Literature DB >> 11755041

Role of intrapartum hypoxia in carnitine nutritional status during the early neonatal period.

R Bayés1, C Campoy, A Goicoechea, J M Peinado, T Pedrosa, R M Baena, C López, M Rivero, J A Molina-Font.   

Abstract

We analyze markers of carnitine insufficiency and deficiency, lysine (LYS) and methionine (MET), in 39 neonates with intrapartum hypoxia (selection criteria: umbilical artery pH <7.20, lactate >1.8 mmol/l and PaO2 <25 mm Hg), and in 35 healthy newborn infants (control group) in the early neonatal period (1-7 days of life). Free (FC), total (TC) carnitine and acylcarnitines (AC=short-chain+long-chain acylcarnitines) were measured using a radioisotopic micromethod; LYS and MET were determined by high-pressure liquid chromatography. AC and TC plasma concentrations and AC/FC ratio were higher while FC/TC ratio was lower in the hypoxic neonates than in the control group. Hypoxic newborn infants (59%) presented "carnitine deficiency" (FC/TC <0.7) and 60% of them "carnitine insufficiency" (AC/FC ratio >0.4) vs. 31% and 28%, respectively, for the neonates of the control group (p<0.05). In the healthy neonates group, MET correlated with FC/TC and the AC/FC ratio. FC, TC, AC, AC/FC and umbilical artery pH (pHua) were inversely correlated. FC/TC and MET correlated with pHua. We conclude that: (1) an important percentage of newborn infants with intrapartum hypoxia suffer carnitine deficiency and carnitine insufficiency in the early neonatal period, related to MET plasma levels; (2) the carnitine deficiency or insufficiency in the neonate is determined by the degree of intrapartum acidosis.

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Year:  2001        PMID: 11755041     DOI: 10.1016/s0378-3782(01)00212-2

Source DB:  PubMed          Journal:  Early Hum Dev        ISSN: 0378-3782            Impact factor:   2.079


  4 in total

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3.  The metabolomic profile of umbilical cord blood in neonatal hypoxic ischaemic encephalopathy.

Authors:  Brian H Walsh; David I Broadhurst; Rupasri Mandal; David S Wishart; Geraldine B Boylan; Louise C Kenny; Deirdre M Murray
Journal:  PLoS One       Date:  2012-12-05       Impact factor: 3.240

4.  Oxygen glucose deprivation in rat hippocampal slice cultures results in alterations in carnitine homeostasis and mitochondrial dysfunction.

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  4 in total

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