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Dysregulated lipid metabolism in late preterm low birth weight neonates: A case-control study on maternal lipid
Jing Liu1,2, Lijuan Tang1,3, Qi Sun1
1Department of Pediatrics, China-Japan Friendship Hospital, Beijing, China.
Insights
Late preterm low birth weight (LPTB-LBW) neonates display distinct lipid alterations, including elevated glycerolipids and ceramides. Maternal HDL cholesterol levels correlate with these neonatal lipid changes, suggesting early metabolic programming impacts.
Area of Science:
- Neonatal Metabolism
- Lipidomics
- Perinatal Programming
Background:
- Low birth weight (LBW) is a known risk factor for adult metabolic syndrome.
- The specific lipid metabolic profile of late preterm low birth weight (LPTB-LBW) neonates is not well understood.
- LPTB-LBW infants face dual challenges of shortened gestation and intrauterine growth restriction.
Purpose of the Study:
- To investigate the unique lipidomic phenotype of LPTB-LBW neonates.
- To determine if prematurity and growth restriction synergistically disrupt lipid metabolic programming in neonates.
- To explore the relationship between maternal lipid levels and neonatal lipid profiles.
Main Methods:
- Ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) was used to analyze plasma lipid profiles.
- 88 neonates were studied: 45 LPTB-LBW and 43 late preterm birth-normal birth weight (LPTB-NBW) controls.
- Multivariate and univariate statistical analyses identified discriminant lipids, and maternal-neonatal lipid continuity was assessed.
Main Results:
- 349 out of 1,173 identified lipids were significantly different in LPTB-LBW neonates.
- Glycerolipids (especially triglycerides) and ceramides were significantly upregulated in LPTB-LBW infants.
- Maternal high-density lipoprotein cholesterol (HDLC) showed negative correlations with specific neonatal lipids like triacylglycerols and ceramides.
Conclusions:
- LPTB-LBW neonates exhibit a unique lipidomic phenotype characterized by hyperaccumulated glycerolipids and elevated ceramides.
- Maternal HDLC levels are associated with specific neonatal lipid profiles.
- These early-life lipid alterations in LPTB-LBW infants warrant further investigation for clinical implications.
Objectives:
While low birth weight (LBW) is a recognized risk factor for adult metabolic syndrome, the unique lipid metabolic phenotype of late preterm low birth weight (LPTB-LBW) neonates-who experience dual exposures to shortened gestation and intrauterine growth restriction-remains uncharacterized. This study specifically examines whether the convergence of prematurity and growth restriction synergistically disrupts lipid metabolic programming.
Methods:
Using ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS), we compared lipidomic profiles of 88 plasma samples: 45 LPTB-LBW (340/7-366/7 weeks, <2,500 g) and 43 later preterm birth-normal birth weight (LPTB-NBW, 340/7-366/7 weeks, 2,500-4,000 g) controls. Multivariate orthogonal partial least squares-discriminant analysis and univariate modeling identified discriminant lipids. Maternal-neonatal lipid continuity was assessed through Spearman's correlation analysis.
Result:
A total of 1,173 lipids were identified, categorized into five major lipid classes, with 349 significantly different lipids detected (324 upregulated and 25 downregulated) in the LPTB-LBW group. All glycerolipids were upregulated, accounting for 50% (162/324) of the upregulated lipids. Long-chain polyunsaturated triglycerides (TG) showed extreme elevations, such as TG (18:2_18:3_18:4) and TG (18:2_20:4_20:5). Monoglycerides, including MG (18:2) and MG (18:1), were also significantly elevated. Among glycerophospholipids (GP), 76 species were upregulated, with notable increases in phosphatidylethanolamines such as PE (O-18:0_22:3) and PE (18:2_22:1), while PG (20:4_22:6) was significantly reduced. All differentially expressed ceramides, including Cer (d26:3/33:1(2OH)), Cer (d29:2/30:2(2OH)), and Cer (d28:3/31:1(2OH)), were upregulated, whereas sphingosines were downregulated. Cholesterol esters were decreased, while bile acids, free fatty acids and acylcarnitines were elevated. KEGG pathway enrichment analysis highlighted significant perturbations in cholesterol, glycerolipid, and sphingolipid metabolism. Maternal high-density lipoprotein cholesterol (HDLC) levels during early pregnancy showed exclusive negative correlations with neonatal lipids, particularly triacylglycerol TG (16:0_18:2_18:2) (r = - 0.33, p = 0.002), diacylglycerols, and ceramides, whereas no associations were observed for maternal low density lipoprotein (LDLC), TC, or TG.
Conclusions:
LPTB-LBW neonates exhibit a unique lipidomic phenotype marked by hyperaccumulation of glycerolipids (e.g., long-chain polyunsaturated TGs), elevated ceramides, and altered phospholipid species (increased PE, decreased PG). Maternal HDLC levels negatively correlated with specific neonatal lipids. These findings highlight early-life lipid alterations in LPTB-LBW infants and the need for further investigation into their clinical implications.
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