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Fabrication of fibrous poly(butylene succinate)/wollastonite/apatite composite scaffolds by electrospinning and biomimetic process.

Fabrication of fibrous poly(butylene succinate)/wollastonite/apatite composite scaffolds by electrospinning and biomimetic process. Research Abstract Details 

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  • Fabrication of fibrous poly(butylene succinate)/wollastonite/apatite composite scaffolds by electrospinning and biomimetic process. Abstract Text:

    daming zhangDaming Zhang,jiang changJiang Chang,yi zengYi Zeng,daming zhangDaming Zhang,jiang changJiang Chang,yi zengYi Zeng,

    In this paper, a novel kind of Poly(butylene succinate) (PBSU) /wollastonite/apatite composite scaffold was fabricated via electrospinning and biomimetic process. Pure PBSU scaffold and composite scaffolds with 12.5 wt% and 25 wt% wollastonite were firstly fabricated by electrospinning. SEM micrographs showed that all the electrospun scaffolds had homogeneous fibrous structures with interconnected pores and randomly oriented ultrafine fibers. The composite scaffolds were then surface modified using a biomimetic process. SEM and XRD results showed that apatite could deposit on the surfaces of the composite fibers after incubation in SBF and a novel fibrous structure with microspheres composed of worm-like apatite on composite fibers was formed. Incubation time and wollastonite content were found to influence the morphology of the scaffolds during the biomimetic process obviously. Both the amount and the size of the microspheres on the composite scaffolds increased with increased incubation time. After a certain incubation time, microspheres formed on the composite fibers with less wollastonite had a relatively larger size. Therefore, the microstructure of the composite scaffolds could be adjusted by controlling the wollastonite content and the incubation time. All of these results suggest that it is an effective approach to fabricate PBSU/wollastonite/apatite fibrous composite scaffolds with different material content and controllable microstructure for bone tissue engineering.

    Fabrication of fibrous poly(butylene succinate)/wollastonite/apatite composite scaffolds by electrospinning and biomimetic process. Publishing Authors By Initials

    d zhangD Zhang,j changJ Chang,y zengY Zeng,d zhangD Zhang,j changJ Chang,y zengY Zeng,

    For similar abstracts research abstracts see: abstracts research

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    Fabrication of fibrous poly(butylene succinate)/wollastonite/apatite composite scaffolds by electrospinning and biomimetic process. Journal Published:

    PUBLICATION TYPE: Journal Article

    Journal: Journal of materials science. Materials in medicin

    VOLUME: 19

    Page Numbers: 443-9

    Journal Abbreviation:

    ISSN: 0957-4530

    DAY: 3

    MONTH: 07

    YEAR: 2007

    Fabrication of fibrous poly(butylene succinate)/wollastonite/apatite composite scaffolds by electrospinning and biomimetic process. Information

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    LANGUAGE: eng

    NlmUniqueID: 9013087

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    Grant and Affiliation Information for Fabrication of fibrous poly(butylene succinate)/wollastonite/apatite composite scaffolds by electrospinning and biomimetic process.

    AFFILIATION: Biomaterials and Tissue Engineering Research Center, Shanghai Institute of Ceramics, Chinese Academy of Sciences, 1295 Dingxi Road, Shanghai, 200050, P.R. China, Jchang@mail.sic.ac.cn.

    Country: United States

    United States Research PublicationUnited States Research Publication

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    MEDLINETA: J Mater Sci Mater Med

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