Introduction: Prematurity is associated with increased cardiometabolic risk later in life. The adipomyokine irisin has been acknowledged as a modulator of energy metabolism and insulin sensitivity. The aim of this study was to investigate circulating levels of irisin and their relation to anthropometric measurements and cardiometabolic phenotype in a population of preterm-born children versus full-term-born peers. Methods: A total of 160 children (87 born preterm aged 8.1–14.8 years and 73 born full-term of similar age and gender distribution) were studied. Arterial blood pressure, anthropometry, body composition assessments with dual energy X-ray absorptiometry, and skinfold measurements were performed. Blood biochemistry and circulating levels of irisin, insulin, cortisol, leptin, and adiponectin were also determined. Results: The preterm group had higher diastolic blood pressure, triceps skinfold, subscapular skinfold (SSSF), and abdominal skinfold measurements and more central adiposity than the full-term group. Irisin was significantly lower (p = 0.002), whereas leptin was higher (p = 0.03) in the preterm than the full-term group. Irisin correlated positively with gestational age (r = 0.19, p = 0.01), birth weight (r = 0.23, p = 0.003), and high-density lipoprotein cholesterol (r = 0.20, p = 0.01) and negatively with SSSF (r = −0.25, p = 0.003) and chronological age (r = −0.21, p = 0.008). Conclusion: Lower levels of irisin and a slightly unhealthy adiposity and cardiometabolic pattern were detected in preterm-born children in comparison to their full-term-born peers. Whether low irisin levels in preadolescents and adolescents born prematurely could be of prognostic value for the development of cardiometabolic sequelae later in life remains to be further studied.

1.
Boström
P
,
Wu
J
,
Jedrychowski
MP
,
Korde
A
,
Ye
L
,
Lo
JC
,
A PGC1-α-dependent myokine that drives brown-fat-like development of white fat and thermogenesis
.
Nature
.
2012
;
481
:
463
8
.
2.
Huh
JY
,
Dincer
F
,
Mesfum
E
,
Mantzoros
CS
.
Irisin stimulates muscle growth-related genes and regulates adipocyte differentiation and metabolism in humans
.
Int J Obes
.
2014
;
38
:
1538
44
. .
3.
Arhire
LI
,
Mihalache
L
,
Covasa
M
.
Irisin: a hope in understanding and managing obesity and metabolic syndrome
.
Front Endocrinol
.
2019
;
10
:
524
. .
4.
Roca-Rivada
A
,
Castelao
C
,
Senin
LL
,
Landrove
MO
,
Baltar
J
,
Crujeiras
AB
,
FNDC5/irisin is not only a myokine but also an adipokine
.
PLoS One
.
2013
;
8
:
e60563
.
5.
Moreno-Navarrete
JM
,
Ortega
F
,
Serrano
M
,
Guerra
E
,
Pardo
G
,
Tinahones
F
,
Irisin is expressed and produced by human muscle and adipose tissue in association with obesity and insulin resistance
.
J Clin Endocrinol Metab
.
2013
;
98
:
E769
778
.
6.
Karampatsou
SI
,
Genitsaridi
SM
,
Michos
A
,
Kourkouni
E
,
Kourlaba
G
,
Kassari
P
,
The effect of a life-style intervention program of diet and exercise on irisin and FGF-21 concentrations in children and adolescents with overweight and obesity
.
Nutrients
.
2021
;
13
:
1274
.
7.
Baka
S
,
Malamitsi-Puchner
A
,
Boutsikou
T
,
Boutsikou
M
,
Marmarinos
A
,
Hassiakos
D
,
Cord blood irisin at the extremes of fetal growth
.
Metabolism
.
2015
;
64
:
1515
20
.
8.
Joung
KE
,
Park
KH
,
Filippaios
A
,
Dincer
F
,
Christou
H
,
Mantzoros
CS
.
Cord blood irisin levels are positively correlated with birth weight in newborn infants
.
Metabolism
.
2015
;
64
:
1507
14
. .
9.
Mól
N
,
Zasada
M
,
Tomasik
P
,
Klimasz
K
,
Kwinta
P
.
Evaluation of irisin and visfatin levels in very low birth weight preterm newborns compared to full term newborns. A prospective cohort study
.
PLoS One
.
2018
;
13
:
e0204835
.
10.
Markopoulou
P
,
Papanikolaou
E
,
Analytis
A
,
Zoumakis
E
,
Siahanidou
T
.
Preterm birth as a risk factor for metabolic syndrome and cardiovascular disease in adult life: a systematic review and meta-analysis
.
J Pediatr
.
2019
;
210
:
69
80.e5
. .
11.
Uthaya
S
,
Thomas
EL
,
Hamilton
G
,
Doré
CJ
,
Bell
J
,
Modi
N
.
Altered adiposity after extremely preterm birth
.
Pediatr Res
.
2005
;
57
:
211
5
. .
12.
Roggero
P
,
Giannì
ML
,
Amato
O
,
Orsi
A
,
Piemontese
P
,
Morlacchi
L
,
Is term newborn body composition being achieved postnatally in preterm infants?
Early Hum Dev
.
2009
;
85
:
349
52
.
13.
Labayen
I
,
Moreno
LA
,
Ruiz
JR
,
González-Gross
M
,
Wärnberg
J
,
Breidenassel
C
,
Small birth weight and later body composition and fat distribution in adolescents: the AVENA study
.
Obesity
.
2008
;
16
:
1680
6
.
14.
Thomas
EL
,
Parkinson
JR
,
Hyde
MJ
,
Yap
IK
,
Holmes
E
,
Doré
CJ
,
Aberrant adiposity and ectopic lipid deposition characterize the adult phenotype of the preterm infant
.
Pediatr Res
.
2011
;
70
:
507
12
.
15.
Dulloo
AG
,
Jacquet
J
,
Seydoux
J
,
Montani
JP
.
The thrifty “catch-up fat” phenotype: its impact on insulin sensitivity during growth trajectories to obesity and metabolic syndrome
.
Int J Obes
.
2006
;
30
(
Suppl 4
):
S23
35
.
16.
Turer
AT
,
Scherer
PE
.
Adiponectin: mechanistic insights and clinical implications
.
Diabetologia
.
2012
;
55
:
2319
26
. .
17.
Mantzoros
CS
,
Magkos
F
,
Brinkoetter
M
,
Sienkiewicz
E
,
Dardeno
TA
,
Kim
SY
,
Leptin in human physiology and pathophysiology
.
Am J Physiol Endocrinol Metab
.
2011
;
301
:
E567
584
.
18.
Fenton
TR
,
Kim
JH
.
A systematic review and meta-analysis to revise the Fenton growth chart for preterm infants
.
BMC Pediatr
.
2013
;
13
:
59
. .
19.
Shrestha
B
,
Dunn
L
.
The declaration of Helsinki on medical research involving human subjects: a review of seventh revision
.
J Nepal Health Res Counc
.
2019
;
17
:
548
52
. .
20.
Centers for Disease control and Prevention
.
Defining childhood weight status
. Available from: https://www.cdc.gov/obesity/childhood/defining.html.
21.
Sharma
AK
,
Metzger
DL
,
Daymont
C
,
Hadjiyannakis
S
,
Rodd
CJ
.
LMS tables for waist-circumference and waist-height ratio Z-scores in children aged 5–19 y in NHANES III: association with cardio-metabolic risks
.
Pediatr Res
.
2015
;
78
:
723
9
.
22.
Centers for Disease Control and Prevention
.
National Health and Nutrition Examination Survey III (NHANES III). Body measurements (anthropometry)
.
1988 Oct
. Available from: https://wwwn.cdc.gov/nchs/data/nhanes3/manuals/anthro.pdf.
23.
Marshall
WS
,
Tanner
JM
. Puberty.
Human growth
.
New York
:
Plenum Press
;
1986
. p.
171
210
.
24.
Jackson
AS
,
Blair
SN
,
Mahar
MT
,
Wier
LT
,
Ross
RM
,
Stuteville
JE
.
Prediction of functional aerobic capacity without exercise testing
.
Med Sci Sports Exerc
.
1990
;
22
:
863
70
. .
25.
de Onis
M
,
Onyango
AW
,
Borghi
E
,
Siyam
A
,
Nishida
C
,
Siekmann
J
.
Development of a WHO growth reference for school-aged children and adolescents
.
Bull World Health Organ
.
2007
;
85
:
660
7
. .
26.
National Institutes of Health
.
Blood pressure levels for boys and girls by age and height
. Available from: https://www.nhlbi.nih.gov/files/docs/guidelines/child_tbl.pdf.
27.
Zimmet
P
,
Alberti
KG
,
Kaufman
F
,
Tajima
N
,
Silink
M
,
Arslanian
S
,
The metabolic syndrome in children and adolescents: an IDF consensus report
.
Pediatr Diabetes
.
2007
;
8
:
299
306
.
28.
Van der Aa
MP
,
Knibbe
CA
,
Boer
A
,
van der Vorst
MM
.
Definition of insulin resistance affects prevalence rate in pediatric patients: a systematic review and call for consensus
.
J Pediatr Endocrinol Metab
.
2017
;
30
:
123
31
. .
29.
Kistner
A
,
Rydén
H
,
Anderstam
B
,
Hellström
A
,
Skorpil
M
.
Brown adipose tissue in young adults who were born preterm or small for gestational age
.
J Pediatr Endocrinol Metab
.
2018
;
31
:
641
7
. .
30.
Breukhoven
PE
,
Kerkhof
GF
,
Willemsen
RH
,
Hokken-Koelega
AC
.
Fat mass and lipid profile in young adults born preterm
.
J Clin Endocrinol Metab
.
2012
;
97
:
1294
302
. .
31.
Shaunak
M
,
Byrne
CD
,
Davis
N
,
Afolabi
P
,
Faust
SN
,
Davies
JH
.
Non-alcoholic fatty liver disease and childhood obesity
.
Arch Dis Child
.
2021
;
106
(
1
):
3
8
. .
32.
Gonzalez-Gil
AM
,
Peschard-Franco
M
,
Castillo
EC
,
Gutierrez-DelBosque
G
,
Treviño
V
,
Silva-Platas
C
,
Myokine–adipokine cross-talk: potential mechanisms for the association between plasma irisin and adipokines and cardiometabolic risk factors in Mexican children with obesity and the metabolic syndrome
.
Diabetol Metab Syndr
.
2019
;
11
:
63
.
33.
De Meneck
F
,
Victorino de Souza
L
,
Oliveira
V
,
do Franco
MC
.
High irisin levels in overweight/obese children and its positive correlation with metabolic profile, blood pressure, and endothelial progenitor cells
.
Nutr Metab Cardiovasc Dis
.
2018
;
28
:
756
64
. .
34.
Elizondo-Montemayor
L
,
Silva-Platas
C
,
Torres-Quintanilla
A
,
Rodríguez-López
C
,
Ruiz-Esparza
GU
,
Reyes-Mendoza
E
,
Association of irisin plasma levels with anthropometric parameters in children with underweight, normal weight, overweight, and obesity
.
BioMed Res Int
.
2017
;
2017
:
2628968
.
35.
Papoutsakis
C
,
Yannakoulia
M
,
Ntalla
I
,
Dedoussis
GV
.
Metabolic syndrome in a Mediterranean pediatric cohort: prevalence using International Diabetes Federation–derived criteria and associations with adiponectin and leptin
.
Metabolism
.
2012
;
61
:
140
5
.
36.
Bates
ML
,
Levy
PT
,
Nuyt
AM
,
Goss
KN
,
Lewandowski
AJ
,
McNamara
PJ
.
Adult cardiovascular health risk and cardiovascular phenotypes of prematurity
.
J Pediatr
.
2020
;
227
:
17
30
. .
37.
Parkinson
JR
,
Hyde
MJ
,
Gale
C
,
Santhakumaran
S
,
Modi
N
.
Preterm birth and the metabolic syndrome in adult life: a systematic review and meta-analysis
.
Pediatrics
.
2013
;
131
:
e1240
63
. .
38.
Löffler
D
,
Müller
U
,
Scheuermann
K
,
Friebe
D
,
Gesing
J
,
Bielitz
J
,
Serum irisin levels are regulated by acute strenuous exercise
.
J Clin Endocrinol Metab
.
2015
;
100
:
1289
99
.
39.
Ҫatlı
G
,
Kϋme
T
,
Tuhan
HU
,
Anık
A
,
Ҫalan
ÖG
,
Bӧber
E
,
Relation of serum irisin level with metabolic and anthropometric parameters in obese children
.
J Diabetes Complications
.
2016
;
30
:
1560
5
.
40.
Jefferies
CA
,
Hofman
PL
,
Knoblauch
H
,
Luft
FC
,
Robinson
EM
,
Cutfield
WS
.
Insulin resistance in healthy prepubertal twins
.
J Pediatr
.
2004
;
144
:
608
13
. .
41.
Huh
JY
,
Panagiotou
G
,
Mougios
V
,
Brinkoetter
M
,
Vamvini
MT
,
Schneider
BE
,
FNDC5 and irisin in humans: I. Predictors of circulating concentrations in serum and plasma and II. mRNA expression and circulating concentrations in response to weight loss and exercise
.
Metabolism
.
2012
;
61
:
1725
38
. .
42.
Blizzard LeBlanc
DR
,
Rioux
BV
,
Pelech
C
,
Moffatt
TL
,
Kimber
DE
,
Duhamel
TA
,
Exercise-induced irisin release as a determinant of the metabolic response to exercise training in obese youth: the EXIT trial
.
Physiol Rep
.
2017
;
5
:
e13539
.
43.
Strath
SJ
,
Kaminsky
LA
,
Ainsworth
BE
,
Ekelund
U
,
Freedson
PS
,
Gary
RA
,
Guide to the assessment of physical activity: clinical and research applications: a scientific statement from the American Heart Association
.
Circulation
.
2013
;
128
:
2259
79
.
44.
Black
NE
,
Vehrs
PR
,
Fellingham
GW
,
George
JD
,
Hager
R
.
Prediction of VO2max in children and adolescents using exercise testing and physical activity questionnaire data
.
Res Q Exerc Sport
.
2016
;
87
:
89
100
. .
Copyright / Drug Dosage / Disclaimer
Copyright: All rights reserved. No part of this publication may be translated into other languages, reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying, recording, microcopying, or by any information storage and retrieval system, without permission in writing from the publisher.
Drug Dosage: The authors and the publisher have exerted every effort to ensure that drug selection and dosage set forth in this text are in accord with current recommendations and practice at the time of publication. However, in view of ongoing research, changes in government regulations, and the constant flow of information relating to drug therapy and drug reactions, the reader is urged to check the package insert for each drug for any changes in indications and dosage and for added warnings and precautions. This is particularly important when the recommended agent is a new and/or infrequently employed drug.
Disclaimer: The statements, opinions and data contained in this publication are solely those of the individual authors and contributors and not of the publishers and the editor(s). The appearance of advertisements or/and product references in the publication is not a warranty, endorsement, or approval of the products or services advertised or of their effectiveness, quality or safety. The publisher and the editor(s) disclaim responsibility for any injury to persons or property resulting from any ideas, methods, instructions or products referred to in the content or advertisements.
You do not currently have access to this content.