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Negative interferences by calcium dobesilate in the detection of five serum analytes involving Trinder reaction-based assays

Author

Listed:
  • Xiuzhi Guo
  • Li’an Hou
  • Yicong Yin
  • Jie Wu
  • Fang Zhao
  • Liangyu Xia
  • Xinqi Cheng
  • Qian Liu
  • Li Liu
  • Ermu Xu
  • Ling Qiu

Abstract

Previously, we reported the strong negative interference of calcium dobesilate, a vasoprotective agent, in creatinine assays involving the Trinder reaction. It is hypothesized that a similar effect occurs in the detection of uric acid (UA), total cholesterol (TC), triglycerides (TG), high-density lipoprotein cholesterol (HDL-C), and low-density lipoprotein cholesterol (LDL-C). The interferences of calcium dobesilate during the detection of the five serum analytes were investigated on automated systems/analysers, and the effects were compared among eight different assay systems for each analyte. A calcium dobesilate standard was added into two sets of the blank serum pools of each analyte at final concentrations of 0, 2, 4, 8, 16, 32, and 64 μg/mL. The percentage deviation of each analyte value was calculated between each drug concentration and the drug-free samples. The clinically acceptable error levels for UA, TC, TG, HDL-C, and LDL-C were defined as ±4.87%, ±4.1%, ±9.57%, ±5.61%, and ±5.46%, respectively. The observed interference was concentration dependent for each analyte. In the presence of 16 μg/mL calcium dobesilate, which was within the therapeutic range, all seven Trinder reaction-based UA assay systems, two TG assay systems, two HDL-C assay systems and one TC assay system exhibited negative drug interferences. Calcium dobesilate negatively interferes with the detection of UA, TG, TC, and HDL-C in assay systems based on the Trinder reaction. The effect was most significant in UA and TG detection.

Suggested Citation

  • Xiuzhi Guo & Li’an Hou & Yicong Yin & Jie Wu & Fang Zhao & Liangyu Xia & Xinqi Cheng & Qian Liu & Li Liu & Ermu Xu & Ling Qiu, 2018. "Negative interferences by calcium dobesilate in the detection of five serum analytes involving Trinder reaction-based assays," PLOS ONE, Public Library of Science, vol. 13(2), pages 1-11, February.
  • Handle: RePEc:plo:pone00:0192440
    DOI: 10.1371/journal.pone.0192440
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