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首页> 外文期刊>Annals of Medicine and Surgery >Development of a point-of-contact technique to measure adenosine triphosphate: A quality improvement study
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Development of a point-of-contact technique to measure adenosine triphosphate: A quality improvement study

机译:一种用于测量三磷酸腺苷的接触点技术的开发:质量改进研究

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PurposePatients with heart failure with preserved ejection fraction (HFpEF) experience fatigue due to impaired myocardial bioenergetics. Cardiomyocyte function depends on the delivery of adenosine triphosphate (ATP), yet there is no convenient bedside method to measure ATP. The purpose of this study was to develop a point-of-contact measurement of ATP that can be used in a clinical setting.MethodsIn a laboratory setting, digital finger punctures were conducted using 5?μl and 10?μl of capillary blood placed into various amounts of water (H2O). After mixing the solution for 10?s, a Hygiena AquaSnapTM Free ATP probe was placed into the solution for 10?s for the detection of ATP. The probe was then placed into the Hygiena luminometer for 15?s, and a value in relative light units (RLU) was obtained.ResultsTest samples using 10?μl of blood diluted from 50 to 500?mls of H2O produced ATP readings of 10,000-7569 RLUs. Using 5?μl of blood in 375–900?ml of H2O decreased the ATP values to 6459-4189 RLUs. Dilutional volume sparing experiments were conducted with ATP standards to determine the concentration of ATP per RLUs.ConclusionPatients with HFpEF have increased metabolic demand and impaired myocardial bioenergetics. Thus, identifying a method to measure ATP that is quick and accurate is imperative to accurately assess cellular energy production in this population. Point-of-contact measures, such as ATP, are needed for precision-guided treatment. Data from this study provides the first step toward developing evidence for health policies related to managing fatigue.
机译:目的保留射血分数(HFpEF)的心力衰竭患者会因心肌生物能受损而感到疲劳。心肌细胞功能取决于三磷酸腺苷(ATP)的递送,但尚无简便的床旁方法可测量ATP。这项研究的目的是开发一种可在临床环境中使用的ATP接触点测量方法。方法在实验室环境中,使用5?μl和10?μl的毛细血管血进行数字手指穿刺适量的水(H2O)。混合溶液10秒钟后,将Hygiena AquaSnapTM Free ATP探针放入溶液中10秒钟,以检测ATP。然后将探头放入Hygiena光度计中15 s,获得相对光单位(RLU)值。结果使用从50到500微升H2O中稀释的10微升血液测试样品产生的ATP读数为10,000- 7569个RLU。在375–900?ml H2O中使用5?l血液可将ATP值降至6459-4189 RLU。用ATP标准品进行了稀释量节约实验,以确定每个RLU的ATP浓度。结论HFpEF患者的代谢需求增加,心肌生物能量学受损。因此,确定一种快速而准确的测量ATP的方法对准确评估该人群的细胞能量产生至关重要。精确引导治疗需要接触点测量,例如ATP。这项研究的数据为朝着开发与疲劳管理有关的健康政策提供证据迈出了第一步。

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