The formation and mineralization of mollusk shell.
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Summary
Today, the shell matrix appears as a whole system, which regulates protein-mineral, protein-protein, and epithelium-Mineral interactions, and these aspects should be taken in account for the future models of shell formation.
- Type
- review
- Published
- 2012-01-01
- Cited by
- 431
- References
- 187
- Access
- Open access
- OpenAlex
- https://openalex.org/W2033940741
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:44290678
Keywords
Editorial board, License, Library science, Publishing, Scope (computer science)
References
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- The Algorithmic Beauty of Sea Shells
- The pearl oyster
- Shell Microstructure of the Veneridae (Bivalvia) and its Phylogenetic Implications
- Skeletal biomineralization : patterns, processes, and evolutionary trends
- Aetiology of brown ring disease in Tapes philippinarum: pathogenicity of a Vibrio sp.
- Complementary DNA Cloning and Characterization of Pearlin, a New Class of Matrix Protein in the Nacreous Layer of Oyster Pearls
- Biomineralization : cell biology and mineral deposition
- Molluscan shell proteins: primary structure, origin, and evolution.
- Structural basis for the fracture toughness of the shell of the conch Strombus gigas
- A novel phosphorylated glycoprotein in the shell matrix of the oyster Crassostrea nippona
- Structures of mollusc shell framework proteins
- A marriage of bone and nacre
- Identification of two carbonic anhydrases in the mantle of the European Abalone Haliotis tuberculata (Gastropoda, Haliotidae): phylogenetic implications.
- The amino-acid sequence of the abalone (Haliotis laevigata) nacre protein perlucin. Detection of a functional C-type lectin domain with galactose/mannose specificity.
- Nautilin‐63, a novel acidic glycoprotein from the shell nacre of Nautilus macromphalus
- Multiscale structure of sheet nacre.
- Isolation, purification and characterization of glycosaminoglycans in the fluids of the mollusc Anodonta cygnea.
Cited by
- Regulation of Extracellular Matrix Synthesis by Shell Extracts from the Marine Bivalve Pecten maximus in Human Articular Chondrocytes— Application for Cartilage Engineering
- Investigating protein function in biomineralized tissues using molecular biology techniques.
- Multiparameter Engineering of Layered Composites.
- Nacre biomineralisation: A review on the mechanisms of crystal nucleation.
- The biocalcification of mollusk shells and coral skeletons: Integrating molecular, proteomics and bioinformatics methods
- Life cycle and early development of the thecosomatous pteropod Limacina retroversa in the Gulf of Maine, including the effect of elevated CO2 levels
- Changes of shell microstructural characteristics of Cerastoderma edule (Bivalvia) — A novel proxy for water temperature
- Shell microstructure of late Cretaceous (Maastrichtian) oysters from Ariyalur, Tamil Nadu
- Empirical calibration of the clumped isotope paleothermometer using calcites of various origins
- Self‐healing, an intrinsic property of biomineralization processes
- Shell proteome of rhynchonelliform brachiopods.
- Representing calcification in distribution models for aquatic invasive species: surrogates perform as well as CaCO3 saturation state
- The shell‐forming proteome of Lottia gigantea reveals both deep conservations and lineage‐specific novelties
- The evolution and future of carbonate precipitation in marine invertebrates: Witnessing extinction or documenting resilience in the Anthropocene?
- Arctica islandica (Bivalvia): A unique paleoenvironmental archive of the northern North Atlantic Ocean
- Evolution of the tyrosinase gene family in bivalve molluscs: independent expansion of the mantle gene repertoire.
- Spine and test skeletal matrices of the Mediterranean sea urchin Arbacia lixula – a comparative characterization of their sugar signature
- The shell matrix of the pulmonate land snail Helix aspersa maxima.
- Shell Extracts from the Marine Bivalve Pecten maximus Regulate the Synthesis of Extracellular Matrix in Primary Cultured Human Skin Fibroblasts
- From colloidal nanoparticles to a single crystal: new insights into the formation of nacre's aragonite tablets.
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