Sodium handling in pediatric patients on maintenance dialysis

Weaver DJ Jr, Somers MJG, Martz K, Mitsnefes MM (2017) Clinical outcomes and survival in pediatric patients initiating chronic dialysis: a report of the NAPRTCS registry. Pediatr Nephrol 32:2319–2330

PubMed  Google Scholar 

Tillquist K, Floyd S, Shah AD (2022) Peritoneal dialysis adequacy: too much of a good thing? Kidney 360 3:1777–1779

PubMed  PubMed Central  Google Scholar 

Hothi DK, Rees L, Marek J, Burton J, McIntyre CW (2009) Pediatric myocardial stunning underscores the cardiac toxicity of conventional hemodialysis treatments. Clin J Am Soc Nephrol 4:790–797

CAS  PubMed  PubMed Central  Google Scholar 

Schaefer F (2015) Peritoneal dialysis in infants: never lose sight of-and from-arterial hypotension! Perit Dial Int 35:123–124

PubMed  PubMed Central  Google Scholar 

Canaud B, Kooman J, Selby NM, Taal M, Francis S, Kopperschmidt P, Maierhofer A, Kotanko P, Titze J (2019) Sodium and water handling during hemodialysis: new pathophysiologic insights and management approaches for improving outcomes in end-stage kidney disease. Kidney Int 95:296–309

CAS  PubMed  Google Scholar 

OldeEngberink RHG, Selvarajah V, Vogt L (2020) Clinical impact of tissue sodium storage. Pediatr Nephrol 35:1373–1380

Google Scholar 

Twardowski ZJ (2008) Sodium, hypertension, and an explanation of the “lag phenomenon” in hemodialysis patients. Hemodial Int 12:412–425

PubMed  Google Scholar 

Schneider MP, Raff U, Kopp C, Scheppach JB, Toncar S, Wanner C, Schlieper G, Saritas T, Floege J, Schmid M, Birukov A, Dahlmann A, Linz P, Janka R, Uder M, Schmieder RE, Titze JM, Eckardt KU (2017) Skin sodium concentration correlates with left ventricular hypertrophy in CKD. J Am Soc Nephrol 28:1867–1876

CAS  PubMed  PubMed Central  Google Scholar 

Deger SM, Wang P, Fissell R, Ellis CD, Booker C, Sha F, Morse JL, Stewart TG, Gore JC, Siew ED, Titze J, Ikizler TA (2017) Tissue sodium accumulation and peripheral insulin sensitivity in maintenance hemodialysis patients. J Cachexia Sarcopenia Muscle 8:500–507

PubMed  PubMed Central  Google Scholar 

Sahinoz M, Tintara S, Deger SM, Alsouqi A, Crescenzi RL, Mambungu C, Vincz A, Mason O, Prigmore HL, Guide A, Stewart TG, Harrison D, Luft FC, Titze J, Alp Ikizler T (2020) Tissue sodium stores in peritoneal dialysis and hemodialysis patients determined by 23-sodium magnetic resonance imaging. Nephrol Dial Transplant 36:1307–1317

PubMed  PubMed Central  Google Scholar 

Friedrich AC, Linz P, Nagel AM, Rosenhauer D, Horn S, Schiffer M, Uder M, Kopp C, Dahlmann A (2022) Hemodialysis patients with cardiovascular disease reveal increased tissue Na+ deposition. Kidney Blood Press Res 47:185–193

CAS  PubMed  Google Scholar 

Salerno FR, Akbari A, Lemoine S, Filler G, Scholl TJ, McIntyre CW (2022) Outcomes and predictors of skin sodium concentration in dialysis patients. Clin Kidney J 15:1129–1136

CAS  PubMed  PubMed Central  Google Scholar 

Dahlmann A, Dorfelt K, Eicher F, Linz P, Kopp C, Mossinger I, Horn S, Buschges-Seraphin B, Wabel P, Hammon M, Cavallaro A, Eckardt KU, Kotanko P, Levin NW, Johannes B, Uder M, Luft FC, Muller DN, Titze JM (2015) Magnetic resonance-determined sodium removal from tissue stores in hemodialysis patients. Kidney Int 87:434–441

CAS  PubMed  Google Scholar 

Leyvraz M, Chatelan A, da Costa BR, Taffe P, Paradis G, Bovet P, Bochud M, Chiolero A (2018) Sodium intake and blood pressure in children and adolescents: a systematic review and meta-analysis of experimental and observational studies. Int J Epidemiol 47:1796–1810

PubMed  Google Scholar 

McMahon EJ, Campbell KL, Bauer JD, Mudge DW, Kelly JT (2021) Altered dietary salt intake for people with chronic kidney disease. Cochrane Database Syst Rev 6:CD010070

PubMed  Google Scholar 

Paglialonga F, Shroff R, Zagozdzon I, Bakkaloglu SA, Zaloszyc A, Jankauskiene A, Gual AC, Consolo S, Grassi MR, McAlister L, Skibiak A, Yazicioglu B, Puccio G, Edefonti A, Ariceta G, Aufricht C, Holtta T, Klaus G, Ranchin B, Schmitt CP, Snauwaert E, Stefanidis C, Walle JV, Stabouli S, Verrina E, Vidal E, Vondrak K, Zurowska A, European Pediatric Dialysis Working Group (2023) Sodium intake and urinary losses in children on dialysis: a European multicenter prospective study. Pediatr Nephrol. https://doi.org/10.1007/s00467-023-05932-y

Jadoul M, Karaboyas A, Goodkin DA, Tentori F, Li Y, Labriola L, Robinson BM (2014) Potassium-binding resins: associations with serum chemistries and interdialytic weight gain in hemodialysis patients. Am J Nephrol 39:252–259

CAS  PubMed  Google Scholar 

Medcalf JF, Harris KP, Walls J (2001) Role of diuretics in the preservation of residual renal function in patients on continuous ambulatory peritoneal dialysis. Kidney Int 59:1128–1133

CAS  PubMed  Google Scholar 

Sibbel S, Walker AG, Colson C, Tentori F, Brunelli SM, Flythe J (2019) Association of continuation of loop diuretics at hemodialysis initiation with clinical outcomes. Clin J Am Soc Nephrol 14:95–102

PubMed  Google Scholar 

Parekh RS, Flynn JT, Smoyer WE, Milne JL, Kershaw DB, Bunchman TE, Sedman AB (2001) Improved growth in young children with severe chronic renal insufficiency who use specified nutritional therapy. J Am Soc Nephrol 12:2418–2426

CAS  PubMed  Google Scholar 

Paglialonga F, Consolo S, Galli MA, Testa S, Edefonti A (2015) Interdialytic weight gain in oligoanuric children and adolescents on chronic hemodialysis. Pediatr Nephrol 30:999–1005

PubMed  Google Scholar 

Kalantar-Zadeh K, Regidor DL, Kovesdy CP, Van Wyck D, Bunnapradist S, Horwich TB, Fonarow GC (2009) Fluid retention is associated with cardiovascular mortality in patients undergoing long-term hemodialysis. Circulation 119:671–679

PubMed  PubMed Central  Google Scholar 

Flythe JE, Brunelli SM (2011) The risks of high ultrafiltration rate in chronic hemodialysis: implications for patient care. Semin Dial 24:259–265

PubMed  Google Scholar 

Anazodo UC, Wong DY, Theberge J, Dacey M, Gomes J, Penny JD, Van Ginkel M, Poirier SE, McIntyre CW (2023) Hemodialysis-related acute brain injury demonstrated by application of intradialytic magnetic resonance imaging and spectroscopy. J Am Soc Nephrol. https://doi.org/10.1681/ASN.0000000000000105

Article  PubMed  Google Scholar 

Flythe JE, Mc Causland FR (2017) Dialysate sodium: rationale for evolution over time. Semin Dial 30:99–111

PubMed  PubMed Central  Google Scholar 

Gul A, Miskulin DC, Paine SS, Narsipur SS, Arbeit LA, Harford AM, Weiner DE, Schrader R, Horowitz BL, Zager PG (2016) Comparison of prescribed and measured dialysate sodium: a quality improvement project. Am J Kidney Dis 67:439–445

CAS  PubMed  Google Scholar 

Stragier A, Lopot F, Svara F, Polakovic V (2018) Fallacies and pitfalls of dialysis sodium prescription and control. Blood Purif 46:27–33

CAS  PubMed  Google Scholar 

Shendi AM, Davenport A (2021) The difference between delivered and prescribed dialysate sodium in haemodialysis machines. Clin Kidney J 14:863–868

CAS  PubMed  Google Scholar 

Ng JK, Smyth B, Marshall MR, Kang A, Pinter J, Bassi A, Krishnasamy R, Rossignol P, Rocco MV, Li Z, Jha V, Hawley CM, Kerr PG, DI Tanna GL, Woodward M, Jardine AM, RESOLVE Steering Committee (2021) Relationship between measured and prescribed dialysate sodium in haemodialysis: a systematic review and meta-analysis. Nephrol Dial Transplant 36:695–703

CAS  PubMed  Google Scholar 

Dunlop JL, Vandal AC, Marshall MR (2019) Low dialysate sodium levels for chronic haemodialysis. Cochrane Database Syst Rev 1:CD011204

PubMed  Google Scholar 

Marshall MR, Vandal AC, de Zoysa JR, Gabriel RS, Haloob IA, Hood CJ, Irvine JH, Matheson PJ, McGregor DOR, Rabindranath KS, Schollum JBW, Semple DJ, Xie Z, Ma TM, Sisk R, Dunlop JL (2020) Effect of low-sodium versus conventional sodium dialysate on left ventricular mass in home and self-care satellite facility hemodialysis patients: a randomized clinical trial. J Am Soc Nephrol 31:1078–1091

CAS  PubMed  PubMed Central  Google Scholar 

Geng X, Song Y, Hou B, Ma Y, Wang Y (2020) The efficacy and safety of low dialysate sodium levels for patients with maintenance haemodialysis: a systematic review and meta-analysis. Int J Surg 79:332–339

PubMed  Google Scholar 

Marsenic O, Anderson M, Couloures KG, Hong WS, Kevin Hall E, Dahl N (2016) Effect of the decrease in dialysate sodium in pediatric patients on chronic hemodialysis. Hemodial Int 20:277–285

PubMed  Google Scholar 

Caporale O, Consolo S, Grassi FS, Grassi MR, Puccio G, Montini G, Paglialonga F (2022) Low dialysate sodium in children and young adults on maintenance hemodialysis: a prospective, randomized, crossover study. Pediatr Nephrol 38:1599–1607

PubMed  Google Scholar 

Causland FRM, Ravi KS, Curtis KA, Kibbelaar ZA, Short SAP, Singh AT, Correa S, Waikar SS (2022) A randomized controlled trial of two dialysate sodium concentrations in hospitalized hemodialysis patients. Nephrol Dial Transplant 37:1340–1347

PubMed  Google Scholar 

Meira FS, Poli de Figueiredo CE, Figueiredo AE (2007) Influence of sodium profile in preventing complications during hemodialysis. Hemodial Int 11(Suppl 3):S29–S32

PubMed  Google Scholar 

Ponce P, Pinto B, Wojke R, Maierhofer AP, Gauly A (2020) Evaluation of intradialytic sodium shifts during sodium controlled hemodialysis. Int J Artif Organs 43:620–624

CAS  PubMed  Google Scholar 

Kuhlmann U, Maierhofer A, Canaud B, Hoyer J, Gross M (2019) Zero diffusive sodium balance in hemodialysis provided by an algorithm-based electrolyte balancing controller: a proof of principle clinical study. Artif Organs 43:150–158

CAS  PubMed  Google Scholar 

Sagova M, Wojke R, Maierhofer A, Gross M, Canaud B, Gauly A (2019) Automated individualization of dialysate sodium concentration reduces intradialytic plasma sodium changes in hemodialysis. Artif Organs 43:1002–1013

CAS  PubMed  PubMed Central  Google Scholar 

Maduell F, Moreso F, Pons M, Ramos R, Mora-Macia J, Carreras J, Soler J, Torres F, Campistol JM, Martinez-Castelao A, ESHOL Study Group (2013) High-efficiency postdilution online hemodiafiltration reduces all-cause mortality in hemodialysis patients. J Am Soc Nephrol 24:487–497

PubMed  PubMed Central  Google Scholar 

Shroff R, Smith C, Ranchin B, Bayazit AK, Stefanidis CJ, Askiti V, Azukaitis K, Canpolat N, Agbas A, Aitkenhead H, Anarat A, Aoun B, Aofolaju D, Bakkaloglu SA, Bhowruth D, Borzych-Duzalka D, Bulut IK, Buscher R, Deanfield J, Dempster C, Duzova A, Habbig S, Hayes W, Hegde S, Krid S, Licht C, Litwin M, Mayes M, Mir S, Nemec R, Obrycki L, Paglialonga F, Picca S, Samaille C, Shenoy M, Sinha MD, Spasojevic B, Stronach L, Vidal E, Vondrak K, Yilmaz A, Zaloszyc A, Fischbach M, Schmitt CP, Schaefer F (2019) Effects of hemodiafiltration versus conventional hemodialysis in children with ESKD: the HDF, heart and height study. J Am Soc Nephrol 30:678–691

CAS  PubMed  PubMed Central  Google Scholar 

Kawanishi H (2018) Is there enough evidence to prove that hemodiafiltration is superior? Blood Purif 46:3–6

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