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Diabetes-induced alternations in biomechanical properties of urinary bladder wall in rats.

机译:糖尿病引起的大鼠膀胱壁生物力学特性的变化。

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OBJECTIVES: To determine whether diabetes mellitus and the associated changes in bladder function will trigger bladder wall tissue remodeling and concomitant alterations in the mechanical properties. We investigated the time course of changes in function and mechanical properties of diabetic and diuretic rat bladders using both in vivo and in vitro techniques METHODS: Cystometry was performed at 2, 4, and 8 weeks on female Sprague-Dawley rats that had received either a single injection of streptozotocin (65 mg/kg intraperitoneally) or 5% sucrose in drinking water for the duration of the experiments. At each point, the biaxial mechanical properties of 10 x 10-mm tissue specimens obtained from the posterior part of bladder wall were quantified. The changes in overall tissue compliance and mechanical anisotropy as a function of time were examined RESULTS: Both diabetic and diuretic conditions led to increases in bladder weight, bladder capacity, and in vivo compliance compared with the controls at all points tested. Under biaxial loading, all bladder wall tissues exhibited a nonlinear stress-strain relationship and mechanical anisotropy, with greater tissue compliance in the circumferential direction than in the longitudinal direction. Although the compliance of the bladder wall increased progressively and synchronously in both diabetic and diuretic bladders for < or = 4 weeks, only the diabetic bladders continued to increase the compliance for < or = 8 weeks (diabetic 0.64 +/- 0.04 vs diuretic 0.48 +/- 0.05, P = .03) CONCLUSIONS: The results of our study have shown that diuresis mainly contributes to the "early" changes of mechanical properties of the bladder, with diabetes inducing additional "late" changes of mechanical properties of the rat bladders after 4 weeks.
机译:目的:确定糖尿病和膀胱功能的相关变化是否会触发膀胱壁组织重塑和机械特性的改变。我们使用体内和体外技术研究了糖尿病和利尿大鼠膀胱功能和机械性能变化的时程。方法:对接受了两种药物治疗的雌性Sprague-Dawley大鼠在第2、4和8周进行膀胱测压在实验过程中,在饮用水中单次注射链脲佐菌素(腹膜内65 mg / kg)或5%蔗糖。在每个点,量化从膀胱壁后部获得的10 x 10 mm组织标本的双轴力学性能。结果:与对照组相比,糖尿病和利尿情况均导致膀胱重量,膀胱容量和体内顺应性增加,所有时间点的对照组均发生了变化。在双轴负荷下,所有膀胱壁组织均表现出非线性应力-应变关系和机械各向异性,其在圆周方向上的组织顺应性比在纵向上的更大。尽管在≤4周内,糖尿病和利尿膀胱的膀胱壁顺应性逐渐增加并同步增加,但只有糖尿病膀胱在<或= 8周内持续增加顺应性(糖尿病0.64 +/- 0.04 vs利尿0.48 + /-0.05,P = .03)结论:我们的研究结果表明,利尿作用主要是导致膀胱机械性能的“早期”变化,而糖尿病会引起大鼠膀胱机械特性的“后期”变化。 4周后。

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