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临床试验/NCT04975906
NCT04975906已完成不适用

The Threshold of Serum Anion Gap as a Screening Tool for Organic Acidosis

Changi General Hospital1 个研究点 分布在 1 个国家目标入组 16,475 人开始时间: 2017年7月1日最近更新:
适应症

试验速览

阶段
不适用
状态
已完成
入组人数
16,475
试验地点
1
主要终点
An optimal cut-off threshold of Anion Gap

研究概览

简要总结

Background: The serum anion gap (AG) is commonly used as a screening tool for acid-base disorders. With modern laboratory techniques using ion-selective electrodes to measure the main electrolyte components of the AG, our definition high AG (HAGMA) should be reviewed.

Aim: This study aims to assess the diagnostic value of AG and to determine a diagnostic threshold for HAGMA in a high-prevalence clinical setting.

Method: Computerized extraction of anonymised data from electronic medical records was performed. A pre-defined criteria included all inpatients of an acute-care hospital who had measurements for organic acids (lactate, ketone or salicylate) paired with a serum urea, electrolyte and creatinine panel.

详细描述

BACKGROUND: The urea & electrolyte (U&E) panel is a common blood test that is often performed for any ill patients in a hospital. Evaluation of this panel can reveal serious underlying acid-base disturbances, often a harbinger of further haemodynamic compromise. The detection of a gap acidosis often is the first indicator of a serious underlying condition.

The AG is a reflection of the unmeasured anions. The anion gap (AG) is derived from the U&E panel by subtracting measured anions from measured cations:

AG = [Sodium] + [Potassium] - [Chloride] - [Bicarbonate] The serum potassium can be included in the calculation, but due to low variability of serum potassium, most clinicians omit serum potassium in the calculation of AG.

Accumulation of organic acids (e.g. lactic acid, ketones, uremic toxins) results in a high AG metabolic acidosis (HAGMA) and such patients have a significant risk of further clinical deterioration. It has however been challenging to assess for gap acidosis as the range for normal AG can vary greatly due to historical differences in the laboratory techniques used to measure the constituents of AG as well as a component of interindividual variability. In the past, AG were reported (in milliequivalents per liter, mEq/L) in the range of 9-17 milliequivalents/L or 8-16 milliequivalents/L with older laboratory techniques such as flame photometry, colorimetric method. In more recent years with the advent of use of ion-selective electrodes (ISE), published literature suggests that the AG range may be lower as the ISE may give higher readings of serum chloride. Some clinical texts and laboratories have listed the reference range of AG as 3-11 milliequivalents/L or 5-12 milliequivalents/L.

Despite so, the reference range for serum sodium, potassium and chloride themselves have remained the same over the years despite changes in laboratory techniques. With such conflicting information, it is important to re-evaluate the screening or diagnostic threshold of the AG based on modern laboratory techniques.

研究设计

研究类型
Observational
观察模型
Cohort
时间视角
Retrospective

入排标准

性别
All
接受健康志愿者

入选标准

  • Admitted from 01 July 2017 to 31 December 2019
  • Patients who have had blood lactate, blood ketones and serum salicylates performed during this time period
  • Patient who also had urea / creatinine and a comprehensive panel of electrolytes performed up to +/-12h of blood lactate, blood ketones and serum salicylates being performed

排除标准

  • Patient who did not have blood lactate, blood ketones and serum salicylates performed during this time period
  • Patient who did not have urea / creatinine and a comprehensive panel of electrolytes performed up to +/-12h of blood lactate, blood ketones and serum salicylates being performed

结局指标

主要结局

An optimal cut-off threshold of Anion Gap

时间窗: End of study period, estimated 3 years

The optimal cut-off threshold will be determined. At each cut-off level. the sensitivity and specificity will be calculated. One recommended cut-off value for Anion Gap with a sensitivity \>95% will be accepted.

Area Under the Curve of Receiver Operating Characteristics

时间窗: End of study period, estimated 3 years

An area under the curve (AUC) of receiver operating characteristics (ROC) of Anion Gap for the presence of organic acidosis will be calculated. An AUC \>0.8 suggests that Anion Gap performs well as a test for the presence of organic acidosis.

次要结局

  • Subgroup Analysis for Performance of Anion Gap as a screening test for Organic Acidosis(End of study period, estimated 3 years)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Chionh Chang Yin

Senior Consultant

Changi General Hospital

研究点 (1)

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