临床研究

重症患者非心脏大手术后早期外周灌注与急性肾损伤的关系

  • 崔玉健 ,
  • 李宇珂 ,
  • 朱赛楠 ,
  • 李双玲 ,
  • 李楠
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  • 1.北京大学第一医院,重症医学科,(北京 100034 )
    2.北京大学第一医院,医学统计室,(北京 100034 )

收稿日期: 2024-09-18

  网络出版日期: 2025-01-26

基金资助

国家临床重点专科建设项目(2023-141);北京大学第一医院交叉临床研究专项(2021CR35)

The association between early peripheral perfusion and acute kidney injury in patients admitted to the intensive care unit following major noncardiac surgery

  • Yujian CUI ,
  • Yuke LI ,
  • Sainan ZHU ,
  • Shuangling LI ,
  • Nan. LI
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  • *.Department of Critical Care Medicine,Peking University First Hospital,Beijing 100034,Beijing,China

Received date: 2024-09-18

  Online published: 2025-01-26

摘要

目的 探讨重症患者非心脏大手术后早期外周灌注指数(peripheral perfusion index, PPI)与急性肾损伤(acute kidney injury, AKI)的相关性。 方法 本研究为单中心回顾性队列研究,研究人群为非心脏大手术后即刻收入外科重症监护病房的患者,主要暴露因素为术后前6 h PPI,主要研究终点为术后7 d内AKI的发生。采用多因素logistic回归分析校正相关混杂因素,并以受试者工作特征(receiver operating characteristic, ROC)曲线寻找PPI的界值。 结果 共有444例患者纳入本研究,术后AKI和严重AKI的发生率分别为9.23%、1.13%。术后早期PPI呈偏态分布[3.02(2.02,4.24)]。经多因素logistic回归分析后显示术后早期PPI(OR = 0.734, 95% CI: 0.580 ~ 0.930,P = 0.010)与术后AKI的发生独立相关,ROC曲线下面积为0.680 2(95% CI: 0.602 2 ~ 0.758 2,P < 0.001)。以2.04为界值,术后早期PPI预测术后AKI的敏感度为53.7%,特异度为77.2%。进一步分析发现,术后早期PPI ≤ 2.04的患者,其术后严重并发症的发生率更高,机械通气和术后住院时间更长。 结论 术后早期PPI的下降与重症患者非心脏大手术后7 d内AKI的发生相关。

本文引用格式

崔玉健 , 李宇珂 , 朱赛楠 , 李双玲 , 李楠 . 重症患者非心脏大手术后早期外周灌注与急性肾损伤的关系[J]. 实用医学杂志, 2025 , 41(2) : 195 -201 . DOI: 10.3969/j.issn.1006-5725.2025.02.006

Abstract

Objective To investigate the association between early peripheral perfusion index (PPI) and acute kidney injury (AKI) in patients admitted to the intensive care unit (ICU) following major noncardiac surgery. Methods This retrospective cohort study was conducted at a single center. Adult patients consecutively enrolled were those admitted to the ICU after major noncardiac surgery. PPI measurements were collected within the first 6 hours post-surgery. The primary outcome assessed was the occurrence of AKI within 7 days after surgery. Multivariate logistic regression analysis was employed to adjust for confounding factors, while receiver operating characteristic (ROC) curve analysis determined the most predictive cutoff PPI. Results The study included a total of 444 patients who underwent noncardiac surgery. The incidences of postoperative AKI and severe AKI were 9.23% and 1.13%, respectively. Early postoperative PPI levels exhibited a skewed distribution, with a median value of 3.02 (2.02, 4.24). After adjusting for various perioperative variables, PPI was found to be independently correlated with the occurrence of postoperative AKI (OR = 0.734, 95% CI: 0.580~0.930, P = 0.010), as indicated by an area under the ROC curve of 0.680 2 (95% CI: 0.602 2 ~ 0.758 2, P < 0.001). Using a cutoff value of ≤ 2 .04 for PPI, the sensitivity and specificity for predicting postoperative AKI were determined to be approximately at 53.7 % and 77.2 % respectively. Further analysis revealed that patients with PPI ≤ 2.04 had a higher incidence of severe postoperative complications as well as prolonged mechanical ventilation duration and hospital stay. Conclusions A prompt reduction in postoperative PPI usage was found to be linked with the incidence of AKI occurring within 7 days following major noncardiac surgery.

参考文献

1 KORK F, BALZER F, SPIES C D, et al. Minor Postoperative Increases of Creatinine Are Associated with Higher Mortality and Longer Hospital Length of Stay in Surgical Patients [J]. Anesthesiology, 2015, 123(6): 1301-1311. doi:10.1097/aln.0000000000000891
2 ARMSTRONG T, WELSH F K, WELLS J, et al. The impact of pre-operative serum creatinine on short-term outcomes after liver resection [J]. HPB (Oxford), 2009, 11(8): 622-628. doi:10.1111/j.1477-2574.2009.00094.x
3 TEIXEIRA C, ROSA R, RODRIGUES N, et al. Acute kidney injury after major abdominal surgery: A retrospective cohort analysis [J]. Crit Care Res Pract, 2014, 2014: 132175. doi:10.1155/2014/132175
4 BIHORAC A, YAVAS S, SUBBIAH S, et al. Long-term risk of mortality and acute kidney injury during hospitalization after major surgery [J]. Ann Surg, 2009, 249(5): 851-858. doi:10.1097/sla.0b013e3181a40a0b
5 GUMBERT S D, KORK F, JACKSON M L, et al. Perioperative Acute Kidney Injury [J]. Anesthesiology, 2020, 132(1): 180-204. doi:10.1097/aln.0000000000002968
6 刘梅, 莫曼秋, 谭琳,等. 单中心急性肾损伤的短期预后调查分析 [J]. 实用医学杂志, 2022, 38(1): 101-105.
7 PROWLE J R, FORNI L G, BELL M, et al. Postoperative acute kidney injury in adult non-cardiac surgery: Joint consensus report of the Acute Disease Quality Initiative and PeriOperative Quality Initiative [J]. Nat Rev Nephrol, 2021, 17(9): 605-618. doi:10.1038/s41581-021-00418-2
8 BOYER N, ELDRIDGE J, PROWLE J R, et al. Postoperative Acute Kidney Injury [J]. Clin J Am Soc Nephrol, 2022, 17(10): 1535-1545. doi:10.2215/cjn.16541221
9 GAMEIRO J, FONSECA J A, MARQUES F, et al. Management of Acute Kidney Injury Following Major Abdominal Surgery: A Contemporary Review [J]. J Clin Med, 2020, 9(8): 2679. doi:10.3390/jcm9082679
10 张巧云, 李锐. 术中血压管理对老年腹部大手术患者术后早期急性肾损伤的影响 [J]. 实用医学杂志, 2021, 37(7): 894-898.
11 BAKKER J. Clinical use of peripheral perfusion parameters in septic shock [J]. Curr Opin Crit Care, 2021, 27(3): 269-273. doi:10.1097/mcc.0000000000000826
12 BRUNAUER A, KOK?FER A, BATAAR O, et al. Changes in peripheral perfusion relate to visceral organ perfusion in early septic shock: A pilot study [J]. J Crit Care, 2016, 35: 105-109. doi:10.1016/j.jcrc.2016.05.007
13 VAN GENDEREN M E, PAAUWE J, DE JONGE J, et al. Clinical assessment of peripheral perfusion to predict postoperative complications after major abdominal surgery early: A prospective observational study in adults [J]. Crit Care, 2014, 18(3): R114. doi:10.1186/cc13905
14 HARIRI G, JOFFRE J, LEBLANC G, et al. Narrative review: Clinical assessment of peripheral tissue perfusion in septic shock [J]. Ann Intensive Care, 2019, 9(1): 37. doi:10.1186/s13613-019-0511-1
15 LIMA A P, BEELEN P, BAKKER J. Use of a peripheral perfusion index derived from the pulse oximetry signal as a noninvasive indicator of perfusion [J]. Crit Care Med, 2002, 30(6): 1210-1213. doi:10.1097/00003246-200206000-00006
16 LIMA A, JANSEN T C, VAN BOMMEL J, et al. The prognostic value of the subjective assessment of peripheral perfusion in critically ill patients [J]. Critical Care Medicine, 2009, 37(3): 934-938. doi:10.1097/ccm.0b013e31819869db
17 STEVENS P E, LEVIN A. Evaluation and management of chronic kidney disease: Synopsis of the kidney disease: improving global outcomes 2012 clinical practice guideline [J]. Ann Intern Med, 2013, 158(11): 825-830. doi:10.7326/0003-4819-158-11-201306040-00007
18 KDIGO K. Acute Kidney Injury Work Group:KDIGO clinical practice guideline for acute kidney injury[J]. Kidney Int, 2012, 2(1): 1-138.
19 COUTROT M, DUDOIGNON E, JOACHIM J, et al. Perfusion index: Physical principles, physiological meanings and clinical implications in anaesthesia and critical care [J]. Anaesth Crit Care Pain Med, 2021, 40(6): 100964. doi:10.1016/j.accpm.2021.100964
20 KATAYAMA H, KUROKAWA Y, NAKAMURA K, et al. Extended Clavien-Dindo classification of surgical complications: Japan Clinical Oncology Group postoperative complications criteria [J]. Surg Today, 2016, 46(6): 668-685. doi:10.1007/s00595-015-1236-x
21 KANG P, PARK J B, YOON H K, et al. Association of the perfusion index with postoperative acute kidney injury: A retrospective study [J]. Korean J Anesthesiol, 2023, 76(4): 348-356. doi:10.4097/kja.22620
22 MOSTAFA H, SHABAN M, HASANIN A, et al. Evaluation of peripheral perfusion index and heart rate variability as early predictors for intradialytic hypotension in critically ill patients [J]. BMC Anesthesiol, 2019, 19(1): 242. doi:10.1186/s12871-019-0917-1
23 AGERSKOV M, THUSHOLDT A N W, HOLM-S?RENSEN H, et al. Association of the intraoperative peripheral perfusion index with postoperative morbidity and mortality in acute surgical patients: A retrospective observational multicentre cohort study [J]. Br J Anaesth, 2021, 127(3): 396-404. doi:10.1016/j.bja.2021.06.004
24 MONGKOLPUN W, ORBEGOZO D, CORDEIRO C P R, et al. Alterations in Skin Blood Flow at the Fingertip Are Related to Mortality in Patients With Circulatory Shock [J]. Crit Care Med, 2020, 48(4): 443-450. doi:10.1097/ccm.0000000000004177
25 ELSHAL M M, HASANIN A M, MOSTAFA M, et al. Plethysmographic Peripheral Perfusion Index: Could It Be a New Vital Sign? [J]. Front Med (Lausanne), 2021, 8: 651909. doi:10.3389/fmed.2021.651909
26 LIU S, SU L, ZHUGE C, et al. Initial 24-h perfusion index of ICU admission is associated with acute kidney injury in perioperative critically ill patients: A retrospective cohort analysis [J]. J Intensive Med, 2023, 3(3): 261-267. doi:10.1016/j.jointm.2023.02.007
27 CHALKIAS A, PAPAGIANNAKIS N, MAVROVOUNIS G, et al. Sublingual microcirculatory alterations during the immediate and early postoperative period: A systematic review and meta-analysis [J]. Clin Hemorheol Microcirc, 2022, 80(3): 253-265. doi:10.3233/ch-211214
28 ACKLAND G L, IQBAL S, PAREDES L G, et al. Individualised oxygen delivery targeted haemodynamic therapy in high-risk surgical patients: A multicentre, randomised, double-blind, controlled, mechanistic trial [J]. Lancet Respir Med, 2015, 3(1): 33-41. doi:10.1016/s2213-2600(14)70205-x
29 ZARBOCK A, WEISS R, ALBERT F, et al. Epidemiology of surgery associated acute kidney injury (EPIS-AKI): A prospective international observational multi-center clinical study [J]. Intensive Care Med, 2023, 49(12): 1441-1455.
30 LI S, WANG S, PRIYANKA P, et al. Acute Kidney Injury in Critically Ill Patients After Noncardiac Major Surgery: Early Versus Late Onset [J]. Crit Care Med, 2019, 47(6): e437-e444. doi:10.1097/ccm.0000000000003710
31 HERNáNDEZ G, OSPINA-TASCóN G A, DAMIANI L P, et al. Effect of a Resuscitation Strategy Targeting Peripheral Perfusion Status vs Serum Lactate Levels on 28-Day Mortality Among Patients With Septic Shock: The ANDROMEDA-SHOCK Randomized Clinical Trial [J]. JAMA, 2019, 321(7): 654-664. doi:10.1001/jama.2019.0071
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