healing
References
- The Molecular and Cellular Biology of Wound Repair
- Formation of collagen fibrils by enzymic cleavage of precursors of type I collagen in vitro.
- Assembly of the tendon extracellular matrix during development.
- Multiple antigenic determinants on type III collagen.
- Presence of type III collagen in guinea-pig dermal scar.
- Collagen fibrillogenesis in situ: Fibril segments become long fibrils as the developing tendon matures
- Characterisation of a monoclonal antibody against native human type I collagen.
- Histological and ultrastructural observations at the interface of expanded polytetrafluorethylene anterior cruciate ligament implants.
- Collagen fibrillogenesis in situ: Fibril segments undergo post‐depositional modifications resulting in linear and lateral growth during matrix development
- Dermal collagen fibrils are hybrids of type I and type III collagen molecules.
- Independent modulation of collagen fibrillogenesis by decorin and lumican
- Characterization of collagen fibril segments from chicken embryo cornea, dermis and tendon.
- Native collagen fibrils from echinoderms are molecularly bipolar.
- Characterization of the collagen of human hypertrophic and normal scars.
- Procollagen segment-long-spacing crystallites: their role in collagen fibrillogenesis.
- Cellular distribution of transforming growth factor-beta 1 and procollagen types I, III, and IV transcripts in carbon tetrachloride-induced rat liver fibrosis.
- Extracellular compartments in matrix morphogenesis: collagen fibril, bundle, and lamellar formation by corneal fibroblasts
- Collagen fibril formation during embryogenesis.
- Collagen fibrillogenesis in situ: fibril segments are intermediates in matrix assembly.
- Control of collagen fibril diameters in tissues.
Cited by
- Production, Characterization and Biocompatibility of Marine Collagen Matrices from an Alternative and Sustainable Source: The Sea Urchin Paracentrotus lividus
- Biomedical applications of collagens.
- Influence of saline and pH on collagen type I fibrillogenesis in vitro: fibril polymorphism and colloidal gold labelling.
- Curcumin Heals Indomethacin-Induced Gastric Ulceration by Stimulation of Angiogenesis and Restitution of Collagen Fibers via VEGF and MMP-2 Mediated Signaling
- Delayed Wound Healing in Sacrococcygeal Pilonidal Sinus Coincides with an Altered Collagen Composition
- Reconstruction of living bilayer human skin equivalent utilizing human fibrin as a scaffold.
- Analysis of collagen fibril diameter distribution in connective tissues using small-angle X-ray scattering.
- Inflammatory Reaction as Determinant of Foreign Body Reaction Is an Early and Susceptible Event after Mesh Implantation
- The Role of Wound Healing and Its Everyday Application in Plastic Surgery: A Practical Perspective and Systematic Review
- Comet-Tail-Like Inflammatory Infiltrate to Polymer Filaments Develops in Tension-Free Conditions
- Stabilization of collagen with EDC/NHS in the presence of L-lysine: a comprehensive study.
- Aggregation and self assembly of non-enzymatic glycation of collagen in the presence of amino guanidine and aspirin: an in vitro study.
- In vitro and in vivo characteristics of gentamicin-supplemented polyvinylidenfluoride mesh materials.
- Mice that lack matrix metalloproteinase-9 display delayed wound healing associated with delayed reepithelization and disordered collagen fibrillogenesis
- Laparotomy closure using an elastic suture: a promising approach.
- Temporal variation in the deposition of different types of collagen within a porous biomaterial implant.
- Comparison of Long-Term Biocompability of PVDF and PP Meshes
- Octocoral Sarcophyton auritum Verseveldt & Benayahu, 1978: Microanatomy and Presence of Collagen Fibers
- Discussion: Mast Cells Are Required in the Proliferation and Remodeling Phases of Microdeformational Wound Therapy
- Porosity and tissue integration of elastic mesh implants evaluated in vitro and in vivo.
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