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Lp(a) falls 21% within weeks of kidney transplant, unrelated to autotaxin activity, Polish cohort of 55 (Int J Mol Sci 2026)

Original title: Early Post-Transplant Changes in Lipoprotein(a), Autotaxin Activity, and Lipid Profile: A Prospective Observational Study of Tacrolimus-Treated Kidney Transplant Recipients in Poland

Int J Mol Sci · · 6

Bzoma B, Kuchta A, Dzwonkowska M, Kazimierska D, Jankowski M, Dębska-Ślizień A

Prospective study of 55 Caucasian patients with CKD stage 5 (mostly dialysis-dependent) in Poland, measuring Lp(a), autotaxin (ATX) activity, paraoxonase-1 (PON-1) activity and lipid profile before and 2-3 weeks after kidney transplantation under tacrolimus-based immunosuppression. Lp(a) fell by a median 21% and ATX activity by 28% (both p<0.001), with no cross-sectional or longitudinal association between the two, either before or after transplant. Conventional lipid fractions rose significantly (total cholesterol +22%, LDL-C +27%, HDL-C +24%, triglycerides +55%, all p<0.001), and PON-1 activity increased about 13% (p<0.001), correlating with the HDL-C rise. Patients with eGFR below 45 mL/min/1.73m2 showed a smaller Lp(a) decline than those with better graft function (-4.8% vs -26.7%, p=0.009), though no demographic or treatment factor independently predicted the magnitude of Lp(a) reduction. The authors conclude early post-transplant Lp(a) decline may partly reflect recovering renal function, independent of autotaxin activity, though causality remains unestablished.

Read the paper (DOI)PubMed

Original abstract

Kidney transplantation (KTx) corrects many uremia-related metabolic disturbances; however, dyslipidemia remains common in kidney transplant recipients and contributes to persistent cardiovascular risk. Lipoprotein(a) [Lp(a)] is a largely genetically determined proatherogenic lipoprotein that increases in advanced chronic kidney disease (CKD) and may decrease after restoration of renal function. Autotaxin (ATX), an enzyme involved in proinflammatory lipid signaling through the ATX-lysophosphatidic acid axis, has also been implicated in cardiovascular pathology, but its early post-transplant dynamics remain poorly characterized. In addition to quantitative lipid abnormalities, CKD is associated with high-density lipoprotein (HDL) dysfunction and reduced paraoxonase-1 (PON-1) activity; however, data on early post-transplant changes in PON-1 activity are limited. In this prospective observational study, lipid profile parameters, Lp(a) concentration, ATX activity, and PON-1 activity were assessed in 55 Caucasian patients with CKD stage 5, most of whom were dialysis-dependent, before and 2-3 weeks after KTx. All recipients received tacrolimus-based maintenance immunosuppression with corticosteroids and mycophenolate mofetil. After KTx, Lp(a) levels decreased by a median of 21% and ATX activity by 28% (both p < 0.001). Lp(a) and ATX showed no cross-sectional or longitudinal association either before or after transplantation, and their percentage changes were not correlated. In contrast, conventional lipid fractions increased significantly, including total cholesterol (+22%), LDL cholesterol (+27%), HDL cholesterol (+24%), and triglycerides (+55%) (all p < 0.001). PON-1 activity increased by approximately 13% after KTx (p < 0.001), and its percentage change correlated positively with the increase in HDL cholesterol. In exploratory analyses, the magnitude of Lp(a) reduction was associated with early graft function: patients with eGFR <45 mL/min/1.73 m2 exhibited a significantly smaller decline in Lp(a) than those with better graft function (-4.8% vs. -26.7%, p = 0.009). Multivariable analysis showed that demographic characteristics, body mass index, tacrolimus exposure, and post-transplant eGFR did not independently predict the magnitude of Lp(a) reduction. Tacrolimus trough concentrations and cumulative corticosteroid exposure were not associated with lipid parameters or their changes, except for a single subgroup difference in PON-1 activity of uncertain clinical significance. In summary, in the early period after KTx under tacrolimus-based immunosuppression, Lp(a) concentration and ATX activity decrease, whereas conventional lipid fractions increase and PON-1 activity improves. These changes were not associated with tacrolimus exposure or cumulative corticosteroid dose. The reduction in Lp(a) was associated with early graft function in exploratory analyses, suggesting that recovery of renal function may contribute to early post-transplant Lp(a) dynamics; however, no independent causal relationship was established, and the findings should be interpreted cautiously given the limited sample size and exploratory design. The clinical significance of these changes for long-term cardiovascular and graft outcomes requires further investigation.

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Summary written by lp-a.org from the published abstract; figures as published. Page updated 17 August 2026. Methods.