Localized Crystallization of Calcium Phosphates by Light‐Induced Processes

Author:

Besirske Patricia1ORCID,Menichetti Arianna2,Montalti Marco2ORCID,García‐Ruiz Juan Manuel3ORCID,Winterhalder Martin1,Boneberg Johannes4,Cölfen Helmut1ORCID

Affiliation:

1. Physical Chemistry University of Konstanz Universitätsstr. 10 78457 Konstanz Germany

2. Dipartimento di Chimica “Giacomo Ciamician” University of Bologna Via Selmi 2 40126 Bologna Italy

3. Laboratorio de Estudios Cristalográficos Instituto Andaluz de Ciencias de la Tierra CSIC-Universidad de Granada Av. De las Palmeras 4 18151 Armilla Granada Spain

4. Mesoscopic Systems, Department of Physics University of Konstanz Universitätsstr. 10 78457 Konstanz Germany

Abstract

AbstractMedical treatment options for bones and teeth can be significantly enhanced by taking control over the crystallization of biomaterials like hydroxyapatite in the healing process. Light‐induced techniques are particularly interesting for this approach as they offer tremendous accuracy in spatial resolution. However, in the field of calcium phosphates, light‐induced crystallization has not been investigated so far. Here, proof of principle is established to successfully induce carbonate‐hydroxyapatite precipitation by light irradiation. Phosphoric acid is released by a photolabile molecule exclusively after irradiation, combining with calcium ions to form a calcium phosphate in the crystallization medium. 4‐Nitrophenylphosphate (4NPP) is established as the photolabile molecule and the system is optimized and fully characterized. A calcium phosphate is crystallized exclusively by irradiation in aqueous solution and identified as carbonate apatite. Control over the localization and stabilization of the carbonate apatite is achieved by a pulsed laser, triggering precipitation in calcium and 4NPP‐containing gel matrices. The results of this communication open up a wide range of new opportunities, both in the field of chemistry for more sophisticated reaction control in localized crystallization processes and in the field of medicine for enhanced treatment of calcium phosphate containing biomaterials.

Funder

HORIZON EUROPE European Research Council

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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