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高血压动脉平滑肌中的力-速度关系。

Force-velocity relationships in hypertensive arterial smooth muscle.

作者信息

Packer C S, Stephens N L

出版信息

Can J Physiol Pharmacol. 1985 Jun;63(6):669-74. doi: 10.1139/y85-111.

Abstract

Increased total peripheral resistance is the cardinal haemodynamic disorder in essential hypertension. This could be secondary to alterations in the mechanical properties of vascular smooth muscle. Adequate study has not been made of the force-velocity (F-V) relationship in hypertensive arterial smooth muscle. Increased shortening in arterial smooth muscle would result in greater narrowing of arteries. The objectives of this investigation were to see if there is (i) increased shortening or increased maximum change in muscle length (delta Lmax where L stands for muscle length), (ii) an increased maximum velocity of shortening (Vmax) measured in l omicron per second where l omicron is the optimal muscle length for tension development, and (iii) a difference in maximum isometric tension (P omicron) developed in spontaneously hypertensive rat (SHR; N = 6) compared with normotensive Wistar Kyoto rat (WKY;N = 5) caudal artery strips. An electromagnetic muscle lever was employed in recording force-velocity data. Analysis of these data revealed the following: (a) the SHR mean P omicron of 6.21 +/- 1.01 N/cm2 was not different from the mean WKY P omicron of 6.97 +/- 1.64 N/cm2 (p greater than 0.05); (b) the SHR preparations showed greater shortening for all loads imposed; (c) the SHR Vmax of 0.016 l omicron/s was greater than the WKY Vmax of 0.013 l omicron/s (p less than 0.05). This study provides evidence that while hypertensive arterial smooth muscle is not able to produce more force than normotensive arterial smooth muscle, it is capable of faster and greater shortening. The latter could result in increased narrowing of hypertensive arteries and increased blood pressure.

摘要

总外周阻力增加是原发性高血压的主要血流动力学紊乱。这可能继发于血管平滑肌力学特性的改变。尚未对高血压动脉平滑肌的力-速度(F-V)关系进行充分研究。动脉平滑肌缩短增加会导致动脉更严重的狭窄。本研究的目的是观察是否存在:(i)缩短增加或肌肉长度的最大变化增加(ΔLmax,其中L代表肌肉长度);(ii)以微米每秒为单位测量的最大缩短速度(Vmax)增加,其中微米是产生张力的最佳肌肉长度;(iii)自发性高血压大鼠(SHR;N = 6)与正常血压的Wistar Kyoto大鼠(WKY;N = 5)尾动脉条带产生的最大等长张力(P0)存在差异。使用电磁肌肉杠杆记录力-速度数据。对这些数据的分析显示如下:(a)SHR的平均P0为6.21±1.01 N/cm2,与WKY的平均P0 6.97±1.64 N/cm2无差异(p>0.05);(b)SHR制剂在施加的所有负荷下均表现出更大的缩短;(c)SHR的Vmax为0.016微米/秒,大于WKY的Vmax 0.013微米/秒(p<0.05)。这项研究提供了证据,即虽然高血压动脉平滑肌产生的力量并不比正常血压动脉平滑肌更大,但它能够更快、更大程度地缩短。后者可能导致高血压动脉狭窄增加和血压升高。

相似文献

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Tension-velocity relationships in hypertensive mesenteric resistance arteries.
Can J Physiol Pharmacol. 1985 Jun;63(6):675-80. doi: 10.1139/y85-112.
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Arterial muscle myosin heavy chains and light chains in spontaneous hypertension.自发性高血压中的动脉肌球蛋白重链和轻链
Comp Biochem Physiol B Biochem Mol Biol. 1997 May;117(1):19-28. doi: 10.1016/s0305-0491(96)00311-2.

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