Skip to main content
Erschienen in: Pediatric Nephrology 7/2011

01.07.2011 | Original Article

Serum osteoprotegerin, RANKL and fibroblast growth factor-23 in children with chronic kidney disease

verfasst von: Ekaterini Siomou, Anna Challa, Nikoleta Printza, Vasileios Giapros, Fotini Petropoulou, Andromachi Mitsioni, Fotios Papachristou, Constantinos J. Stefanidis

Erschienen in: Pediatric Nephrology | Ausgabe 7/2011

Einloggen, um Zugang zu erhalten

Abstract

Osteoprotegerin (OPG), receptor activator of the nuclear factor κB ligand (RANKL) and fibroblast growth factor-23 (FGF-23) play a central role in renal osteodystrophy. We evaluated OPG/RANKL and FGF-23 levels in 51 children with chronic kidney disease (CKD) [n = 26 stage 3 or 4 (CKD3–4) and n = 25 stage 5 (CKD5)] and 61 controls. Any possible association with intact parathyroid hormone (iPTH) and bone turnover markers was also investigated. The OPG levels were lower in the CKD3–4 group (p < 0.001) and higher in the CKD5 group (p < 0.01) than in the controls, while RANKL levels did not differ. The FGF-23 levels were higher in both patient groups (p < 0.0001), while the levels of phosphate and iPTH were higher only in the CKD5 group (p < 0.0001). There were independent positive correlations between OPG and RANKL (β = 0.297, p < 0.01) and FGF-23 (β = 0.352, p < 0.05) and a negative correlation with the bone resorption marker TRAP5b (β = −0.519, p < 0.001). OPG was positively correlated with iPTH (R = 0.391, p < 0.01). An independent positive correlation between FGF-23 and phosphate (β = 0.368, p < 0.05) or iPTH (β = 0.812, p < 0.0001) was noted. In conclusion, we found that higher OPG levels in patients with CKD stage 5 correlated with the levels of RANKL, FGF-23, iPTH, and TRAP5b. These findings may reflect a compensatory mechanism to the negative balance of bone turnover. High FGF-23 levels in early CKD stages may indicate the need for intervention to manage serum phosphate (Pi) levels.
Literatur
1.
Zurück zum Zitat Moe S, Drüeke T, Cunningham J, Goodman W, Martin K, Olgaard K, Ott S, Sprague S, Lameire N, Eknoyan G (2006) Definition, evaluation, and classification of renal osteodystrophy: a position statement from Kidney Disease: Improving Global Outcomes (KDIGO). Kidney Int 69:1945–1953CrossRefPubMed Moe S, Drüeke T, Cunningham J, Goodman W, Martin K, Olgaard K, Ott S, Sprague S, Lameire N, Eknoyan G (2006) Definition, evaluation, and classification of renal osteodystrophy: a position statement from Kidney Disease: Improving Global Outcomes (KDIGO). Kidney Int 69:1945–1953CrossRefPubMed
2.
Zurück zum Zitat Salusky IB, Coburn JW, Brill J, Foley J, Slatopolsky E, Fine RN, Goodman WG (1988) Bone disease in pediatric patients undergoing dialysis with CAPD or CCPD. Kidney Int 33:975–982CrossRefPubMed Salusky IB, Coburn JW, Brill J, Foley J, Slatopolsky E, Fine RN, Goodman WG (1988) Bone disease in pediatric patients undergoing dialysis with CAPD or CCPD. Kidney Int 33:975–982CrossRefPubMed
3.
Zurück zum Zitat Salusky IB, Ramirez JA, Oppenheim W, Gales B, Segre GV, Goodman WG (1994) Biochemical markers of renal osteodystrophy in pediatric patients undergoing CAPD/CCPD. Kidney Int 45:253–258CrossRefPubMed Salusky IB, Ramirez JA, Oppenheim W, Gales B, Segre GV, Goodman WG (1994) Biochemical markers of renal osteodystrophy in pediatric patients undergoing CAPD/CCPD. Kidney Int 45:253–258CrossRefPubMed
4.
Zurück zum Zitat Ziólkowska H, Pańczyk-Tomaszewska M, Dębiński A, Polowiec Z, Sawicki A, Sieniawska M (2000) Bone biopsy results and serum bone turnover parameters in uremic children. Acta Paediatr 89:666–671CrossRefPubMed Ziólkowska H, Pańczyk-Tomaszewska M, Dębiński A, Polowiec Z, Sawicki A, Sieniawska M (2000) Bone biopsy results and serum bone turnover parameters in uremic children. Acta Paediatr 89:666–671CrossRefPubMed
5.
Zurück zum Zitat Gutierrez O, Isakova T, Rhee E, Shah A, Holmes J, Collerone G, Jüppner H, Wolf M (2005) Fibroblast growth factor-23 mitigates hyperphosphatemia but accentuates calcitriol deficiency in chronic kidney disease. J Am Soc Nephrol 16:2205–2215CrossRefPubMed Gutierrez O, Isakova T, Rhee E, Shah A, Holmes J, Collerone G, Jüppner H, Wolf M (2005) Fibroblast growth factor-23 mitigates hyperphosphatemia but accentuates calcitriol deficiency in chronic kidney disease. J Am Soc Nephrol 16:2205–2215CrossRefPubMed
6.
Zurück zum Zitat Simonet WS, Lacey DL, Dunstan CR, Kelley M, Chang MS, Lüthy R, Nguyen HQ, Wooden S, Bennett L, Boone T, Shimamoto G, DeRose M, Elliott R, Colombero A, Tan HL, Trail G, Sullivan J, Davy E, Bucay N, Renshaw-Gegg L, Hughes TM, Hill D, Pattison W, Campbell P, Sander S, Van G, Tarpley J, Derby P, Lee R, Boyle WJ (1997) Osteoprotegerin: a novel secreted protein involved in the regulation of bone density. Cell 89:309–319CrossRefPubMed Simonet WS, Lacey DL, Dunstan CR, Kelley M, Chang MS, Lüthy R, Nguyen HQ, Wooden S, Bennett L, Boone T, Shimamoto G, DeRose M, Elliott R, Colombero A, Tan HL, Trail G, Sullivan J, Davy E, Bucay N, Renshaw-Gegg L, Hughes TM, Hill D, Pattison W, Campbell P, Sander S, Van G, Tarpley J, Derby P, Lee R, Boyle WJ (1997) Osteoprotegerin: a novel secreted protein involved in the regulation of bone density. Cell 89:309–319CrossRefPubMed
7.
Zurück zum Zitat Min H, Morony S, Sarosi I, Dunstan CR, Capparelli C, Scully S, Van G, Kaufman S, Kostenuik PJ, Lacey DL, Boyle WJ, Simonet WS (2000) Osteoprotegerin reverses osteoporosis by inhibiting endosteal osteoclasts and prevents vascular calcification by blocking a process resembling osteoclastogenesis. J Exp Med 192:463–474CrossRefPubMedPubMedCentral Min H, Morony S, Sarosi I, Dunstan CR, Capparelli C, Scully S, Van G, Kaufman S, Kostenuik PJ, Lacey DL, Boyle WJ, Simonet WS (2000) Osteoprotegerin reverses osteoporosis by inhibiting endosteal osteoclasts and prevents vascular calcification by blocking a process resembling osteoclastogenesis. J Exp Med 192:463–474CrossRefPubMedPubMedCentral
8.
Zurück zum Zitat Yasuda H, Shima N, Nakagawa N, Yamaguchi K, Kinosaki M, Mochizuki S, Tomoyasu A, Yano K, Goto M, Murakami A, Tsuda E, Morinaga T, Higashio K, Udagawa N, Takahashi N, Suda T (1998) Osteoclast differentiation factor is a lignad for osteoprotegerin/osteoclastogenesis-inhibitory factor and is identical to TRANE/RANKL. Proc Natl Acad Sci USA 95:3597–3602CrossRefPubMedPubMedCentral Yasuda H, Shima N, Nakagawa N, Yamaguchi K, Kinosaki M, Mochizuki S, Tomoyasu A, Yano K, Goto M, Murakami A, Tsuda E, Morinaga T, Higashio K, Udagawa N, Takahashi N, Suda T (1998) Osteoclast differentiation factor is a lignad for osteoprotegerin/osteoclastogenesis-inhibitory factor and is identical to TRANE/RANKL. Proc Natl Acad Sci USA 95:3597–3602CrossRefPubMedPubMedCentral
9.
Zurück zum Zitat Li X, Ominsky MS, Stolina M, Warmington KS, Geng Z, Niu QT, Asuncion FJ, Tan HL, Grisanti M, Dwyer D, Adamu S, Ke HZ, Simonet WS, Kostenuik PJ (2009) Increased RANK ligand in bone marrow of orchiectomized rats and prevention of their bone loss by the RANK ligand inhibitor ostoprotegerin. Bone 45:669–676CrossRefPubMed Li X, Ominsky MS, Stolina M, Warmington KS, Geng Z, Niu QT, Asuncion FJ, Tan HL, Grisanti M, Dwyer D, Adamu S, Ke HZ, Simonet WS, Kostenuik PJ (2009) Increased RANK ligand in bone marrow of orchiectomized rats and prevention of their bone loss by the RANK ligand inhibitor ostoprotegerin. Bone 45:669–676CrossRefPubMed
10.
Zurück zum Zitat Huang JC, Sakata T, Pfieger LL, Bencsik M, Halloran BP, Bikle DD, Nissenson RA (2004) PTH differentially regulates expression of RANKL and OPG. J Bone Miner Res 19:235–244CrossRefPubMed Huang JC, Sakata T, Pfieger LL, Bencsik M, Halloran BP, Bikle DD, Nissenson RA (2004) PTH differentially regulates expression of RANKL and OPG. J Bone Miner Res 19:235–244CrossRefPubMed
11.
Zurück zum Zitat Coen G, Ballanti P, Balducci A, Calabria S, Fischer MS, Jankovic L, Manni M, Morosetti M, Moscaritolo E, Sardella D, Bonucci E (2002) Serum osteoprotegerin and renal osteodystrophy. Nephrol Dial Transplant 17:233–238CrossRefPubMed Coen G, Ballanti P, Balducci A, Calabria S, Fischer MS, Jankovic L, Manni M, Morosetti M, Moscaritolo E, Sardella D, Bonucci E (2002) Serum osteoprotegerin and renal osteodystrophy. Nephrol Dial Transplant 17:233–238CrossRefPubMed
12.
Zurück zum Zitat Shaarawy M, Fathy SA, Mehany NL, Hindy OW (2007) Circulating levels of osteoprotegerin and receptor activator of NF-kappaB ligand in patients with chronic renal failure. Clin Chem Lab Med 45:1498–1503CrossRefPubMed Shaarawy M, Fathy SA, Mehany NL, Hindy OW (2007) Circulating levels of osteoprotegerin and receptor activator of NF-kappaB ligand in patients with chronic renal failure. Clin Chem Lab Med 45:1498–1503CrossRefPubMed
13.
Zurück zum Zitat Ziólkowska H, Roszkowska-Blaim M (2006) Osteoprotegerin and calcium-phosphorus metabolism parameters in children with chronic renal failure. Przegl Lek 63[Suppl 3]:68–71PubMed Ziólkowska H, Roszkowska-Blaim M (2006) Osteoprotegerin and calcium-phosphorus metabolism parameters in children with chronic renal failure. Przegl Lek 63[Suppl 3]:68–71PubMed
14.
Zurück zum Zitat Swolin-Eide D, Hansson S, Larsson L, Magnusson P (2006) The novel bone alkaline phosphatase B1x isoform in children with kidney disease. Pediatr Nephrol 21:1723–1729CrossRefPubMed Swolin-Eide D, Hansson S, Larsson L, Magnusson P (2006) The novel bone alkaline phosphatase B1x isoform in children with kidney disease. Pediatr Nephrol 21:1723–1729CrossRefPubMed
15.
Zurück zum Zitat Swolin-Eide D, Magnusson P, Hansson S (2007) Bone mass, biochemical markers and growth in children with chronic kidney disease: a 1-year prospective study. Acta Paediatr 96:720–725CrossRefPubMed Swolin-Eide D, Magnusson P, Hansson S (2007) Bone mass, biochemical markers and growth in children with chronic kidney disease: a 1-year prospective study. Acta Paediatr 96:720–725CrossRefPubMed
16.
Zurück zum Zitat Swolin-Eide D, Hansson S, Magnusson P (2009) Children with chronic kidney disease: a 3-year prospective study of growth, bone mass and bone turnover. Acta Paediatr 98:367–373CrossRefPubMed Swolin-Eide D, Hansson S, Magnusson P (2009) Children with chronic kidney disease: a 3-year prospective study of growth, bone mass and bone turnover. Acta Paediatr 98:367–373CrossRefPubMed
17.
Zurück zum Zitat Shroff RC, Shah V, Hiorns MP, Schoppet M, Hofbauer LC, Hawa G, Schurgers LJ, Singhal A, Merryweather I, Brogan P, Shanahan C, Deanfield J, Rees L (2008) The circulating calcification inhibitors, fetuin-A and osteoprotegerin, but not Matrix Gla protein, are associated with vascular stiffness and calcification in children on dialysis. Nephrol Dial Transplant 23:3263–3271CrossRefPubMed Shroff RC, Shah V, Hiorns MP, Schoppet M, Hofbauer LC, Hawa G, Schurgers LJ, Singhal A, Merryweather I, Brogan P, Shanahan C, Deanfield J, Rees L (2008) The circulating calcification inhibitors, fetuin-A and osteoprotegerin, but not Matrix Gla protein, are associated with vascular stiffness and calcification in children on dialysis. Nephrol Dial Transplant 23:3263–3271CrossRefPubMed
18.
Zurück zum Zitat Ozkaya O, Buyan N, Bideci A, Gonen S, Ortac E, Fidan K, Cinaz P, Söylemezoğlu O (2007) Osteoprotegerin and RANKL serum levels and their relationship with serum ghrelin in children with chronic renal failure and on dialysis. Nephron Clin Pract 105:c153–c158CrossRefPubMed Ozkaya O, Buyan N, Bideci A, Gonen S, Ortac E, Fidan K, Cinaz P, Söylemezoğlu O (2007) Osteoprotegerin and RANKL serum levels and their relationship with serum ghrelin in children with chronic renal failure and on dialysis. Nephron Clin Pract 105:c153–c158CrossRefPubMed
19.
Zurück zum Zitat Kagami S, Ohkido I, Yokoyama K, Shigematsu T, Hosoya T (2008) Osteoprotegerin affects the responsiveness of fibroblast growth factor-23 to high oral phosphate intake. Clin Nephrol 70:306–311CrossRefPubMed Kagami S, Ohkido I, Yokoyama K, Shigematsu T, Hosoya T (2008) Osteoprotegerin affects the responsiveness of fibroblast growth factor-23 to high oral phosphate intake. Clin Nephrol 70:306–311CrossRefPubMed
20.
Zurück zum Zitat Kidney Disease Outcomes Quality Initiative, National Kidney Foundation (2005) K/DOQI clinical practice guidelines for bone metabolism and disease in children with chronic kidney disease. Am J Kidney Dis 46[4 Suppl 1]:S1–S121 Kidney Disease Outcomes Quality Initiative, National Kidney Foundation (2005) K/DOQI clinical practice guidelines for bone metabolism and disease in children with chronic kidney disease. Am J Kidney Dis 46[4 Suppl 1]:S1–S121
21.
Zurück zum Zitat Schwartz GJ, Muñoz A, Schneider MF, Mak RH, Kaskel F, Warady BA, Furth SL (2009) New equations to estimate GFR in children with CKD. J Am Soc Nephrol 20:629–637CrossRefPubMedPubMedCentral Schwartz GJ, Muñoz A, Schneider MF, Mak RH, Kaskel F, Warady BA, Furth SL (2009) New equations to estimate GFR in children with CKD. J Am Soc Nephrol 20:629–637CrossRefPubMedPubMedCentral
22.
Zurück zum Zitat Klaus G, Watson A, Edefonti A, Fischbach M, Rönnholm K, Schaefer F, Simkova E, Stefanidis CJ, Strazdins V, Vande Walle J, Schröder C, Zurowska A, Ekim M, European Pediatric Dialysis Working Group (EPDWG) (2006) Prevention and treatment of renal osteodystrophy in children on chronic renal failure: European guidelines. Pediatr Nephrol 21:151–159CrossRefPubMed Klaus G, Watson A, Edefonti A, Fischbach M, Rönnholm K, Schaefer F, Simkova E, Stefanidis CJ, Strazdins V, Vande Walle J, Schröder C, Zurowska A, Ekim M, European Pediatric Dialysis Working Group (EPDWG) (2006) Prevention and treatment of renal osteodystrophy in children on chronic renal failure: European guidelines. Pediatr Nephrol 21:151–159CrossRefPubMed
24.
Zurück zum Zitat Kazama JJ, Kato H, Sato T, Shigematsu T, Fukagawa M, Iwasaki Y, Gejyo F (2002) Circulating osteoprotegerin is not removed through haemodialysis membrane. Nephrol Dial Transplant 17:1860–1861CrossRefPubMed Kazama JJ, Kato H, Sato T, Shigematsu T, Fukagawa M, Iwasaki Y, Gejyo F (2002) Circulating osteoprotegerin is not removed through haemodialysis membrane. Nephrol Dial Transplant 17:1860–1861CrossRefPubMed
25.
Zurück zum Zitat Wittersheim E, Mesquita M, Demulder A, Guns M, Louis O, Melot C, Dratwa M, Bergmann P (2006) OPG, RANK-L, bone metabolism, and BMD in patients on peritoneal dialysis and hemodialysis. Clin Biochem 39:617–622CrossRefPubMed Wittersheim E, Mesquita M, Demulder A, Guns M, Louis O, Melot C, Dratwa M, Bergmann P (2006) OPG, RANK-L, bone metabolism, and BMD in patients on peritoneal dialysis and hemodialysis. Clin Biochem 39:617–622CrossRefPubMed
26.
Zurück zum Zitat Wesseling K, Bakkalogly S, Salusky I (2008) Chronic kidney disease mineral and bone disorder in children. Pediatr Nephrol 23:195–207CrossRefPubMed Wesseling K, Bakkalogly S, Salusky I (2008) Chronic kidney disease mineral and bone disorder in children. Pediatr Nephrol 23:195–207CrossRefPubMed
27.
Zurück zum Zitat Rogers A, Eastell R (2005) Review: Circulating osteoprotegerin and receptor activator for nuclear factor κB ligand: Clinical utility in metabolic bone disease assessment. J Clin Endocrinol Metab 90:6323–6331CrossRefPubMed Rogers A, Eastell R (2005) Review: Circulating osteoprotegerin and receptor activator for nuclear factor κB ligand: Clinical utility in metabolic bone disease assessment. J Clin Endocrinol Metab 90:6323–6331CrossRefPubMed
29.
Zurück zum Zitat Gattineni J, Baum M (2010) Regulation of phosphate transport by fibroblast growth factor 23 (FGF23): implications for disorders of phosphate metabolism. Pediatr Nephrol 25:591–601CrossRefPubMed Gattineni J, Baum M (2010) Regulation of phosphate transport by fibroblast growth factor 23 (FGF23): implications for disorders of phosphate metabolism. Pediatr Nephrol 25:591–601CrossRefPubMed
30.
Zurück zum Zitat Krajisnik T, Björklund P, Marsell R, Ljunggren O, Akerström G, Jonsson KB, Westin G, Larsson TE (2007) Fibroblast growth factor-23 regulates parathyroid hormone and 1alpha-hydroxylase expression in cultured bovine parathyroid cells. J Endocrinol 195:125–131CrossRefPubMed Krajisnik T, Björklund P, Marsell R, Ljunggren O, Akerström G, Jonsson KB, Westin G, Larsson TE (2007) Fibroblast growth factor-23 regulates parathyroid hormone and 1alpha-hydroxylase expression in cultured bovine parathyroid cells. J Endocrinol 195:125–131CrossRefPubMed
31.
Zurück zum Zitat Ben-Dov IZ, Galitzer H, Lavi-Moshayoff V, Goetz R, Kuro-o M, Mohammadi M, Sirkis R, Naveh-Many T, Silver J (2007) The parathyroid is a target organ for FGF23 in rats. J Clin Invest 117:4003–4008PubMedPubMedCentral Ben-Dov IZ, Galitzer H, Lavi-Moshayoff V, Goetz R, Kuro-o M, Mohammadi M, Sirkis R, Naveh-Many T, Silver J (2007) The parathyroid is a target organ for FGF23 in rats. J Clin Invest 117:4003–4008PubMedPubMedCentral
32.
Zurück zum Zitat Hasegawa H, Nagano N, Urakawa I, Yamazaki Y, Iijima K, Fujita T, Yamashita T, Fukumoto S, Shimada T (2010) Direct evidence for a causative role of FGF23 in the abnormal renal phosphate handling and vitamin D metabolism in rats with early-stage chronic kidney disease. Kidney Int 78:975–980CrossRefPubMed Hasegawa H, Nagano N, Urakawa I, Yamazaki Y, Iijima K, Fujita T, Yamashita T, Fukumoto S, Shimada T (2010) Direct evidence for a causative role of FGF23 in the abnormal renal phosphate handling and vitamin D metabolism in rats with early-stage chronic kidney disease. Kidney Int 78:975–980CrossRefPubMed
33.
Zurück zum Zitat Magnusson P, Hansson S, Swolin-Eide D (2010) A prospective study of fibroblast growth factor-23 in children with chronic kidney disease. Scand J Clin Lab Invest 70:15–20CrossRefPubMed Magnusson P, Hansson S, Swolin-Eide D (2010) A prospective study of fibroblast growth factor-23 in children with chronic kidney disease. Scand J Clin Lab Invest 70:15–20CrossRefPubMed
34.
Zurück zum Zitat Wesseling-Perry K, Pereira RC, Wang H, Elashoff RM, Sahney S, Gales B, Jüppner H, Salusky IB (2009) Relationship between plasma fibroblast growth factor-23 concentration and bone mineralization in children with renal failure on peritoneal dialysis. J Clin Endocrinol Metab 94:511–517CrossRefPubMed Wesseling-Perry K, Pereira RC, Wang H, Elashoff RM, Sahney S, Gales B, Jüppner H, Salusky IB (2009) Relationship between plasma fibroblast growth factor-23 concentration and bone mineralization in children with renal failure on peritoneal dialysis. J Clin Endocrinol Metab 94:511–517CrossRefPubMed
35.
Zurück zum Zitat Ureña P, De Vernejoul MC (1999) Circulating biochemical markers of bone remodeling in uremic patients. Kidney Int 55:2141–2156CrossRefPubMed Ureña P, De Vernejoul MC (1999) Circulating biochemical markers of bone remodeling in uremic patients. Kidney Int 55:2141–2156CrossRefPubMed
36.
Zurück zum Zitat Shidara K, Inaba M, Okuno S, Yamada S, Kumeda Y, Imanishi Y, Yamakawa T, Ishimura E, Nishizawa Y (2008) Serum levels of TRAP5b, a new bone resorption marker unaffected by renal dysfunction, as a useful marker of cortical bone loss in hemodialysis patients. Calcif Tissue Int 82:278–287CrossRefPubMed Shidara K, Inaba M, Okuno S, Yamada S, Kumeda Y, Imanishi Y, Yamakawa T, Ishimura E, Nishizawa Y (2008) Serum levels of TRAP5b, a new bone resorption marker unaffected by renal dysfunction, as a useful marker of cortical bone loss in hemodialysis patients. Calcif Tissue Int 82:278–287CrossRefPubMed
37.
Zurück zum Zitat Seiler S, Heine GH, Fliser D (2009) Clinical relevance of FGF-23 in chronic kidney disease. Kidney Int 76[Suppl 114]:S34–S42CrossRef Seiler S, Heine GH, Fliser D (2009) Clinical relevance of FGF-23 in chronic kidney disease. Kidney Int 76[Suppl 114]:S34–S42CrossRef
Metadaten
Titel
Serum osteoprotegerin, RANKL and fibroblast growth factor-23 in children with chronic kidney disease
verfasst von
Ekaterini Siomou
Anna Challa
Nikoleta Printza
Vasileios Giapros
Fotini Petropoulou
Andromachi Mitsioni
Fotios Papachristou
Constantinos J. Stefanidis
Publikationsdatum
01.07.2011
Verlag
Springer Berlin Heidelberg
Erschienen in
Pediatric Nephrology / Ausgabe 7/2011
Print ISSN: 0931-041X
Elektronische ISSN: 1432-198X
DOI
https://doi.org/10.1007/s00467-011-1870-5

Weitere Artikel der Ausgabe 7/2011

Pediatric Nephrology 7/2011 Zur Ausgabe

Neuer Typ-1-Diabetes bei Kindern am Wochenende eher übersehen

23.04.2024 Typ-1-Diabetes Nachrichten

Wenn Kinder an Werktagen zum Arzt gehen, werden neu auftretender Typ-1-Diabetes und diabetische Ketoazidosen häufiger erkannt als bei Arztbesuchen an Wochenenden oder Feiertagen.

Neue Studienergebnisse zur Myopiekontrolle mit Atropin

22.04.2024 Fehlsichtigkeit Nachrichten

Augentropfen mit niedrig dosiertem Atropin können helfen, das Fortschreiten einer Kurzsichtigkeit bei Kindern zumindest zu verlangsamen, wie die Ergebnisse einer aktuellen Studie mit verschiedenen Dosierungen zeigen.

Spinale Muskelatrophie: Neugeborenen-Screening lohnt sich

18.04.2024 Spinale Muskelatrophien Nachrichten

Seit 2021 ist die Untersuchung auf spinale Muskelatrophie Teil des Neugeborenen-Screenings in Deutschland. Eine Studie liefert weitere Evidenz für den Nutzen der Maßnahme.

Fünf Dinge, die im Kindernotfall besser zu unterlassen sind

18.04.2024 Pädiatrische Notfallmedizin Nachrichten

Im Choosing-Wisely-Programm, das für die deutsche Initiative „Klug entscheiden“ Pate gestanden hat, sind erstmals Empfehlungen zum Umgang mit Notfällen von Kindern erschienen. Fünf Dinge gilt es demnach zu vermeiden.

Update Pädiatrie

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.