Silicification: The Processes by Which Organisms Capture and Mineralize Silica
about
Poly(silicate)-metabolizing silicatein in siliceous spicules and silicasomes of demosponges comprises dual enzymatic activities (silica polymerase and silica esterase).Energetic clues to pathways to biomineralization: precursors, clusters, and nanoparticles.An overview of the fundamentals of the chemistry of silica with relevance to biosilicification and technological advances.Effects of silicon on Oryza sativa L. seedling roots under simulated acid rain stress.From biosilicification to tailored materials: optimizing hydrophobic domains and resistance to protonation of polyaminesSilicateins, silicatein interactors and cellular interplay in sponge skeletogenesis: formation of glass fiber-like spicules.Exploration on the biotechnological aspect of the ureolytic bacteria for the production of the cementitious materials--a review.Pre-nucleation clusters as solute precursors in crystallisation.Silica biomineralization via the self-assembly of helical biomolecules.Post-mortem oxygen isotope exchange within cultured diatom silica.Enhancement of Peroxidase Stability Against Oxidative Self-Inactivation by Co-immobilization with a Redox-Active Protein in Mesoporous Silicon and Silica Microparticles.Thermal stability, storage and release of proteins with tailored fit in silica.Expression of the invertebrate sea urchin P16 protein into mammalian MC3T3 osteoblasts transforms and reprograms them into "osteocyte-like" cells.Importance of silicon and mechanisms of biosilica formation in plants.The effect of silica on polymorphic precipitation of calcium carbonate: an on-line energy-dispersive X-ray diffraction (EDXRD) study.Biosilica electrically-insulating layers by soft lithography-assisted biomineralisation with recombinant silicatein.Silicon alleviates simulated acid rain stress of Oryza sativa L. seedlings by adjusting physiology activity and mineral nutrients.Micro- and nano-textural evidence of Ti(–Ca–Fe) mobility during fluid–rock interactions in carbonaceous lawsonite-bearing rocks from New ZealandProspects of Nanobiomaterials for Biosensing
P2860
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P2860
Silicification: The Processes by Which Organisms Capture and Mineralize Silica
description
2003 թուականի Յունուարին հրատարակուած գիտական յօդուած
@hyw
2003 թվականի հունվարին հրատարակված գիտական հոդված
@hy
artikull shkencor
@sq
artículu científicu espublizáu en 2003
@ast
im Januar 2003 veröffentlichter wissenschaftlicher Artikel
@de
scientific article (publication date: 2003)
@en
wetenschappelijk artikel
@nl
наукова стаття, опублікована в січні 2003
@uk
مقالة علمية (نشرت عام 2003)
@ar
name
Silicification: The Processes by Which Organisms Capture and Mineralize Silica
@ast
Silicification: The Processes by Which Organisms Capture and Mineralize Silica
@en
type
label
Silicification: The Processes by Which Organisms Capture and Mineralize Silica
@ast
Silicification: The Processes by Which Organisms Capture and Mineralize Silica
@en
prefLabel
Silicification: The Processes by Which Organisms Capture and Mineralize Silica
@ast
Silicification: The Processes by Which Organisms Capture and Mineralize Silica
@en
P3181
P356
P1476
Silicification: The Processes by Which Organisms Capture and Mineralize Silica
@en
P2093
C. C. Perry
P304
P3181
P356
10.2113/0540291
P577
2003-01-01T00:00:00Z