Cyclic flexure and laminar flow synergistically accelerate mesenchymal stem cell-mediated engineered tissue formation: Implications for engineered heart valve tissues

被引:110
作者
Engelmayr, George C., Jr.
Sales, Virna L.
Mayer, John E., Jr.
Sacks, Michael S.
机构
[1] Univ Pittsburgh, Engn Tissue Mech Lab, Dept Bioengn, Pittsburgh, PA 15219 USA
[2] Univ Pittsburgh, McGowan Inst Regenerat Med, Pittsburgh, PA 15219 USA
[3] Harvard Univ, Sch Med, Childrens Hosp Boston, Dept Cardiac Surg, Boston, MA 02115 USA
关键词
tissue engineering; mesenchymal stem cell; bioreactor; flexure; flow; fluid shear stress;
D O I
10.1016/j.biomaterials.2006.07.045
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Bone marrow-derived mesenchymal stem cells (BMSCs) are relatively accessible and exhibit a pluripotency suitable for cardiovascular applications such as tissue-engineered heart valves (TEHVs). Recently, Sutherland et al. [From stem cells to viable autologous semilunar heart valve. Circulation 2005; 111(21): 2783-91] demonstrated that BMSC-seeded TEHV can successfully function as pulmonary valve substitutes in juvenile sheep for at least 8 months. Toward determining appropriate mechanical stimuli for use in BMSC-seeded TEHV cultivation, we investigated the independent and coupled effects of two mechanical stimuli physiologically relevant to heart valves-cyclic flexure and laminar flow (i.e. fluid shear stress)-on BNISC-mediated tissue formation. BMSC isolated from juvenile sheep were expanded and seeded onto rectangular strips of nonwoven 50:50 blend poly(glycolic acid) (PGA) and poly(L-lactic acid) (PLLA) scaffolds. Following 4 days static culture, BMSC-seeded scaffolds were loaded into a novel flex-stretch-flow (FSF) bioreactor and incubated under static (n = 12), cyclic flexure (n = 12), laminar flow (avg. wall shear stress = 1.1505 dyne/cm(2); 11 = 12) and combined flex-flow (n = 12) conditions for 1 (n = 6) and 3 (n = 6) weeks. By 3 weeks, the flex-flow group exhibited dramatically accelerated tissue formation compared with all other groups, including a 75% higher collagen content of 844 +/- 278 mu g/g wet weight (P < 0.05), and an effective stiffness (E) value of 948 +/- 233 kPa. Importantly, collagen and E values were not significantly different from values measured for vascular smooth muscle cell (SMC)-seeded scaffolds incubated under conditions of flexure alone [Engelmayr et al. The independent role of cyclic flexure in the early in vitro development of an engineered heart valve tissue. Biomaterials 2005; 26(2): 175-87], suggesting that BMSC-seeded TEHV can be optimized to yield results comparable to SMC-seeded TEHV. We thus demonstrated that cyclic flexure and laminar flow can synergistically accelerate BMSC-mediated tissue formation, providing a basis for the rational design of in vitro conditioning regimens for BMSC-seeded TEHV. (c) 2006 Elsevier Ltd. All rights reserved.
引用
收藏
页码:6083 / 6095
页数:13
相关论文
共 49 条
[1]   Cyclic hydrostatic pressure enhances the chondrogenic phenotype of human mesenchymal progenitor cells differentiated in vitro [J].
Angele, P ;
Yoo, JU ;
Smith, C ;
Mansour, J ;
Jepsen, KJ ;
Nerlich, M ;
Johnstone, B .
JOURNAL OF ORTHOPAEDIC RESEARCH, 2003, 21 (03) :451-457
[2]   Postimplantation leaflet cellularity of valve allografts: Are donor cells beneficial or detrimental? [J].
Armiger, LC .
ANNALS OF THORACIC SURGERY, 1998, 66 (06) :S233-S235
[3]   Extracellular matrix proteoglycans control the fate of bone marrow stromal cells [J].
Bi, YM ;
Stuelten, CH ;
Kilts, T ;
Wadhwa, S ;
Iozzo, RV ;
Robey, PG ;
Chen, XD ;
Young, MF .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (34) :30481-30489
[4]   Unique morphology and focal adhesion development of valvular endothelial cells in static and fluid flow environments [J].
Butcher, JT ;
Penrod, AM ;
García, AJ ;
Nerem, RM .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2004, 24 (08) :1429-1434
[5]   Chondrogenic differentiation of human mesenchymal stem cells cultured in a cobweb-like biodegradable scaffold [J].
Chen, GP ;
Liu, DC ;
Tadokoro, M ;
Hirochika, R ;
Ohgushi, H ;
Tanaka, J ;
Tateishi, T .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2004, 322 (01) :50-55
[6]   Mesenchymal progenitor cells differentiate into an endothelial phenotype, enhance vascular density, and improve heart function in a rat cellular cardiomyoplasty model [J].
Davani, S ;
Marandin, A ;
Mersin, N ;
Royer, B ;
Kantelip, B ;
Hervé, P ;
Etievent, JP ;
Kantelip, JP .
CIRCULATION, 2003, 108 (10) :253-258
[7]   The independent role of cyclic flexure in the early in vitro development of an engineered heart valve tissue [J].
Engelmayr, GC ;
Rabkin, E ;
Sutherland, FWH ;
Schoen, FJ ;
Mayer, JE ;
Sacks, MS .
BIOMATERIALS, 2005, 26 (02) :175-187
[8]   A novel bioreactor for the dynamic flexural stimulation of tissue engineered heart valve biomaterials [J].
Engelmayr, GC ;
Hildebrand, DK ;
Sutherland, FWH ;
Mayer, JE ;
Sacks, MS .
BIOMATERIALS, 2003, 24 (14) :2523-2532
[9]  
ENGELMAYR GC, 2007, IN PRESS ANN BIOMED
[10]   Guidance of engineered tissue collagen orientation by large-scale scaffold microstructures [J].
Engelmayr, George C., Jr. ;
Papworth, Glenn D. ;
Watkins, Simon C. ;
Mayer, John E., Jr. ;
Sacks, Michael S. .
JOURNAL OF BIOMECHANICS, 2006, 39 (10) :1819-1831