首页> 外文期刊>American Journal of Physiology >Volume-sensitive outwardly rectifying chloride channel in white adipocytes from normal and diabetic mice.
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Volume-sensitive outwardly rectifying chloride channel in white adipocytes from normal and diabetic mice.

机译:来自正常和糖尿病小鼠的白色脂肪细胞中的体积敏感向外整流氯化物通道。

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摘要

The volume-sensitive outwardly rectifying (VSOR) chloride channel is ubiquitously expressed and involved in cell volume regulation after osmotic swelling, called regulatory volume decrease (RVD), in various cell types. In adipocytes, the expression of the VSOR channel has not been explored to date. Here, by employing the whole-cell patch-clamp technique, we examined whether or not the VSOR channel is expressed in white adipocytes freshly isolated from epididymal fat pads of normal (C57BL/6 or KK) and diabetic (KKA(y)) mice. Whole cell voltage-clamp recordings revealed that Cl(-) currents were gradually activated upon cell swelling induced by application of a hypotonic solution, both in normal and diabetic adipocytes. Although both the mean cell size (or cell capacitance) and the current magnitude in KKA(y) adipocytes were larger than those in C57BL/6 cells, the current density was significantly lower in KKA(y) adipocytes (23.32 +/- 1.94 pA in C57BL/6 adipocytes vs. 13.04 +/- 2.41 pA in KKA(y) adipocytes at +100 mV). Similarly, the current density in diabetic KKA(y) adipocytes was lower than that in adipocytes from KK mice (a parental strain of KKA(y) mice), which do not present diabetes until an older age. The current was inhibited by Cl(-) channel blockers, 5-nitro-2-(3-phenylpropylamino)benzoic acid (NPPB) and glibenclamide, or hypertonic solution, and showed outward rectification and inactivation kinetics at large positive potentials. These electrophysiological and pharmacological properties are consistent with those of the VSOR channel in other cell types. Moreover, adipocytes showed RVD, which was inhibited by NPPB. In KKA(y) adipocytes, RVD was significantly slower (tau; 8.42 min in C57BL/6 adipocytes vs. 11.97 min in KKA(y) adipocytes) and incomplete during the recording period (25 min). It is concluded that the VSOR channel is functionally expressed and involved in volume regulation in white adipocytes. RVD is largely impaired in adipocytes from diabetic mice, presumably as a consequence of the lower density of the functional VSOR channel in the plasma membrane.
机译:体积敏感的向外整流(VSOR)氯化物通道普遍地表达并涉及渗透肿胀后的细胞体积调节,称为调节体积减少(RVD),在各种细胞类型中。在脂肪细胞中,迄今尚未探讨vsor频道的表达。这里,通过采用全细胞补丁钳技术,我们检查了VSOR通道是否以正常(C57BL / 6或KK)和糖尿病(KKA(Y))小鼠新鲜分离的白色分离出的白色脂肪细胞。整个电池电压夹具录制显示Cl( - )电流在正常和糖尿病脂肪细胞中施用低渗溶液施用的细胞溶胀时逐渐激活。尽管平均细胞尺寸(或细胞电容)和KKA(Y)adipocytes中的当前幅度大于C57BL / 6细胞中的电流,但KKA(Y)adipocytes的电流密度显着降低(23.32 +/- 1.94 PA在C57BL / 6 adipocytes vs..13.04 +/- 2.41 pa在kka(y)adipocytes at +100 mV)。类似地,糖尿病KKA(Y)脂肪细胞的电流密度低于来自KK小鼠的脂肪细胞(KKA(Y)小鼠的父母菌株),其在较老年期内没有呈现糖尿病。 Cl( - )通道阻滞剂,5-硝基-2-(3-苯基丙基氨基)苯甲酸(NPPB)和Glibenclamide或高渗溶液抑制电流,并在大阳性电位下显示出外整流和灭活动力学。这些电生理学和药理学特性与其他细胞类型中的vsor通道的那些一致。此外,脂肪细胞显示RVD,其被NPPB抑制。在KKA(Y)adipocytes中,RVD显着较慢(TAU;在C57BL / 6 adipocytes中,在KKA(Y)adipocytes中的11.97分钟中,在录音期间(25分钟)不完整。得出结论,vSOR通道在功能上表达并参与了白色脂肪细胞的体积调节。 RVD在糖尿病小鼠的脂肪细胞中大量损害,可能是由于质膜中功能vsor通道的较低密度的结果。

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