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使用微管作为体内阻力血管模型测定红细胞中ATP的释放。

Determination of ATP release from erythrocytes using microbore tubing as a model of resistance vessels in vivo.

作者信息

Sprung Robert, Sprague Randy, Spence Dana

机构信息

Department of Chemistry, Saint Louis University, Missouri 63103, USA.

出版信息

Anal Chem. 2002 May 15;74(10):2274-8. doi: 10.1021/ac011144e.

Abstract

A biomimetic model is described for the detection of adenosine triphosphate (ATP) release from red blood cells (RBCs) as they traverse fused-silica tubing ranging in i.d. from 25 to 75 microm. A continuous flow system is employed to create stress on the RBCs once they have entered the microbore tubing. This stress induces release of RBC-derived ATP, which is known to stimulate nitric oxide production in endothelial cells, resulting in eventual dilation of arterial smooth muscle. In this study, the RBCs were subjected to variations in tubing length and inside diameter. In a 25-microm-i.d. tube, the amount of ATP released from the RBCs increased from 3.74 +/- 0.56 to 9.55 +/- 0.73 microM as the tubing length was increased from 35 to 100 cm. In addition, for a 100-cm-length tube, the amount of ATP released from the RBCs increased from 3.03 +/- 0.49 to 9.55 +/- 0.73 microM as the inside diameter of the tubing decreased from 75 to 25 microm. To demonstrate that the erythrocytes were not being lysed inside the fused-silica tubing, dog RBCs, which are known to contain amounts of ATP similar to those of rabbit but do not release that ATP under physiological conditions, were investigated. It was determined that the dog RBCs released < 1 microM of ATP when passed through tubing with a 25-microm i.d. and a length of 100 cm.

摘要

本文描述了一种仿生模型,用于检测红细胞(RBC)在穿过内径为25至75微米的熔融石英管时三磷酸腺苷(ATP)的释放情况。采用连续流动系统,使红细胞一旦进入微管就受到应力作用。这种应力会诱导红细胞源性ATP的释放,已知该ATP能刺激内皮细胞产生一氧化氮,最终导致动脉平滑肌舒张。在本研究中,对红细胞施加了不同的管长和内径变化。在一根内径为25微米的管中,当管长从35厘米增加到100厘米时,红细胞释放的ATP量从3.74±0.56微摩尔增加到9.55±0.73微摩尔。此外,对于一根长度为100厘米的管,当管的内径从75微米减小到25微米时,红细胞释放的ATP量从3.03±0.49微摩尔增加到9.55±0.73微摩尔。为了证明红细胞在熔融石英管内没有被裂解,对犬红细胞进行了研究,已知犬红细胞所含ATP量与兔红细胞相似,但在生理条件下不会释放该ATP。结果表明,犬红细胞通过内径为25微米、长度为100厘米的管时,释放的ATP<1微摩尔。

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