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Design of composite scaffolds and three-dimensional shape analysis for tissue-engineered ear.

Authors :
Cervantes TM
Bassett EK
Tseng A
Kimura A
Roscioli N
Randolph MA
Vacanti JP
Hadlock TA
Gupta R
Pomerantseva I
Sundback CA
Source :
Journal of the Royal Society, Interface [J R Soc Interface] 2013 Jul 31; Vol. 10 (87), pp. 20130413. Date of Electronic Publication: 2013 Jul 31 (Print Publication: 2013).
Publication Year :
2013

Abstract

Engineered cartilage is a promising option for auricular reconstruction. We have previously demonstrated that a titanium wire framework within a composite collagen ear-shaped scaffold helped to maintain the gross dimensions of the engineered ear after implantation, resisting the deformation forces encountered during neocartilage maturation and wound healing. The ear geometry was redesigned to achieve a more accurate aesthetic result when implanted subcutaneously in a nude rat model. A non-invasive method was developed to assess size and shape changes of the engineered ear in three dimensions. Computer models of the titanium framework were obtained from CT scans before and after implantation. Several parameters were measured including the overall length, width and depth, the minimum intrahelical distance and overall curvature values for each beam section within the framework. Local curvature values were measured to gain understanding of the bending forces experienced by the framework structure in situ. Length and width changed by less than 2%, whereas the depth decreased by approximately 8% and the minimum intrahelical distance changed by approximately 12%. Overall curvature changes identified regions most susceptible to deformation. Eighty-nine per cent of local curvature measurements experienced a bending moment less than 50 µN-m owing to deformation forces during implantation. These quantitative shape analysis results have identified opportunities to improve shape fidelity of engineered ear constructs.

Details

Language :
English
ISSN :
1742-5662
Volume :
10
Issue :
87
Database :
MEDLINE
Journal :
Journal of the Royal Society, Interface
Publication Type :
Academic Journal
Accession number :
23904585
Full Text :
https://doi.org/10.1098/rsif.2013.0413