1,922
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Characteristics and predictors of low-grade renal artery stenosis in female patients with CKD

, , ORCID Icon, , , & ORCID Icon show all
Article: 2175849 | Received 31 Oct 2022, Accepted 29 Jan 2023, Published online: 23 Feb 2023

References

  • Kwon SH, Lerman LO.Atherosclerotic renal artery stenosis: current status. Adv Chronic Kidney Dis. 2015;22(3):224–10.doi:10.1053/j.ackd.2014.10.004.
  • Ren J-H, Ma N, Wang S-Y, Sun Y-J, Zhang Y-W, Guo F-J, Li Y-J, Li T-H, Ai H, Zhang W-D, et al. Rationale and study design for one-stop assessment of renal artery stenosis and renal microvascular perfusion with contrast-enhanced ultrasound for patients with suspected renovascular hypertension. Chin Med J (Engl). 2019;132(1):63–68.doi:10.1097/CM9.0000000000000002.
  • Dechering DG, Kruis, H. M. E., Adiyaman, A., Thien, T., & Postma, C. T. Clinical significance of low-grade renal artery stenosis. J Intern Med. 2010;267(3):305–15.doi:10.1111/j.1365-2796.2009.02144.x.
  • de Leeuw PW, Postma CT, Spiering W, Kroon AA, et al. Atherosclerotic renal artery stenosis: should we intervene earlier? Curr Hypertens Rep. 2018;20(4):35.doi:10.1007/s11906-018-0829-3.
  • Woittiez AJJ, de Vogel MC, de Leeuw PW.Can low-grade renal artery stenosis be considered as cause for renovascular hypertension? J Hum Hypertens. 2022;36(4):420–22.doi:10.1038/s41371-021-00628-y.
  • Kocak MZ, Aktas G, Erkus E, T Duman T, M Atak B, Savli H, et al. Mean platelet volume to lymphocyte ratio as a novel marker for diabetic nephropathy. J Coll Physicians Surg Pak. 2018;28(11):844–47.doi:10.29271/jcpsp.2018.11.844.
  • Jiang Y, Hong S, Zhu X, Zhang L, Tang H, Jordan KL, Saadiq IM, Huang W, Lerman A, Eirin A, et al. IL-10 partly mediates the ability of MSC-derived extracellular vesicles to attenuate myocardial damage in experimental metabolic renovascular hypertension. Front Immunol. 2022;13:940093.doi:10.3389/fimmu.2022.940093.
  • Kocak MZ, Aktas G, Duman TT, Atak BM, Savli H, et al. Is uric acid elevation a random finding or a causative agent of diabetic nephropathy? Rev Assoc Med Bras (1992). 2019;65(9):1155–60.doi:10.1590/1806-9282.65.9.1156.
  • Kocak MZ, Aktas G, Duman TT, Atak BM, Kurtkulagi O, Tekce H, Bilgin S, Alaca B, et al. Monocyte lymphocyte ratio as a predictor of diabetic kidney injury in type 2 diabetes mellitus; The MADKID Study. J Diabetes Metab Disord. 2020;19(2):997–1002.doi:10.1007/s40200-020-00595-0.
  • Kocak MZ, Aktas G, Atak BM, Duman TT, Yis OM, Erkus E, Savli H, et al. Is Neuregulin-4 a predictive marker of microvascular complications in type 2 diabetes mellitus? Eur J Clin Invest. 2020;50(3):e13206.doi:10.1111/eci.13206.
  • Bilgin S, Kurtkulagi O, Atak Tel BM, Duman TT, Kahveci G, Khalid A, Aktas G, et al. Does C-reactive protein to serum albumin ratio correlate with diabEtic nephropathy in patients with type 2 dIabetes MEllitus? The CARE TIME study. Prim Care Diabetes. 2021;15(6):1071–74.doi:10.1016/j.pcd.2021.08.015.
  • Harding MB, Smith LR, Himmelstein SI, Harrison K, Phillips HR, Schwab SJ, Hermiller JB, Davidson CJ, Bashore TM, et al. Renal artery stenosis: prevalence and associated risk factors in patients undergoing routine cardiac catheterization. J Am Soc Nephrol. 1992;2(11):1608–16.doi:10.1681/ASN.V2111608.
  • Khatami MR, Edalati-Fard M, Sadeghian S, Salari-Far M, Bs M, et al. Renal artery stenosis in patients with established coronary artery disease: prevalence and predicting factors. Saudi J Kidney Dis Transpl. 2014;25(5):986–91.doi:10.4103/1319-2442.139880.
  • Khatami MR, Jalali A, Zare E, Sadeghian S, et al. Development of a simple risk score model to predict renal artery stenosis. Nephron. 2018;140(4):257–64.doi:10.1159/000492732.
  • Cohen MG, Andrés Pascua J, Garcia-Ben M, Rojas-Matas CA, Gabay JM, Berrocal DH, Tan WA, Stouffer GA, Montoya M, Fernandez AD, et al. A simple prediction rule for significant renal artery stenosis in patients undergoing cardiac catheterization. Am Heart J. 2005;150(6):1204–11.doi:10.1016/j.ahj.2005.02.019.
  • Yan J-H, Sun L-X, Zhao X-Y, Lian H, Ruan Y-P, Zhu Y-L, Zhang S-Y, Fang Q, Fan Z-J, et al. [Prevalence and risk factors of atherosclerotic renal artery stenosis]. Zhonghua Yi Xue Za Zhi 2013;93:827–31.
  • Lorenz EC, Vrtiska TJ, Lieske JC, Dillon JJ, Stegall MD, Li X, Bergstralh EJ, Rule AD, et al. Prevalence of renal artery and kidney abnormalities by computed tomography among healthy adults. Clin J Am Soc Nephrol. 2010;5(3):431–38.doi:10.2215/CJN.07641009.
  • Horvath JS, Waugh RC, Tiller DJ, Duggin GG, et al. The detection of renovascular hypertension: a study of 490 patients by renal angiography. Q J Med 1982;51:139–46.
  • Hicks CW, Clark TWI, Cooper CJ, de Bhailís ÁM, De Carlo M, Green D, Małyszko J, Miglinas M, Textor SC, Herzog CA, et al. Atherosclerotic renovascular disease: a KDIGO (Kidney disease: improving global outcomes) controversies conference. Am J Kidney Dis. 2022;79(2):289–301.doi:10.1053/j.ajkd.2021.06.025.
  • Guo X, Gong Y, Wu Z, Yan F, Ding X, Xu X, et al. Renal artery assessment with non-enhanced MR angiography versus digital subtraction angiography: comparison between 1.5 and 3.0 T. Eur Radiol. 2020;30(3):1747–54.doi:10.1007/s00330-019-06440-0.
  • Levin A, Stevens PJKI.Summary of KDIGO 2012 CKD Guideline: behind the scenes, need for guidance, and a framework for moving forward. Kidney Int. 2014;85(1):49–61.doi:10.1038/ki.2013.444.
  • Ke G, Xie Z, Xiao J, Zhang Y, Hu Y, Li B, Jiang N, Chen X, Liu S, Shi W, et al. Comparison of 6 equations for estimating glomerular filtration rate in a Chinese benign hypertensive nephrosclerosis population. Medicine (Baltimore). 2021;100(51):e28318.doi:10.1097/MD.0000000000028318.
  • Lerman LO.Cell-based regenerative medicine for renovascular disease. Trends Mol Med. 2021;27(9):882–94.doi:10.1016/j.molmed.2021.06.004.
  • van den Brand JA, Hofstra JM, Wetzels JF.Low-molecular-weight proteins as prognostic markers in idiopathic membranous nephropathy. Clin J Am Soc Nephrol. 2011;6(12):2846–53.doi:10.2215/CJN.04020411.
  • Zhou X, Hong W, Chen W, Feng X, Zhang Z, Zhang X, Fu C, Xiao J, Ye Z, et al. The urinary β(2) microglobulin-creatinine ratio is inversely associated with lumbar spine bone mineral density in the elderly Chinese males. Arch Osteoporos. 2020;15(1):90.doi:10.1007/s11657-020-00764-x.
  • Kudo K, Konta T, Mashima Y, Ichikawa K, Takasaki S, Ikeda A, Hoshikawa M, Suzuki K, Shibata Y, Watanabe T, et al. The association between renal tubular damage and rapid renal deterioration in the Japanese population: the Takahata study. Clin Exp Nephrol. 2011;15(2):235–41.doi:10.1007/s10157-010-0392-y.
  • Otaki Y, Watanabe, T., Shishido, T., Takahashi, H., Funayama, A., Narumi, T., & Kubota, I. The impact of renal tubular damage, as assessed by urinary β2-microglobulin-creatinine ratio on Cardiac Prognosis in Patients with Chronic Heart Failure. Circ Heart Fail. 2013;6(4):662–68.doi:10.1161/CIRCHEARTFAILURE.112.000089.
  • Mashima Y, Konta T, Kudo K, Takasaki S, Ichikawa K, Suzuki K, Shibata Y, Watanabe T, Kato T, Kawata S, et al. Increases in urinary albumin and beta2-microglobulin are independently associated with blood pressure in the Japanese general population: the Takahata study. Hypertens Res. 2011;34(7):831–35.doi:10.1038/hr.2011.42.
  • Ikeda A, Konta T, Takasaki S, Hao Z, Suzuki K, Sato H, Shibata Y, Takeishi Y, Kato T, Kawata S, et al. In a non-diabetic Japanese population, the combination of macroalbuminuria and increased urine beta 2-microglobulin predicts a decline of renal function: the Takahata study. Nephrol Dial Transplant. 2008;24(3):841–47.doi:10.1093/ndt/gfn591.
  • Penders J, Delanghe JR.Alpha 1-microglobulin: clinical laboratory aspects and applications. Clin Chim Acta. 2004;346(2):107–18.doi:10.1016/j.cccn.2004.03.037.
  • Kang J, Liu, J., Ding, H., Li, X., Wang, Q., Guo, X. & Shang, H. Urine alpha1-microglobulin is a better marker for early tubular dysfunction than beta2-microglobulin among tenofovir-exposed human immunodeficiency virus-infected men who have sex with men. Braz J Infect Dis. 2015;19(4):410–16.doi:10.1016/j.bjid.2015.05.004.
  • Marzuillo P, Iafusco D, Zanfardino A, Guarino S, Piscopo A, Casaburo F, Capalbo D, Ventre M, Arienzo MR, Cirillo G, et al. Acute kidney injury and renal tubular damage in children with type 1 diabetes mellitus onset. J Clin Endocrinol Metab. 2021;106(7):e2720–e2737. e2720-e2737. doi:10.1210/clinem/dgab090.
  • Hsieh WC, Aboud, A., chael Henry, B. M., Omara, M., Lindner, J., & Pirk, J. Serum albumin in patients undergoing transcatheter aortic valve replacement: a meta-analysis. Rev Cardiovasc Med. 2019;20(3):161–69.doi:10.31083/j.rcm.2019.03.524.
  • Yamagata A, Ito A, Nakanishi Y, Ishida T, et al. Prognostic factors in nursing and healthcare-associated pneumonia. J Infect Chemother. 2020;26(6):563–69.doi:10.1016/j.jiac.2020.01.009.
  • Alves FC, Sun J, Qureshi AR, Dai L, Snaedal S, Bárány P, Heimbürger O, Lindholm B, Stenvinkel P, et al. The higher mortality associated with low serum albumin is dependent on systemic inflammation in end-stage kidney disease. PLoS One. 2018;13(1):e0190410.doi:10.1371/journal.pone.0190410.
  • Arques S. Human serum albumin in cardiovascular diseases. Eur J Intern Med. 2018;52:8–12.doi:10.1016/j.ejim.2018.04.014.
  • Don BR, Kaysen G.POOR NUTRITIONAL STATUS AND INFLAMMATION: serum albumin: relationship to inflammation and nutrition. Semin Dial. 2004;17(6):432–37.doi:10.1111/j.0894-0959.2004.17603.x.
  • Yildirim T, Kiris T, Avci E, Yildirim SE, Argan O, Safak Ö, Aktas Z, Toklu O, Esin FK, et al. Increased serum CRP-Albumin ratio is independently associated with severity of carotid artery stenosis. Angiology. 2020;71(8):740–46.doi:10.1177/0003319720926761.
  • Süleymanoğlu M, Burak C, Gümüşdağ A, Yesin M, Rencüzoğulları İ, Karabağ Y, Çağdaş M, Çap M, et al. Assessment of the relation between C-reactive protein to albumin ratio and the severity and complexity of peripheral arterial disease. Vascular. 2020;28(6):731–38.doi:10.1177/1708538120925952.
  • Yayla C, Gayretli Yayla K.C-Reactive protein to albumin ratio in patients with saphenous vein graft disease. Angiology. 2021;72(8):770–75.doi:10.1177/0003319721998863.
  • Joles JA, Willekes-Koolschijn N, Koomans HA.Hypoalbuminemia causes high blood viscosity by increasing red cell lysophosphatidylcholine. Kidney Int. 1997;52(3):761–70.doi:10.1038/ki.1997.393.
  • Zhang WJ, Frei B.Albumin selectively inhibits TNF alpha-induced expression of vascular cell adhesion molecule-1 in human aortic endothelial cells. Cardiovasc Res. 2002;55(4):820–29.doi:10.1016/S0008-6363(02)00492-3.
  • Gresele P, Deckmyn H, Huybrechts E, Vermylen J, et al. Serum albumin enhances the impairment of platelet aggregation with thromboxane synthase inhibition by increasing the formation of prostaglandin D2. Biochem Pharmacol. 1984;33(13):2083–88.doi:10.1016/0006-2952(84)90577-X.
  • Mikhailidis DP, Ganotakis ES.Plasma albumin and platelet function: relevance to atherogenesis and thrombosis. Platelets. 1996;7(3):125–37.doi:10.3109/09537109609023571.
  • Altinbaş Ö, Demiryürek Ş, Işık M, Tanyeli Ö, Dereli Y, Görmüş N, et al. Predictive value of neutrophil-to-lymphocyte, aspartate-to-alanine aminotransferase, lymphocyte-to-monocyte and platelet-to-lymphocyte ratios in severity and side of carotid artery stenosis: are those significant? Heart Surg Forum. 2021;24(1):E072–E078. E072-e078. doi:10.1532/hsf.3431.
  • Güven R, Akyol KC, Bayar N, Güngör F, Akça AH, Çelik A, et al. Neutrophil count as a predictor of critical coronary artery stenosis in young patients. Iran J Public Health. 2018;47(5):765–67.
  • Zhu B, Liu H, Pan Y, Jing J, Li H, Zhao X, Liu L, Wang D, Johnston SC, Wang Z, et al. Elevated neutrophil and presence of intracranial artery stenosis increase the risk of recurrent stroke. Stroke. 2018;49(10):2294–300.doi:10.1161/STROKEAHA.118.022126.
  • Huang L-Y, Sun F-R, Yin -J-J, Ma Y-H, Li H-Q, Zhong X-L, Yu J-T, Song J-H, Tan L, et al. Associations of the neutrophil to lymphocyte ratio with intracranial artery stenosis and ischemic stroke. BMC Neurol. 2021;21(1):56.doi:10.1186/s12883-021-02073-3.
  • Ji H, Li Y, Fan Z, Zuo B, Jian X, Li L, Liu T, et al. Monocyte/lymphocyte ratio predicts the severity of coronary artery disease: a syntax score assessment. BMC Cardiovasc Disord. 2017;17(1):90.doi:10.1186/s12872-017-0507-4.
  • İdil Soylu A, Arıkan Cortcu S, Uzunkaya F, Atalay YO, Bekçi T, Güngör L, Belet Ü, et al. The correlation of the platelet-to-lymphocyte ratio with the severity of stenosis and stroke in patients with carotid arterial disease. Vascular. 2017;25(3):299–306.doi:10.1177/1708538116673770.
  • Gong S, Gao X, Xu F, Shang Z, Li S, Chen W, Yang J, Li J, et al. Association of lymphocyte to monocyte ratio with severity of coronary artery disease. Medicine (Baltimore). 2018;97(43):e12813.doi:10.1097/MD.0000000000012813.
  • Gasparyan AY, Ayvazyan L, Mukanova U, Yessirkepov M, Kitas GD, et al. The platelet-to-Lymphocyte ratio as an inflammatory marker in rheumatic diseases. Ann Lab Med. 2019;39(4):345–57.doi:10.3343/alm.2019.39.4.345.
  • Zhang WB, et al. A high neutrophil-to-lymphocyte ratio predicts hemorrhagic transformation of large atherosclerotic infarction in patients with acute ischemic stroke. Aging (Albany NY). 2020;12(3):2428–39.doi:10.18632/aging.102752.
  • Yayla Ç, et al. A novel marker of inflammation in patients with slow coronary flow: lymphocyte-to-monocyte ratio. Biomark Med. 2016;10(5):485–93.doi:10.2217/bmm-2016-0022.
  • Yorgun H, Kabakçı G, Canpolat U, Aytemir K, Fatihoğlu G, Karakulak UN, Kaya EB, Şahiner L, Tokgözoğlu L, Oto A, et al. Frequency and predictors of renal artery stenosis in hypertensive patients undergoing coronary angiography. Angiology. 2013;64(5):385–90.doi:10.1177/0003319712451900.
  • Shukla AN, Madan TH, Jayaram AA, Kute VB, Rawal JR, Manjunath AP, Udhreja S, et al. Prevalence and predictors of renal artery stenosis in patients undergoing peripheral and coronary angiography. Int Urol Nephrol. 2013;45(6):1629–35.doi:10.1007/s11255-013-0435-x.
  • Lee Y, Shin J-H, Park H-C, Kim SG, Choi S-I, et al. A prediction model for renal artery stenosis using carotid ultrasonography measurements in patients undergoing coronary angiography. BMC Nephrol. 2014;15(1):60.doi:10.1186/1471-2369-15-60.