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  • Nitrogen fixation
  • Bone
  • Springer  (140)
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Calcified tissue international 12 (1973), S. 73-90 
    ISSN: 1432-0827
    Keywords: Bone ; Mineral ; Properties ; Deproteination ; Hydrazine
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine , Physics
    Description / Table of Contents: Résumé Une méthode, utilisant 95% d'hydrazine, permet de déprotéiniser et de déshydrater légèrement l'os dans des conditions presqu'anhydres, avec une élévation de température modérée. Cette méthode ne provoque que des modifications chimiques mineures, sans altération des propriétés structurales de la phase minérale. Les résultats physico-chimiques démontrent que bien que les cristaux d'os de rat sont viosins de cristaux synthétiques témoins constitués dans des milieux, riches en carbonate plutôt qu'en hydroxyde, l'apatite osseux de rat ne parait pas analogue à des modèles cristallins connus ou imaginés. Des déterminations de bande infra-rouge CO 3 2− , réalisées à partir de spectre d'os total, semblent faussées par la présence de bandes d'absorption protéique. L'absorption d'HPO 4 2− est étudiée à l'aide de spectres infra-rouges de minéral osseux de jeunes rats. Des comparaisons détaillées en diffraction par raysons X d'os déprotéinisé de rats, avant et après hydrolyse, démontrent nettement la présence de phosphate de calcium amorphe. La microscopie électronique indique que de petits cristaux d'apatite dans l'os de rat sont susceptibles de contribuer au pool minéral amorphe en diffraction en rayons X. La microscopie électronique montre des plages de minéral osseux de rat où des cristaux d'apatite en forme de plaque, présentent une maille cristalline avec axe C malgré l'élimination de leur matrice fibreuse.
    Abstract: Zusammenfassung Es wird eine Methode beschrieben, wobei durch Anwendung von 95% Hydrazin ohne Wasserzugabe und mit nur geringem Erhitzen dem Knochen das gesamte Protein und ein kleiner Teil des Wassers entzogen wird. Diese Methode führte nur zu geringen chemischen Veränderungen und veränderte die strukturellen Eigenschaften der Mineralphase in keiner Weise. Physikochemische Daten wurden erbracht, welche zeigen, daß — obwohl die Kristalle von Rattenknochen den synthetischen Kontrollen (in Karbonat- und nicht hydroxydreichen Medien hergestellt) eher gleichen — Apatit aus Rattenknochen nicht auf sinnvolle Weise mittels bekannten oder postulierten Kristallmodellen interpretiert werden kann. CO 3 2− -Infrarotbandenzuteilungen, welche von Spektren aus dem Gesamtknochen gemacht wurden, geben wegen der Anwesenheit von Proteinabsorptionsbändern falsche Resultate. Die Absorption von HPO 4 2− wurde in den Infrarotspektren von Knochenmineral aus jungen Ratten beobachtet. Ein Vergleich der detaillierten Röntgendiffraktion von deproteinisiertem Rattenknochen vor und nach der Hydrolyse wies deutlich auf die Anwesenheit von amorphem Calciumphosphat hin. Die Elektronenmikroskopie zeigte kleine Apatitkristalle im Rattenknochen, welche zum Gesamtmineralpool beitragen könnten, der bei der Röntgendiffraktion amorph ist. Die Elektronenmikroskopie zeigte auch Gebiete im Rattenknochenmineral, wo plättchenartige Apatitkristalle eine deutlichec-Achsenorientierung beibehielten, obwohl ihre fibröse Matrix entfernt worden war.
    Notes: Abstract A method is described employing 95% hydrazine which completely deproteinates and slightly dehydrates bone under nearly anhydrous conditions with only moderate heating. This method induced only minor chemical changes and no alterations in structural properties of the mineral phase. Physicochemical data are presented demonstrating that although rat bone crystals more closely resemble synthetic controls made in carbonate-rather than hydroxide-rich media, rat bone apatite cannot be interpreted in terms of known or postulated crystal models in any meaningful fashion. CO 3 2− infrared band assignments made from spectra of whole bone are shown to be in error due to the presence of protein absorption bands. Absorotion of HPO 4 2− was observed in infrared spectra of young rat bone mineral. Detailed X-ray diffraction comparisons of deproteinated rat bone before and after hydrolysis clearly demonstrated the presence of amorphous calcium phosphate. Electron microscopy indicated that very small apatite crystals were present in rat bone which might also contribute to the overall mineral pool amorphous to X-ray diffraction. Electron microscopy also showed domains in rat bone mineral where plate-like apatite crystals maintained a netc-axis orientation despite the removal of their fibrous matrix.
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Calcified tissue international 13 (1973), S. 73-82 
    ISSN: 1432-0827
    Keywords: Bone ; Apatite ; Hydroxide ; Carbonate ; Infrared
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine , Physics
    Description / Table of Contents: Résumé L'étude de spectres infra-rouges montre que le minéral osseux de jeune rat et les apatites synthétiques, formés à des pH, force ionique et température physiologiques sont très déficients en ion OH; ces apatites biologiques et synthétiques présentent d'importants défauts internes de maille. En outre, une proportion significative des ions CO3 2- de mineral osseux de rat est structurée de façon lâche dans un environnement amorphe ou superficiel. Les ions carbonate dans l'os chauffé sous vide ou dans les apatites synthétiques formés à pH physiologique paraissent être situés dans des environnements locaux multiples. Le CO3 2- contenu dans ces structures peut se substituer dans des positions PO4 3- et (à un degré moindre) OH−, bien que des variations importantes de ou dans ces positions sont dues à des défauts de maille. Les carbonato-apatites, formés par transformation thermique (600o) de phosphates calciques amorphes et contenant 4–9% de CO3 2-, présentent surtout du CO3 2- dans des environnements OH−. Une recristallisation thermique des apatites biologiques et synthétiques, dans une atmosphère d'air, augmente le contenu en OH− et redispose les positions CO3 2-. Cependant, de telles formations bien cristallisées sont différentes des précurseurs apatitiques.
    Abstract: Zusammenfassung Die Infrarotspektroskopie ergab, daß sowohl natives Rattenknochenmineral als auch synthetische Apatite, welche bei physiologischem pH, Ionenstärke und Temperatur gebildet wurden, an Hydroxydionen stark defizient sind. Es ist ebenfalls ersichtlich, daß diese biologischen und synthetischen Apatitkristalle beträchtliche innere Verzerrungen aufweisen (Gitterdefekte). Weiterhin zeigt ein bedeutender Anteil der CO3 2--Ionen im Rattenknochenmineral eine lockere Struktur in amorpher Umgebung oder an der Oberfläche. In Vakuumerhitzem Knochen oder in synthetischen Apatit (mit physiologischem pH), welches in der Lösung gebildet wurde, scheinen sich die Carbonationen in verschiedenen Umgebungen zu finden. CO3 2- im Inneren dieser Stoffe kann in PO4 3--und (in viel kleineren Mengen) OH−-Positionen ausgetauscht werden, obwohl eine beträchtliche Abweichung von und innerhalb dieser Stellen wahrscheinlich auf Gitterdefekte zurückzuführen ist. Carbonat-Apatite, welche durch die thermische Umwandlung (600°C) von 4–9% CO3 2- enthaltendem amorphem Calciumphosphat gebildet wurden, zeigen in erster Linie in OH−-Umgebung CO3 2-. Die thermische Umkristallisierung von biologischen und synthetischen Apatiten in einer Luftatmosphäre erhöht den OH−-Gehalt und verteilt die CO3 2--Lokalisationen neu. Solche sehr schön kristallisierten Produkte spiegeln jedoch durchaus nicht ihre nativen Apatitvorbilder wider.
    Notes: Abstract Infrared spectral data indicate that both native rat bone mineral and synthetic apatites formed at physiological pH, ionic strength and temperature are extensively deficient in hydroxide ion content; the data also indicate that these biological and synthetic apatites contain considerable internal distortions (lattice defects). In addition, a significant portion of the CO3 2- ions in rat bone mineral is loosely-structured in either an amorphous or surface environment. Carbonate ions in vacuum-heated bone or solution-ripened synthetic (physiological pH) apatites appear to be in multiple local environments. Internal CO3 2- in these materials may be substituted in PO4 3- and (in much lesser amounts) OH− positions, although considerable deviation from or within these sites is probable due to lattice defects. Carbonateapatites produced by thermal conversion (600o) of amorphous calcium phosphates containing 4–9% CO3 2- exhibit CO3 2- mainly in OH− environments. Thermal recrystallization of biological and synthetic apatites in an air atmosphere increases OH− content and reorganizes CO3 2- locales. However, such extremely well-crystallized products are not at all representative of their native apatitic precursors.
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  • 3
    Electronic Resource
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    Springer
    Calcified tissue international 33 (1981), S. 369-374 
    ISSN: 1432-0827
    Keywords: Histomorphometry ; Bone ; Reproducibility
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine , Physics
    Notes: Summary To study bone histomorphometry reproducibility in normal subjects, we performed during orthopedic surgery bone biopsies in 16 post-menopausal women. Each woman had four bone biopsies, two at the usual site in the iliac crest, one on the left and one on the right side, and two other biopsies just behind the usual site, one at each side. We performed measurements of trabecular bone volume, relative osteoid volume, osteoid surfaces, osteoclastic resorption surfaces and calcification front. The average values of the 16 patients were compared, on the one hand, two by two, by a student test, and on the other hand, by a variance analysis. By these two methods the results showed no significant difference between the average values of the 16 patients at each location for any of the histomorphometric parameters studied. However, there was a location variation which was estimated by the intra-individual variation for a given patient. On the other hand, we calculated from the variance analysis the location variance for a group of 10 to 100 patients. In any case all the parameters had a location variation which was high for osteoclastic resorption surfaces and relative osteoid volume when expressed in % of the absolute value of these parameters. The variation of the trabecular bone volume was 0–46. 15% (95% confident limit interval) in a single patient and the hypothetical value of the location variation was 41.6% for a group of 10 patients and 13.0% for a group of 100 patients.
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  • 4
    Electronic Resource
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    Springer
    Materials research innovations 3 (2000), S. 313-323 
    ISSN: 1433-075X
    Keywords: Keywords Glass ; Cell cycle ; Genes ; Bone ; Bioactive materials ; Osteogenesis ; Prostheses ; Omplants ; Ageing ; Osteoblasts
    Source: Springer Online Journal Archives 1860-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Notes: Abstract  Many of the present generation biomaterials are still based upon the early concept that implantable materials should be bioinert and therefore designed to evoke minimal tissue response, if none. However, a growing body of clinical data demonstrates that the long survivability of these materials is hampered by high rates of failure, which is primarily attributed to interfacial instability. It has therefore become understood that this approach is not optimal. Modern approaches implicate the use of biomaterials that can actively interact with tissues and induce their intrinsic repair and regenerative potential. This involves control over the cell cycle, the molecular framework that controls cell proliferation and differentiation. Class A bioactive glass-ceramic materials were the first materials shown to endorse these properties and, depending upon the rate of resorption and release of ions, can create chemical gradients with specific biological actions over cells and tissues. Optimising this bioactive regenerative capacity of Bioactive glass-ceramics offers great hope for producing biomaterials that can stimulate growth, repair, and regeneration of any human tissue.
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  • 5
    ISSN: 1432-2048
    Keywords: Bacteroid ; Bradyrhizobium ; Glycine (N2 fixation) ; Nitrate reductase ; Nitrite reductase ; Nitrogen fixation
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract Bacteroids of Bradyrhizobium japonicum strain CB1809, unlike CC705, do not have a high level of constitutive nitrate reductase (NR; EC 1.7.99.4) in the soybean (Glycine max. Merr.) nodule. Ex planta both strains have a high activity of NR when cultured on 5 mM nitrate at 2% O2 (v/v). Nitrite reductase (NiR) was active in cultured cells of bradyrhizobia, but activity with succinate as electron donor was not detected in freshly-isolated bacteroids. A low activity was measured with reduced methyl viologen. When bacteroids of CC705 were incubated with nitrate there was a rapid production of nitrite which resulted in repression of NR. Subsequently when NiR was induced, nitrite was utilized and NR activity recovered. Nitrate reductase was induced in bacteroids of strain CB1809 when they were incubated in-vitro with nitrate or nitrite. Increase in NR activity was prevented by rifampicin (10 μg· ml-1) or chloramphenicol (50 μg·ml-1). Nitrite-reductase activity in bacteroids of strain CB1809 was induced in parallel with NR. When nitrate was supplied to soybeans nodulated with strain CC705, nitrite was detected in nodule extracts prepared in aqueous media and it accumulated during storage (1°C) and on further incubation at 25°C. Nitrite was not detected in nodule extracts prepared in ethanol. Thus nitrite accumulation in nodule tissue appears to occur only after maceration and although bacteroids of some strains of B. japonicum have a high level of a constitutive NR, they do not appear to reduce nitrate in the nodule because this anion does not gain access to the bacteroid zone. Soybeans nodulated with strains CC705 and CB1809 were equally sensitive to nitrate inhibition of N2 fixation.
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  • 6
    Electronic Resource
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    Springer
    Plant and soil 66 (1982), S. 413-416 
    ISSN: 1573-5036
    Keywords: Growth ; Nematicide ; Nitrogen fixation ; Nodulation ; Peanut ; Rhizobium
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Summary The effect of two granular nematicidesviz. oxamyl and fenamiphos, on the nodulation and growth of Rhizobium inoculatedArachis hypogaea L. was studied in glasshouse and field trials. In the glasshouse trial at the suggested rates of application shoot fresh weight was significantly reduced by oxamyl whilst root fresh weight was similarly affected by fenamiphos. In the field trial vegetative growth and plant emergence were significantly reduced by both nematicides. Nodulation at the higher rates of application was increased by both oxamyl and fenamiphos whilst oxamyl caused a significant increase in pod number at the highest rate of application.
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  • 7
    ISSN: 1573-5036
    Keywords: Acetylene reduction ; Minesoil ; Nitrogen fixation ; Nitrogen source ; Reclamation ; Sericea lespedeza ; Surface mining
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Summary Two growth chamber experiments were conducted to determine the response ofLespedeza cuneata (Dumont) G. Don. (sericea lespedeza) to delayed inoculation and low levels of nitrogen fertilization. Nitrogen was supplied either as NH 4 + or as NO 3 − in solution. At 0.5 and 5.0 ppm nitrogen early growth and N2(C2H2) fixation was inhibited by NH 4 + and promoted by NO 3 − . Inoculation at seeding did not negatively affect growth prior to the onset of N2(C2H2) fixation. Delayed inoculation until the trifoliate stage thus did not increase growth or N2 fixation during the first 40 days of growth. After 40 days, specific nitrogenase activity was highest for plants inoculated at the first trifoliate stage of growth. In contrast, growth and total shoot nitrogen accumulation were higher in plants inoculated at planting. The experimental results suggest that delaying inoculation is not a useful technique for improving early growth ofL. cuneata for surface mine reclamation.
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  • 8
    Electronic Resource
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    Plant and soil 60 (1981), S. 139-142 
    ISSN: 1573-5036
    Keywords: Legumes ; Nitrogen fixation ; Nodulation ; Winged beans
    Source: Springer Online Journal Archives 1860-2000
    Topics: Agriculture, Forestry, Horticulture, Fishery, Domestic Science, Nutrition
    Notes: Summary Only legumes of the cowpea cross-inoculation group, including the winged bean (Psophocarpus tetragonolobus) were found to form nodules in a temperate zone soil with no previous history of legume cropping. Isolates from root nodules from uninoculated winged beans grown in the field only nodulated legumes in the cowpea cross-inoculation group.Rhizobium japonicum formed ineffective nodules with the winged bean.
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  • 9
    ISSN: 1573-1561
    Keywords: Nitrogen fixation ; glyceollin ; phytoalexin ; Bradyrhizobium japonicum ; nodulation
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology
    Notes: Abstract Nitrogen fixation in root nodules formed by strain 2143 ofBradyrhizobium japonicum andGlycine max (L.) Merr. cv Williams 82 reaches a maximum at 21 to 28 days postinoculation and then begins to decline. The phytoalexin, glyceollin, accumulates in nodules coincident with the decline in nitrogen fixation. Nodules formed by strain 3122, which are unable to fix nitrogen, accumulate even higher levels of glyceollin and do so beginning 21 days postinoculation even though these nodules contain no recoverable bacteria. The typical phytoalexin response occurs within days of infection. The mechanism by which this response in theBradyrhizobium japonicum-soybean combination is delayed 2 to 3 weeks after infection is presently unknown but phytoalexin accumulation could contribute to the inability of the soybean-Bradyrhizobium japonicum combination to maintain high levels of nitrogen fixation throughout the growing season.
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  • 10
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    Annals of biomedical engineering 22 (1994), S. 404-415 
    ISSN: 1573-9686
    Keywords: Bone ; Ultrasound ; Interfacial bonding ; Anisotropy ; Fluoride
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine , Technology
    Notes: Abstract The mechanical properties of composites are influenced, in part, by the volume fraction, orientation, constituent mechanical properties, and interfacial bonding. Cortical bone tissue represents a short-fibered biological composite where the hydroxyapatite phase is embedded in an organic matrix composed of type I collagen and other noncollagenous proteins. Destructive mechanical testing has revealed that fluoride ion treatment significantly lowers theZ-axis tensile and compressive properties of cortical bone through a constituent interfacial debonding mechanism. The present ultrasonic data indicates that fluoride ion treatment significantly alters the longitudinal velocity in theZ-axis as well as the circumferential and radial axes of cortical bone. This suggests that the distribution of constituents and interfacial bonding amongst them may contribute to the anisotropic nature of bone tissue.
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