Chiral Tartaric Acid Improves Fracture Toughness of Bioactive Brushite-Collagen Bone Cements
Author | Sarrigiannidis S.O. |
Author | Moussa H. |
Author | Dobre O. |
Author | Dalby M.J. |
Author | Tamimi F. |
Author | Salmeron-Sanchez M. |
Available date | 2022-05-31T19:01:23Z |
Publication Date | 2020 |
Publication Name | ACS Applied Bio Materials |
Resource | Scopus |
Identifier | http://dx.doi.org/10.1021/acsabm.0c00555 |
Abstract | Brushite cements are promising bone regeneration materials with limited biological and mechanical properties. Here, we engineer a mechanically improved brushite-collagen type I cement with enhanced biological properties by use of chiral chemistry; d- A nd l-tartaric acid were used to limit crystal growth and increase the mechanical properties of brushite-collagen cements. The impact of the chiral molecules on the cements was examined with Fourier-transform infrared spectroscopy (FTIR), X-ray diffraction (XRD), and scanning electron microscopy (SEM). A 3-point bend test was utilized to study the fracture toughness, and cell attachment and morphology studies were carried out to demonstrate biocompatibility. XRD and SEM analyses showed that l-, but not d-tartaric acid, significantly restrained brushite crystal growth by binding to the {010} plane of the mineral and increased brushite crystal packing and the collagen interaction area. l-Tartaric acid significantly improved fracture toughness compared to traditional brushite by 30%. Collagen significantly enhanced cell morphology and focal adhesion expression on l-tartaric acid-treated brushite cements. |
Language | en |
Publisher | American Chemical Society |
Subject | Biocompatibility Biomechanics Bone Bone cement Collagen Crystal growth Crystallization Fourier transform infrared spectroscopy Morphology Scanning electron microscopy Stereochemistry Tissue regeneration X ray diffraction Biological properties Bone regeneration materials Cell attachments Chiral chemistry Collagen type I Crystal packings Interaction area L-tartaric acids Fracture toughness |
Type | Article |
Pagination | 5056-5066 |
Issue Number | 8 |
Volume Number | 3 |
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