2022
DOI: 10.1002/jbm.b.35141
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Electrospun polylactic acid scaffolds with strontium‐ and cobalt‐doped bioglass for potential use in bone tissue engineering applications

Abstract: The development of nanoscale biomaterials associated with polymers has been growing over the years, due to their important structural characteristics for applications in biological systems. The present study aimed to produce and test polymeric scaffolds composed of polylactic acid (PLA) fibers associated with a 58S bioglass doped with therapeutic ions for use in tissue engineering. Three 58S Bioglass was obtained by the sol-gel route, pure and doped with 5% strontium and cobalt ions. Solutions of 7% PLA was us… Show more

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Cited by 11 publications
(9 citation statements)
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References 36 publications
(57 reference statements)
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“…The coordination number ( Q n ) present in the samples was identified using Raman spectroscopy. The coordination number is associated with the number of NBOs (non‐bridge bonds, is a bond between silicon and a heteroatom through oxygen 6 ) attached to a silicon atom. The letter “ n ” represents the number of siloxanes attached to the atom, and the lower the number of “ n ”, the greater the number of NBOs.…”
Section: Resultsmentioning
confidence: 99%
See 2 more Smart Citations
“…The coordination number ( Q n ) present in the samples was identified using Raman spectroscopy. The coordination number is associated with the number of NBOs (non‐bridge bonds, is a bond between silicon and a heteroatom through oxygen 6 ) attached to a silicon atom. The letter “ n ” represents the number of siloxanes attached to the atom, and the lower the number of “ n ”, the greater the number of NBOs.…”
Section: Resultsmentioning
confidence: 99%
“…The coordination number (Q n ) present in the samples was identified using Raman spectroscopy. The coordination number is associated with the number of NBOs (non-bridge bonds, is a bond between silicon and a heteroatom through oxygen 6 ) attached to a silicon atom.…”
Section: Samples Characterizationmentioning
confidence: 99%
See 1 more Smart Citation
“…253 When in contact with biofluids, bioactive glasses undergo dynamic surface changes over time, contributing to metal ion solubilization and the regulation of bone metabolism. 254 Kargozar et al 255 and de Souza et al 256 each designed a 45S bioactive glass that released Sr 2+ and Co 2+ . The osteoblast-protective activity and osteoclast-inhibiting properties of Sr 2+ could be combined with the ability of Co 2+ to promote angiogenesis, greatly accelerating the bone healing process.…”
Section: Bioactive Glassmentioning
confidence: 99%
“…Kargozar et al 255 and de Souza et al 256 each designed a 45S bioactive glass that released Sr 2+ and Co 2+ . The osteoblast-protective activity and osteoclast-inhibiting properties of Sr 2+ could be combined with the ability of Co 2+ to promote angiogenesis, greatly accelerating the bone healing process.…”
Section: Metal Ion-based Biomaterials For Bone Regenerationmentioning
confidence: 99%