Department of Small Animal Medicine and Surgery, University of Veterinary Medicine, Hannover, Germany.
BMC Vet Res. 2012 Nov 21;8:227. doi: 10.1186/1746-6148-8-227.
The recognition of functional muscular disorders, (e.g. channelopathies like Myotonia) is rising in veterinary neurology. Morphologic (e.g. histology) and even genetic based studies in these diseases are not able to elucidate the functional pathomechanism. As there is a deficit of knowledge and skills considering this special task, the aim of the current pilot study was to develop a canine muscle cell culture system derived from muscle biopsies of healthy client-owned dogs, which allows sampling of the biopsies under working conditions in the daily veterinary practise.
Muscular biopsies from 16 dogs of different age and breed were taken during standard surgical procedures and were stored for one to three days at 4°C in a transport medium in order to simulate shipping conditions. Afterwards biopsies were professionally processed, including harvesting of satellite cells, inducing their proliferation, differentiating them into myotubes and recultivating myotubes after long-term storage in liquid nitrogen. Myogenic origin of cultured cells was determined by immunofluorescence, immunohistology and by their typical morphology after inducing differentiation. Subsequent to the differentiation into myotubes feasibility of patch-clamp recordings of voltage gated ion channels was successfully.
We have developed a canine muscle cell culture system, which allows sampling of biopsies from young and old dogs of different breeds under practical conditions. Patch clamp measurements can be carried out with the cultured myotubes demonstrating potential of these cells as source for functional research.
在兽医神经学中,对功能性肌肉疾病(例如肌强直通道病)的认识正在提高。这些疾病的形态学(例如组织学)甚至基于遗传的研究都无法阐明其功能发病机制。由于缺乏有关此特殊任务的知识和技能,目前的初步研究旨在开发一种源自健康客户拥有的犬的肌肉活检的犬肌肉细胞培养系统,该系统允许在日常兽医实践中在工作条件下采样活检。
在标准手术过程中从 16 只不同年龄和品种的犬中采集了肌肉活检,并在 4°C 的运输介质中储存了 1 至 3 天,以模拟运输条件。然后对活检进行了专业处理,包括收获卫星细胞,诱导其增殖,将其分化为肌管并在液氮中长期储存后再培养肌管。通过免疫荧光,免疫组织化学和诱导分化后的典型形态来确定培养细胞的肌源性。随后,成功地对电压门控离子通道进行了膜片钳记录。
我们已经开发出一种犬肌肉细胞培养系统,该系统允许在实际条件下从不同品种的年轻和老年犬中采样活检。可以对培养的肌管进行膜片钳测量,证明了这些细胞作为功能研究来源的潜力。