Mechanoresponsive musculoskeletal tissue differentiation of adipose-derived stem cells

被引:0
作者
Andrew Trumbull
Gayathri Subramanian
Eda Yildirim-Ayan
机构
[1] University of Toledo,Department of Bioengineering, College of Engineering
[2] University of Toledo Medical Center,Department of Orthopaedic Surgery
来源
BioMedical Engineering OnLine | / 15卷
关键词
Adipose-derived stem cells; Musculoskeletal tissue; Differentiation; Mechanical strain; Biomechanics; Mechanobiology; Bone; Tendon; Cartilage; Muscle; Ligaments; Tissue engineering;
D O I
暂无
中图分类号
学科分类号
摘要
Musculoskeletal tissues are constantly under mechanical strains within their microenvironment. Yet, little is understood about the effect of in vivo mechanical milieu strains on cell development and function. Thus, this review article outlines the in vivo mechanical environment of bone, muscle, cartilage, tendon, and ligaments, and tabulates the mechanical strain and stress in these tissues during physiological condition, vigorous, and moderate activities. This review article further discusses the principles of mechanical loading platforms to create physiologically relevant mechanical milieu in vitro for musculoskeletal tissue regeneration. A special emphasis is placed on adipose-derived stem cells (ADSCs) as an emerging valuable tool for regenerative musculoskeletal tissue engineering, as they are easily isolated, expanded, and able to differentiate into any musculoskeletal tissue. Finally, it highlights the current state-of-the art in ADSCs-guided musculoskeletal tissue regeneration under mechanical loading.
引用
收藏
相关论文
共 228 条
[1]  
Schulze M(2012)Artificial scaffolds and mesenchymal stem cells for hard tissues Adv Biochem Eng Biotechnol 126 153-194
[2]  
Tobiasch E(2012)Improving musculoskeletal health: global issues Best Pract Res Clin Rheumatol 26 237-249
[3]  
Mody GM(2014)Musculoskeletal disorders and the global burden of disease study Ann Rheum Dis 73 949-950
[4]  
Brooks PM(2013)Measuring the global burden of disease N Engl J Med 369 448-457
[5]  
Storheim K(2012)Perspective on the evolution of cell-based bone tissue engineering strategies Eur Surg Res 49 1-7
[6]  
Zwart J-A(2011)Stem cells in regenerative medicine: introduction Br Med Bull 98 117-S192
[7]  
Murray CJ(2014)In vivo effects of adipose-derived stem cells in inducing neuronal regeneration in Sprague-Dawley rats undergoing nerve defect bridged with polycaprolactone nanotubes J Korean Med Sci 29 S183-21
[8]  
Lopez AD(2013)Mesenchymal bone marrow stem cells within polyglycolic acid tube observed in vivo after 6 weeks enhance facial nerve regeneration Brain Res 1510 10-453
[9]  
Jakob M(2014)Simultaneous regeneration of full-thickness cartilage and subchondral bone defects in vivo using a three-dimensional scaffold-free autologous construct derived from high-density bone marrow-derived mesenchymal stem cells J Orthop Surg Res 9 98-242
[10]  
Ilic D(2014)In vivo cartilage repair using adipose-derived stem cell-loaded decellularized cartilage ECM scaffolds J Tissue Eng Regen Med 8 442-1586