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腕部内瘘吻合口旁狭窄经皮腔内血管成形术后复发的危险因素分析:一项单中心前瞻性队列研究

  • 姚国明 ,
  • 胡日红 ,
  • 杨媛媛 ,
  • 黄加力 ,
  • 欧斐 ,
  • 欧斐 ,
  • 陈洪宇
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  • 310007 杭州,浙江中医院大学附属杭州市中医院1肾病科 2超声影像科

收稿日期: 2024-02-06

  修回日期: 2024-03-09

  网络出版日期: 2024-07-12

基金资助

浙江省基础公益研究计划项目(LGF21H050002)

Analysis of the risk factors for recurrence of juxta-anastomotic stenosis in wrist arteriovenous fistula after percutaneous transluminal angioplasty: a single-center prospective cohort study

  • YAO Guo-Ming ,
  • HU Ri-Hong ,
  • YANG Yuan-Yuan ,
  • HUANG Jia-Li ,
  • HUANG Jia-Li Fei ,
  • HUANG Jia-Li Fei Fei ,
  • CHEN Hong-Yu
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  • Department of Nephrology, 2Department of Ultrasonography, Hangzhou Traditional Chinese Medical Hospital Affiliated to Zhejiang Chinese Medical University, Hangzhou 310007, China

Received date: 2024-02-06

  Revised date: 2024-03-09

  Online published: 2024-07-12

摘要

目的 分析腕部桡动脉-头静脉内瘘(radial-cephalic arteriovenous fistula,RC-AVF)吻合口旁狭窄首次经皮腔内血管成形术(percutaneous transluminal angioplasty,PTA)后复发的危险因素。 方法 单中心前瞻性分析2021年1月—2022年6月在浙江中医院大学附属杭州市中医院接受PTA治疗的自体动静脉内瘘(arteriovenous fistulas,AVF)患者,收集患者的一般资料、病变特征、技术因素及辅助检查结果,使用单因素和多因素分析评估PTA后复发的危险因素。 结果 共纳入120例患者,114例RC-AVFs患者成功完成了首次PTA治疗,手术成功率为95.0%(114/120)。112例患者完成了随访,PTA后90、180、360、540天一期通畅率分别为:94.6%、81.3%、56.1%、33.3%;一期辅助通畅率分别为:97.3%、95.5%、85.1%、70.1%;二期通畅率分别为:100%、100%、95.7%、85.7%。COX回归分析显示球囊直径(HR=0.62,95% CI:0.43~0.89,P=0.009)是PTA手术后一期通畅率丢失的独立预测因素,ROC曲线分析AUC为0.614(95% CI:0.510~0.718,P=0.037),临界值为6.0 mm;狭窄长度(HR=1.04,95% CI:1.02~1.07,P<0.001)、狭窄数量(HR=3.73,95% CI:1.32~10.54,P=0.013)是PTA手术后一期辅助通畅率丢失的独立预测因素,狭窄长度AUC为0.686(95% CI:0.543~0.838,P=0.009),临界值为17.5 mm;狭窄数量AUC为0.685(95% CI:0.559~0.810,P=0.010),临界值为2。 结论 RC-AVF吻合口旁静脉狭窄首次PTA后的复发率较高,球囊直径与RC-AVF吻合口旁静脉狭窄首次PTA后再狭窄相关,使用最大直径<6 mm的球囊是手术后一期通畅率丢失的独立预测因素。长段狭窄(≥17.5 mm)和多发狭窄(≥2个)是一期辅助通畅率丢失的独立预测因素。

本文引用格式

姚国明 , 胡日红 , 杨媛媛 , 黄加力 , 欧斐 , 欧斐 , 陈洪宇 . 腕部内瘘吻合口旁狭窄经皮腔内血管成形术后复发的危险因素分析:一项单中心前瞻性队列研究[J]. 中国血液净化, 2024 , 23(07) : 546 -551 . DOI: 10.3969/j.issn.1671-4091.2024.07.013

Abstract

Objective  This study aimed to explore the risk factors for restenosis of the juxta-anastomotic stenosis in radial-cephalic arteriovenous fistula (RC-AVF) after primary percutaneous transluminal angioplasty (PTA).  Methods  A single-center prospective study was conducted, to analyze the patients with arteriovenous fistula (AVF) undergoing PTA treatment between January, 2021 and June 2022. Their demographics, lesional characteristics, technical factors, and auxiliary examination results were collected. Risk factors for restenosis after PTA were evaluated using univariate and multivariable analyses.  Results  A total of 114 patients with RC-AVF successfully completed the first PTA treatment with a technical success rate of 95.0% (114/120), and 112 patients finished follow-up the primary assistant patency time was 512.15±226.32 days, and the secondary patency time was 554.88±205.67 days. After PTA for 90, 180, 360, and 540 days, the primary patency rates were 94.6%, 81.3%, 56.1%, and 33.3%, respectively; the primary assistant patency rates were 97.3%, 95.5%, 85.1%, and 70.1%, respectively; the secondary patency rates were 100%, 100%, 95.7%, and 85.7%, respectively. Cox regression analysis showed that balloon diameter (HR=0.62,95% CI: 0.43~0.89, P=0.009) was the independent predicting factor for primary patency loss after PTA. ROC curve analysis showed an AUC area of 0.614 (95% CI: 0.510~0.718, P=0.037) and a critical value of 6.0 mm. Stenosis length (HR=1.04, 95% CI: 1.02~1.07, P<0.001) and stenosis number (HR=3.73, 95% CI: 1.32~10.54, P=0.013) were the independent predicting factors for primary assistant patency loss after PTA, with AUC areas of 0.686 (95% CI: 0.543~0.838, P=0.009) and 0.685 (95% CI: 0.559~0.810, P=0.010), critical values of 17.5 mm and 2.   Conclusions Restenosis of the juxta-anastomotic venous stenosis in RC-AVF after primary PTA remains high. Balloon diameter is closely related to the restenosis after PTA. The use of a balloon with a maximum diameter <6 mm is an independent predictor for primary patency loss after PTA. Longer stenosis (≥17.5 mm) and stenosis number ≥2 are the independent predictors for primary assistant patency loss after PTA. 

参考文献

[1]. Riella Miguel C., Roy-Chaudhury Prabir. Vascular access in haemodialysis: strengthening the Achilles' heel[J]. Nat Rev Nephrol, 2013, 9(6): 348-357. doi:10.1038/nrneph.2013.76
[2]. Roy-Chaudhury Prabir., Sukhatme Vikas P., Cheung Alfred K. Hemodialysis vascular access dysfunction: a cellular and molecular viewpoint[J]. J Am Soc Nephrol, 2006, 17(4): 1112-1127. doi:10.1681/ASN.2005050615
[3]. Asif A., Lenz O., Merrill D., Cherla G., Cipleu C D., Ellis R., Francois B., Epstein D L., Pennell P. Percutaneous management of perianastomotic stenosis in arteriovenous fistulae: results of a prospective study[J]. Kidney Int, 2006, 69(10): 1904-1909. doi:10.1038/sj.ki.5000358
[4]. Neuen Brendon L., Gunnarsson Ronny., Webster Angela C., Baer Richard A., Golledge Jonathan., Mantha Murty L. Predictors of patency after balloon angioplasty in hemodialysis fistulas: a systematic review[J]. J Vasc Interv Radiol, 2014, 25(6): 917-924. doi:10.1016/j.jvir.2014.02.010
[5]. Kukita Kazutaka., Ohira Seiji., Amano Izumi., et al. Vascular Access Construction and Repair for Chronic Hemodialysis Guideline Working Group, Japanese Society for Dialysis Therapy. 2011 update Japanese Society for Dialysis Therapy Guidelines of Vascular Access Construction and Repair for Chronic Hemodialysis[J]. Ther Apher Dial, 2015, 19(Supplement 1): 1-39. doi:10.1111/1744-9987.12296
[6]. Lok Charmaine E., Huber Thomas S., Lee Timmy., et al. National Kidney Foundation. KDOQI Clinical Practice Guideline for Vascular Access: 2019 Update[J]. Am J Kidney Dis, 2020, 75(4): S1-S164. doi:10.1053/j.ajkd.2019.12.001
[7]. Tessitore Nicola., Mansueto Giancarlo., Lipari Giovanni., Bedogna Valeria., Tardivo Stefano., Baggio Elda., Cenzi Daniela., Carbognin Giovanni., Poli Albino., Lupo Antonio. Endovascular versus surgical preemptive repair of forearm arteriovenous fistula juxta-anastomotic stenosis: analysis of data collected prospectively from 1999 to 2004[J]. Clin J Am Soc Nephrol, 2006, 1(3): 448-454. doi:10.2215/CJN.01351005
[8]. Long Bertrand., Brichart Nicolas., Lermusiaux Patrick., Turmel-Rodrigues Luc., Artru Bernard., Boutin Jean Michel., Pengloan Josette., Bertrand Philippe., Bruyère Franck. Management of perianastomotic stenosis of direct wrist autogenous radial-cephalic arteriovenous accesses for dialysis[J]. J Vasc Surg, 2011, 53(1): 108-114. doi:10.1016/j.jvs.2010.08.007
[9]. Clark Timothy W I., Hirsch David A., Jindal Kailash J., Veugelers Paul J., LeBlanc John. Outcome and prognostic factors of restenosis after percutaneous treatment of native hemodialysis fistulas[J]. J Vasc Interv Radiol, 2002, 13(1): 51-59. doi:10.1016/s1051-0443(07)60009-8
[10]. Maeda Kiyosumi., Furukawa Akira., Yamasaki Michio., Murata Kiyoshi. Percutaneous transluminal angioplasty for Brescia-Cimino hemodialysis fistula dysfunction: technical success rate, patency rate and factors that influence the results[J]. Eur J Radiol, 2005, 54(3): 426-430. doi:10.1016/j.ejrad.2004.07.011
[11]. Zhu Zheng-Rong., Zou Lan., Xing Yue., Tan Yu-Can., Xu Guo-Jian., He Zhi-Jian., Cao Jian-Qiang., Wu Jia-Yu., Liang Xiao-Xia., Zhang Hui-Ping., Tan Yan-Hong., Luo Can-Hua. Predictors of primary patency after percutaneous balloon angioplasty for stenosis of Brescia-Cimino hemodialysis arteriovenous fistula[J]. Br J Radiol, 2020, 93(1109): 1-9. doi:10.1259/bjr.20190505
[12]. Neuen Brendon L., Gunnarsson Ronny., Baer Richard A., Tosenovsky Patrik., Green Stella J., Golledge Jonathan., Mantha Murty L. Factors associated with patency following angioplasty of hemodialysis fistulae[J]. J Vasc Interv Radiol, 2014, 25(9): 1419-1426. doi:10.1016/j.jvir.2014.05.020
[13]. 金其庄,王玉柱,叶朝阳等.中国血液透析用血管通路专家共识(第2版)[J].中国血液净化,2019,18(06):365-381.
[14]. Gameiro Joana., Ibeas Jose. Factors affecting arteriovenous fistula dysfunction: A narrative review[J]. J Vasc Access, 2020, 21(2): 134-147. doi:10.1177/1129729819845562
[15]. Manou-Stathopoulou Sotiria., Robinson Emily J., Harvey John Julian., Karunanithy Narayan., Calder Francis., Robson Michael G. Factors associated with outcome after successful radiological intervention in arteriovenous fistulas: A retrospective cohort[J]. J Vasc Access, 2019, 20(6): 716-724. doi:10.1177/1129729819845991
[16]. Zheng Quan., Xie Bingying., Xie Xinfu., Zhang Wenhao., Hou Jihua., Feng Zhonglin., Tao Yiming., Yu Feng., Zhang Li., Ye Zhiming. Predictors associated with early and late restenosis of arteriovenous fistulas and grafts after percutaneous transluminal angiography[J]. Ann Transl Med, 2021, 9(2): 1-11. doi:10.21037/atm-20-7690
[17]. Rajan Dheeraj K., Bunston Sarah., Misra Sanjay., Pinto Ruxandra., Lok Charmaine E. Dysfunctional autogenous hemodialysis fistulas: outcomes after angioplasty--are there clinical predictors of patency[J]? Radiology, 2004, 232(2): 508-515. doi:10.1148/radiol.2322030714
[18]. Elramah Mohsen., Boujelbane Lamya., Yevzlin Alexander S., Wakeen Maureen., Astor Brad C., Chan Micah R. Dialysis access venous stenosis: treatment with balloon angioplasty 30-second vs. 1-minute inflation times[J]. Hemodial Int, 2015, 19(1): 108-114. doi:10.1111/hdi.12183
[19]. Higashiura Wataru., Takara Hiroaki., Kitamura Ryoichi., Yasutani Tadashi., Miyasato Hitoshi., Tengan Toshiho. Factors Associated with Secondary Functional Patency After Percutaneous Transluminal Angioplasty of the Early Failing or Immature Hemodialysis Arteriovenous Fistula[J]. Cardiovasc Intervent Radiol, 2019, 42(1): 34-40. doi:10.1007/s00270-018-2083-0
[20]. Huang Chunxiang., Yao Guoming., Hu Rihong., Yang Yuanyuan., Huang Jiali., Ou Fei., Chen Hongyu. Outcome and Risk Factors of Restenosis Post Percutaneous Transluminal Angioplasty at Juxta-Anastomotic of Wrist Autogenous Radial-Cephalic Arteriovenous Fistulas: A Retrospective Cohort Study[J]. Ann Vasc Surg, 2023, 93(undefined): 234-242. doi:10.1016/j.avsg.2023.01.014
[21]. Mortamais Julie., Papillard Matthieu., Girouin Nicolas., Boutier Romain., Cougnaud Laure., Martin Xavier., Badet Lionel., Juillard Laurent., Rouvière Olivier. Endovascular treatment of juxta-anastomotic venous stenoses of forearm radiocephalic fistulas: long-term results and prognostic factors[J]. J Vasc Interv Radiol, 2013, 24(4): 558-564. doi:10.1016/j.jvir.2012.12.004
[22]. Miyamoto Kanyu., Sato Takashi., Momohara Keisuke., Ono Sumihisa., Yamaguchi Makoto., Katsuno Takayuki., Sakurai Hiroshi., Imai Hirokazu., Ito Yasuhiko. Analysis of factors for post-percutaneous transluminal angioplasty primary patency rate in hemodialysis vascular access[J]. J Vasc Access, 2020, 21(6): 892-899. doi:10.1177/1129729820910555
[23]. Sarioglu Orkun., Capar Ahmet Ergin., Belet Umit. Relationship of arteriovenous fistula stenosis and thrombosis with the platelet-lymphocyte ratio in hemodialysis patients[J]. J Vasc Access, 2020, 21(5): 630-635. doi:10.1177/1129729819894113
[24]. Zhu Feng., Yao Yao., Ci Hongbo., Shawuti Alimujiang. Predictive value of neutrophil-to-lymphocyte ratio and platelet-to-lymphocyte ratio for primary patency of percutaneous transluminal angioplasty in hemodialysis arteriovenous fistula stenosis[J]. Vascular, 2022 , 30(5): 920-927. doi:10.1177/17085381211039672
[25]. ?ilda? Mehmet Burak., ?ilda? Songül., K?seo?lu ?mer Faruk Kutsi. The Relationship Between Neutrophil-Lymphocyte Ratio and Primary Patency of Percutaneous Transluminal Angioplasty in Hemodialysis Arteriovenous Fistula Stenosis When Using Conventional and Drug-Eluting Balloons[J]. Cardiovasc Intervent Radiol, 2016, 39(12): 1702-1707. doi:10.1007/s00270-016-1442-y
[26]. Wongmahisorn Yuthapong. Role of neutrophil-to-lymphocyte ratio as a prognostic indicator for hemodialysis arteriovenous fistula failure[J]. J Vasc Access, 2019, 20(6): 608-614. doi:10.1177/1129729819826037
[27]. Wu Chih-Cheng., Chen Tsung-Yan., Hsieh Mu-Yang., Lin Lin., Yang Chung-Wei., Chuang Shao-Yuan., Tarng Der-Cheng. Monocyte Chemoattractant Protein-1 Levels and Postangioplasty Restenosis of Arteriovenous Fistulas[J]. Clin J Am Soc Nephrol, 2017, 12(1): 113-121. doi:10.2215/CJN.04030416
[28]. Wu Chih-Cheng., Huang Po-Hsun., Lai Chao-Lun., Leu Hsin-Bang., Chen Jaw-Wen., Lin Shing-Jong. The impact of endothelial progenitor cells on restenosis after percutaneous angioplasty of hemodialysis vascular access[J]. PLoS One, 2014, 9(6): 1-10. doi:10.1371/journal.pone.0101058
[29]. Chan Jenq-Shyong., Hsiao Po-Jen., Chiang Wen-Fang., Roy-Chaudhury Prabir. The Role of Oxidative Stress Markers in Predicting Acute Thrombotic Occlusion of Haemodialysis Vascular Access and Progressive Stenotic Dysfunction Demanding Angioplasty[J]. Antioxidants, 2021, 10(4): 1-18. doi:10.3390/antiox10040569
[30]. Wu Chih-Cheng., Wen Szu-Chi., Yang Chung-Wei., Pu Shih-Yun., Tsai Kuei-Chin., Chen Jaw-Wen. Plasma ADMA predicts restenosis of arteriovenous fistula[J]. J Am Soc Nephrol, 2009, 20(1): 213-222. doi:10.1681/ASN.2008050476
[31]. Yoshida Mahoko., Doi Shigehiro., Nakashima Ayumu., Kyuden Yasufumi., Kawai Toru., Kawaoka Koichiro., Takahashi Shunsuke., Ueno Toshinori., Nishizawa Yoshiko., Masaki Takao. Different risk factors are associated with vascular access patency after construction and percutaneous transluminal angioplasty in patients starting hemodialysis[J]. J Vasc Access, 2021, 22(5): 707-715. doi:10.1177/1129729820959934
[32]. Chou Che-Yi., Kuo Huey-Liang., Yung Ya-Fei., Liu Yao-Lung., Huang Chiu-Ching. C-reactive protein predicts vascular access thrombosis in hemodialysis patients[J]. Blood Purif, 2006, 24(4): 342-346. doi:10.1159/000092558
[33]. Gameiro Joana., Ibeas Jose. Factors affecting arteriovenous fistula dysfunction: A narrative review[J]. J Vasc Access, 2020, 21(2): 134-147. doi:10.1177/1129729819845562
[34]. 王自强,刘珍,王雅静,赵淑丽,付立平,杜书同.血液透析患者中心静脉狭窄的治疗及报销方式对治疗方法选择的影响[J].中国血液净化,2018,17(7):476-480.DOI:10.3969/j.issn.1671-4091.2018.07.011.
[35]. Malka Kimberly T., Flahive Julie., Csizinscky Alex., Aiello Francesco., Simons Jessica P., Schanzer Andres., Messina Louis M., Robinson William P. Results of repeated percutaneous interventions on failing arteriovenous fistulas and grafts and factors affecting outcomes[J]. J Vasc Surg, 2016, 63(3): 772-777. doi:10.1016/j.jvs.2015.09.031
[36]. Alturkistani Husain M., Alsergani Abdullah H., Alasqah Mohammad I., Alsaif Faisal F., Shukr Maan A. Predictors of recurrent arteriovenous fistula stenosis in Saudi patients undergoing hemodialysis[J]. Saudi Med J, 2022, 43(6): 592-598. doi:10.15537/smj.2022.43.6.20220192
[37]. Yap Yit-Sheung., Chi Wen-Che., Lin Cheng-Hao., Liu Yi-Chun., Wu Yi-Wen., Yang Hui-Yueh. Factors affecting patency of arteriovenous fistula following first percutaneous transluminal angioplasty[J]. Clin Exp Nephrol, 2021, 25(1): 80-86. doi:10.1007/s10157-020-01958-w
[38]. Marshall Andre P., Luo Weifeng., Wang Xue-Lin., Lin Tonghui., Cai Yujun., Guzman Raul J. Medial artery calcification increases neointimal hyperplasia after balloon injury[J]. Sci Rep, 2019, 9(1): 81-93. doi:10.1038/s41598-019-44668-4
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