2023
DOI: 10.3390/biomimetics8030300
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Silica-Containing Biomimetic Composites Based on Sea Urchin Skeleton and Polycalcium Organyl Silsesquioxane

Nikolay P. Shapkin,
Irina G. Khalchenko,
Anatoliy L. Drozdov
et al.

Abstract: The paper presents an original approach to the synthesis of polycalciumorganyl silsesquioxanes through the reaction of polyorganyl silsesquioxanes [RSiO1.5]n (where R is an ethyl and phenyl radical) with sea urchin skeleton under the conditions of mechanochemical activation. The novelty and practical significance of the present study lies in the use of an available natural raw source as a source of calcium ions to initiate the reaction of calcium silicate formation and create a matrix for the formation of a po… Show more

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Cited by 3 publications
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“…Finally, sutures between echinoderm ossicles have significantly different biomechanical properties than solid plates (Lawrence, 1987;Moss & Meehan, 1967). Just as the mesoporous structure of echinoderm stereom has real and potential applications in ceramics, medical prostheses, construction material, chemical filtration, and drug delivery (Macha & Ben-Nissan, 2018;Shapkin et al, 2023;White et al, 1972), the morphology of the cam-…”
Section: Discussionmentioning
confidence: 99%
“…Finally, sutures between echinoderm ossicles have significantly different biomechanical properties than solid plates (Lawrence, 1987;Moss & Meehan, 1967). Just as the mesoporous structure of echinoderm stereom has real and potential applications in ceramics, medical prostheses, construction material, chemical filtration, and drug delivery (Macha & Ben-Nissan, 2018;Shapkin et al, 2023;White et al, 1972), the morphology of the cam-…”
Section: Discussionmentioning
confidence: 99%