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Mar Dalmau1,2, Ramón Charco2, Itxarone Bilbao1,2,3
1Barcelona Autonoma University, Universitat Autònoma de Barcelona, Barcelona, Spain.
Background:
MicroRNAs have emerged as potential biomarkers of liver injury during organ transplantation due to their specificity, easy detection and stability in many biofluids. Heparin, which has a well-known inhibitory effect on RT-qPCR based measurements, is commonly used during organ donation. Heparinase I treatment has been used to overcome the inhibiting effect of heparin in RNA RT-qPCR analysis. However, there is a lack of evidence regarding its effective, feasible use improving specific miRNA quantification yield in the liver transplant setting. The aim of this study is to evaluate the effect of heparinase I on miRNA detection levels by RT-qPCR in different samples from liver donors.
Methods:
Prospective, single-centre study including evaluation of liver biopsy, perfusate fluid and serum from deceased organ donors from October 2019 to May 2021. Samples from brain death donors (DBD, n = 4) and donors after circulatory death recovered with abdominal normothermic regional perfusion (DCD n = 4) were analysed for the presence of liver-injury related miRNAs (miR-122 and miR-148a) in the absence or presence of heparinase I (6 IU or 12 IU) to evaluate its effect on miRNA detection levels by RT-qPCR. A subgroup of heparinized serum samples from patients undergoing cardiopulmonary bypass was analysed for validation purposes. The study is registered with ClinicalTrials.gov (NCT06611046), and accrual is complete.
Results:
The expression of miR-122 relative to reference genes was 44.5, 16.8 and 4.2-fold higher in liver biopsy, perfusates and serum respectively, while miR-148a was 3.4, 2.2 and 2.6-fold higher, without differential expression between donor groups (p > 0.05). Heparinase I treatment did not improve PCR results and affected miRNA detection yields in a dose-dependent way with delayed and dispersed Ct values. In highly heparinized DCD serum samples, heparinase I treatment significantly reduced the relative expression of miR-122 and miR-148a compared to non-treated samples, 2-fold and 6.1-fold, p < 0.05 respectively. Moreover, treatment with heparinase I led to a rise in lost values, from 12.5% to 25% in perfusates and 67.7% to 68.7% in serum samples treated with 6IU and 12IU of heparinase I respectively.
Conclusions:
The need for heparinase I treatment to overcome RNA quantification interference in heparinized samples should be addressed in each individual analysis. Heparin inhibition seems variable among miRNAs, and the additional handling with heparinase may affect reliable miRNA quantification due to RNA degradation, introducing bias in gene expression interpretation.
Insights
Heparinase I treatment does not improve microRNA detection in liver transplant samples and may reduce quantification accuracy. This suggests careful consideration is needed before using heparinase I in RT-qPCR analysis of heparinized samples.
Area of Science:
- Transplantation Science
- Molecular Biology
- Biomarker Discovery
Background:
- MicroRNAs are promising biomarkers for liver injury in transplantation.
- Heparin used in organ donation can inhibit RT-qPCR measurements.
- Heparinase I is proposed to counteract heparin inhibition but its efficacy in liver transplant settings is unclear.
Purpose of the Study:
- To evaluate the impact of heparinase I on microRNA (miRNA) detection levels using RT-qPCR.
- To assess miRNA quantification yield in liver biopsy, perfusate, and serum samples from organ donors.
- To investigate the effect of different heparinase I concentrations on miRNA detection.
Main Methods:
- Prospective study of liver biopsy, perfusate, and serum from deceased organ donors (DBD and DCD).
- Analysis of liver-injury related miRNAs (miR-122, miR-148a) with and without heparinase I treatment (6 IU or 12 IU).
- Validation in heparinized serum samples from patients undergoing cardiopulmonary bypass.
Main Results:
- miR-122 and miR-148a showed higher expression in biopsy, perfusates, and serum, with no significant difference between donor groups.
- Heparinase I treatment did not improve PCR results and negatively impacted miRNA detection yields in a dose-dependent manner.
- In DCD serum, heparinase I significantly reduced miR-122 and miR-148a expression and increased lost values.
Conclusions:
- The necessity of heparinase I treatment for heparinized samples requires individual assessment.
- Heparin inhibition varies among miRNAs, and heparinase I treatment may cause RNA degradation, biasing results.
- Reliable miRNA quantification in liver transplant research necessitates careful evaluation of heparinase I use.
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