“In situ printing of scaffolds for reconstruction of bone defects”

Acta Biomaterialia 127, 313-326
Publisher: Elsevier
Özet ve Araştırma Bulguları (Abstract)
Bone defects are commonly caused by traumatic injuries and tumor removal and critically sized defects overwhelm the regenerative capacity of the native tissue. Reparative strategies such as auto, xeno, and allografts have proven to be insufficient to reconstruct and regenerate these defects. For the first time, we introduce the use of handheld melt spun three dimensional printers that can deposit materials directly within the defect site to properly fill the cavity and form free-standing scaffolds. Engineered composite filaments were generated from poly(caprolactone) (PCL) doped with zinc oxide nanoparticles and hydroxyapatite microparticles. The use of PCL-based materials allowed low-temperature printing to avoid overheating of the surrounding tissues. The in situ printed scaffolds showed moderate adhesion to wet bone tissue, which can prevent scaffold dislocation. The printed scaffolds showed to be …
Yıllık Atıf Gelişimi & Dinamiği
94 total citationsAlıntı Yap ve Dışa Aktar (Cite)
@article{mostafavi2021insitupr,
title = {In situ printing of scaffolds for reconstruction of bone defects},
author = {Azadeh Mostafavi, Turdimuhammad Abdullah, Carina S Russell, Ebrahim Mostafavi, Tyrell J Williams, Numan Salah, Ahmed Alshahrie, Seth Harris, Seyed Masoud Moosavi Basri, Yogendra Kumar Mishra, Thomas J Webster, Adnan Memic, Ali Tamayol},
journal = {Acta Biomaterialia 127, 313-326},
volume = {127},
pages = {313--326},
year = {2021},
publisher = {Elsevier},
doi = {10.1016/J.ACTBIO.2021.03.009},
url = {https://doi.org/10.1016/J.ACTBIO.2021.03.009},
}Bibliyografik Yayın Bilgileri
İlgili Diğer Akademik Çalışmalar
Tüm Akademik Eserlere Dön→“Chitosan-based enzyme-immobilized nanocomposite cryogels with controlled biodegradation profile”
International Journal of Biological Macromolecules 318, 145275
“Designing 4D printed drug delivery systems based on smart polymers and hydrogels: principles, strategies, and future perspectives”
Progress in Biomedical Engineering
“High-solid acrylic resins based on bio-derived lauryl methacrylate for varnish and paint applications”
Journal of Polymer Research 33 (3), 92