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PMID: 11815435 Published · ppublish English Evaluation Study Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Restoration of deficient membrane proteins in the cardiomyopathic hamster by in vivo cardiac gene transfer.

Circulation ·Vol. 105 ·No. 4 ·2002-01-29 ·Pages 502-8

Ikeda Y, Gu Y, Iwanaga Y, Hoshijima M, Oh SS, Giordano FJ, Chen J, Nigro V, Peterson KL, Chien KR, Ross J

Abstract

One of the most important problems in developing in vivo cardiac gene transfer has been low transfection efficiency. A novel in vivo technique was developed, tested in normal hamsters, and the feasibility of restoring a deficient structural protein (delta-sarcoglycan) in the cardiomyopathic (CM) hamster evaluated. Adenoviral (AdV) vectors encoding either the lacZ gene or delta-sarcoglycan gene were constructed. Hypothermia was achieved in hamsters by external body cooling to a rectal temperature of 18 to 25 degrees C. Through a small thoracotomy, the ascending aorta and the main pulmonary artery were occluded with snares, and cardioplegic solution containing histamine was injected into the aortic root; viral constructs were delivered 3 to 5 minutes later followed by release of the occluders and rewarming. Four days later, homogeneous beta-galactosidase expression was detected throughout the ventricles of the normal hearts (average 77.3+/-9.0% [SEM] of left ventricular myocytes). At 1 and 3 weeks after transfection, immunostaining showed extensive restoration of delta-sarcoglycan as well as alpha- and beta-sarcoglycan proteins to the myocyte membranes, despite loss of beta-galactosidase expression at 3 weeks. Also, at 3 weeks after gene transfer, there was significantly less progression of left ventricular dysfunction assessed as percent change in fractional shortening compared with controls. This study demonstrates the feasibility of high efficiency in vivo myocardial gene transfer and shows application in improving the level of a deficient cardiac structural protein and cardiac function in CM hamsters. The approach should be useful for assessing effects of expressing other genes that influence the structure or function of the normal and failing heart.

MeSH Terms
Adenoviridae/genetics Animals Cardiomyopathies/metabolism Cardioplegic Solutions/administration & dosage Cricetinae Cytoskeletal Proteins/genetics,immunology,metabolism Electrocardiography Feasibility Studies Genetic Vectors Hemodynamics Histamine/pharmacology Hypothermia, Induced/methods Immunohistochemistry Kinetics Male Membrane Glycoproteins/genetics,immunology,metabolism Mesocricetus Myocardium/metabolism Sarcoglycans Transfection/methods beta-Galactosidase/genetics,metabolism
Chemicals
Cardioplegic Solutions Cytoskeletal Proteins Membrane Glycoproteins Sarcoglycans Histamine beta-Galactosidase
Authors & Affiliations
11 authors, click to expand affiliations / ORCID
Ikeda Yasuhiro
Department of Medicine, Division of Cardiology, University of California, San Diego, CA 92093-0613B, USA.
Gu Yusu
Iwanaga Yoshitaka
Hoshijima Masahiko
Oh Sam S
Giordano Frank J
Chen Ju
Nigro Vincenzo
Peterson Kirk L
Chien Kenneth R
Ross John
Article Info
Journal
Circulation
Abbr.
Circulation
ISSN
1524-4539
Published
2002-01-29
Pages
502-8
Language
English
Region
United States
NLM ID
0147763
Subset
IM
Grants
Telethon · TGM00P10 · Italy
Telethon · TGM06S01 · Italy
NHLBI NIH HHS · HL53773 · United States
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