Fixation of Transparent Bone Pins with Photocuring Biocomposites

Bone fractures are in need of rapid fixation methods, but the current strategies are limited to metal pins and screws, which necessitate secondary surgeries upon removal. New techniques are sought to avoid surgical revisions, while maintaining or improving the fixation speed. Herein, a method of bon...

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Veröffentlicht in:ACS biomaterials science & engineering 2021-09, Vol.7 (9), p.4463-4473
Hauptverfasser: Wicaksono, Gautama, Toni, Felicia, Wei Feng Tok, Leonard, Jun Ting Thng, Jeanette, Šolić, Ivan, Singh, Manisha, Djordjevic, Ivan, Baino, Francesco, Steele, Terry W. J
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Sprache:eng
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Zusammenfassung:Bone fractures are in need of rapid fixation methods, but the current strategies are limited to metal pins and screws, which necessitate secondary surgeries upon removal. New techniques are sought to avoid surgical revisions, while maintaining or improving the fixation speed. Herein, a method of bone fixation is proposed with transparent biopolymers anchored in place via light-activated biocomposites based on expanding CaproGlu bioadhesives. The transparent biopolymers serve as a UV light guide for the activation of CaproGlu biocomposites, which results in evolution of molecular nitrogen (from diazirine photolysis), simultaneously expanding the covalently cross-linked matrix. Osseointegration additives of hydroxyapatite or Bioglass 45S5 yield a biocomposite matrix with increased stiffness and pullout strength. The structure–property relationships of UV joules dose, pin diameter, and biocomposite additives are assessed with respect to the apparent viscosity, shear modulus, spatiotemporal pin curing, and lap-shear adhesion. Finally, a model system is proposed based on ex vivo investigation with bone tissue for the exploration and optimization of UV-active transparent biopolymer fixation.
ISSN:2373-9878
2373-9878
DOI:10.1021/acsbiomaterials.1c00473