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  • 1995-1999  (2)
  • Human, embryo  (1)
  • Key words Collagen • Cornea • Cross-linking • Keratoconus • Proteoglycans  (1)
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Der Ophthalmologe 94 (1997), S. 902-906 
    ISSN: 1433-0423
    Keywords: Key words Collagen • Cornea • Cross-linking • Keratoconus • Proteoglycans ; Schlüsselwörter Hornhaut • Kollagen • Keratokonus • Proteoglykane • Vernetzung
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Description / Table of Contents: Hintergrund: Die biomechanische Festigkeit der Hornhaut soll durch künstliche Quervernetzung der Kollagenfibrillen (Strahlenvernetzung, chemische Vernetzung) erhöht werden, um eine evtl. konservative Therapie des Keratokonus zu prüfen. Methode: Von enukleierten Schweineaugen wurde das Epithel entfernt. Je 10 Augen in 8 Testgruppen wurden mit UV-Strahlung (λ = 254 nm), einer 0,5 %igen Riboflavinlösung und UV-Strahlung (365 nm), blauem Licht (436 nm) und Sonnenlicht sowie mit chemischen Vernetzern – Glutaraldehyd (1 % und 0,1 %, 10 min) und Karnovsky- Lösung (0,1 %, 10 min) – behandelt. Als Standard dienten jeweils Kontrollgruppen mit 10 unbehandelten Hornhäuten. Aus jeder Hornhaut wurde ein zentraler Streifen von 5 mm Breite und 9 mm Länge geschnitten und die Spannungs-Dehnungs-Kurven gemessen. Ergebnisse: Bei UV-Bestrahlung von mit Riboflavin vorbehandelten Hornhäuten nimmt die Dehnbarkeit signifikant ab (p 〈 0,05). Auch die mit Glutaraldehyd oder Karnovsky-Lösung behandelten Hornhäute zeigen eine signifikante Zunahme der Festigkeit (p 〈 0,05). Schlußfolgerung: UV-Strahlen und Riboflavin sowie niedrigkonzentriertes Glutaraldehyd oder Karnovsky-Lösung führen zu einer Verfestigung der Hornhaut wahrscheinlich aufgrund von Vernetzungen der Kollagene oder der Proteoglykane. Weitere Untersuchungen sind jedoch bezüglich der Optimierung der Dosis-Wirkungs-Beziehung und der In-vivo-Bedingungen erforderlich.
    Notes: Purpose: To increase the stability of the cornea by artificial cross-linking (radiation or chemical agents) and to investigate a future therapy for keratoconus. Materials and methods: The epithelium of enucleated porcine eyes was removed. Ten eyes in each of eight test groups were treated with UV light (λ = 254 nm), 0.5 % riboflavin and UV light (365 nm), blue light (436 nm) and sunlight, and the chemical agents glutaraldehyde (1 % and 0.1 %, 10 min) and Karnovsky's solution (0.1 %, 10 min). Strips of 5 mm in width and 9 mm in length were cut from each cornea and the stress-strain behaviour of the strips was measured. For comparison, eight groups of ten untreated corneas each were measured by the same method. Results: Compared to untreated corneas riboflavin and UV irradiation as well as glutaraldehyde and Karnovsky's solution treatment resulted in significantly increased stiffness of the cornea (p 〈 0.05). Conclusions: The biomechanical behaviour of the cornea can be altered by low-concentration glutaraldehyde, Karnovsky's solution, and by riboflavin and UV irradiation, which offers potential conservative treatment of keratoconus. To optimize this effect further investigation is necessary regarding the dose-effect relation and the in-vivo conditions.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Cell & tissue research 280 (1995), S. 455-462 
    ISSN: 1432-0878
    Keywords: Intermediate filaments ; Notochord ; Cytokeratins ; Cadherins ; Human, embryo
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine
    Notes: Abstract In order to characterize human notochordal tissue we investigated notochords from 32 human embryos and fetuses ranging between the 5th and 13th gestational week, using immunohistochemistry to detect intermediate filament proteins cytokeratin, vimentin and desmin, the cytokeratin subtypes 7, 8, 18, 19 and 20, epithelial membrane antigen (EMA), and adhesion molecules pan-cadherin and E-cadherin. Strong immunoreactions could be demonstrated for pan-cytokeratin, but not for desmin or EMA. Staining for pan-cadherin and weak staining for E-cadherin was found on cell membranes of notochordal cells. Also it was demonstrated that notochordal cells of all developmental stages contain the cytokeratins 8, 18 and19, but not 7 or 20. Some cells in the embryonic notochord also contained some vimentin. Vimentin reactivity increased between the 8th and 13th gestational week parallel to morphological changes leading from an epithelial phenotype to the chorda reticulum which represents a mesenchymal tissue within the intervertebral disc anlagen. This coexpression reflects the epithelial-mesenchymal transformation of the notochord, which also loses E-cadherin expression during later stages. Our findings cannot elucidate a histogenetic germ layer origin of the human notochord but demonstrate its epithelial character. Thus, morphogenetic inductive processes between the human notochord and its surrounding vertebral column anlagen can be classified as epithelial-mesenchymal interactions.
    Type of Medium: Electronic Resource
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