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Renal function in premature infants during aminoglycoside therapy

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Abstract

The effect of three different aminoglycosides on renal function was evaluated in 30 premature infants of similar gestational age who were treated within 24 h of birth with either amikacin (10 infants, group A), gentamicin (10 infants, group B) or netilmicin (10 infants, group C), for a period of 7 days. Ten infection-free premature infants of similar post-conceptional age were used as controls. Serial determinations of plasma creatinine concentration (PCr), as well as the fractional excretion of sodium (FENa), potassium, magnesium (FEMg), phosphate (FEP) and uric acid (FEUA), and the urinary excretion of calcium (UCa/UCr ratio) were assessed before, during and after treatment. During the treatment period a significant increase in FENa, FEMg and UCa/UCr was observed in group B (P<0.05 andP<0.01, respectively) and an increase in FENa and UCa/UCr in group C (P<0.01) compared with controls. These disturbances were observed with trough concentrations of aminoglycosides but were accentuated at peak serum concentrations and were restored to normal 2 days after stopping therapy. In addition, a significant correlation was demonstrated between FENa, FEMg and UCa/UCr ratio in treated patients. PCr levels decreased similarly in all patient groups, but in 8 of 30 infants (27%) they remained elevated and returned to control values only 10 days after stopping therapy. Such renal functional disturbances, although transient, may result in significant electrolyte and mineral imbalance in the sick premature infant.

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References

  1. Itsarayoungyuen S, Riff L, Scauf V (1982) Tobramycin and gentamicin are equally safe for neonates: results of a double-blind randomized trial with quantitative assessment of renal function. Pediatr Pharmacol 2: 143–145

    Google Scholar 

  2. Rajchot P, Prober C, Soldin S, Perlman M, Good F, Harding E, Klein J, Macleod S (1984) Aminoglycoside-related nephrotoxicity in the premature newborn. Clin Pharmacol Ther 35: 394–401

    Google Scholar 

  3. Aujard Y, Biou A, Coache M, Demelier J, Gouyon JB, Jacqz E, Mathieu H (1987) Nephrotoxicity of gentamicin and netilmicin in neonates. A comparative study using tubular markers. Dev Pharmacol Ther 10: 145–152

    Google Scholar 

  4. Tessin I, Bergmark J, Hiesche K, Jagenburg R, Trollfors B (1982) Renal function of neonates during gentamicin treatment Arch Dis Child 57: 758–760

    Google Scholar 

  5. Elinder G, Aperia A (1983) Development of glomerular filtration rate and excretion of β2-microglobulin in neonates during gentamicin treatment. Acta Paediatr Scand 72: 219–224

    Google Scholar 

  6. Rothberg A, Andronikou S (1984) Effect of tobramycin on fractional sodium excretion in neonates. Pediatr Pharmacol 4: 49–52

    Google Scholar 

  7. Landers S, Berry PL, Kearns GL, Kaplan SL, Rudolph AJ (1984) Gentamicin disposition and effect on development of renal function in the very low birth weight infant. Dev Pharmacol Ther 7: 285–302

    Google Scholar 

  8. Adelman RD, Halsted CC, Jordan GW, Russo J (1981) Use of urinary enzyme activities in the early detection of aminoglycoside nephrotoxicity. A study in children and adults receiving gentamicin or netilmicin. Proc West Pharmacol Soc 24: 261–264

    Google Scholar 

  9. Adelman RD, Wirth F, Rubio T (1987) A controlled study of nephrotoxicity of mezlocillin and gentamicin plus ampicillin in the neonate. J Pediatr 111: 888–893

    Google Scholar 

  10. Dubowitz LM, Dubowitz V, Goldberg C (1970) Clinical assessment of gestational age in the newborn infant. J Pediatr 77: 1–10

    Google Scholar 

  11. Rodwell RL, Leslie AL, Tudehope DI (1988) Early diagnosis of neonatal sepsis using a hematologic scoring system. J Pediatr 112: 761–767

    Google Scholar 

  12. Provoost AP, Adejuyigbe O, Wolff ED (1985) Nephrotoxicity of aminoglycosides in young and adult rats. Pediatr Res 19: 1191–1196

    Google Scholar 

  13. Guliano R, Verpooten G, Verbvist L, Wedeen R, Broe M (1986) In vivo uptake kinetics of aminoglycosides in the kidney cortex of rats. J Pharmacol Exp Ther 236: 470–475

    Google Scholar 

  14. Tulkens P (1986) Experimental studies on nephrotoxicity of aminoglycosides at low doses. Am J Med 80: 105–118

    Google Scholar 

  15. Feldman H, Guignard JP (1982) Plasma creatinine in the first month of life. Arch Dis Child 57: 123–126

    Google Scholar 

  16. Arant BS (1984) Estimating glomerular filtration rate in infants. J Pediatr 104: 890–893

    Google Scholar 

  17. Arant BS Jr (1981) Nonrenal factors influencing renal function during the perinatal period. Clin Perinatol 8: 225

    Google Scholar 

  18. Massry S, Ahumada J, Coburn J, Kleeman C (1970) Effect of MgCl2 infusion on urinary Ca and Na during reduction in their filtered load. Am J Physiol 219: 881–885

    Google Scholar 

  19. Massry S, Coburn J (1979) The hormonal and non-hormonal control of renal excretion of calcium and magnesium. Nephron 10: 66

    Google Scholar 

  20. Massry S, Ahumada J, Coburn J, Kleeman C (1969) Effect of MgCl2 infusion on urinary Ca++ and Mg++ during reduction in their filtered loads. Am J Physiol 231: 1218–1244

    Google Scholar 

  21. Brown D, Steranka B (1981) Renal cation excretion in the hypocalcemic premature neonate. Pediatr Res 15: 1100–1104

    Google Scholar 

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Giapros, V.I., Andronikou, S., Cholevas, V.I. et al. Renal function in premature infants during aminoglycoside therapy. Pediatr Nephrol 9, 163–166 (1995). https://doi.org/10.1007/BF00860733

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  • DOI: https://doi.org/10.1007/BF00860733

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