Croxton T L, Fleming C, Hirshman C A
Department of Environmental Health Sciences, Johns Hopkins Medical Institutions, Baltimore, Maryland 21205.
Am J Physiol. 1994 Aug;267(2 Pt 1):L106-12. doi: 10.1152/ajplung.1994.267.2.L106.
Voltage-dependent and receptor-operated Ca2+ entry mechanisms have been demonstrated in airway smooth muscle, but their relative importance for maintenance of contraction is unknown. Blockade of voltage-dependent Ca2+ channels (VDC) has produced inconsistent relaxation. We postulated regional variations in Ca2+ handling by airway smooth muscle cells and compared the efficacy of dihydropyridine VDC blockers in tracheas and bronchi. Porcine tracheal smooth muscle strips and bronchial rings were mounted in tissue baths filled with physiological solutions and isometric tension was measured. Tissues were precontracted with carbachol or KCl, and relaxation dose-response curves to nifedipine, Mn2+, or Cd2+ were obtained. Relaxation responses to nifedipine were significantly different in carbachol-contracted tracheas and bronchi. Whereas carbachol-contracted tracheal muscle completely relaxed with 10(-6) M nifedipine, bronchial smooth muscle relaxed < 50%. In contrast, KCl-contracted bronchial muscle was completely relaxed by nifedipine. The nonspecific Ca2+ channel blockers Mn2+ and Cd2+ produced similar relaxation responses in each tissue. Thus VDC are the predominant mechanism for Ca2+ entry in porcine tracheal smooth muscle, but a dihydropyridine-insensitive pathway is functionally important in carbachol-contracted porcine bronchi. Regional variation may account for apparent inconsistencies between previous studies.
电压依赖性和受体操纵性Ca2+内流机制已在气道平滑肌中得到证实,但其对维持收缩的相对重要性尚不清楚。阻断电压依赖性Ca2+通道(VDC)产生的舒张作用并不一致。我们推测气道平滑肌细胞在Ca2+处理上存在区域差异,并比较了二氢吡啶类VDC阻滞剂在气管和支气管中的作用效果。将猪气管平滑肌条和支气管环安装在充满生理溶液的组织浴中,测量等长张力。组织先用卡巴胆碱或氯化钾预收缩,然后获得对硝苯地平、Mn2+或Cd2+的舒张剂量反应曲线。在卡巴胆碱收缩的气管和支气管中,对硝苯地平的舒张反应显著不同。卡巴胆碱收缩的气管平滑肌用10(-6) M硝苯地平可完全舒张,而支气管平滑肌的舒张<50%。相反,硝苯地平可使氯化钾收缩的支气管平滑肌完全舒张。非特异性Ca2+通道阻滞剂Mn2+和Cd2+在每个组织中产生相似的舒张反应。因此,VDC是猪气管平滑肌中Ca2+内流的主要机制,但在卡巴胆碱收缩的猪支气管中,一条对二氢吡啶不敏感的途径在功能上很重要。区域差异可能解释了先前研究中明显的不一致之处。