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Prematurity blunts protein synthesis in skeletal muscle independently of body weight in neonatal pigs.

Authors :
Rudar M
Naberhuis JK
Suryawan A
Nguyen HV
Fiorotto ML
Davis TA
Source :
Pediatric research [Pediatr Res] 2023 Jul; Vol. 94 (1), pp. 143-152. Date of Electronic Publication: 2023 Jan 10.
Publication Year :
2023

Abstract

Background: Postnatal growth failure in premature infants is associated with reduced lean mass accretion. Prematurity impairs the feeding-induced stimulation of translation initiation and protein synthesis in the skeletal muscle of neonatal pigs. The objective was to determine whether body weight independently contributes to the blunted postprandial protein synthesis.<br />Methods: Preterm and term pigs that were either fasted or fed were stratified into quartiles according to birth weight to yield preterm and term groups of similar body weight; first and second quartiles of preterm pigs and third and fourth quartiles of term pigs were compared (preterm-fasted, n = 23; preterm-fed, n = 25; term-fasted, n = 21; term-fed, n = 21). Protein synthesis rates and mechanistic target of rapamycin complex 1 (mTORC1) activation in skeletal muscle were determined.<br />Results: Relative body weight gain was lower in preterm compared to term pigs. Prematurity attenuated the feeding-induced increase in mTORC1 activation in longissimus dorsi and gastrocnemius muscles (P < 0.05). Protein synthesis in gastrocnemius (P < 0.01), but not in longissimus dorsi muscle, was blunted by preterm birth.<br />Conclusion: A lower capacity of skeletal muscle to respond adequately to feeding may contribute to reduced body weight gain and lean mass accretion in preterm infants.<br />Impact: This study has shown that the feeding-induced increase in protein synthesis of skeletal and cardiac muscle is blunted in neonatal pigs born preterm compared to pigs born at term independently of birth weight. These findings support the notion that preterm birth, and not low birth weight, impairs the capacity of skeletal and cardiac muscle to upregulate mechanistic target of rapamycin-dependent anabolic signaling pathways and protein synthesis in response to the postprandial increase in insulin and amino acids. These observations suggest that a blunted anabolic response to feeding contributes to reduced lean mass accretion and altered body composition in preterm infants.<br /> (© 2023. The Author(s).)

Details

Language :
English
ISSN :
1530-0447
Volume :
94
Issue :
1
Database :
MEDLINE
Journal :
Pediatric research
Publication Type :
Academic Journal
Accession number :
36627358
Full Text :
https://doi.org/10.1038/s41390-022-02456-3