Autologous bone marrow-derived cells enhance muscle strength following skeletal muscle crush injury in rats

被引:50
作者
Matziolis, G
Winkler, T
Schaser, K
Wiemann, M
Krocker, D
Tuischer, J
Perka, C
Duda, GN
机构
[1] Charite Univ Med Berlin, Ctr Musculoskeletal Surg, Dept Orthopaed, D-10117 Berlin, Germany
[2] Charite Univ Med Berlin, Ctr Musculoskeletal Surg, Dept Trauma & Reconstruct Surg, D-10117 Berlin, Germany
来源
TISSUE ENGINEERING | 2006年 / 12卷 / 02期
关键词
D O I
10.1089/ten.2006.12.361
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Insufficient post-traumatic skeletal muscle regeneration with consecutive functional deficiency continues to be a serious problem in orthopedic and trauma surgery. Transplantation of autologous muscle precursor cells has shown encouraging results in muscle trauma treatment but is associated with significant donor site morbidity. In contrast to this, bone marrow- derived (BMD) cells can be obtained without any functional deficit by puncture. The goal of this study was to examine whether regular muscle regeneration can be improved by local application of autologous BMD cells in a rat model of blunt skeletal muscle trauma. One week after standardized open blunt crush injury to the left soleus muscle, 106 autologous BMD cells were injected into the traumatized muscle of male Sprague Dawley rats. Rats of the control group received saline solution as treatment. Three weeks after application, the fast twitch and tetanic contraction capacity of the soleus muscles was measured bilaterally by stimulating the sciatic nerves. Contraction forces of injured soleus muscles in control animals recovered to 39 +/- 10% ( tetanic) and 59 +/- 12% ( fast twitch) of the contralateral noninjured soleus muscles ( p < 0.001). In contrast, autologous BMD cell injection significantly restored contractile forces to 53 +/- 8% ( tetanic) and 72 +/- 13% ( fast twitch) compared to those observed in contralateral noninjured soleus muscles. Thus, muscle function was significantly increased by BMD cell treatment ( tetanic, p = 0.014; fast twitch, p = 0.05). In conclusion, autologous BMD cell grafting leads to an increase in contraction force, 14% in tetanic and 13% in fast twitch stimulation, demonstrating its potential to improve functional outcome after skeletal muscle crush injury.
引用
收藏
页码:361 / 367
页数:7
相关论文
共 45 条
[1]   FUNCTIONAL RECOVERY INDUCED BY SATELLITE CELL GRAFTS IN IRREVERSIBLY INJURED MUSCLES [J].
ALAMEDDINE, HS ;
LOUBOUTIN, JP ;
DEHAUPAS, M ;
SEBILLE, A ;
FARDEAU, M .
CELL TRANSPLANTATION, 1994, 3 (01) :3-14
[2]  
Anderson J, 1999, J EXP BIOL, V202, P2701
[3]  
Arcila ME, 1997, J NEUROBIOL, V33, P185, DOI 10.1002/(SICI)1097-4695(199708)33:2<185::AID-NEU7>3.0.CO
[4]  
2-Z
[5]   Skeletal muscle tissue engineering [J].
Bach, AD ;
Beier, JP ;
Stern-Staeter, J ;
Horch, RE .
JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2004, 8 (04) :413-422
[6]   Transplantation of adipose tissue-derived stromal cells increases mass and functional capacity of damaged skeletal muscle [J].
Bacou, F ;
el Andalousi, RB ;
Daussin, PA ;
Micallef, JP ;
Levin, JM ;
Chammas, M ;
Casteilla, L ;
Reyne, Y ;
Nouguès, J .
CELL TRANSPLANTATION, 2004, 13 (02) :103-111
[7]   The COX-2 pathway is essential during early stages of skeletal muscle regeneration [J].
Bondesen, BA ;
Mills, ST ;
Kegley, KM ;
Pavlath, GK .
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY, 2004, 287 (02) :C475-C483
[8]   Contractile skeletal muscle tissue-engineered on an acellular scaffold [J].
Borschel, GH ;
Dennis, RG ;
Kuzon, WM .
PLASTIC AND RECONSTRUCTIVE SURGERY, 2004, 113 (02) :595-602
[9]  
BRONIATOWSKI M, 1992, ASAIO J, V38, pM248, DOI 10.1097/00002480-199207000-00030
[10]   TRANSFORMATION OF CONTRACTION SPEED IN MUSCLE FOLLOWING CROSS-REINNERVATION - DEPENDENCE ON MUSCLE SIZE [J].
BULLER, AJ ;
KEAN, CJC ;
RANATUNGA, KW .
JOURNAL OF MUSCLE RESEARCH AND CELL MOTILITY, 1987, 8 (06) :504-516