Extremity Trauma and Regenerative Medicine, US Army Institute of Surgical Research, Fort Sam Houston, TX 78234-6315, USA.
Burns. 2013 Jun;39(4):736-44. doi: 10.1016/j.burns.2012.10.016. Epub 2012 Nov 10.
Cutaneous burn distant from skeletal muscles induces atrophy; however, its effect on muscle stem cells resident in skeletal muscle (satellite cells) distal to burn is not known.
Satellite cell activation was measured in predominantly fast-twitch [tibialis anterior, extensor digitorum longus (EDL), plantaris, and gastrocnemius] and slow-twitch (soleus) muscles of rats that received either 40% total body surface area full-thickness scald burn or sham burn to the trunk area by determining bromodeoxyuridine incorporation, MyoD, and Pax7 immunohistochemistry in vivo ≤48 h after burn. To determine the effects of circulating factors on satellite cell activation, satellite cell cultures were treated with serum from sham or burn rats.
In vivo activation of satellite cells was increased in fast muscles isolated from burn as compared to sham animals, whereas a significant response was not seen in slow muscles. Serum taken from animals in the burn group increased the activation of satellite cells isolated from both sham and burn animals in vitro, suggesting that circulating factors have the potential to increase satellite cell activation following burn.
Increases in satellite cell activation in muscles distal to burn are fiber-type-dependent, and circulating factors may play a role in the activation of satellite cells following burn. A better understanding of the impact of burn on satellite cell functionality will allow us to identify the cellular mechanisms of long-term muscle atrophy.
远离骨骼肌的皮肤烧伤会导致萎缩;然而,其对烧伤远端骨骼肌内的肌肉干细胞(卫星细胞)的影响尚不清楚。
通过体内测定溴脱氧尿苷掺入、MyoD 和 Pax7 免疫组织化学,在接受 40%全身表面积全层烫伤烧伤或躯干区域假烧伤的大鼠的主要快肌(胫骨前肌、趾长伸肌(EDL)、跖肌和比目鱼肌)和慢肌(比目鱼肌)中测量卫星细胞激活。为了确定循环因子对卫星细胞激活的影响,用来自假烧伤或烧伤大鼠的血清处理卫星细胞培养物。
与假烧伤动物相比,来自烧伤动物的快肌中卫星细胞的体内激活增加,而在慢肌中未见明显反应。来自烧伤组动物的血清增加了体外分离的来自假烧伤和烧伤动物的卫星细胞的激活,表明循环因子有可能在烧伤后增加卫星细胞的激活。
烧伤后远离烧伤的肌肉中卫星细胞激活的增加是纤维类型依赖性的,循环因子可能在烧伤后卫星细胞的激活中起作用。更好地了解烧伤对卫星细胞功能的影响将使我们能够确定长期肌肉萎缩的细胞机制。