Literature DB >> 28618978

Properties of poly(lactic acid)/hydroxyapatite composite through the use of epoxy functional compatibilizers for biomedical application.

Naruporn Monmaturapoj1, Autcharaporn Srion1, Prasert Chalermkarnon1, Suthawan Buchatip1, Atitsa Petchsuk1, Warobon Noppakunmongkolchai1, Katanchalee Mai-Ngam1.   

Abstract

A composite of 70/30 poly(lactic acid)/hydroxyapatite was systematically prepared using various amounts of glycidyl methacrylate as reactive compatibilizer or Joncryl ADR®-4368 containing nine glycidyl methacrylate functions as a chain extension/branching agent to improve the mechanical and biological properties for suitable usage as internal bone fixation devices. The effect of glycidyl methacrylate/Joncryl on mechanical properties of poly(lactic acid)/hydroxyapatite was investigated through flexural strength. Cell proliferation and differentiation of osteoblast-like MC3T3-E1 cells cultured on the composite samples were determined by Alamar Blue assay and alkaline phosphatase expression, respectively. Result shows that flexural strength tends to decrease, as glycidyl methacrylate content increases except for 1 wt.% glycidyl methacrylate. With an addition of dicumyl peroxide, the flexural strength shows an improvement than that of without dicumyl peroxide probably due to the chemical bonding of the hydroxyapatite and poly(lactic acid) as revealed by FTIR and NMR, whereas the composite with 5 wt.% Joncryl shows the best result, as the flexural strength increases getting close to pure poly(lactic acid). The significant morphology change could be seen in composite with Joncryl where the uniform agglomeration of hydroxyapatite particles oriented in poly(lactic acid) matrix. Addition of the epoxy functional compatibilizers at suitable percentages could also have benefits to cellular attachment, proliferation, differentiation and mineralization. So that, this poly(lactic acid)/hydroxyapatite composite could be a promising material to be used as internal bone fixation devices such as screws, pins and plates.

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Keywords:  Poly(lactic acid)/hydroxyapatite; biocompatibility; composites; epoxy functional compatibilizers; injection molding

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Year:  2017        PMID: 28618978     DOI: 10.1177/0885328217715783

Source DB:  PubMed          Journal:  J Biomater Appl        ISSN: 0885-3282            Impact factor:   2.646


  2 in total

1.  Synthesis and Characterization of PLA-Micro-structured Hydroxyapatite Composite Films.

Authors:  Andreea Madalina Pandele; Andreea Constantinescu; Ionut Cristian Radu; Florin Miculescu; Stefan Ioan Voicu; Lucian Toma Ciocan
Journal:  Materials (Basel)       Date:  2020-01-08       Impact factor: 3.623

2.  Angiogenic Potential of VEGF Mimetic Peptides for the Biofunctionalization of Collagen/Hydroxyapatite Composites.

Authors:  Suya Wang; Felix Umrath; Wanjing Cen; Siegmar Reinert; Dorothea Alexander
Journal:  Biomolecules       Date:  2021-10-19
  2 in total

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