Author:
Pantic Igor V.,Cumic Jelena,Valjarevic Svetlana,Shakeel Adeeba,Wang Xinyu,Vurivi Hema,Daoud Sayel,Chan Vincent,Petroianu Georg A.,Shibru Meklit G.,Ali Zehara M.,Nesic Dejan,Salih Ahmed E.,Butt Haider,Corridon Peter R.
Abstract
Decellularized corneas offer a promising and sustainable source of replacement grafts, mimicking native tissue and reducing the risk of immune rejection post-transplantation. Despite great success in achieving acellular scaffolds, little consensus exists regarding the quality of the decellularized extracellular matrix. Metrics used to evaluate extracellular matrix performance are study-specific, subjective, and semi-quantitative. Thus, this work focused on developing a computational method to examine the effectiveness of corneal decellularization. We combined conventional semi-quantitative histological assessments and automated scaffold evaluations based on textual image analyses to assess decellularization efficiency. Our study highlights that it is possible to develop contemporary machine learning (ML) models based on random forests and support vector machine algorithms, which can identify regions of interest in acellularized corneal stromal tissue with relatively high accuracy. These results provide a platform for developing machine learning biosensing systems for evaluating subtle morphological changes in decellularized scaffolds, which are crucial for assessing their functionality.
Subject
Biomedical Engineering,Histology,Bioengineering,Biotechnology
Reference71 articles.
1. Urinary NGAL and KIM-1: Biomarkers for assessment of acute ischemic kidney injury following nephron sparing surgery;Abassi;J. Urol.,2013
2. Support Vector Machine. In: Li, S.Z., Jain, A.K. (eds) Encyclopedia of Biometrics. Springer, Boston, MA;Adankon,2015
3. Corneal extracellular matrix decellularization;Ahearne;Methods Cell Biol.,2020
4. Optical anisotropies in corneal stroma collagen fibers from diabetic spontaneous mice;Aldrovani;Vis. Res.,2007
5. Contribution to comprehension of image formation in confocal microscopy of cornea with Rostock cornea module;Bochert;Br. J. Ophthalmol.,2005
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