Ma X, Li W, Stephens N L
Department of Physiology, Faculty of Medicine, University of Manitoba, Winnipeg, Canada.
J Appl Physiol (1985). 1996 Mar;80(3):857-61. doi: 10.1152/jappl.1996.80.3.857.
Heterogeneity of function of airway smooth muscle along the airways may be of great importance in regulating regional ventilation and in the pathogenesis of asthma. To investigate the distribution of mechanical properties of airway smooth muscle along the airway, muscle strips free of cartilage and epithelium from the trachea down to bronchial generation 6 were studied by employing electrical field stimulation. Results showed that smooth muscle mechanical performance decreased progressively down the airway tree. Cluster analysis further indicated that smooth muscle from these airways could be divided into two groups: 1) an extrapulmonary group, which contains muscle from the trachea and bronchial generations 1 and 2 and is characterized by higher maximum shortening capacity and zero-load velocity of shortening (V0) in early shortening, the expected decrease of V0 values (the so-called latch phase) in the later phase of shortening, and lower sensitivity to stimulation; and 2) an intrapulmonary group, which contains bronchi from generations 3-6 and has a lower maximum shortening capacity and V0 in early shortening but higher sensitivity to stimulation. The relatively lower mechanical performance of intrapulmonary bronchial smooth muscle may represent a safety device that prevents excessive smooth muscle shortening in vivo.
气道平滑肌功能沿气道的异质性在调节局部通气及哮喘发病机制中可能极为重要。为研究气道平滑肌力学特性沿气道的分布情况,采用电场刺激法对从气管直至第6级支气管、去除软骨和上皮的肌条进行了研究。结果显示,气道树中平滑肌的力学性能逐渐降低。聚类分析进一步表明,这些气道的平滑肌可分为两组:1)肺外组,包括气管及第1、2级支气管的肌肉,其特点是最大缩短能力较高,缩短初期的零负荷缩短速度(V0)较高,缩短后期V0值预期下降(即所谓的锁定期),对刺激的敏感性较低;2)肺内组,包括第3 - 6级支气管,缩短初期最大缩短能力和V0较低,但对刺激的敏感性较高。肺内支气管平滑肌相对较低的力学性能可能是一种安全机制,可防止体内平滑肌过度缩短。