A novel small animal model of left ventricular tissue engineering

被引:78
作者
Krupnick, AS
Kreisel, D
Engels, FH
Szeto, WY
Plappert, T
Popma, SH
Flake, AW
Rosengard, BR
机构
[1] Univ Penn, Med Ctr, Dept Surg, Div Cardiothorac Surg, Philadelphia, PA 19104 USA
[2] Univ Penn, Med Ctr, Dept Pathol, Philadelphia, PA 19104 USA
[3] Childrens Hosp Philadelphia, Dept Surg, Philadelphia, PA 19104 USA
基金
美国国家卫生研究院;
关键词
D O I
10.1016/S1053-2498(01)00349-7
中图分类号
R5 [内科学];
学科分类号
1002 [临床医学]; 100201 [内科学];
摘要
Background: Complex congenital cardiac anomalies involving ventricular hypoplasia require either staged palliative reconstruction, converting the circulatory system to a single ventricle based pump, or allogencic transplantation. Tissue engineering offers the potential for complete reconstruction of these defects, but is limited by the inability to model myocardial tissue engineering in a small animal. Our goal was to develop a small animal model for ventricular tissue engineering using rat heterotopic heart transplantation. Methods: Donor hearts were explanted after cardioplegic arrest and the left ventricular volume was augmented by the implantation of a biodegradable engineered construct. The heart was then transplanted heterotopically into syngeneic recipients creating either a volume loaded, functioning left ventricle, or a non-functioning left ventricle. Some of the engineered constructs were seeded with multipotent bone marrow-derived mesenchymal progenitor cells before implantation. Animals were evaluated by echocardiography, morphology, histology, and immunohistochemistry after I month . Results: A scaffolding constructed from polytetrafluoroethylene, polylactide mesh, and type I and IV collagen hydrogel resulted in minimal intracardiac inflammation without aneurysmal dilatation. Successful transplantation and differentiation of mesenchymal progenitor cells was accomplished using this scaffolding. No ventricular arrhythmias resulted from this surgical manipulation and echocardiography revealed both end systolic and diastolic volume augmentation with ventricular expansion. Conclusion: We have developed an in vivo model of ventricular tissue engineering using heterotopic heart transplantation. Future work will focus on construction of ventricular tissue around pre-fabricated vascular networks in order increase cellular engraftment for ventricular reconstruction.
引用
收藏
页码:233 / 243
页数:11
相关论文
共 41 条
[1]
A simple new model of physiologically working heterotopic rat heart transplantation provides hemodynamic performance equivalent to that of an orthotopic heart [J].
Asfour, B ;
Hare, JM ;
Kohl, T ;
Baba, HA ;
Kass, DA ;
Chen, K ;
Tjan, TDT ;
Hammel, D ;
Weyand, M ;
Hruban, RH ;
Scheld, HH ;
Byrne, BJ .
JOURNAL OF HEART AND LUNG TRANSPLANTATION, 1999, 18 (10) :927-936
[2]
BELLOTTO F, 1992, J THORAC CARDIOV SUR, V104, P561
[3]
BRODSKY WY, 1980, CELL TISSUE RES, V210, P133
[4]
Regression of fibrosis and hypertrophy in failing myocardium following mechanical circulatory support [J].
Bruckner, BA ;
Stetson, SJ ;
Perez-Verdia, A ;
Youker, KA ;
Radovancevic, B ;
Connelly, JH ;
Koerner, MM ;
Entman, ME ;
Frazier, OH ;
Noon, GP ;
Torre-Amione, G .
JOURNAL OF HEART AND LUNG TRANSPLANTATION, 2001, 20 (04) :457-464
[5]
CLUBB FJ, 1984, LAB INVEST, V50, P571
[6]
REGIONAL CARDIAC DILATATION AFTER ACUTE MYOCARDIAL-INFARCTION - RECOGNITION BY 2-DIMENSIONAL ECHOCARDIOGRAPHY [J].
EATON, LW ;
WEISS, JL ;
BULKLEY, BH ;
GARRISON, JB ;
WEISFELDT, ML .
NEW ENGLAND JOURNAL OF MEDICINE, 1979, 300 (02) :57-62
[7]
DIFFERENCES IN REUTILIZATION OF THYMIDINE IN HEMATOPOIETIC AND LYMPHOPOIETIC TISSUES OF NORMAL MOUSE [J].
FEINENDEGEN, LE ;
HEINIGER, HJ ;
FRIEDRICH, G ;
CRONKITE, EP .
CELL AND TISSUE KINETICS, 1973, 6 (06) :573-585
[8]
THE BULK OF THE PERIPHERAL B-CELL POOL IN MICE IS STABLE AND NOT RAPIDLY RENEWED FROM THE BONE-MARROW [J].
FORSTER, I ;
RAJEWSKY, K .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1990, 87 (12) :4781-4784
[9]
New pulsatile bioreactor for in vitro formation of tissue engineered heart valves [J].
Hoerstrup, SP ;
Sodian, R ;
Sperling, JS ;
Vacanti, JP ;
Mayer, JE .
TISSUE ENGINEERING, 2000, 6 (01) :75-79
[10]
Outcome of subcutaneous islet transplantation improved by polymer device [J].
Juang, JH ;
BonnerWeir, S ;
Ogawa, Y ;
Vacanti, JP ;
Weir, GC .
TRANSPLANTATION, 1996, 61 (11) :1557-1561