The Journal of Practical Medicine >
Values of renal resistance index combined with blood and urinary biomarkers in early prediction of contrast⁃induced acute kidney injury after interventional surgery
Received date: 2023-10-06
Online published: 2024-04-08
Objective To analyze the values of renal resistance index (RRI), cystatin C (CysC), blood β2?microglobulin (β2?MG) and urinary N?acetyl?β?glucosamine glycosidase (NAG) in early prediction of contrast?induced acute kidney injury (CI?AKI). Methods A retrospective cohort analysis on 207 postoperative patients after intervention therapy was conducted. The patients were divided into AKI group (18 patients) and non?AKI group (189 patients) based on whether CI?AKI occurred. General and clinical data were collected and compared. According to the time of diagnosis of AKI (D0 on the day of surgery or D1 on the first day after surgery), the AKI group was divided into AKI (D0) group and AKI (D1) group. Indicators RRI, CysC, and blood β2?MG, serum creatinine (sCr), and urinary NAG were compared between the two groups. The risk factors of CI?AKI were explored using logistic regression and linear regression. Results In the AKI group, males, preoperative sCr, acute physiological and chronic health (APACHⅡ) score and sequential organ failure (SOFA) score, surgical duratrion, sCr, CysC, blood β2?MG, urinary NAG on the day of surgery and the first day after surgery, and RRI were higher than those in the non?AKI group; Higher APACHEⅡ and SOFA scores and higher CysC level on D1 were independent risk factors for the occurrence of CI?AKI (P < 0.05). Levels of CysC and urinay NAG on D0 were higher in the AKI (D0) group than in the AKI (D1) group (P < 0.05). RRI, urinary NAG and blood β2?MG were not independent risk factors for CI?AKI. Conclusions CysC and urinary NAG are powerful predictors for the prediction of CI?AKI, and RRI and blood β2?MG cannot predict the occurrence of CI?AKI early.
Ting HUANG , Rongcheng XIE , Yuting WANG , Xiaoming LIN , Jiefei. MA . Values of renal resistance index combined with blood and urinary biomarkers in early prediction of contrast⁃induced acute kidney injury after interventional surgery[J]. The Journal of Practical Medicine, 2024 , 40(7) : 1011 -1016 . DOI: 10.3969/j.issn.1006-5725.2024.07.023
| 1 | CHENG A S , LI X G .The Potential Biotherapeutic Targets of Contrast-Induced Acute Kidney Injury[J] .Int J Mol Sci, 2023, 24(9):24098254. doi:10.3390/ijms24098254 |
| 2 | JAMES M T , GHALI W A , TONELLI M ,et al . Acute kidney injury following coronary angiography is associated with a long-term decline in kidney function [J]. Kidney Int, 2010, 78(8): 803-809. doi:10.1038/ki.2010.258 |
| 3 | WARD D B , VALENTOVIC M A .Contrast Induced Acute Kidney Injury and Direct Cytotoxicity of Iodinated Radiocontrast Media on Renal Proximal Tubule Cells [J]. J Pharmacol Exp Ther, 2019, 370(2): 160-171. doi:10.1124/jpet.119.257337 |
| 4 | STACUL F , VAN D M A J , REIMER P ,et al . Contrast induced nephropathy: updated ESUR Contrast Media Safety Committee guidelines [J]. Eur Radiol, 2011, 21(12): 2527-2541. doi:10.1007/s00330-011-2225-0 |
| 5 | VANOMMESLAEGHE F , DE M E , VAN D B C ,et al . Selecting a strategy for prevention of contrast-induced nephropathy in clinical practice: an evaluation of different clinical practice guidelines using the AGREE tool[J]. Nephrol Dial Transplant, 2015, 30(8): 1300-1306. doi:10.1093/ndt/gfv220 |
| 6 | CHO E , KO G J .The Pathophysiology and the Management of Radiocontrast-Induced Nephropathy[J]. Diagnostics (Basel), 2022, 12(1):12010180. doi:10.3390/diagnostics12010180 |
| 7 | MAIOLI M , TOSO A , LEONCINI M ,et al . Persistent renal damage after contrast-induced acute kidney injury: incidence, evolution, risk factors, and prognosis[J]. Circulation, 2012, 125(25): 3099-3107. doi:10.1161/circulationaha.111.085290 |
| 8 | 易思叶 . β2微球蛋白、血清胱抑素C、同型半胱氨酸、尿微量白蛋白联合检测在糖尿病肾病肾小管损伤患者中的临床价值[J]. 医药前沿,2023,13(16):95-97. |
| 9 | 刘芳,李扬宇,毛起官,等 . 尿TRF、NAG1和血清CysC对早期糖尿病肾病的诊断价值[J]. 检验医学与临床,2021,18(18):2700-2702,2707. doi:10.3969/j.issn.1672-9455.2021.18.019 |
| 10 | LEGRAND M , DUPUIS C , SIMON C ,et al . Association between systemic hemodynamics and septic acute kidney injury in critically ill patients: a retrospective observational study[J]. Crit Care, 2013, 17(6): R278. doi:10.1186/cc13133 |
| 11 | SONG J Q , WU W , HE Y Z ,et al . Value of the combination of renal resistance index and central venous pressure in the early prediction of sepsis-induced acute kidney injury[J]. J Crit Care, 2018, 45: 204-208. doi:10.1016/j.jcrc.2018.03.016 |
| 12 | FU Y , HE C , JIA L J ,et al . Performance of the renal resistive index and usual clinical indicators in predicting persistent AKI[J]. Ren Fail, 2022, 44(1): 2028-2038. doi:10.1080/0886022x.2022.2147437 |
| 13 | GE L H , CHEN J , REN X Y ,et al . JQ1 attenuates contrast-induced acute kidney injury through the upregulation of autophagy and inhibition of inflammation[J]. Int Urol Nephrol, 2024, 56(2):739-749. doi:10.1007/s11255-023-03718-7 |
| 14 | FAHLING M , SEELIGER E , PATZAK A ,et al . Understanding and preventing contrast-induced acute kidney injury[J]. Nat Rev Nephrol, 2017, 13(3): 169-180. doi:10.1038/nrneph.2016.196 |
| 15 | FAUCON A L , BOBRIE G , CLEMENT O .Nephrotoxicity of iodinated contrast media: From pathophysiology to prevention strategies[J]. Eur J Radiol, 2019, 116: 231-241. doi:10.1016/j.ejrad.2019.03.008 |
| 16 | ZHANG F F , LU Z Y , WANG F .Advances in the pathogenesis and prevention of contrast-induced nephropathy[J]. Life Sci, 2020, 259: 118379. doi:10.1016/j.lfs.2020.118379 |
| 17 | LI Q Q , PAN S Q .Contrast-Associated Acute Kidney Injury: Advances and Challenges[J]. Int J Gen Med, 2022, 15: 1537-1546. doi:10.2147/ijgm.s341072 |
| 18 | ZHANG C M , SUO M Y , LIU L X ,et al . Melatonin Alleviates Contrast-Induced Acute Kidney Injury by Activation of Sirt3[J]. Oxid Med Cell Longev, 2021, 2021: 6668887. doi:10.1155/2021/6668887 |
| 19 | BANSAL S , PATEL R N .Pathophysiology of Contrast-Induced Acute Kidney Injury[J]. Interv Cardiol Clin, 2020, 9(3): 293-298. doi:10.1016/j.iccl.2020.03.001 |
| 20 | SHEN J X , WANG L ,J N,et al . NLRP3 inflammasome mediates contrast media-induced acute kidney injury by regulating cell apoptosis[J]. Sci Rep, 2016, 6: 34682. doi:10.1038/srep34682 |
| 21 | MEHRAN R , DANGAS G D , WEISBORD S D . Contrast-Associated Acute Kidney Injury[J]. N Engl J Med, 2019, 380(22):2146-2155. doi:10.1056/nejmra1805256 |
| 22 | YU Z Z , XU Z X , RUAN Y H ,et al . Protective Effect of Nicorandil on Contrast-Induced Acute Kidney Injury After Emergency Percutaneous Coronary Intervention[J]. J Cardiovasc Pharmacol Ther, 2023, 28: 10742484231174296. doi:10.1177/10742484231174296 |
| 23 | LUDES P O , DE ROQUETAILLADE C , CHOUSTERMAN B G ,et al . Role of Damage-Associated Molecular Patterns in Septic Acute Kidney Injury, From Injury to Recovery[J]. Front Immunol, 2021, 12: 606622. doi:10.3389/fimmu.2021.606622 |
| 24 | ZDZIECHOWSKA M , GLUBA B A , FRANCZYK B ,et al . Biochemical Markers in the Prediction of Contrast-induced Acute Kidney Injury[J]. Curr Med Chem, 2021, 28(6): 1234-1250. doi:10.2174/0929867327666200502015749 |
| 25 | 李晓玲,周文杰,邓伟,等 . 凝血指标联合血清胱抑素C对脓毒症急性肾损伤患者预后的预测价值[J]. 实用医学杂志,2023,39(1):81-85. |
| 26 | 张文蓉,王苏建,董燕芬,等 . 血清Hcy、Cys-C、NAG及mALB对妊娠期糖尿病患者早期肾损伤的检验诊断价值[J]. 实用医学杂志,2018,34(23):3986-3989. doi:10.3969/j.issn.1006-5725.2018.23.033 |
| 27 | MEOLA M , NALESSO F , PETRUCCI L ,et al . Ultrasound in Acute Kidney Disease[J]. Contrib Nephrol, 2016, 188: 11-20. doi:10.1159/000445461 |
| 28 | WATCHORN J , HUANG D , BRAMHAM K ,et al . Decreased renal cortical perfusion, independent of changes in renal blood flow and sublingual microcirculatory impairment, is associated with the severity of acute kidney injury in patients with septic shock[J]. Crit Care, 2022, 26(1): 261. doi:10.1186/s13054-022-04134-6 |
/
| 〈 |
|
〉 |