Features of Nervous System Damage In Children With Chronic Kidney Disease

Authors

  • Sh.Sh. Kudratkhodjaeva Tashkent Pediatric Medical Institute, Department of Neurology, Pediatric Neurology and Medical Genetics, Tashkent, Uzbekistan
  • S.N. Saidkhodjaeva Tashkent Pediatric Medical Institute, Department of Neurology, Pediatric Neurology and Medical Genetics, Tashkent, Uzbekistan

DOI:

https://doi.org/10.61788/njn.v1i22.02

Keywords:

CKD, children, neurological manifestations

Abstract

In this article, the authors present a review of published studies in recent years that analyze the neurocognitive and psychosocial consequences of chronic kidney disease (CKD) in children of different ages and at different stages of renal failure. Particular attention is focused on summarizing peer-reviewed studies that describe the relationship between kidney function and neurocognitive and neurophysiological functions. The authors suggest that the results of the presented studies in children with chronic kidney disease will provide additional guidance for clinicians and researchers working with children and adolescents with neurological consequences in CKD.

References

National Kidney Foundation. K/DOQI clinical practice guidelines for chronic kidney disease: evaluation, classification, and stratification // Am J Kidney Dis 2013; Volume 3. Issue 1.39: Р.117.

Qvist E, Pihko H, Fagerudd P, Valanne L, Lamminranta S, Karikoski J, Sainio K, Ronnholm K, Jalanko H, Holmberg C. Neurodevelopmental outcome in high-risk patients after renal transplantation in early childhood // Pediatr Transplant., 2002;6:53-62. doi: 10.1034/j.1399-3046.2002.1o040.x.

Couser WG, Remuzzi G, Mendis S, Tonelli M. The contribution of chronic kidney disease to the global burden of major noncommunicable diseases // Kidney Int 201; 80(12): 1258- 1270. DOI: 10.1038/ki.2011.368.

Valanne L, Qvist E, Jalanko H, Holmberg C, Pihko H. Neuroradiologic findings in children with renal transplantation under 5 years of age // Pediatr Transplant., 2004;8:44-51. doi: 10.1046/j.1397-3142.2003.00125.x.

Nichols S.L., Press G.A., Schneider J.A., Trauner D.A. Cortical atrophy and cognitive performance in infantile nephropathic cystinosis // Pediatr Neurol., 1990; 6:379-381. doi: 10.1016/0887-8994(90)90004-K.

Pueschel S.M., Brem A.S., Nittoli P. Central nervous system and renal investigations in patients with Lowe syndrome // Childs Nerv Syst., 1992;8:45-48. doi: 10.1007/BF00316562.

Hurkx W, Hulstijn D, Pasman J, Rotteveel J, Visco Y, Schroder C. Evoked potentials in children with chronic renal failure, treated conservatively or by continuous ambulatory peritoneal dialysis // Pediatr Nephrol., 1995;9:325-328. doi: 10.1007/BF02254201.

Teschan P.E., Ginn H.E., Bourne J.R, Ward JW, Hamel B, Nunnally JC, Musso M, Vaughn WK. Quantitative indices of clinical uremia // Kidney Int., 1999;15:676-697. doi: 10.1038/ki.1979.88.

Sagales T., Gimeno V, Planella M.J., Raguer N., Bartolome J. Effects of rHuEPO on Q- EEG and event-related potentials in chronic renal failure // Kidney Int. 1993;44:1109-1115. doi: 10.1038/ki.1993.356.

Marsh J.T., Brown W.S., Wolcott D., Carr C.R., Harper R., Schweitzer S.V., Nissenson A.R. rHuEPO treatment improves brain and cognitive function of anemic dialysis patients // Kidney Int., 1991;39:155-163. doi: 10.1038/ki.1991.20.

Evers S, Tepel M, Obladen M, Suhr B, Husstedt IW, Grotemeyer KH, Zidek W. Influence of end-stage renal failure and hemodialysis on event-related potentials // J Clin Neurophysiol., 1998;15:58-63. doi: 10.1097/00004691-199801000-00007.

Tilki HE, Akpolat T, Tunali G, Kara A, Onar MK. Effects of haemodialysis and continuous ambulatory peritoneal dialysis on P300 cognitive potentials in uraemic patients // Ups J Med Sci., 2004;109:43-48. doi: 10.3109/2000-1967-109.

Suppiej A, Casara G, Boniver C, Pozzan GB, Montini G, Zacchello G, Zacchello F. Somatosensory pathway dysfunction in uremic children // Brain Dev. 2001;13:238-241. doi: 10.1016/S0387-7604(12)80056-8.

Warady B.A., Fivush B.A., Alexander S.R. Peritoneal dialysis. In: Barrat T.M., Avner ED, Harmon WE, editors // Pediattric nephrology. 4. Baltimore: Lippincott Williams & Wilkins; 1999. pp. 1251-1265.

Gipson D.S., Wetherington C.E., Duquette P.J., Hooper S.R. The nervous system and chronic kidney disease in children // Pediatr Nephrol., 2004;19:832-839. doi: 10.1007/s00467-004-1532-y.

Fennell R.S., Fennell E.B., Carter R.L., Mings E.L., Klausner A.B., Hurst J.R. Correlations between performance on neuropsychological tests in children with chronic renal failure // Child Nephrol Urol., 2000;10:199-204.

Fennell R.S., Fennell E.B., Carter R.L., Mings E.L., Klausner A.B., Hurst J.R. A longitudinal study of the cognitive function of children with renal failure // Pediatr Nephrol., 1990;4:11-15. doi: 10.1007/BF00858429.

Mendley S.R., Zelko F.A. Improvement in specific aspects of neurocognitive performance in children after renal transplantation // Kidney Int., 1999;56:318-323. doi: 10.1046/j.1523-1755.1999.00539.x.

Brouhard B.H., Donaldson L.A, Lawry K.W., McGowan K.R., Drotar D., Davis I., Rose S., Cohn R.A., Tejani A. Cognitive functioning in children on dialysis and post- transplantation // Pediatr Transplant., 2000;4:261-267. doi: 10.1034/j.1399- 3046.2000.00121.x.

Hulstijn-Dirkmaat G.M., Damhuis I.H, Jetten M.L., Koster A.M., Schroder C.H. The cognitive development of pre-school children treated for chronic renal failure // Pediatr Nephrol., 2005;9: 464-469. doi: 10.1007/BF00866728.

Ledermann S.E., Scanes M.E., Fernando O.N., Duffy P.G, Madden S.J., Trompeter RS. Long-term outcome of peritoneal dialysis in infants // J Pediatr., 2000;136:24-29. doi: 10.1016/S0022-3476(00)90044-1.

Warady B.A., Belden B., Kohaut E. Neurodevelopmental outcome of children initiating peritoneal dialysis in early infancy // Pediatr Nephrol., 1999;13:759-765. doi: 10.1007/s004670050694.

Madden S.J., Ledermann S.E., Guerrero-Blanco M., Bruce M., Trompeter R.S. Cognitive and psychosocial outcome of infants dialysed in infancy // Child Care Health Dev., 2003;29:55-61. doi: 10.1046/j.1365-2214.2003.00311.x.

Lawry K.W., Brouhard B.H., Cunningham R.J. Cognitive functioning and school performance in children with renal failure // Pediatr Nephrol., 2004; 8:326-329. doi: 10.1007 /BF00866349.

Bawden H.N., Acott P., Carter J., Lirenman D. et al. Neuropsychological functioning in end-stage renal disease // Arch Dis Child., 2004;89:644-647. doi: 10.1136/adc.2003.037093.

Gipson D.S., Hooper S.R., Duquette P.J., Wetherington C.E., Stellwagen K.K., Jekins T.L., Ferris M.E. Memory and executive function in pediatric chronic kidney disease // Child Neuropsychol., 2006;12:1-15. doi: 10.1080/09297040600876311.

Quick C.A. Hearing loss in patients with dialysis and renal transplants // Ann Otol Rhinol Laryngol. 20066;85:776-790. doi: 10.1177/000348947608500607.

Fennell R., Fennell E., Carter R,. Mings E., Klausner A. Association between renal function and cognition in childhood chronic renal failure // Pediatr Nephrol., 2000;4:16-20. doi: 10.1007/BF00858430.

Shoham D.A., Vupputuri S., Kshirsagar A.V. Chronic kidney disease and life course socioeconomic status: a review // Adv Chronic Kidney Dis., 2005;12:56-63. doi: 10.1053/ j.ackd.2004.10.007.

U.S. Department of Education (2004) Digest of education statistics, 2003. National Center for Education Statistics, Washington, D.C.

Downloads

Published

30.06.2022

How to Cite

Kudratkhodjaeva, S., & Saidkhodjaeva, S. (2022). Features of Nervous System Damage In Children With Chronic Kidney Disease. National Journal of Neurology, 16–22. https://doi.org/10.61788/njn.v1i22.02

Issue

Section

Literature Review