Boels P J, Arner A, Malmqvist U, Uvelius B
Department of Physiology and Biophysics, Lund University, Sweden.
Pflugers Arch. 1994 Apr;426(6):506-15. doi: 10.1007/BF00378528.
Rat bladder hypertrophy, induced by a partial ligation of the urethra, was used to study the accompanying changes of microvascular smooth muscle mechanics, pharmacology and morphology. A segment of a microarterial vessel to the bladder was taken from a defined anatomical location and studied in a wire myograph in vitro at the length for maximal isometric force development (Lmax). After 10 days of ligation, bladder hypertrophy resulted in a microvascular growth response compared to non-operated controls which was characterized by (i) an increase of the calculated diameter at Lmax from 134 +/- 5 microns to 222 +/- 19 microns; (ii) an increase of the media thickness from 22.4 +/- 1.9 microns to 32.2 +2- 3.0 microns; (iii) an increase of the active tension from 1.42 +/- 0.28 mN/mm to 3.06 +/- 0.33 mN/mm; (iv) no change of the wall/lumen ratio (from 0.83 +/- 0.10 to 0.79 +/- 0.15). Normalized length/force relations (active, passive and total) did not differ significantly between microarteries from control and hypertrophic bladders. Microvascular smooth muscle growth was also associated with a decreased sensitivity to K(+)-induced depolarization and an increased sensitivity to alpha 1-adrenergic stimulation. No differences were noted regarding the Ca2+ sensitivity of force during K(+)-induced depolarization. The results suggest that microvascular growth (1) is immediately and positively influenced by the organ growth; (2) results in a functional resetting of the microvascular segments towards larger diameters without gross morphological or mechanical alterations; and (3) is accompanied by pharmacological alterations of the smooth muscle reactivity.
通过部分结扎尿道诱导大鼠膀胱肥大,用于研究伴随的微血管平滑肌力学、药理学和形态学变化。从特定解剖位置获取膀胱微动脉血管段,在体外的线肌张力测定仪中于产生最大等长力的长度(Lmax)下进行研究。结扎10天后,与未手术的对照组相比,膀胱肥大导致微血管生长反应,其特征为:(i)Lmax处计算直径从134±5微米增加到222±19微米;(ii)中膜厚度从22.4±1.9微米增加到32.2±3.0微米;(iii)主动张力从1.42±0.28毫牛/毫米增加到3.06±0.33毫牛/毫米;(iv)壁/腔比值无变化(从0.83±0.10到0.79±0.1)。对照和肥大膀胱的微动脉之间,归一化长度/力关系(主动力、被动力和总力)无显著差异。微血管平滑肌生长还与对钾离子诱导去极化的敏感性降低以及对α1-肾上腺素能刺激的敏感性增加有关。在钾离子诱导去极化期间,力的钙离子敏感性未观察到差异。结果表明,微血管生长(1)立即受到器官生长的正向影响;(2)导致微血管段功能重置为更大直径,而无明显形态或力学改变;(3)伴有平滑肌反应性的药理学改变。