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May 20, 2026American Journal of Respiratory and Critical Care Medicine0 citations

C74-02 Quantitative Profiling of Plasma Apelin Isoforms in Critical Illness Using UHPLC-MS/MS

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CKC -C C KeyJLJ LeeCSC Schaich

Key Points

  • This research aims to quantify plasma Apelin-13 isoforms in critically ill patients to understand apelin signaling in critical illness.
  • Quantified Apelin-13 using ELISA and UHPLC-MS/MS on EDTA-treated human plasma samples.
  • Developed a method utilizing parallel-reaction monitoring (PRM) for detection of [Pyr¹]Apelin-13.
  • Analyzed samples from critically ill patients and outpatient controls with specific attention to COVID-19 cases.
  • Plasma Apelin-13 levels were 170.6 ± 44.7 pg/mL in critically ill patients versus 201.4 ± 14.9 pg/mL in controls (p = 0.0008).
  • The UHPLC-MS/MS method displayed linear peak responses at femtomolar concentrations, confirming high sensitivity.
  • Both oxidized and unoxidized forms of [Pyr¹]Apelin-13 were measurable in COVID-19 patient samples.

Abstract

Abstract Rationale The apelin and its receptor APJ signaling pathway plays an important role in regulating cardiovascular, pulmonary, and metabolic homeostasis. Apelin is processed into active fragments, including Apelin-13, which can be cyclized to form Pyr¹Apelin-13, the predominant isoform in human plasma. This modification enhances peptide stability and prolongs half-life by preventing aminopeptidase degradation. Despite its physiological importance, the role of apelin/APJ signaling in critical illness remains understudied, partly due to challenges in accurately quantifying Pyr¹Apelin-13. Methods We quantified Apelin-13 using a commercial ELISA and developed a robust analytical method utilizing parallel-reaction monitoring (PRM) on an Orbitrap mass spectrometer coupled with nano-scale ultra-high performance liquid chromatography (UHPLC) to quantify Pyr¹Apelin-13 in EDTA-treated human plasma samples. Results Plasma Apelin-13 levels were significantly lower in critically ill patients with acute respiratory failure (n = 137; mean 170.6 ± 44.7 pg/mL) compared to outpatient controls (n = 25; mean 201.4 ± 14.9 pg/mL; p = 0.0008) using ELISA. Our UHPLC-MS/MS platform, calibrated with authentic Pyr¹Apelin-13 standards, demonstrated linear peak responses at femtomolar concentrations, confirming the sensitivity and specificity. In plasma samples from two hospitalized COVID-19 patients, both unoxidized and oxidized Pyr¹Apelin-13 isoforms were detectable, validating the feasibility of this approach for clinical samples. Conclusion Total Apelin-13 is reduced in critical illness. Our PRM-based UHPLC-MS/MS method enables precise quantification of Pyr¹Apelin-13 isoforms in human plasma, providing a powerful tool for future investigations into apelin signaling in disease states and its potential as a biomarker or therapeutic target. This abstract is funded by: None

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Cite This Study

Key et al. (2026) studied this question.

synapsesocial.com/papers/6a0d5025f03e14405aa9bce3https://doi.org/10.1093/ajrccm/aamag162.210
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