4.7 Article

Vitamin K Effects on Gas6 and Soluble Axl Receptors in Intensive Care Patients: An Observational Screening Study

期刊

NUTRIENTS
卷 13, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/nu13114101

关键词

Gas6; Axl receptor; endothelial dysfunction; prothrombin time; Gla protein; thrombin generation; intensive care; vitamin K

资金

  1. Regional Research Funding Region Skane (T.K), Lund University ISEX-ALF
  2. CSL Behring, Sweden

向作者/读者索取更多资源

The study aimed to evaluate the effects of intravenously administered vitamin K1 on Gas6 and its sAxl receptor levels in intensive care patients. Results showed a small increase in Gas6 after vitamin K1 injection, with no significant changes in sAxl levels. Gas6 was not correlated with PT-INR and coagulation factors, but showed association with protein S and dp-ucMGP.
Growth arrest-specific gene 6 protein (Gas6) is avitamin K-dependent tissue bound protein. Gas6 has been shown to promote growth and therapy resistance among different types of cancer as well as thromboembolism. The aim of this prospective screening study: ClinicalTrials.gov; Identifier: NTC3782025, was to evaluate the effects of intravenously administered vitamin K1 on Gas6 and its soluble (s)Axl receptor plasma levels in intensive care patients. Vitamin K1 was intravenously injected in non-warfarin treated patients with prolonged Owren prothrombin time international normalized ratio (PT-INR) > 1.2 and blood samples were retrieved before and 20-28 h after injection. Citrate plasma samples from 52 intensive care patients were analysed for different vitamin K dependent proteins. There was a significant, but small increase in median Gas6. Only one patient had a large increase in sAxl, but overall, no significant changes in sAxl Gas6 did not correlate to PT-INR, thrombin generation assay, coagulation factors II, VII, IX and X, but to protein S and decarboxylated matrix Gla protein (dp-ucMGP). In conclusion, there was a small increase in Gas6 over 20-28 h. The pathophysiology and clinical importance of this remains to be investigated. To verify a true vitamin K effect, improvement of Gas6 carboxylation defects needs to be studied.

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