À propos de cet article

Citez

1. Acosta-Ochoa I, Bustamante-Munguira J, Mendiluce- Herrero A, Bustamante-Bustamante J, Coca-Rojo A. Impact on Outcomes across KDIGO-2012 AKI Criteria According to Baseline Renal Function. J Clin Med. 2019 Aug 28;8(9) -2. Glassock, R., Delanaye, P. & El Nahas, M. An agecalibrated classification of chronic kidney disease. JAMA 314, 559–560 (2015). Search in Google Scholar

2. Sabitha Vadakedath1 and Venkataramana Kandi: Dialysis: A Review of the Mechanisms Underlying Complications in the Management of Chronic Renal Failure 10.7759/cureus.1603 Search in Google Scholar

3. Anders Hartmann, TrondJenssen, HallvardHoldaas, Diabetes, chronic kidney disease and cancer risk, Nephrology Dialysis Transplantation, Volume 27, Issue 8, August 2012, Pages 3018–3020, https://doi.org/10.1093/ndt/gfs17510.1093/ndt/gfs17522734106 Search in Google Scholar

4. Georgescu DE, Patrascu T, Georgescu TF, Tulin A, Mosoia L, Bacalbasa N, Stiru O, Georgescu MT. Diabetes Mellitus as a Prognostic Factor for Locally Advanced Rectal Cancer. In Vivo. 2021 Jul-Aug;35(4):2495-2501. doi: 10.21873/invivo.12530. PMID: 34182536; PMCID: PMC8286501.828650134182536 Open DOISearch in Google Scholar

5. PongpanSuriyong, ChidchanokRuengorn, Chairat Shayakul: Prevalence of chronic kidney disease stages 3–5 in low- and middle-income countries in Asia: A systematic review and meta-analysis, https://doi.org/10.1371/journal.pone.026439310.1371/journal.pone.0264393888040035213610 Search in Google Scholar

6. Mary Mallappallil, Eli A Friedman, Barbara G Delano, Samy I McFarlane, and Moro O Salifu : Chronic kidney disease in the elderly: evaluation and management, doi: 10.2217/cpr.14.46429128225589951 Open DOISearch in Google Scholar

7. O’Hare, A. M. et al. Age affects outcomes in chronic kidney disease. J. Am. Soc. Nephrol. 18, 2758–2765 (2007)10.1681/ASN.2007040422 Search in Google Scholar

8. Neugarten J, Acharya A, Silbiger SR. Effect of gender on the progression of nondiabetic renal disease: a meta- analysis. J Am Soc Nephrol 2000; 11:319–32910.1681/ASN.V11231910665939 Search in Google Scholar

9. Carrero, J., Hecking, M., Chesnaye, N. et al. Sex and gender disparities in the epidemiology and outcomes of chronic kidney disease. Nat Rev Nephrol 14, 151–164 (2018). https://doi.org/10.1038/nrneph.2017.18110.1038/nrneph.2017.18129355169 Search in Google Scholar

10. Neugarten J, Golestaneh L. Gender and the prevalence and progression of renal disease. Adv Chronic Kidney Dis. 2013 Sep;20(5):390-5. doi: 10.1053/j.ackd.2013.05.004. PMID: 23978543.23978543 Open DOISearch in Google Scholar

11. Busnatu SS, Salmen T, Pana M A, Rizzo M, Stallone T, Papanas N, Popovic D, Tanasescu D, Serban D, Stoian, AP. (2022). The Role of Fructose as a Cardiovascular Risk Factor: An Update. Metabolites. 2022 Jan;12(1):67. doi: https://doi.org/10.1681/ASN.2010050506 PMID: 35050189 PMCID: PMC877908010.1681/ASN.201005050621115612 Search in Google Scholar

12. Kovesdy CP, Ureche V, Lu JL, Kalantar-Zadeh K. Outcome predictability of serum alkaline phosphatase in men with pre-dialysis CKD. Nephrol Dial Transplant. 2010 Sep;25(9):3003-11. doi: 10.1093/ndt/gfq144. Epub 2010 Mar 17. PMID: 20299338; PMCID: PMC2948834.294883420299338 Open DOISearch in Google Scholar

13. Taliercio JJ, Schold JD, Simon JF, Arrigain S, Tang A, Saab G, Nally JV Jr, Navaneethan SD. Prognostic importance of serum alkaline phosphatase in CKD stages 3-4 in a clinical population. Am J Kidney Dis. 2013 Oct;62(4):703-10. doi: 10.1053/j.ajkd.2013.04.012. Epub 2013 Jun 12. PMID: 23769134; PMCID: PMC3783514378351423769134 Open DOISearch in Google Scholar

14. Kim, S.M.; Choi, H.J.; Lee, J.P.; Kim, D.K.; Oh, Y.K.; Kim, Y.S.; Lim, C.S. Prevalence of vitamin D deficiency and effects of supplementation with cholecalciferol in patients with chronic kidney disease. J. Ren. Nutr. 2014, 24, 20–25. [CrossRef] [PubMed]10.1053/j.jrn.2013.07.003 Search in Google Scholar

15. Guessous, I.; McClellan, W.; Kleinbaum, D.; Vaccarino, V.; Zoller, O.; Theler, J.M.; Paccaud, F.; Burnier, M.; Bochud, M. Comparisons of serum vitamin D levels, status, and determinants in populations with and without chronic kidney disease not requiring renal dialysis: A 24- h urine collection population-based study. J. Ren. Nutr. 2014, 24, 303–312. [CrossRef] [PubMed]10.1053/j.jrn.2014.04.005 Search in Google Scholar

16. Jacob, A.I.; Sallman, A.; Santiz, Z.; Hollis, B.W. Defective photoproduction of cholecalciferol in normal and uremic humans. J. Nutr. 1984, 114, 1313–1319. [PubMed]10.1093/jn/114.7.1313 Search in Google Scholar

17. Jean G, Souberbielle JC, Chazot C. Vitamin D in Chronic Kidney Disease and Dialysis Patients. Nutrients. 2017 Mar 25;9(4):328. doi: 10.3390/nu9040328. PMID: 28346348; PMCID: PMC5409667.540966728346348 Open DOISearch in Google Scholar

18. Gutierrez OM, Mannstadt M, Isakova T et al. Fibroblast growth factor 23 and mortality among patients undergoing hemodialysis. N Engl J Med 2008; 359:584-59210.1056/NEJMoa0706130289026418687639 Search in Google Scholar

19. Lepe-Zúñiga JL, Morales-Molina P, García-Nandayapa GA. Caracterización y correlación clínica de la linfopenia en la enfermedad renal en estadio terminal [End stage renal disease lymphopenia; characterization and clinical correlation]. Rev Med Inst Mex Seguro Soc. 2016 Jul-Aug;54(4):446-53. Spanish. PMID: 27197101. Search in Google Scholar

20. Liu WY, Lin SG, Wang LR, Fang CC, Lin YQ, Braddock M, Zhu GQ, Zhang Z, Zheng MH, Shen FX. Platelet-to- Lymphocyte Ratio: A Novel Prognostic Factor for Prediction of 90-day Outcomes in Critically Ill Patients With Diabetic Ketoacidosis. Medicine (Baltimore). 2016 Jan;95(4):e2596. doi: 10.1097/MD.0000000000002596. PMID: 26825908; PMCID: PMC5291578.529157826825908 Open DOISearch in Google Scholar

21. Alexandru M, Rodica A, Dragos-Eugen G, Mihai- Teodor G. Assessing the Spleen as an Organ at Risk in Radiation Therapy and Its Relationship With Radiation- Induced Lymphopenia: A Retrospective Study and Literature Review. Adv Radiat Oncol. 2021 Jul 29;6(6):100761. doi: 10.1016/j.adro.2021.100761. PMID: 34934857; PMCID: PMC8655387.865538734934857 Open DOISearch in Google Scholar

22. Popoviciu MS, Marin VN, Vesa CM, Stefan SD, Stoica RA, Serafinceanu C, Merlo EM, Rizvi AA, Rizzo M, Busnatu SS, Stoian AP. Correlations between Diabetes Mellitus Self-Care Activities and Glycaemic Control in the Adult Population: A Cross-Sectional Study. Healthcare 2022, 10, 174. https://doi.org/10.3390/healthcare10010174 PMID: 35052337 PMCID: PMC877551610.3390/healthcare10010174877551635052337 Search in Google Scholar

23. Qin S, Lu Y, Chen S, Hu Z, Chen H, Zhong J, Li S, Chen Z. The Relationship of Neutrophil-to-Lymphocyte Ratio or Platelet-to-Lymphocyte Ratio and Pancreatic Cancer in Patients with Type 2 Diabetes. Clin Lab. 2019 Jul 1;65(7). doi: 10.7754/Clin.Lab.2019.181226. PMID: 31307172.31307172 Open DOISearch in Google Scholar

eISSN:
1220-5818
Langue:
Anglais
Périodicité:
4 fois par an
Sujets de la revue:
Medicine, Clinical Medicine, Internal Medicine, other, Cardiology, Gastroenterology, Pneumology