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RNA interference and somatic cell nuclear transfer to generate an apolipoprotein E deficient pig : a new model of atherosclerosis

Atherosclerosis is a complex disease which develops silently over decades and can lead to acute myocardial infarction or stroke, the main cause of death worldwide. Apoliporotein E (apo E) is a glycoprotein known for its major role in lipid metabolism and its pro-atherogenic effects. Swine make a unique and viable research model as it shares most of the anatomic and physiologic characteristics with humans, notably for the the cardiovascular system. In addition, it is the only animal species, other than nonhuman primates, that develops atherosclerosis spontaneously. In this study we examined the feasibility for creating an apo E-deficient pig model of atherosclerosis using RNA interference (RNAi) and somatic cell nuclear transfer (SCNT). The knockdown efficiency was tested in porcine granulosa cells. It varied from 45% to 82% compared to control cells, as revealed by real-time PCR analysis. Accordingly, short hairpin RNA-expressing vectors were constructed and used to transfect porcine fetal fibroblast cells. Cell lines with stable chromosomal integration were established and used to produce embryos by SCNT. Development of SCNT embryos to the blastocyst stage (33%) was comparable to non-transgenic embryos. The integration of the shRNA into the genome of GFP-expressing embryos was revealed by PCR and gel electrophoresis. These findings indicate that porcine embryos harboring shRNA-specific to apo E created by SCNT may lead to the production of apo E-deficient pigs. These pigs would be a promising new animal model for advancing atherosclerosis research.

Identiferoai:union.ndltd.org:LACETR/oai:collectionscanada.gc.ca:QMM.116103
Date January 2008
CreatorsEl-Beyrouthi, Nayla.
PublisherMcGill University
Source SetsLibrary and Archives Canada ETDs Repository / Centre d'archives des thèses électroniques de Bibliothèque et Archives Canada
LanguageEnglish
Detected LanguageEnglish
TypeElectronic Thesis or Dissertation
Formatapplication/pdf
CoverageMaster of Science (Department of Animal Science.)
RightsAll items in eScholarship@McGill are protected by copyright with all rights reserved unless otherwise indicated.
Relationalephsysno: 002842036, proquestno: AAIMR67045, Theses scanned by UMI/ProQuest.

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