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  • Calcium Phosphate  (1)
  • Ultrastructure
  • Springer  (2)
  • American Association of Petroleum Geologists
  • American Meteorological Society
  • Institute of Physics
  • 1965-1969  (2)
Collection
Publisher
  • Springer  (2)
  • American Association of Petroleum Geologists
  • American Meteorological Society
  • Institute of Physics
Years
Year
  • 1
    ISSN: 1432-0827
    Keywords: Pyrophosphate ; Calcium Phosphate ; Phosphatase ; Crystallization ; Pyrophosphatase
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine , Physics
    Description / Table of Contents: Résumé La transformation du phosphate calcique de la forme amorphe en forme cristalline a été étudiéein vitro dans différentes conditions. On a suivi cette transformation en étudiant la variation des paramètres suivants: le pH de la solution et sa teneur en calcium et en phosphate, ainsi que le rapport Ca/P et la courbe de diffraction aux rayons X de la phase solide. Le pyrophosphate inorganique augmente sensiblement le temps nécessaire à cette transformation dans les différentes conditions choisies. Cet effet s'annule lorsqu'on ajoute en plus du pyrophosphate de la phosphatase alcaline intestinale. Les auteurs suggèrent que le pyrophosphate pourrait être l'un des facteurs qui permettent à une partie du minéral de l'os de demeurer dans un état non-cristallin. La phosphatase alcaline de l'os, grâce à son activité pyrophosphatasique, serait capable d'accélérer cette transormationin vivo.
    Abstract: Zusammenfassung Die Umwandlung von amorphem in kristallines Calciumphosphat wurdein vitro unter verschiedenen Bedingungen studiert. Diese Umwandlung wurde folgendermaßen verfolgt: einerseits in der Lösung durch Änderung des pH's und des Calcium- und Phosphatgehaltes, andererseits in der soliden Phase durch Änderung des Ca/P-Verhältnisses, sowie des Röntgenstrahlendiffraktionsbildes. Es konnte festgestellt werden, daß unter den verschiedenen Versuchsbedingungen die Anwesenheit von anorganischem Pyrophosphat die zur Umwandlung benötigte Zeit wesentlich verlängert. Wird noch intestinale alkalische Phosphatase zugesetzt, so wird die durch das Pyrophosphat verlängerte Umwandlungszeit aufgehoben. Es wird vorgeschlagen, daß Pyrophosphat einer der Faktoren sein kann, der Teile des Knochenminerals in einem nicht kristallinen Zustand verbleiben läßt. Die alkalische Knochen-phosphatase könnte, dank ihrer Pyrophosphataseaktivität, eine Beschleunigung des Umwandlungsprozessesin vivo ermöglichen.
    Notes: Abstract The transformation of amorphous calcium phosphate into its crystalline form has been studiedin vitro under various conditions. The transformation was followed by changes in the pH and in the calcium and phosphate content of the solution and by changes in the Ca/P ratio and x-ray diffraction patterns of the solid phase. It was found that inorganic pyrophosphate markedly increased the time required for the transformation under the various conditions used. The addition of intestinal alkaline phosphatase abolished this retarding effect of pyrophosphate on the transformation. It is proposed that pyrophosphate may be one of the factors that allows part of the bone mineral to persist in a non-crystalline state. The alkaline phosphatase of bone, by virtue of its pyrophosphatase activity, might be able to accelerate the transformation processin vivo.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Cell & tissue research 101 (1969), S. 167-174 
    ISSN: 1432-0878
    Keywords: Flounder ; Chloride Cell ; Ultrastructure ; Cell Type ; Pseudobranch Gland
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine
    Notes: Summary The free or “non-glandular” pseudobranch of the flounder Paralichthys lethostigma was studied with the electron microscope. Cells typical of glandular type pseudobranchs are found. This indicates that, at least in the flounder, the free pseudobranch should be called “glandular”. In addition, the chloride-type cells, commonly found in the gill, buccal epithelium, and surface epithelium of other fish, have been found in the pseudobranch, where they have not been described previously. The fine structure of both the chloride-type and the pseudobranch-type cell has been characterized and contrasted. We have not been able to confirm previous reports that the specific cells in both pseudobranch and gill are identical in the flounder.
    Type of Medium: Electronic Resource
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