Biomedical Engineering Reference
In-Depth Information
17. Siepe, M., et al. (2007). Construction of skeletal myoblast-based
polyurethane scaffolds for myocardial repair,
Artif. Organs,
31
, pp.
425-433.
18. Giraud, M.N., et al. (2010). Long-term evaluation of myoblast seeded
patches implanted on infarcted rat hearts,
Artif. Organs
,
34
, pp. E184-
E192.
19. Blumenthal, B., et al. (2010). Polyurethane scaffolds seeded with
genetically engineered skeletal myoblasts: a promising tool to
regenerate myocardial function,
, pp. E46-E54.
20. Siepe, M., et al. (2011). Scaffold-based transplantation of akt1-
overexpressing skeletal myoblasts: functional regeneration is
associated with angiogenesis and reduced infarction size,
Artif. Organs
,
34
Tissue Eng.
, pp. 205-212.
21. Blumenthal, B., et al. (2011). Functional regeneration of ischemic
myocardium by transplanted cells overexpressing stromal cell-derived
factor-1 (SDF-1): intramyocardial injection versus scaffold-based
application,
A
,
17
, pp. e135-e141.
22. Poppe, A., et al. (2012). Hepatocyte growth factor-transfected skeletal
myoblasts to limit the development of postinfarction heart failure,
Artif. Organs
Eur. J. Cardiothorac. Surg.
,
40
, pp. 238-246.
23. Leor, J, et al. (2000). Bioengineered cardiac grafts: a new approach to
repair the infarcted myocardium?
,
36
Circulation
,
102
(19 Suppl 3), pp.
III56-III61.
24. Amir, G., et al. (2009). Evaluation of a peritoneal-generated cardiac
patch in a rat model of heterotopic heart transplantation,
Cell
, pp. 275-282.
25. Dvir, T., et al. (2009). Prevascularization of cardiac patch on the
omentum improves its therapeutic outcome,
Transplant.
,
18
Proc. Natl. Acad. Sci. U. S.
, pp. 14990-14995.
26. Yang, Y., et al. (2012). MRI studies of cryoinjury infarction in pig hearts:
(ii) Effects of intrapericardial delivery of adipose-derived stem cells
(ADSC) embedded in agarose gel,
A.
,
106
, pp. 227-235.
27. Kofidis, T., et al. (2005). Myocardial restoration with embryonic stem
cell bioartificial tissue transplantation,
NMR Biomed.
,
25
J. Heart Lung Transplant.
24
,
pp. 737- 744.
28. Simpson, D., et al. (2007). A tissue engineering approach to progenitor
cell delivery results in significant cell engraftment and improved
myocardial remodeling,
Stem Cells
,
25
, pp. 2350-2357.
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