Suppr超能文献

用于心肌灌注成像的双嘧达莫注射对血糖浓度的影响;一项初步研究。

Effect of Dipyridamole Injected for Myocardial Perfusion Imaging on Blood Glucose Concentration; A Preliminary Study.

作者信息

Khorasanchi Amirreza, Arabi Mohsen, Akhavein Alireza, Seyedabadi Mohammad, Eftekhari Mansooreh, Javadi Hamid, Nabipour Iraj, Assadi Majid

机构信息

Assistant Professor, Department of Nuclear Medicine, Faculty of Medicine, Imam Hossein Hospital, Shahroud University of Medical Sciences , Shahroud, Iran .

Assistant Professor, Department of Cardiology, Islamic Azad University Tehran Medical Branch, Tehran, Iran .

出版信息

J Clin Diagn Res. 2016 Aug;10(8):TC24-7. doi: 10.7860/JCDR/2016/19726.8373. Epub 2016 Aug 1.

Abstract

INTRODUCTION

Dipyridamole inhibits adenosine reuptake and increases cyclic Adenosine Monophosphate (cAMP) levels in platelets, erythrocytes and endothelial cells, all of which influence blood glucose. Acute hyperglycaemia reduces endothelium-dependent vasodilation and suppresses coronary microcirculation; which, in theory, can alter the outcome of a radionuclide scan.

AIM

The present study was conducted with the aim to investigate the changes in blood glucose level of patients receiving dipyridamole for cardiac scan.

MATERIALS AND METHODS

A total of 293 patients (85 men and 208 women, age: 60.59±10.43 years) were included in the study. Fasting Blood Glucose (FBG) was measured before and 8 min after dipyridamole (0.568 mg/kg) injection during myocardial perfusion imaging. The data in different groups were analysed by paired t-test.

RESULTS

There was not a significant difference between first (106.89 ± 19.21mg/dL) and second (107.98 ± 17.57 mg/dL) FBG measurements (p= 0.293). However, when the patients were grouped based on the quartiles of first measurement, there was an increase in FBG following dipyridamole injection in the first quartile (mean difference: 7.15±21.27 mg/dL, p<0.01); in contrast, FBG levels showed a significant decrease after dipyridamole administration in the 4(th) quartile (mean difference: -9.53±18.20 mg/dL, p<0.001). The differences in 2(nd) and 3(rd) quartiles were negligible. The patients were divided into normal, ischemic and fixed lesions based on the outcome of scans, then the possible correlation of dipyridamole-induced FBG alteration and scan results were investigated. There were no significant difference between the FBG values before and after dipyridamole injection and the final outcome of scan.

CONCLUSION

The effects of dipyridamole on blood glucose highly depend on the initial blood glucose level.

摘要

引言

双嘧达莫可抑制腺苷重摄取,并提高血小板、红细胞和内皮细胞中环磷酸腺苷(cAMP)水平,所有这些均会影响血糖。急性高血糖会降低内皮依赖性血管舒张并抑制冠状动脉微循环;理论上,这会改变放射性核素扫描的结果。

目的

本研究旨在调查接受双嘧达莫进行心脏扫描的患者血糖水平的变化。

材料与方法

本研究共纳入293例患者(85例男性和208例女性,年龄:60.59±10.43岁)。在心肌灌注成像期间,于注射双嘧达莫(0.568mg/kg)前及注射后8分钟测量空腹血糖(FBG)。不同组的数据采用配对t检验进行分析。

结果

首次(106.89±19.21mg/dL)和第二次(107.98±17.57mg/dL)FBG测量值之间无显著差异(p = 0.293)。然而,当根据首次测量的四分位数对患者进行分组时,第一四分位数组在注射双嘧达莫后FBG升高(平均差异:7.15±21.27mg/dL,p<0.01);相反,第四四分位数组在注射双嘧达莫后FBG水平显著降低(平均差异:-9.53±18.20mg/dL,p<0.001)。第二和第三四分位数组的差异可忽略不计。根据扫描结果将患者分为正常、缺血和固定病变组,然后研究双嘧达莫诱导的FBG改变与扫描结果之间的可能相关性。注射双嘧达莫前后的FBG值与扫描的最终结果之间无显著差异。

结论

双嘧达莫对血糖的影响高度依赖于初始血糖水平。

相似文献

1
Effect of Dipyridamole Injected for Myocardial Perfusion Imaging on Blood Glucose Concentration; A Preliminary Study.
J Clin Diagn Res. 2016 Aug;10(8):TC24-7. doi: 10.7860/JCDR/2016/19726.8373. Epub 2016 Aug 1.
2
[Myocardial microcirculation in humans--new approaches using MRI].
Herz. 2003 Mar;28(2):74-81. doi: 10.1007/s00059-003-2451-6.
5
Quantification of myocardial blood volume during dipyridamole and doubtamine stress: a perfusion CMR study.
J Cardiovasc Magn Reson. 2007;9(5):785-92. doi: 10.1080/10976640701545206.

引用本文的文献

本文引用的文献

1
ASNC imaging guidelines for SPECT nuclear cardiology procedures: Stress, protocols, and tracers.
J Nucl Cardiol. 2016 Jun;23(3):606-39. doi: 10.1007/s12350-015-0387-x.
2
Capturing maximal coronary vasodilation for myocardial perfusion imaging: is timing everything?
JACC Cardiovasc Imaging. 2015 Apr;8(4):499-500. doi: 10.1016/j.jcmg.2015.03.002.
4
Adenosine signaling promotes regeneration of pancreatic β cells in vivo.
Cell Metab. 2012 Jun 6;15(6):885-94. doi: 10.1016/j.cmet.2012.04.018. Epub 2012 May 17.
5
A(3) adenosine receptor: a plausible therapeutic target for cardio-protection in diabetes.
Recent Pat Cardiovasc Drug Discov. 2012 Apr;7(1):59-70. doi: 10.2174/157489012799362421.
6
Effects of adenosine, exercise, and moderate acute hypoxia on energy substrate utilization of human skeletal muscle.
Am J Physiol Regul Integr Comp Physiol. 2012 Feb 1;302(3):R385-90. doi: 10.1152/ajpregu.00245.2011. Epub 2011 Nov 30.
7
Adenosine and the regulation of metabolism and body temperature.
Adv Pharmacol. 2011;61:77-94. doi: 10.1016/B978-0-12-385526-8.00003-5.
8
Epac2-dependent rap1 activation and the control of islet insulin secretion by glucagon-like peptide-1.
Vitam Horm. 2010;84:279-302. doi: 10.1016/B978-0-12-381517-0.00010-2.
9
The association of dipyridamole side effects with hemodynamic parameters, ECG findings, and scintigraphy outcomes.
J Nucl Med Technol. 2010 Sep;38(3):149-52. doi: 10.2967/jnmt.109.072629. Epub 2010 Aug 19.
10
Advances in pharmacologic stress agents: focus on regadenoson.
J Nucl Med Technol. 2010 Sep;38(3):163-71. doi: 10.2967/jnmt.109.065581. Epub 2010 Aug 19.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验