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Published on: May 26, 2022
A pilot study to assess the circulating renin-angiotensin system in COVID-19 acute respiratory failure
D Clark Files1, Kevin W Gibbs1, Christopher L Schaich1
1Wake Forest School of Medicine, Winston-Salem, North Carolina.
Abstract:
The renin-angiotensin system (RAS) is fundamental to COVID-19 pathobiology, due to the interaction between the SARS-CoV-2 virus and the angiotensin-converting enzyme 2 (ACE2) coreceptor for cellular entry. The prevailing hypothesis is that SARS-CoV-2-ACE2 interactions lead to an imbalance of the RAS, favoring proinflammatory angiotensin II (ANG II)-related signaling at the expense of the anti-inflammatory ANG-(1-7)-mediated alternative pathway. Indeed, multiple clinical trials targeting this pathway in COVID-19 are underway. Therefore, precise measurement of circulating RAS components is critical to understand the interplay of the RAS on COVID-19 outcomes. Multiple challenges exist in measuring the RAS in COVID-19, including improper patient controls, ex vivo degradation and low concentrations of angiotensins, and unvalidated laboratory assays. Here, we conducted a prospective pilot study to enroll 33 patients with moderate and severe COVID-19 and physiologically matched COVID-19-negative controls to quantify the circulating RAS. Our enrollment strategy led to physiological matching of COVID-19-negative and COVID-19-positive moderate hypoxic respiratory failure cohorts, in contrast to the severe COVID-19 cohort, which had increased severity of illness, prolonged intensive care unit (ICU) stay, and increased mortality. Circulating ANG II and ANG-(1-7) levels were measured in the low picomolar (pM) range. We found no significant differences in circulating RAS peptides or peptidases between these three cohorts. The combined moderate and severe COVID-19-positive cohorts demonstrated a mild reduction in ACE activity compared with COVID-19-negative controls (2.2 ± 0.9 × 105 vs. 2.9 ± 0.8 × 105 RFU/mL, P = 0.03). These methods may be useful in designing larger studies to physiologically match patients and quantify the RAS in COVID-19 RAS augmenting clinical trials.
Insights
This study investigated the renin-angiotensin system (RAS) in COVID-19 patients, finding no significant differences in key RAS peptides. Mild ACE activity reduction was observed in COVID-19 cases, suggesting complex RAS involvement.
Area of Science:
- Biochemistry
- Immunology
- Virology
Background:
- The renin-angiotensin system (RAS) plays a crucial role in COVID-19 pathogenesis, involving SARS-CoV-2 interaction with ACE2.
- Imbalances in RAS signaling, particularly favoring angiotensin II (ANG II) over angiotensin-(1-7), are hypothesized in COVID-19.
- Accurate measurement of RAS components is vital for understanding COVID-19 outcomes, but faces challenges like ex vivo degradation and assay validation.
Purpose of the Study:
- To quantify circulating RAS components in COVID-19 patients compared to matched controls.
- To investigate potential alterations in RAS peptide and peptidase levels due to SARS-CoV-2 infection.
- To assess the feasibility of precise RAS quantification in a pilot study setting.
Main Methods:
- A prospective pilot study enrolled 33 moderate/severe COVID-19 patients and matched controls.
- Physiological matching was employed for moderate hypoxic respiratory failure cohorts.
- Circulating angiotensin II (ANG II) and ANG-(1-7) were measured, alongside ACE activity.
Main Results:
- No significant differences were found in circulating RAS peptides or peptidases between COVID-19 and control groups.
- A mild reduction in ACE activity was observed in combined moderate and severe COVID-19 cohorts versus controls (P = 0.03).
- Severe COVID-19 cohort showed increased illness severity, prolonged ICU stay, and higher mortality.
Conclusions:
- Circulating RAS peptide levels did not significantly differ between COVID-19 patients and controls in this pilot study.
- ACE activity showed a mild reduction in COVID-19 patients, indicating potential RAS pathway alterations.
- The study highlights the importance of physiological matching and validated assays for future RAS research in COVID-19.
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