Search Results - "Birk, D E"
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Intrinsic aging vs. photoaging: a comparative histopathological, immunohistochemical, and ultrastructural study of skin
Published in Experimental dermatology (01-10-2002)“…: Cutaneous aging is a complex biological phenomenon affecting the different constituents of the skin. To compare the effects of intrinsic and extrinsic aging…”
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2
Achilles tendons from decorin- and biglycan-null mouse models have inferior mechanical and structural properties predicted by an image-based empirical damage model
Published in Journal of biomechanics (16-07-2015)“…Abstract Achilles tendons are a common source of pain and injury, and their pathology may originate from aberrant structure function relationships. Small…”
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3
Type V collagen: heterotypic type I/V collagen interactions in the regulation of fibril assembly
Published in Micron (Oxford, England : 1993) (01-04-2001)“…Type V collagen is a quantitatively minor fibrillar collagen with a broad tissue distribution. The most common type V collagen isoform is alpha1(V)(2)…”
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4
Differential Expression of Lumican and Fibromodulin Regulate Collagen Fibrillogenesis in Developing Mouse Tendons
Published in The Journal of cell biology (13-11-2000)“…Collagen fibrillogenesis is finely regulated during development of tissue-specific extracellular matrices. The role(s) of a leucine-rich repeat protein…”
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5
Corneal Opacity in Lumican-Null Mice: Defects in Collagen Fibril Structure and Packing in the Posterior Stroma
Published in Investigative ophthalmology & visual science (01-10-2000)“…Gene targeted lumican-null mutants (lum(tm1sc)/lum(tm1sc)) have cloudy corneas with abnormally thick collagen fibrils. The purpose of the present study was to…”
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6
Differentiated activities of decorin and biglycan in the progression of post-traumatic osteoarthritis
Published in Osteoarthritis and cartilage (01-08-2021)“…To delineate the activities of decorin and biglycan in the progression of post-traumatic osteoarthritis (PTOA). Three-month-old inducible biglycan (BgniKO) and…”
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7
Collagen Type I and Type V Are Present in the Same Fibril in the Avian Corneal Stroma
Published in The Journal of cell biology (01-03-1988)“…The distribution, supramolecular form, and arrangement of collagen types I and V in the chicken embryo corneal stroma were studied using electron microscopy,…”
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8
Extracellular Compartments in Tendon Morphogenesis: Collagen Fibril, Bundle, and Macroaggregate Formation
Published in The Journal of cell biology (01-07-1986)“…The formation of collagen fibrils, fibril bundles, and tissue-specific collagen macroaggregates by chick embryo tendon fibroblasts was studied using…”
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9
Type V collagen: molecular structure and fibrillar organization of the chicken alpha 1(V) NH2-terminal domain, a putative regulator of corneal fibrillogenesis
Published in The Journal of cell biology (01-06-1993)“…Previous work from our laboratories has demonstrated that: (a) the striated collagen fibrils of the corneal stroma are heterotypic structures composed of type…”
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10
Altered Corneal Stromal Matrix Organization is Associated with Mucopolysaccharidosis I, III and VI
Published in Experimental eye research (01-05-1999)“…The presence of cloudy corneas is a prominent feature of mucopolysaccharidosis (MPS) types I and VI, but not MPS IIIA or IIIB. The cause of corneal cloudiness…”
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11
Collagen fibrillogenesis in vitro: interaction of types I and V collagen regulates fibril diameter
Published in Journal of cell science (01-04-1990)“…The small-diameter fibrils of the chick corneal stroma are heterotypic, composed of both collagen types I and V. This tissue has a high concentration of type V…”
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12
Reduction of Type V Collagen Using a Dominant-Negative Strategy Alters the Regulation of Fibrillogenesis and Results in the Loss of Corneal-Specific Fibril Morphology
Published in The Journal of cell biology (01-12-1996)“…A number of factors have been implicated in the regulation of tissue-specific collagen fibril diameter. Previous data suggest that assembly of heterotypic…”
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13
Extracellular Compartments in Matrix Morphogenesis: Collagen Fibril, Bundle, and Lamellar Formation by Corneal Fibroblasts
Published in The Journal of cell biology (01-12-1984)“…The regulation of collagen fibril, bundle, and lamella formation by the corneal fibroblasts, as well as the organization of these elements into an orthogonal…”
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14
Collagen Fibrillogenesis in situ: Fibril Segments are Intermediates in Matrix Assembly
Published in Proceedings of the National Academy of Sciences - PNAS (01-06-1989)“…The assembly of discontinuous fibril segments and bundles was studied in 14-day chicken embryo tendons by using serial sections, transmission electron…”
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15
Assembly of the tendon extracellular matrix during development
Published in Journal of anatomy (01-06-1994)“…The assembly of the collagenous extracellular matrix during tendon development was studied to determine the mechanisms involved in collagen fibril growth…”
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16
Altered wound healing in mice lacking a functional osteopontin gene (spp1)
Published in The Journal of clinical investigation (01-04-1998)“…Osteopontin (OPN) is an arginine-glycine-aspartate (RGD)- containing glycoprotein encoded by the gene secreted phosphoprotein 1 (spp1). spp1 is expressed…”
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17
Type V Collagen Controls the Initiation of Collagen Fibril Assembly
Published in The Journal of biological chemistry (17-12-2004)“…Vertebrate collagen fibrils are heterotypically composed of a quantitatively major and minor fibril collagen. In non-cartilaginous tissues, type I collagen…”
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18
Organization of collagen types I and V in the embryonic chicken cornea
Published in Investigative ophthalmology & visual science (01-10-1986)“…The distribution and organization of type I and type V collagens were studied in the embryonic chicken cornea using anti-collagen, type specific, monoclonal…”
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19
Fibroblasts retain their tissue phenotype when grown in three-dimensional collagen gels
Published in Experimental cell research (1991)“…Fibroblasts are responsible for the synthesis, assembly, deposition, and organization of extracellular matrix molecules, and thus determine the morphology of…”
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Localization of collagen types I, III and V during tendon development. Changes in collagen types I and III are correlated with changes in fibril diameter
Published in European journal of cell biology (01-04-1997)“…Collagen types I, III and V were localized at different stages of tendon development: a stage when tendon architecture is established, but immature (14-day), a…”
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