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Dr

Cedryck Vaquette

Email: 

Overview

Availability

Dr Cedryck Vaquette is:
Available for supervision

Qualifications

  • Doctor of Philosophy, Institution to be confirmed

Works

Search Professor Cedryck Vaquette’s works on UQ eSpace

113 works between 2004 and 2025

101 - 113 of 113 works

2012

Journal Article

Biomimetic tubular nanofiber mesh and platelet rich plasma-mediated delivery of BMP-7 for large bone defect regeneration

Berner, A., Boerckel, J. D., Saifzadeh, S., Steck, R., Ren, J., Vaquette, C., Zhang, J. Qiyi, Nerlich, M., Guldberg, R. E., Hutmacher, D. W. and Woodruff, M. A. (2012). Biomimetic tubular nanofiber mesh and platelet rich plasma-mediated delivery of BMP-7 for large bone defect regeneration. Cell and Tissue Research, 347 (3), 603-612. doi: 10.1007/s00441-011-1298-z

Biomimetic tubular nanofiber mesh and platelet rich plasma-mediated delivery of BMP-7 for large bone defect regeneration

2012

Conference Publication

Polycaprolactone-based scaffold plus BMP-2 in a sheep thoracic spine fusion model

Yong, M., Melchels, F., Vaquette, C., Hutmacher, D., Adam, C., Domingos, M. and Bartolo, P. (2012). Polycaprolactone-based scaffold plus BMP-2 in a sheep thoracic spine fusion model. 5th International Conference on Advanced Research in Virtual and Physical Prototyping, VR@P 2011, Leiria, Portugal, 28 September - 1 October 2011. Boca Raton, FL, United States: CRC Press.

Polycaprolactone-based scaffold plus BMP-2 in a sheep thoracic spine fusion model

2011

Journal Article

Cross-linked poly(trimethylene carbonate-co-L-lactide) as a biodegradable, elastomeric scaffold for vascular engineering applications

Dargaville, Bronwin L., Vaquette, Cedryck, Peng, Hui, Rasoul, Firas, Chua, Yu Qian, Cooper-White, Justin J., Campbell, Julie H. and Whittaker, Andrew K. (2011). Cross-linked poly(trimethylene carbonate-co-L-lactide) as a biodegradable, elastomeric scaffold for vascular engineering applications. Biomacromolecules, 12 (11), 3856-3869. doi: 10.1021/bm201291e

Cross-linked poly(trimethylene carbonate-co-L-lactide) as a biodegradable, elastomeric scaffold for vascular engineering applications

2011

Journal Article

Increasing electrospun scaffold pore size with tailored collectors for improved cell penetration

Vaquette, Cedryck and Cooper-White, Justin John (2011). Increasing electrospun scaffold pore size with tailored collectors for improved cell penetration. Acta Biomaterialia, 7 (6), 2544-2557. doi: 10.1016/j.actbio.2011.02.036

Increasing electrospun scaffold pore size with tailored collectors for improved cell penetration

2010

Journal Article

Aligned poly(L-lactic-co-e-caprolactone) electrospun microfibers and knitted structure: A novel composite scaffold for ligament tissue engineering

Vaquette, C, Kahn, C, Frochot, C, Nouvel, C, Six, JL, De Isla, N, Luo, LH, Cooper-White, J, Rahouadj, R and Wang, XO (2010). Aligned poly(L-lactic-co-e-caprolactone) electrospun microfibers and knitted structure: A novel composite scaffold for ligament tissue engineering. Journal of Biomedical Materials Research Part A, 94A (4), 1270-1282. doi: 10.1002/jbm.a.32801

Aligned poly(L-lactic-co-e-caprolactone) electrospun microfibers and knitted structure: A novel composite scaffold for ligament tissue engineering

2010

Journal Article

A poly(lactic-co-glycolic acid) knitted scaffold for tendon tissue engineering: An in vitro and in vivo study

Vaquette, Cédryck, Slimani, Saïd, Kahn, Cyril J.F., Tran, Nguyen, Rahouadj, Rachid and Wang, Xiong (2010). A poly(lactic-co-glycolic acid) knitted scaffold for tendon tissue engineering: An in vitro and in vivo study. Journal of Biomaterials Science, Polymer Edition, 21 (13), 1737-1760. doi: 10.1163/092050609X12560455246676

A poly(lactic-co-glycolic acid) knitted scaffold for tendon tissue engineering: An in vitro and in vivo study

2008

Journal Article

An innovative method to obtain porous PLLA scaffolds with highly spherical and interconnected pores

Vaquette, Cédryck, Frochot, Céline, Rahouadj, Rachid and Wang, Xiong (2008). An innovative method to obtain porous PLLA scaffolds with highly spherical and interconnected pores. Journal of Biomedical Materials Research Part B: Applied Biomaterials, 86B (1), 9-17. doi: 10.1002/jbm.b.30982

An innovative method to obtain porous PLLA scaffolds with highly spherical and interconnected pores

2008

Journal Article

A novel bioreactor for ligament tissue engineering

Kahn, Cyril J.F., Vaquette, Cédryck, Rahouadj, Rachid and Wang, Xiong (2008). A novel bioreactor for ligament tissue engineering. Bio-Medical Materials and Engineering, 18 (4-5), 283-287. doi: 10.3233/BME-2008-0538

A novel bioreactor for ligament tissue engineering

2008

Journal Article

Zeta-potential and morphology of electrospun nano- and microfibers from biopolymers and their blends used as scaffolds in tissue engineering

Vaquette, Cedryck, Babak, Valery G., Baros, Francis, Boulanouar, Omar, Dumas, Dominique, Fievet, Patrick, Kildeeva, Natalia R., Maincent, Philippe and Wang, Xiong (2008). Zeta-potential and morphology of electrospun nano- and microfibers from biopolymers and their blends used as scaffolds in tissue engineering. Mendeleev Communications, 18 (1), 38-41. doi: 10.1016/j.mencom.2008.01.015

Zeta-potential and morphology of electrospun nano- and microfibers from biopolymers and their blends used as scaffolds in tissue engineering

2008

Journal Article

Mechanical and biological characterization of a porous poly-L-lactic acid-co-epsilon-caprolactone scaffold for tissue engineering

Vaquette, Cédryck, Frochot, Céline, Rahouadj, Rachid, Muller, Sylvaine and Wang, Xiong (2008). Mechanical and biological characterization of a porous poly-L-lactic acid-co-epsilon-caprolactone scaffold for tissue engineering. Soft Materials, 6 (1), 25-33. doi: 10.1080/15394450801887109

Mechanical and biological characterization of a porous poly-L-lactic acid-co-epsilon-caprolactone scaffold for tissue engineering

2006

Journal Article

In vitro biocompatibility of different polyester membranes

Vaquette, C., Fawzi-Grancher, S., Lavalle, P., Frochot, C., Viriot, M.-L., Muller, S. and Wang, X. (2006). In vitro biocompatibility of different polyester membranes. Bio-Medical Materials and Engineering, 16 (4 Suppl.), S131-S136.

In vitro biocompatibility of different polyester membranes

2004

Conference Publication

Effect of mechanical and biochemical factors on the neogenesis of ligament tissue

Fawzi, S., Slimani, S., Vaquette, C., Wang, X. and Muller, S. (2004). Effect of mechanical and biochemical factors on the neogenesis of ligament tissue.

Effect of mechanical and biochemical factors on the neogenesis of ligament tissue

2004

Conference Publication

Effect of biochemical factors on the neogenesis of ligament tissue

Fawzi-Grancher, S., Slimani, S., Vaquette, C., Wang, X. and Muller, S. (2004). Effect of biochemical factors on the neogenesis of ligament tissue.

Effect of biochemical factors on the neogenesis of ligament tissue

Funding

Current funding

  • 2023 - 2025
    Understanding resorption patterns in vertically augmented bone
    International Team for Implantology Foundation
    Open grant

Past funding

  • 2023 - 2024
    A Fibre guiding scaffold functionalised with Emdogain for periodontal regeneration
    Australian Dental Research Fund Inc
    Open grant
  • 2022 - 2024
    Dimensionally stable vertical bone augmentation using release bone morphogenetic protein 2 loaded 3D-printed Gelatine Methacrylate/mesoporous bioglass
    Australian Dental Research Fund Inc
    Open grant
  • 2020 - 2022
    Evaluation of a novel nanocomposite bioprinted scaffolds for bone tissue engineering
    Australian Dental Research Fund Inc
    Open grant
  • 2020 - 2022
    Growth factor eluting scaffolds for alveolar ridge preservation
    Australian Dental Research Fund Inc
    Open grant
  • 2020 - 2021
    A comparison of various melt electrospinning fibre arrangements for the promotion of functional periodontal ligament attachment
    Australian Dental Research Fund Inc
    Open grant
  • 2020
    Chairside isolation and application of buccal fat pad derived mesenchymal stem cells for dental tissue regeneration: Thinking beyond drills
    Australian Dental Research Fund Inc
    Open grant
  • 2020 - 2021
    Immunomodulatory properties of three different chairside autologous blood preparations for the functionalization of PCL-3D printed constructs
    Australian Dental Research Fund Inc
    Open grant
  • 2020 - 2022
    Injectable swelling hydrogels for soft tissue expansion
    Australian Dental Research Fund Inc
    Open grant
  • 2020 - 2022
    Sequential release of azithroycin from stimuli-responsive mesoporous bioactive glasses for application in periodontal regeneration
    Australian Dental Research Fund Inc
    Open grant
  • 2019 - 2024
    Regenerative treatment of peri-implantitis using bone constructs with osteogenic, immunomodulatory and antimicrobial properties
    International Team for Implantology Foundation
    Open grant
  • 2019 - 2020
    Tissue integration and biodegradation of different biomaterial matrices with or without compression
    University of Zurich
    Open grant
  • 2019 - 2024
    3D-printed customised Bio-Oss/Polydioxanone scaffold for vertical bone regeneration
    Osteology Foundation Young/Advanced Researcher Grant
    Open grant
  • 2019 - 2020
    A multiphasic hierarchical hydrogel bioprinted scaffold for periodontal regeneration
    Australian Dental Research Fund Inc
    Open grant
  • 2019 - 2021
    Application of a commercially available xenograft impregnated with Azithromycin for peri-implantitis treatment
    Australian Dental Research Fund Inc
    Open grant
  • 2019 - 2022
    Promoting periodontal regeneration through lithium-regulated immunomodulation and osteogenesis
    Australian Dental Research Fund Inc
    Open grant
  • 2018 - 2021
    Development of a 3D printed graft for surgical repair of the Scapholunate lnterosseous wrist ligament (SLIL) (MRFF MTPConnect Horizons funding administered by Griffith University)
    Griffith University
    Open grant
  • 2018 - 2019
    Nano-Engineered Titanium Dental Implants for Enhanced Osteogenesis
    Australian Dental Research Fund Inc
    Open grant

Supervision

Availability

Dr Cedryck Vaquette is:
Available for supervision

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Supervision history

Current supervision

Completed supervision

Media

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