Formulas for estimating glomerular filtration rate: correct and incorrect use

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作者简介

Evgeny Shilov

Sechenov University

编辑信件的主要联系方式.
Email: emshilov@gmail.com
ORCID iD: 0000-0002-2111-191X

Dr.Sci. (Med.), Professor at the Department of Therapy, Occupational Diseases and Rheumatology

俄罗斯联邦, Bldg. 2, 8 Trubetskaya st., Moscow, 119048

参考

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  2. KDIGO 2012 Clinical Practice Guideline for the Evaluation and Management of Chronic Kidney Disease. Kidney International Supplements. 2013;3:136–150. doi: 10.1038/kisup.2012.72
  3. Руководство KDIGO 2023 по ХБП. https://kdigo.org/conferences/era-2023-ckd-guideline-draft-preview/ [KDIGO 2023 CKD Guidelines. https://kdigo.org/conferences/era-2023-ckd-guideline-draft-preview/.
  4. Батюшин М.М. Методические основы оценки скорости клубочковой фильтрации в урологической практике. Вестник урологии. 2017;5:42–51. [Batyushin M.M. Methodological foundations for assessing the glomerular filtration rate in urological practice. Bulletin of Urology. 2017;5:42–51 (In Russ.)].
  5. Бобкова И.Н., Камышова Е.С., Чеботарева Н.В. Проба Реберга–Тареева в оценке скорости клубочковой фильтрации. Терапевтический архив. 2021;93:1246–1248. doi: 10.26442/00403660.2021.10.201119 [Bobkova I.N., Kamyshova E.S., Chebotareva N.V. Rehberg–Tareev test in the estimation of glomerular filtration rate. Terapevticheskiy arkhiv. 2021;93:1246–1248 (In Russ.)].
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  7. Lin Yen-Chung, Lai Yi-Jen, Lin Yi-Chun, et al. Effect of weight loss on the estimated glomerular filtration rates of obese patients at risk of chronic kidney disease: the RIGOR-TMU study. Journal of Cachexia, Sarcopenia and Muscle. 2019;10:756–766.
  8. Гуссаова С.С., Бобкова И.Н., Яшков Ю.И. и др. Изменение метаболических показателей и скорости клубочковой фильтрации у больных морбидным ожирением после бариатрических операций. Терапевтический архив. 2020; 92: 53–59. doi: 10.26442/00403660.2020.06.000674 [Gussaova S.S., Bobkova I.N., Yashkov Yu.I. et al. Changes in metabolic parameters and glomerular filtration rate in patients with morbid obesity after bariatric surgery. . Therapeutic Archive. 2020; 92: 53-59. doi: 10.26442/00403660.2020.06.000674 (In Russ.)].
  9. Rothberg Amy E., McEwen Laura N., Herman William H. Severe obesity and the impact of medical weight loss on estimated glomerular filtration rate. PLOS ONE February 25, 2020 https://doi.org/10.1371/journal.pone.0228984
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  12. Delanaye Pierre; Krzesinski Jean-Marie. Indexing of Renal Function Parameters by Body Surface Area: Intelligence or Folly? Nephron Clinical Practice. 2011;119:289–292. https://doi.org/10.1159/000330276
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  15. Kittiskulnam P., Tiskajornsiri K., Katavetin P., Chaiwatanarat T., Eiam-Ong S., Praditpornsilpa K.The failure of glomerular filtration rate estimating equations among obese population. PLoS ONE. 2020;15:e0242447. https://doi.org/10.1371/journal.pone.0242447
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  17. Glassock R. Commentary on: Friedman A.N., Moe S., Fadel W.F., et al. Predicting the Glomerular Filtration Rate in Bariatric Surgery Patients. Am J Nephrol. 2014;39:8–15.
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补充文件

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1. JATS XML
2. Fig.1. Conceptual model for estimating GFR using creatine-based formulas for epidemiological purposes of CKD

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3. Fig.2. In obese patients, indexing to standard body surface area underestimates eGFR compared with reference measured GFR (iothalamate) [15]

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4. Fig.3. Explanation of error in eGFR due to indexing after baratric surgery

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