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The influence of different classes of amino acids on calcium phosphates seeded growth (CROSBI ID 285447)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Mihelj Josipović, Tea ; Kovačević, Monika ; Mateša, Sarah ; Kostešić, Marina ; Matijaković, Nives ; Radatović, Borna ; Lyons, Daniel M. ; Kralj, Damir ; Dutour Sikirić, Maja The influence of different classes of amino acids on calcium phosphates seeded growth // Materials, 13 (2020), 21; 4798, 19. doi: 10.3390/ma13214798

Podaci o odgovornosti

Mihelj Josipović, Tea ; Kovačević, Monika ; Mateša, Sarah ; Kostešić, Marina ; Matijaković, Nives ; Radatović, Borna ; Lyons, Daniel M. ; Kralj, Damir ; Dutour Sikirić, Maja

engleski

The influence of different classes of amino acids on calcium phosphates seeded growth

Amino acids (AAs) attract attention for elucidating the role of proteins in biomineralization and the preparation of functionalized biomaterials. The influence that AAs exert on calcium phosphate (CaP) mineralization is still not completely understood, as contradictory results have been reported. In this paper, the influence of the addition of different classes of AAs, charged (L-aspartic acid, Asp ; L-lysine, Lys), polar (L-asparagine, Asn ; L-serine, Ser ; L-tyrosine, Tyr), and non-polar (L-phenylalanine, Phe), on CaP growth in the presence of octacalcium phosphate (OCP) and calcium hydrogenphosphate dihydrate (DCPD) seeds was investigated. In control systems (without AAs), a calcium-deficient apatite (CaDHA) layer was formed on the surface of OCP, while a mixture of CaDHA and OCP in the form of spherical aggregates was formed on the surface of DCPD crystals. Charged and non-polar promoted, while polar AAs inhibited CaDHA formation on the OCP seeds. In the case of DCPD, Lys, Asp, and Phe promoted CaP formation, while the influence of other AAs was negligible. The most efficient promotor of precipitation in both cases was non-polar Phe. No significant influence of AAs on the composition and morphology of precipitates was observed. The obtained results are of interest for understanding biomineralization processes and additive controlled material synthesis.

octacalcium phosphate ; dicalcium hydrogenphosphate dihydrate ; amino acids ; biomineralization ; seeded growth

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Podaci o izdanju

13 (21)

2020.

4798

19

objavljeno

1996-1944

10.3390/ma13214798

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