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A Contemporary Review of Trachea, Nose, and Ear Cartilage Bioengineering and Additive Manufacturing

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Date 2024 Jun 26
PMID 38921207
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Abstract

The complex structure, chemical composition, and biomechanical properties of craniofacial cartilaginous structures make them challenging to reconstruct. Autologous grafts have limited tissue availability and can cause significant donor-site morbidity, homologous grafts often require immunosuppression, and alloplastic grafts may have high rates of infection or displacement. Furthermore, all these grafting techniques require a high level of surgical skill to ensure that the reconstruction matches the original structure. Current research indicates that additive manufacturing shows promise in overcoming these limitations. Autologous stem cells have been developed into cartilage when exposed to the appropriate growth factors and culture conditions, such as mechanical stress and oxygen deprivation. Additive manufacturing allows for increased precision when engineering scaffolds for stem cell cultures. Fine control over the porosity and structure of a material ensures adequate cell adhesion and fit between the graft and the defect. Several recent tissue engineering studies have focused on the trachea, nose, and ear, as these structures are often damaged by congenital conditions, trauma, and malignancy. This article reviews the limitations of current reconstructive techniques and the new developments in additive manufacturing for tracheal, nasal, and auricular cartilages.

References
1.
Vunjak-Novakovic G, Martin I, Obradovic B, Treppo S, Grodzinsky A, Langer R . Bioreactor cultivation conditions modulate the composition and mechanical properties of tissue-engineered cartilage. J Orthop Res. 1999; 17(1):130-8. DOI: 10.1002/jor.1100170119. View

2.
Yi S, Ding F, Gong L, Gu X . Extracellular Matrix Scaffolds for Tissue Engineering and Regenerative Medicine. Curr Stem Cell Res Ther. 2016; 12(3):233-246. DOI: 10.2174/1574888X11666160905092513. View

3.
Niermeyer W, Rodman C, Li M, Chiang T . Tissue engineering applications in otolaryngology-The state of translation. Laryngoscope Investig Otolaryngol. 2020; 5(4):630-648. PMC: 7444782. DOI: 10.1002/lio2.416. View

4.
Zhou G, Jiang H, Yin Z, Liu Y, Zhang Q, Zhang C . In Vitro Regeneration of Patient-specific Ear-shaped Cartilage and Its First Clinical Application for Auricular Reconstruction. EBioMedicine. 2018; 28:287-302. PMC: 5835555. DOI: 10.1016/j.ebiom.2018.01.011. View

5.
Serrano-Aroca A, Cano-Vicent A, Sabater I Serra R, El-Tanani M, Aljabali A, Tambuwala M . Scaffolds in the microbial resistant era: Fabrication, materials, properties and tissue engineering applications. Mater Today Bio. 2022; 16:100412. PMC: 9463390. DOI: 10.1016/j.mtbio.2022.100412. View