3D‐Printed Low‐Cost Artificial Corneal Perfusion Chamber for Investigating Corneal Physiology and Diseases in Different Animal Species

Author:

Comtois-Bona Maxime Emmanuel1,Chandra Astha1,Hage Jinane El1,Liu Bryan1,David Garcia-Schejtman Sergio1,MacAdam Aidan J.1,Brunette Isabelle234,Munoz Marcelo1,Alarcon Emilio I.15ORCID

Affiliation:

1. BEaTS Research Division of Cardiac Surgery University of Ottawa Heart Institute Ottawa ON K1Y 4W7 Canada

2. Centre Universitaire d’Ophtalmologie de l’Université de Montréal à l’Hôpital Maisonneuve-Rosemont Montreal QC H1T 2M4 Canada

3. Maisonneuve-Rosemont Hospital Research Center Montreal QC H1T 2M4 Canada

4. Department of Ophthalmology Université de Montréal Montreal QC H3C 3J7 Canada

5. Department of Biochemistry, Microbiology, and Immunology Faculty of Medicine University of Ottawa Ottawa ON K1H 8M5 Canada

Abstract

Corneal blindness is the fourth‐most common form of blindness in the world. The only current therapy is a cornea transplant; however, only 1 out of 70 people would receive a corneal transplant. While cell models can be used to develop therapies for corneal diseases, they cannot recapitulate the complexity of the tissue, as displayed in animal models, which are expensive and complex to carry out. Thus, ex vivo models that can recapitulate the cornea structure are critical. Herein, a series of open‐access 3D‐printed corneal perfusion chambers that can closely recapitulate the native curvature of the cornea is presented, while also maintaining internal ocular pressure, for different animal species. These devices are made available open access to the scientific community, allow the study of corneal physiology, diseases, and to aid in future therapeutic discovery for cornea treatments.

Funder

Natural Sciences and Engineering Research Council Canada

Publisher

Wiley

Subject

Condensed Matter Physics,General Materials Science

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