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  • Hydroxyapatite
  • Springer  (9)
  • American Institute of Physics (AIP)
  • Nature Publishing Group
  • Periodicals Archive Online (PAO)
  • Springer Science + Business Media
  • 1995-1999  (5)
  • 1965-1969  (4)
Collection
Publisher
  • Springer  (9)
  • American Institute of Physics (AIP)
  • Nature Publishing Group
  • Periodicals Archive Online (PAO)
  • Springer Science + Business Media
Years
Year
  • 1
    ISSN: 1573-4870
    Keywords: Hydroxyapatite ; wet chemical synthesis ; stoichiometry control
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: Abstract Hydroxyapatite [Ca10(PO4)6(OH)2; or HAp] particles with controlled stoichiometry were precipitated from solution by forced hydrolysis of mixtures of calcium and phosphate salts at a high pH and temperature. The mixing procedure determines the final stoichiometry of the precipitated HAp. The resulting panicles were characterized by FTIR, XRD, TEM, and light scattering and their chemical composition was determined by ICP, indicating that pure crystalline HAp with a narrow size distribution was indeed formed, despite some aggregation being detected by light scattering. The Ca/P ratio was found to depend on the specific preparation route.
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Biology and fertility of soils 24 (1997), S. 347-352 
    ISSN: 1432-0789
    Keywords: Key words Phosphate-solubilizing bacteria ; Hydroxyapatite ; Enterobacter agglomerans ; Organic acids ; Phosphate-solubilizing genes ; Rhizosphere ; Wheat
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Geosciences , Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Abstract Phosphate-solubilizing bacteria (PSB) possessing the ability to solubilize insoluble inorganic phosphate were isolated from the rhizosphere soil of wheat. A laboratory study was conducted to investigate the solubilization of phosphate by a known PSB, Enterobacter agglomerans, and by a genetically manipulated bacterium, Escherichia coli. A second laboratory study investigated the release of P from E. agglomerans compared with known acids. For the first laboratory study, a cosmid (pHC79) library of phosphate-solubilizing gene(s) from E. agglomerans chromosome DNA was constructed in E. coli JM109. The clone JM109 (pKKY) showing phosphate solubilization properties was screened on standard medium containing hydroxyapatite (HY). The P concentration significantly increased at 5 and 10 days for JM109 (pKKY) compared with JM109 (pHC79), the control. Although the P concentration increased, there was no significant change in their pHs. Furthermore, an increase in colony-forming units (CFUs) was seen at 5 and 10 days for JM109 (pKKY) but not for JM109 (pHC79). Artificial acidification of the culture medium with HCl, citric acid, oxalic acid, and lactic acid was achieved by shaking for 48h. Acidification with these selected acids solubilized more HY than E. agglomerans growing for 42h at similar pHs. However, a high P concentration was measured in culture medium with E. agglomerans growing for 84h despite similar pHs. Our results suggest that acid production may play an important role in HY solubilization, but is not the sole reason for the increase in P concentration in culture medium.
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    Materials research innovations 1 (1997), S. 57-63 
    ISSN: 1433-075X
    Keywords: Key words Porous-bioceramic ; Hydroxyapatite ; Bone repair innovation-steps ; Time-involved ; Replamine- form ; Bone graft substitute ; Coral ; (Interpore International)
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: Abstract  An innovative process for forming a wide variety of porous biomaterials was conceived of and developed over several years at a University and later by a company that licensed the early patents. The family of patents formed the basis for several promising innovative biomaterials devices. However, only one commercial product has been realized. That product is the very successfull coralline hydroxyapatite (HA) now widely used in orthopaedic surgery, oral and maxillofacial bone repair and plastic surgery. This paper challenges the equation of discovery with a genuine innovation which reaches the marketplace. The paper reviews several aspects of the innovation and development history with an emphasis on the challenges of bringing any new biomaterial through all the conceptual, developmental, business and regulatory hurdles. New class three medical devices require huge investments of time and money typically requiring a minimum of eight years and 15–20 million dollars per new device to take it from concept to an approved product. These hurdles are so high that most research innovations in biomaterials never get put into the developmental pipeline. This paper is presented from an anecdotal perspective of an innovator who has had a continuous research and development involvement in the technology but has no significant management involvement beyond the early startup activities. It differs from predecessors is that it deals not only with the initial step of discovery but in the very difficult steps that follow on the road to a real innovation. Several strategies that may help other R&D groups outside the biomedical industry shorten the development cycle and increase the probability that a given biomaterials innovation can be seen through to approved product are discussed. Guidelines are suggested for culling out ideas that are technically sound but that likely won’t lead to successful products.
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  • 4
    ISSN: 1432-0827
    Keywords: Bone ; Graft ; Comparison ; Hydroxyapatite ; Beta-tricalcium phosphate
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine , Physics
    Notes: Abstract A novel canine tibia model was used to evaluate four bone graft materials: autologous cortical bone, allograft cortical bone, hydroxyapatite/tricalcium phosphate (HA/TCP) ceramic granules, and a HA/TCP and collagen composite. Mechanical material properties were assessed using custom-designed stainless steel plugs for control of graft volume and interface surface area. These plugs held the bone graft materials in the cortex of the tibia shaft and allowed in vivo mechanical testing. After 6 months of ad lib weight bearing, the grafts were harvested and tested in torsion. The samples in each animal were compared with the test plugs into which new bone had grown without the addition of graft. Control bone peak shear strength averaged 47 (±8.3) MPa (6.78±1.2 kpsi). Compared on the basis of peak torque, stiffness, and energy to peak torque, no significant differences were found among any of the graft materials or control bone. Histologic examination revealed the materials to be osteoconductive with the extensive formation of dense, compact cancellous bone. The new bone in the autograft and allograft samples completely filled the available space, whereas gaps persisted in the synthetic ceramics.
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  • 5
    ISSN: 1432-0827
    Keywords: Cadmium ; Bone mineral ; Hydroxyapatite ; Toxicity ; Osteopenia
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine , Physics
    Notes: Abstract In order to understand the biological action of cadmium (Cd) in inducing bone pathologies, the effect of Cd on the formation, structure, and properties of hydroxyapatite (HA) in vitro was investigated using three biologically relevant test systems: (1) direct precipitation of HA with no precursor phase; (2) transformation of amorphous calcium phosphate (ACP) to crystalline HA; and (3) growth of HA seed crystals. Cd-containing HA was prepared by transforming ACP to HA in the presence of Cd at a pH of 10; Cd/Ca ratios of 0.05, 0.10, and 0.20 were obtained. Infrared and x-ray diffraction analyses were performed on the Cd-HA samples, and measurements were made of Cd adsorption on HA and of the dissolution characteristics of Cd-containing HA. Cd incorporation in HA introduced little strain in the lattice but resulted in a decreasing C-axis spacing and a corresponding crystal size decrease in the C-axis direction. Cd incorporation had a nominal effect on HA dissolution. Cd had an inhibitory effect on HA formation kinetics in all three test systems. Infrared spectroscopy of Cd-HA showed a complex series of small changes in the spectra as a function of Cd concentration resulting from some distortion in the crystal perfection and symmetry. The interference of Cd with mineralization can be partially explained by its inhibitory effect on HA nucleation and growth in addition to any cellular involvement. Furthermore, Cd probably has little effect on bone mineral dissolution. Our results explain the Cd incorporation reported in bone.
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  • 6
    Electronic Resource
    Electronic Resource
    Springer
    Calcified tissue international 3 (1969), S. 284-292 
    ISSN: 1432-0827
    Keywords: Hydroxyapatite ; Pyrophosphate ; Nucleotides ; Adenosine triphosphate ; Transphosphorylation
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine , Physics
    Description / Table of Contents: Résumé La base de la transphosphorilation entre les nucléotides et l'hydroxyapatite (HA) est explorée. Utilisant un recent modèle de la surface de HA et de la structure de polyphosphates de 2 et 3 parties, une raisonnable explication atomique peut être montrée pour cette réaction. La transphosphorilation a produit un pyrophosphate sur HA qui est différent du pyrophosphate absorbé sur HA de la solution. Les modèles suggèrent que la distinction est dûe à une orientation différente du pyrophosphate sur la surface de HA dépendant de l'origine du pyrophosphate.
    Abstract: Zusammenfassung Es wurde die Grundlage für die Transphosphorylierung zwischen Nukleotiden und Hydroxy-Apatit (HA) untersucht. Eine plausible atomare Darstellung dieser Reaktion ist möglich, wenn man kürzlich vorgeschlagene Modelle der Oberfläche von HA und der Struktur von zwei- und dreigliedrigen Polyphosphaten benutzt. Man findet dann, daß Transphosphorylierung zu einem Pyrophosphat des HA führt, welches von dem Pyrophosphat, welches HA aus der Lösung absorbiert, unterschieden werden kann. Auf Grund der Modelle kann man annehmen, daß dieser Unterschied auf einer unterschiedlichen Orientierung des Pyrophosphats auf der Oberfläche des HA beruht, welche wiederum von der Herkunft des Pyrophosphats abhängt.
    Notes: Abstract The basis for transphosphorylation between nucleotides and hydroxyapatite (HA) has been explored. Using a recently-proposed model for the surface of HA and the structure of 2- and 3-membered polyphosphates, a reasonable atomic explanation can be shown for this reaction. Transphosphorylation has been found to result in a pyrophosphate on HA which is distinctive from pyrophosphate absorbed onto HA from solution. The models suggest that this distinction is due to a different orientation of the pyrophosphate on the surface of the HA depending on the origin of the pyrophosphate.
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  • 7
    Electronic Resource
    Electronic Resource
    Springer
    Calcified tissue international 3 (1969), S. 308-317 
    ISSN: 1432-0827
    Keywords: Bone ; Enamel ; Hydroxyapatite ; X-ray Diffraction
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine , Physics
    Description / Table of Contents: Résumé L'objet de cette étude a été de déterminer l'effet du mode de préparation (par meulage) sur la largeur des raies de diffraction de l'émail. La préparation d'émail, par meulage, en utilisant divers procédés ainsi qu'une pièce à main dentaire conventionnelle provoque un élargissement des pics obtenus (002, 211, 200 et 202) lorsqu'on la compare avec de la poudre d'émail, obtenue par meulage à l'aide de billes. L'élargissement des raies n'est pas observé lorqu'un monocristal d'hydroxylapatite est meulé à l'aide d'un diamant fin. En général, l'élargissement est moins important, lorsque le meulage est effectué à l'aide de turbines dentaires. L'importance du meulage dépend de façon variable d'un ou plusieurs des facteurs suivants: rugosité des instruments coupants, vitesse de meulage, direction de meulage, et la présence ou l'absence d'eau. Le meulage prolongé par billes de l'émail provoque aussi un élargissement dans les mêmes conditions, cependant, l'os n'est pas endommagé. Ces résultats indiquent que l'émail est plus sensible que l'hydroxylapatite et l'os. L'élargissement de raies peut être dû soit à une déformation de la maille cristalline, soit à une diminution de taille des cristaux.
    Abstract: Zusammenfassung Es wurde eine Untersuchung durchgeführt, um den Einfluß der Probenvorbereitung (Zerreibungsmethode) auf die Breite des Linienprofil-Querschnittes von Zahnschmelz zu bestimmen. Gewinnung von Zahnschmelz mit den verschiedenen Schneidinstrumenten einer konventionellen Bohrmaschine verursachte eine Verbreiterung aller untersuchten Peaks (002, 211, 200 und 202) im Vergleich zum gleichen Schmelz, der mit dem Rosenbohrer zerrieben wurde. Eine Verbreiterung der Linie konnte nicht beobachtet werden, wenn ein einzelner Kristall von Hydroxyapatit mit einem ganz feinen Diamanten zerrieben wurde. Im allgemeinen war die Verbreiterung weniger ausgesprochen, wenn die hochtourige Bohrtechnik zur Anwendung kam. Das Ausmaß der Verbreiterung, das durch Zahnbohrer verursacht wurde, war abhängig von einem oder mehreren der folgenden Faktoren: Rauheit des Schneidinstrumentes, Zerreibungsgeschwindigkeit, Zerreibungsrichtung und das Vorhandensein oder Fehlen von Wasser. Verlängerte Zerreibung von Schmelz mit dem Rosenbohrer verursachte ebenfalls eine Verbreiterung. Unter identischen Bedingungen blieb der ausgeglühte Knochen jedoch unversehrt. Diese Beobachtungen zeigen, daß Schmelz für Zerreibungsschäden anfälliger ist, als Hydroxyapatitkristalle oder ausgeglühter Knochen. Die eigentliche Ursache der Linienverbreiterung kann entweder eine Schädigung infolge Distortion des Gitters oder eino Reduktion der Größe der individuellen Kristalle sein.
    Notes: Abstract A study was conducted to determine the effect of sample preparation (grinding method) upon breadth of the diffraction profile of enamel. Collecting enamel by grinding with various cuttin tools in the low-speed dental handpiece caused broadening of all peaks (002, 211, 300 and 202) examined, compared to ball, ground, counter-part enamel. Line broadening was not observed when a single crystal of mineral hydroxyapatite was ground with a very fine diamond. In general, broadening was less pronounced with the high-speed air turbine technique. The amount of broadening caused by dental burs depended upon one or more of the following factors: coarseness of cutting instrument, grinding speed, grinding direction, and the presence or absence of water. Prolonged ball grinding of enamel also caused broadening; under identical conditions, however, annealed bone remained undamaged. These findings indicate that enamel is more sensitive to grinding damage than the mineral hydroxyapatite crystal or annealed bone. The actual cause of line broadening may be either strain due to lattice distortions or a reduction in size of individual crystallites.
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  • 8
    Electronic Resource
    Electronic Resource
    Springer
    Calcified tissue international 2 (1968), S. 1-19 
    ISSN: 1432-0827
    Keywords: Collagen ; Hydroxyapatite ; Keratin ; Enamel ; Calcification
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine , Physics
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  • 9
    Electronic Resource
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    Calcified tissue international 2 (1968), S. 361-369 
    ISSN: 1432-0827
    Keywords: Calcification ; Hydroxyapatite ; Keratin ; Hair ; Electron diffraction
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine , Physics
    Description / Table of Contents: Résumé Certaines régions du cortex des fibres de kératine contiennent une proportion relativement élevée de matériel non kératinisé. L'orientation microfibrillaire dans ces régions est biaxiale et on y trouve, en outre, des zones de matériel amorphe. Les sels calciques, et en particulier l'hydroxyleapatite, sont étudiés par diffraction électronique qui permet de les localiser et de les identifier. En outre, cette technique permet de déterminer la fréquence de cellules nonkératinisées dans la partie interne du cortex et de les comparer avec les propriétés histochimiques de cette région. Une comparison est effectuée entre la calcification de la kératine et celle intéressant le collagène et l'élastine.
    Abstract: Zusammenfassung Es wird gezeigt, daß Bereiche im Cortex von gewissen Keratinfasern einen relativ hohen Anteil an nichtkeratinösem Material enthalten. Ferner konnte nachgewiesen werden, daß die Orientierung der Mikrofibrillen in diesen Bereichen biaxialer Art ist, und daß Bezirke von amorphem Material vorhanden sind. Die Calciumsalze und insbesondere das Hydroxyapatit konnten mit Hilfe der Elektronendiffraktion lokalisiert und identifiziert werden. Diese Methode hat sich auch als wertvoll erwiesen, um die Wechselbeziehung zwischen dem Vorkommen von einigen nichtkeratinisierten Zellen im Cortexinnern und den histochemischen Eigenschaften dieser Regionen zu zeigen. Ein Vergleich wird gemacht zwischen der Umgebung der Verkalkungsstellen im Keratin mit derjenigen im Kollagen und im Elastin.
    Notes: Abstract Regions in the cortex of some keratin fibres are shown to contain a relatively high proportion of non-keratinous material. The microfibrillar orientation in these regions is shown to be biaxial in nature and, in addition, areas of amorphous material are reported. Calcium salts, in particular hydroxyapatite, have been located and identified using electron diffraction, which has also proved valuable in correlating the incidence of some non-keratinised cells in the inner part of the cortex with the histochemical properties of this region. A comparison is made between the environment of the sites of calcification in keratin with those in collagen and elastin.
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