Sirolimus changes lipid concentrations and lipoprotein metabolism in kidney transplant recipients

J D Morrisett1, G Abdel-Fattah, B D Kahan

  • 1Department of Medicine, Baylor College of Medicine, Houston, Texas, USA. morrisset@bcm.tmc.edu

Abstract

Insights

Sirolimus treatment in kidney transplant recipients causes repeatable, reversible, and dose-dependent hyperlipidemia, including increased triglycerides and apolipoproteins. This suggests sirolimus alters lipid metabolism, potentially impacting vascular health.

Area of Science:

  • Nephrology
  • Pharmacology
  • Biochemistry

Background:

  • Sirolimus is a potent immunosuppressant crucial for preventing kidney transplant rejection.
  • Hyperlipidemia is a known adverse effect of sirolimus, increasing the risk of vascular disease.
  • Understanding sirolimus-induced lipid changes is vital for managing transplant recipients.

Purpose of the Study:

  • To investigate the repeatability, reversibility, and dose-dependency of sirolimus's effects on plasma lipids and apolipoproteins.
  • To elucidate the mechanism behind sirolimus-induced hypertriglyceridemia in kidney transplant patients.

Main Methods:

  • Six kidney transplant patients with prior hyperlipidemic response to sirolimus were studied.
  • Sirolimus was administered at 10 mg/d for 42 days to reinduce hyperlipidemia.
  • Plasma lipid, apoprotein, and sirolimus levels were monitored; metabolic studies used [(13)C(4)]-palmitate.

Main Results:

  • Sirolimus significantly increased total cholesterol (+50%), LDL-cholesterol, triglycerides (+95%), ApoB-100 (+28%), and ApoC-III (+92%).
  • These lipid and apoprotein alterations were repeatable, reversible, and dose-dependent.
  • Metabolic studies showed expanded free fatty acid pools and decreased triglyceride incorporation into VLDL, IDL, and LDL.

Conclusions:

  • Sirolimus alters insulin signaling, potentially increasing adipose tissue lipase and decreasing lipoprotein lipase activity.
  • This leads to increased hepatic triglyceride synthesis and VLDL secretion, causing hypertriglyceridemia.
  • Findings highlight sirolimus's significant impact on lipid metabolism in kidney transplant recipients.

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