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中华腔镜泌尿外科杂志(电子版) ›› 2021, Vol. 15 ›› Issue (02) : 173 -176. doi: 10.3877/cma.j.issn.1674-3253.2021.02.022

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综述

肾部分切除术后慢性肾脏病发生及进展因素文献复习
赵国臣1, 张彬1, 吴波1, 胡操阳1, 王东文1,()   
  1. 1. 518116 深圳,中国医学科学院肿瘤医院深圳医院
  • 收稿日期:2020-03-03 出版日期:2021-04-01
  • 通信作者: 王东文

A review of the literature on the occurrence and progressive factors of chronic kidney disease after partial nephrectomy

Guochen Zhao1, Caoyang Hu1, Bo Wu1   

  • Received:2020-03-03 Published:2021-04-01
引用本文:

赵国臣, 张彬, 吴波, 胡操阳, 王东文. 肾部分切除术后慢性肾脏病发生及进展因素文献复习[J/OL]. 中华腔镜泌尿外科杂志(电子版), 2021, 15(02): 173-176.

Guochen Zhao, Caoyang Hu, Bo Wu. A review of the literature on the occurrence and progressive factors of chronic kidney disease after partial nephrectomy[J/OL]. Chinese Journal of Endourology(Electronic Edition), 2021, 15(02): 173-176.

[1]
Campbell S, Uzzo RG, Allaf ME, et al. Renal mass and localized renal cancer: AUA guideline [J]. J Urol, 2017, 198(3): 520-529.
[2]
Escudier B, Porta C, Schmidinger M, et al. Renal cell carcinoma: ESMO Clinical Practice Guidelines for diagnosis, treatment and follow-up[J]. Ann Oncol, 2016, 27(suppl_5): v58-v68.
[3]
张树栋,马潞林. 2017年欧洲泌尿外科学会年会肾癌指南更新及研究进展[J]. 中华泌尿外科杂志, 2017, 38(7): 485-488.
[4]
Vilaseca A, Guglielmetti G, Vertosick EA, et al. Value of partial nephrectomy for renal cortical tumors of ct2 or greater stage: a risk-benefit analysis of renal function preservation versus increased postoperative morbidity[J]. Eur Urol Oncol, 2020, 3 (3): 365-371.
[5]
Bravi CA, Vertosick E, Benfante N, et al. Impact of acute kidney injury and its duration on long-term renal function after partial nephrectomy[J]. Eur Urol, 2019, 76(3): 398-403.
[6]
Ellis RJ. Chronic kidney disease after nephrectomy: a clinically-significant entity? [J]. Trans Androl Urol, 2019, 8(Suppl 2): S166-S174.
[7]
Antonelli A, Minervini A, Capitanio U. Reply to steven c. campbell, chalairat suk-ouichai, and yun-lin ye's words of wisdom re: below safety limits, every unit of glomerular filtration rate counts: assessing the relationship between renal function and cancerspecific mortality in renal cell carcinoma. Antonelli A, Minervini A, Sandri M, et al. Eur Urol 2018, 74: 661-7 and 2019, 75: 198 [J]. Eur Urol, 2019, 76(1): e17-e18.
[8]
段志宸. 经腹腹腔镜肾脏肿瘤手术与患者术后发生慢性肾脏病关系的研究 [D]. 山东大学, 2019.
[9]
Sharma A, Mucino MJ, Ronco C. Renal Functional Reserve and Renal Recovery after Acute Kidney Injury [J]. Nephron Clin Pract, 2014, 127(1-4): 94-100.
[10]
Choi YS, Park YH, Kim Y-J, et al. Predictive factors for the development of chronic renal insufficiency after renal surgery: a multicenter study[J]. Int Urol Nephrol, 2014, 46(4): 681-686.
[11]
Huang WC, Levey AS, Serio AM, et al. Chronic kidney disease after nephrectomy in patients with renal cortical tumours: a retrospective cohort study[J]. Lancet Oncol, 2006, 7(9): 735-740.
[12]
Martin OD, Bravo H, Arias M, et al. Determinant factors for chronic kidney disease after partial nephrectomy[J]. Oncoscience, 2018, 5(1-2): 13-20.
[13]
Capitanio U, Montorsi F. Renal cancer[J]. Lancet, 2016, 387(10021): 894-906.
[14]
Parekh DJ, Weinberg JM, Ercole B, et al. Tolerance of the human kidney to isolated controlled ischemia [J]. J Am Soc Nephrol, 2013, 24(3): 506-517.
[15]
Volpe A, Blute ML, Ficarra V, et al. Renal ischemia and function after partial nephrectomy: a collaborative review of the literature [J]. Eur Urol, 2015, 68(1): 61-74.
[16]
Thompson RH, Lane BR, Lohse CM, et al. Every minute counts when the renal hilum is clamped during partial nephrectomy[J]. Eur Urol, 2010, 58(3): 340-345.
[17]
Lane BR, Russo P, Uzzo RG, et al. Comparison of cold and warm ischemia during partial nephrectomy in 660 solitary kidneys reveals predominant role of nonmodifiable factors in determining ultimate renal function[J]. J Urol, 2011, 185(2): 421-427.
[18]
Funahashi Y, Yoshino Y, Sassa N, et al. Comparison of warm and cold ischemia on renal function after partial nephrectomy [J]. Urology, 2014, 84(6): 1408-1413.
[19]
王强,张旭. 肾部分切除术治疗复杂性肾肿瘤的研究现状及进展 [J]. 微创泌尿外科杂志, 2016, 5(5): 314-320.
[20]
Maruschke M, Hagel K, Hakenberg O, et al. Prognostic value of intraoperative measurements of renal tissue oxygenation and microcirculation on renal function in partial nephrectomy [J]. Clin Exp Nephrol, 2017, 22(3): 735-742.
[21]
康新立,岑松,钟江, 等. 肾血流阻断方式对肾部分切除术影响的研究 [J]. 临床泌尿外科杂志, 2016, 31(12): 1092-1095.
[22]
GILL I S, EISENBERG M S, ARON M, et al. "Zero ischemia" partial nephrectomy: novel laparoscopic and robotic technique [J]. Eur Urol, 2011, 59(1): 128-134.
[23]
D'urso L, Simone G, Rosso R, et al. Benefits and shortcomings of superselective transarterial embolization of renal tumors before zero ischemia laparoscopic partial nephrectomy [J]. Eur J Surg Oncol, 2014, 40(12): 1731-1737.
[24]
Wszolek MF, Kenney PA, Lee Y, et al. Comparison of hilar clamping and non-hilar clamping partial nephrectomy for tumours involving a solitary kidney[J]. BJU Int, 2011, 107(12): 1886-1892.
[25]
曹嘉正,余新立,廖勇彬, 等. 高选择性肾动脉分支阻断术在腹腔镜肾部分切除术中的应用[J/CD].中华腔镜泌尿外科杂志(电子版) [J]. 2017, 11(3): 195-8.
[26]
Mcclintock TR, Bjurlin MA, Wysock JS, et al. Can selective arterial clamping with fluorescence imaging preserve kidney function during robotic partial nephrectomy? [J]. Urology, 2014, 84(2): 327-34.
[27]
Kim J H, Park YH, Kim YJ, et al. Perioperative and long-term renal functional outcomes of robotic versus laparoscopic partial nephrectomy: a multicenter matched-pair comparison [J]. World J Urol, 2015, 33(10): 1579-1584.
[28]
Hanzly M, Frederick A, Creighton T, et al. Learning curves for robot-assisted and laparoscopic partial nephrectomy[J]. J Endourol, 2015, 29(3): 297-303.
[29]
Bylund JR, Gayheart D, Fleming T, et al. Association of tumor size, location, RENAL, PADUA and centrality index score with perioperative outcomes and postoperative renal function [J]. J Urol, 2012, 188(5): 1684-1689.
[30]
谢福晨,张会江,张伟丽, 等. 新一代肾肿瘤评分系统的研究进展 [J/CD]. 中华腔镜泌尿外科杂志(电子版), 2019, 13(2): 140-144.
[31]
黄立群,虞永江,梁成才, 等. 影像学评分对肾癌肾部分切除术后急性肾功能下降的评价价值及比较 [J]. 临床泌尿外科杂志, 2016, 31(3): 206-209.
[32]
Kumar RK, Sammon JD, Kaczmarek BF, et al. Robot-assisted partial nephrectomy in patients with baseline chronic kidney disease: a multi-institutional propensity score-matched analysis[J]. Eur Urol, 2014, 65(6): 1205-1210.
[33]
Martín OD, Bravo H, Arias M, et al. Determinant factors for chronic kidney disease after partial nephrectomy[J]. Oncoscience, 2018, 5(1-2): 13.
[34]
Porpiglia F, Bertolo R, Amparore D, et al. Nephron-sparing suture of renal parenchyma after partial nephrectomy: which technique to go for? some best practices[J]. Eur Urol Focus, 2019, 5(4): 600-603.
[35]
Marconi L, Desai MM, Ficarra V, et al. Renal preservation and partial nephrectomy: patient and surgical factors [J]. Eur Urol 2016, 2(6): 589-600.
[36]
Bertolo R, Campi R, Klatte T, et al. Suture techniques during laparoscopic and robot-assisted partial nephrectomy: a systematic review and quantitative synthesis of peri-operative outcomes [J]. BJU Int, 2019, 123(6): 923-46.
[37]
Bahler CD, Dube HT, Flynn KJ, et al. Feasibility of omitting cortical renorrhaphy during robot-assisted partial nephrectomy: a matched analysis[J]. J Endourol, 2015, 29(5): 548-555.
[38]
Avitan O, Gorenberg M, Sabo E, et al. The use of tissue adhesive for tumor bed closure during partial nephrectomy is associated with reduced devascularized functional volume loss [J]. Curr Urol, 2019, 13(2): 82-86.
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