Celine Abueva
Soonchunhyang University
34 Papers
29 Citations
Celine Abueva is an academic researcher from Soonchunhyang University. The author has contributed to research in topics: Chitosan & Bone regeneration. The author has an hindex of 9, co-authored 18 publications.
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Papers
In vitro and in vivo acute response towards injectable thermosensitive chitosan/TEMPO-oxidized cellulose nanofiber hydrogel
TL;DR: The addition of TOCNF could significantly improve the biocompatibility of CS hydrogel as a biomaterial for biomedical application and resulted in faster gelation time and increased porosity.
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TEMPO oxidized nano-cellulose containing thermo-responsive injectable hydrogel for post-surgical peritoneal tissue adhesion prevention.
TL;DR: By taking advantages of thermo gelling, high stability, non-invasive way of application and rapid recovery potential, TOCN containing bio compatible hydrogel could be used as a cost-effective barrier to efficiently inhibit post-surgical peritoneal adhesions.
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Evaluation of egg white ovomucin-based porous scaffold as an implantable biomaterial for tissue engineering.
TL;DR: OVN is demonstrated as an acceptable implant scaffold that could provide new opportunities as an alternative natural biocompatible and functional biomaterial in various biomedical applications.
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In vivo evaluation of injectable calcium phosphate cement composed of Zn- and Si-incorporated β-tricalcium phosphate and monocalcium phosphate monohydrate for a critical sized defect of the rabbit femoral condyle
Kallyanashis Paul,Byung Yeol Lee,Celine Abueva,Boram Kim,Hwan Jun Choi,Sang Ho Bae,Byong-Taek Lee +6 more
TL;DR: Assessment of the bone healing capacity of calcium phosphate cements composed of Zn- and Si-incorporated β-tri calcium phosphate (TCP) and mono calcium phosphate mono hydrate (MCPM) found CPC cement with 6% Zn content was the best candidate for faster bone healing.
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Preformed chitosan cryogel-biphasic calcium phosphate: a potential injectable biocomposite for pathologic fracture:
TL;DR: A biocomposite comprised of preformed chitosan cryogel with dispersed biphasic calcium phosphate that can flow under moderate pressure allowing passage through a small gauge needle, while maintaining sufficient integrity and strength during injection for gel recovery is reported.
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