Stress Hyperglycemia and Osteocalcin in COVID-19 Critically Ill Patients on Artificial Nutrition

Nutrients. 2021 Aug 28;13(9):3010. doi: 10.3390/nu13093010.

Abstract

We aimed to study the possible association of stress hyperglycemia in COVID-19 critically ill patients with prognosis, artificial nutrition, circulating osteocalcin, and other serum markers of inflammation and compare them with non-COVID-19 patients. Fifty-two critical patients at the intensive care unit (ICU), 26 with COVID-19 and 26 non-COVID-19, were included. Glycemic control, delivery of artificial nutrition, serum osteocalcin, total and ICU stays, and mortality were recorded. Patients with COVID-19 had higher ICU stays, were on artificial nutrition for longer (p = 0.004), and needed more frequently insulin infusion therapy (p = 0.022) to control stress hyperglycemia. The need for insulin infusion therapy was associated with higher energy (p = 0.001) and glucose delivered through artificial nutrition (p = 0.040). Those patients with stress hyperglycemia showed higher ICU stays (23 ± 17 vs. 11 ± 13 days, p = 0.007). Serum osteocalcin was a good marker for hyperglycemia, as it inversely correlated with glycemia at admission in the ICU (r = -0.476, p = 0.001) and at days 2 (r = -0.409, p = 0.007) and 3 (r = -0.351, p = 0.049). In conclusion, hyperglycemia in critically ill COVID-19 patients was associated with longer ICU stays. Low circulating osteocalcin was a good marker for stress hyperglycemia.

Keywords: COVID-19; enteral nutrition; hyperglycemia; osteocalcin; parenteral nutrition.

MeSH terms

  • Aged
  • Biomarkers / blood
  • COVID-19 / blood*
  • COVID-19 / complications
  • COVID-19 / mortality
  • Critical Care Outcomes
  • Critical Illness / mortality
  • Female
  • Humans
  • Hyperglycemia / blood*
  • Hyperglycemia / mortality
  • Hyperglycemia / virology
  • Intensive Care Units
  • Length of Stay / statistics & numerical data
  • Male
  • Middle Aged
  • Osteocalcin / blood*
  • Parenteral Nutrition / mortality*
  • Prognosis
  • SARS-CoV-2*

Substances

  • Biomarkers
  • Osteocalcin