| Literature DB >> 31284096 |
Mohammad Mirazul Islam1, Roholah Sharifi1, Shamina Mamodaly1, Rakibul Islam2, Daniel Nahra1, Dina B Abusamra1, Pui Chuen Hui1, Yashar Adibnia3, Mehdi Goulamaly4, Eleftherios I Paschalis1, Andrea Cruzat5, Jing Kong4, Per H Nilsson6, Pablo Argüeso1, Tom Eirik Mollnes7, James Chodosh1, Claes H Dohlman1, Miguel Gonzalez-Andrades8.
Abstract
To address the shortcomings associated with corneal transplants, substantial efforts have been focused on developing new modalities such as xenotransplantion. Xenogeneic corneas are anatomically and biomechanically similar to the human cornea, yet their applications require prior decellularization to remove the antigenic components to avoid rejection. In the context of bringing decellularized corneas into clinical use, sterilization is a crucial step that determines the success of the transplantation. Well-standardized sterilization methods, such as gamma irradiation (GI), have been applied to decellularized porcine corneas (DPC) to avoid graft-associated infections in human recipients. However, little is known about the effect of GI on decellularized corneal xenografts. Here, we evaluated the radiation effect on the ultrastructure, optical, mechanical and biological properties of DPC. Transmission electron microscopy revealed that gamma irradiated decellularized porcine cornea (G-DPC) preserved its structural integrity. Moreover, the radiation did not reduce the optical properties of the tissue. Neither DPC nor G-DPC led to further activation of complement system compared to native porcine cornea when exposed to plasma. Although, DPC were mechanically comparable to the native tissue, GI increased the mechanical strength, tissue hydrophobicity and resistance to enzymatic degradation. Despite these changes, human corneal epithelial, stromal, endothelial and hybrid neuroblastoma cells grew and differentiated on DPC and G-DPC. Thus, GI may achieve effective tissue sterilization without affecting critical properties that are essential for corneal transplant survival.Entities:
Keywords: Acellular porcine cornea; Corneal transplant; Decellularization; Gamma irradiation sterilization; Recellularization
Year: 2019 PMID: 31284096 PMCID: PMC7043233 DOI: 10.1016/j.actbio.2019.07.002
Source DB: PubMed Journal: Acta Biomater ISSN: 1742-7061 Impact factor: 8.947