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Generation and characterization of human heme oxygenase-1 transgenic pigs SCIE SCOPUS

Title
Generation and characterization of human heme oxygenase-1 transgenic pigs
Authors
Yeom, HJKoo, OJYang, JCho, BHwang, JIPark, SJHurh, SKim, HLee, EMRo, HKang, JTKim, SJWon, JKO'Connell, PJKim, HSurh, CDLee, BCAhn, C
Date Issued
2012-10-05
Publisher
Public Library of Science
Abstract
Xenotransplantation using transgenic pigs as an organ source is a promising strategy to overcome shortage of human organ for transplantation. Various genetic modifications have been tried to ameliorate xenograft rejection. In the present study we assessed effect of transgenic expression of human heme oxygenase-1 (hHO-1), an inducible protein capable of cytoprotection by scavenging reactive oxygen species and preventing apoptosis caused by cellular stress during inflammatory processes, in neonatal porcine islet-like cluster cells (NPCCs). Transduction of NPCCs with adenovirus containing hHO-1 gene significantly reduced apoptosis compared with the GFP-expressing adenovirus control after treatment with either hydrogen peroxide or hTNF-alpha and cycloheximide. These protective effects were diminished by co-treatment of hHO-1 antagonist, Zinc protoporphyrin IX. We also generated transgenic pigs expressing hHO-1 and analyzed expression and function of the transgene. Human HO-1 was expressed in most tissues, including the heart, kidney, lung, pancreas, spleen and skin, however, expression levels and patterns of the hHO-1 gene are not consistent in each organ. We isolate fibroblast from transgenic pigs to analyze protective effect of the hHO-1. As expected, fibroblasts derived from the hHO-1 transgenic pigs were significantly resistant to both hydrogen peroxide damage and hTNF-alpha and cycloheximide-mediated apoptosis when compared with wild-type fibroblasts. Furthermore, induction of RANTES in response to hTNF-alpha or LPS was significantly decreased in fibroblasts obtained from the hHO-1 transgenic pigs. These findings suggest that transgenic expression of hHO-1 can protect xenografts when exposed to oxidative stresses, especially from ischemia/reperfusion injury, and/or acute rejection mediated by cytokines. Accordingly, hHO-1 could be an important candidate molecule in a multi-transgenic pig strategy for xenotransplantation.
URI
https://oasis.postech.ac.kr/handle/2014.oak/12662
DOI
10.1371/JOURNAL.PONE.0046646
ISSN
1932-6203
Article Type
Article
Citation
PLoS One, vol. 7, no. 10, page. 628 - 630, 2012-10-05
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SURH CHARLES DSURH, CHARLES D
Div of Integrative Biosci & Biotech
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