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S100A1 gene transfer: a strategy to strengthen engineered cardiac grafts

✍ Scribed by Andrew Remppis; Sven T. Pleger; Patrick Most; Jan Lindenkamp; Philipp Ehlermann; Christopher Schweda; Eva Löffler; Dieter Weichenhan; Wolfram Zimmermann; Thomas Eschenhagen; Walter J. Koch; Hugo A. Katus


Publisher
John Wiley and Sons
Year
2004
Tongue
English
Weight
177 KB
Volume
6
Category
Article
ISSN
1099-498X

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✦ Synopsis


Abstract

Background

Cardiac tissue replacement therapy, although a promising novel approach for the potential treatment of heart failure, still suffers from insufficient contractile support to the failing myocardium. Here, we explore a strategy to improve contractile properties of engineered heart tissue (EHT) by S100A1 gene transfer.

Methods

EHTs were generated from neonatal rat cardiomyocytes and transfected (MOI 10 PFU) with the S100A1 adenovirus (AdvS100A1, n = 25) while an adenovirus devoid of the S100A1 cDNA served as a control (AdvGFP, n = 30). Contractile properties of transfected EHTs were measured 7 days following gene transfer.

Results

Western blot analysis confirmed a 8.7 ± 3.6‐fold S100A1 protein overexpression in AdvS100A1‐transfected EHTs (n = 4; P < 0.01) that increased maximal isometric force (mN; AdvGFP 0.175 ± 0.03 vs. AdvS100A1 0.47 ± 0.06; P < 0.05) at 0.4 mmol/L extracellular calcium concentration [Ca^2+^]~e~. In addition, S100A1 overexpression enhanced both maximal Ca^2+^‐stimulated force generation (+81%; P < 0.05) and Ca^2+^‐sensitivity of EHTs (EC50% [Ca^2+^]~e~ mM; AdvGFP 0.33 ± 0.04 vs. AdvS100A1 0.21 ± 0.0022; P < 0.05). The S100A1‐mediated gain in basal graft contractility was preserved throughout a series of isoproterenol interventions (10^−9^ to 10^−6^ M). Physiological properties of EHTs resembling intact heart preparations were preserved.

Conclusions

S100A1 gene transfer in EHT is feasible and augments contractile performance, while characteristic physiological features of EHT remain unchanged. Thus, specific genetic manipulation of tissue constructs prior to implantation should be part of an improved tissue replacement strategy in heart failure. Copyright © 2004 John Wiley & Sons, Ltd.


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