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Please use this identifier to cite or link to this item:
http://krishi.icar.gov.in/jspui/handle/123456789/82809
Full metadata record
DC Field | Value | Language |
---|---|---|
dc.contributor.author | Nebu George Thomas | en_US |
dc.contributor.author | Yogesh Bharat Dalvi | en_US |
dc.contributor.author | Natalia Fijol | en_US |
dc.contributor.author | Joy Shilpa | en_US |
dc.contributor.author | Rekha Unni | en_US |
dc.contributor.author | Binsi, P. K. | en_US |
dc.contributor.author | Mekha Grace Varghese | en_US |
dc.contributor.author | Reshmy, R. | en_US |
dc.contributor.author | Aji Mathew | en_US |
dc.contributor.author | Anil Sukumaran | en_US |
dc.date.accessioned | 2024-05-13T16:04:39Z | - |
dc.date.available | 2024-05-13T16:04:39Z | - |
dc.date.issued | 2023-09-08 | - |
dc.identifier.citation | Nebu George Thomas, Yogesh Bharat Dalvi, Natalia Fijol, Joy Shilpa, Rekha Unni, Binsi, P. K., Mekha Grace Varghese, Reshmy, R., Aji Mathew and Anil Sukumaran (2023) Fish Scale Derived Hydroxyapatite Incorporated 3D Printed PLA Scaffold for Bone Tissue Engineering. New J. Chem. https://doi.org/10.1039/D3NJ03005A | en_US |
dc.identifier.issn | 1144-0546 | - |
dc.identifier.uri | http://krishi.icar.gov.in/jspui/handle/123456789/82809 | - |
dc.description | Not Available | en_US |
dc.description.abstract | Bone defect repair, particularly in the alveolar region, remains a significant hurdle in periodontics. In recent years, the spotlight in regenerative medicine has fallen on 3D-printed bone scaffolds, especially those constructed of polylactic acid (PLA) infused with hydroxyapatite. This research introduced a novel approach by developing a 3D-printed PLA scaffold enriched with hydroxyapatite derived from fish skin waste (FSHA). Mechanical compression tests revealed that the 3D-printed PLA-FSHA scaffolds had a compressive strength (13.4±5.53 MPa) in the same ballpark as their reference PLA counterparts (20.3±1.08 MPa). Scanning electron micrographs highlighted an average pore size in the scaffold (572 ± 33 µm) conducive to angiogenesis and facilitating cell migration and proliferation. In vitro, cytotoxicity was ascertained using the MTT assay on L929 fibroblast cells. Further in vitro cytocompatibility assessments through actin-DAPI staining and measurements of bone regeneration markers - alkaline phosphatase, osteocalcin and osteopontin-demonstrated that the PLA-FSHA scaffolds not only were biocompatible but also showcased performance on par with the commercial graft, osseograft. This lays the foundation for future in vivo evaluations of bone regenerative capabilities. | en_US |
dc.description.sponsorship | Not Available | en_US |
dc.language.iso | English | en_US |
dc.publisher | Royal Society of Chemistry | en_US |
dc.relation.ispartofseries | Not Available; | - |
dc.subject | Not Available | en_US |
dc.title | Fish Scale Derived Hydroxyapatite Incorporated 3D Printed PLA Scaffold for Bone Tissue Engineering | en_US |
dc.title.alternative | Not Available | en_US |
dc.type | Research Paper | en_US |
dc.publication.projectcode | Not Available | en_US |
dc.publication.journalname | New Journal of Chemistry | en_US |
dc.publication.volumeno | Not Available | en_US |
dc.publication.pagenumber | Not Available | en_US |
dc.publication.divisionUnit | Not Available | en_US |
dc.publication.sourceUrl | https://doi.org/10.1039/D3NJ03005A | en_US |
dc.publication.authorAffiliation | Department of Periodontology, Pushpagiri College of Dental Sciences, Thiruvalla, Kerala, India | en_US |
dc.publication.authorAffiliation | Department of Materials and Environmental Chemistry, Stockholm University, Frescativägen 8, 106 91, Stockholm, Sweden | en_US |
dc.publication.authorAffiliation | ICAR::Central Institute of Fisheries Technology | en_US |
dc.ICARdataUseLicence | http://krishi.icar.gov.in/PDF/ICAR_Data_Use_Licence.pdf | en_US |
dc.publication.journaltype | International | en_US |
dc.publication.naasrating | 9.93 | en_US |
dc.publication.impactfactor | 3.93 | en_US |
Appears in Collections: | FS-CIFT-Publication |
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