Literature DB >> 21807611

Fetal growth restriction and the programming of heart growth and cardiac insulin-like growth factor 2 expression in the lamb.

Kimberley C W Wang1, Lei Zhang, I Caroline McMillen, Kimberley J Botting, Jaime A Duffield, Song Zhang, Catherine M Suter, Doug A Brooks, Janna L Morrison.   

Abstract

Reduced growth in fetal life together with accelerated growth in childhood, results in a ~50% greater risk of coronary heart disease in adult life. It is unclear why changes in patterns of body and heart growth in early life can lead to an increased risk of cardiovascular disease in adulthood. We aimed to investigate the role of the insulin-like growth factors in heart growth in the growth-restricted fetus and lamb. Hearts were collected from control and placentally restricted (PR) fetuses at 137-144 days gestation and from average (ABW) and low (LBW) birth weight lambs at 21 days of age. We quantified cardiac mRNA expression of IGF-1, IGF-2 and their receptors, IGF-1R and IGF-2R, using real-time RT-PCR and protein expression of IGF-1R and IGF-2R using Western blotting. Combined bisulphite restriction analysis was used to assess DNA methylation in the differentially methylated region (DMR) of the IGF-2/H19 locus and of the IGF-2R gene. In PR fetal sheep, IGF-2, IGF-1R and IGF-2R mRNA expression was increased in the heart compared to controls. LBW lambs had a greater left ventricle weight relative to body weight as well as increased IGF-2 and IGF-2R mRNA expression in the heart, when compared to ABW lambs. No changes in the percentage of methylation of the DMRs of IGF-2/H19 or IGF-2R were found between PR and LBW when compared to their respective controls. In conclusion, a programmed increased in cardiac gene expression of IGF-2 and IGF-2R may represent an adaptive response to reduced substrate supply (e.g. glucose and/or oxygen) in order to maintain heart growth and may be the underlying cause for increased ventricular hypertrophy and the associated susceptibility of cardiomyocytes to ischaemic damage later in life.

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Year:  2011        PMID: 21807611      PMCID: PMC3213418          DOI: 10.1113/jphysiol.2011.211185

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  57 in total

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2.  Right ventricular systolic pressure load alters myocyte maturation in fetal sheep.

Authors:  A Barbera; G D Giraud; M D Reller; J Maylie; M J Morton; K L Thornburg
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3.  Left ventricular hypertrophy as a predictor of coronary heart disease mortality and the effect of hypertension.

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4.  Growth and maturation of cardiac myocytes in fetal sheep in the second half of gestation.

Authors:  Judith H Burrell; Adrian M Boyn; Vasumathy Kumarasamy; Albert Hsieh; Stewart I Head; Eugenie R Lumbers
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5.  Insulin-like growth factor-II induces hypertrophy of adult cardiomyocytes via two alternative pathways.

Authors:  Chih-Yang Huang; Ling-Yang Hao; Dennis E Buetow
Journal:  Cell Biol Int       Date:  2002       Impact factor: 3.612

6.  Extracellular signal-regulated kinase and phosphoinositol-3 kinase mediate IGF-1 induced proliferation of fetal sheep cardiomyocytes.

Authors:  Nathan C Sundgren; George D Giraud; Jess M Schultz; Michael R Lasarev; Philip J S Stork; Kent L Thornburg
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7.  Fetal origins of adult disease: strength of effects and biological basis.

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8.  Hypertrophy of cultured adult rat ventricular cardiomyocytes induced by antibodies against the insulin-like growth factor (IGF)-I or the IGF-I receptor is IGF-II-dependent.

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9.  Increased insulin-like growth factor-I gene expression precedes left ventricular cardiomyocyte hypertrophy in a rapidly-hypertrophying rat model system.

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Journal:  Cell Biochem Funct       Date:  2003-12       Impact factor: 3.685

Review 10.  Regulation of supply and demand for maternal nutrients in mammals by imprinted genes.

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2.  IGF-2R-Gαq signaling and cardiac hypertrophy in the low-birth-weight lamb.

Authors:  Kimberley C W Wang; Darran N Tosh; Song Zhang; I Caroline McMillen; Jaime A Duffield; Doug A Brooks; Janna L Morrison
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3.  Mechanisms for the adverse effects of late gestational increases in maternal cortisol on the heart revealed by transcriptomic analyses of the fetal septum.

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4.  Skeletal muscle protein accretion rates and hindlimb growth are reduced in late gestation intrauterine growth-restricted fetal sheep.

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5.  Maternal undernutrition in late gestation increases IGF2 signalling molecules and collagen deposition in the right ventricle of the fetal sheep heart.

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6.  Activation of IGF-2R stimulates cardiomyocyte hypertrophy in the late gestation sheep fetus.

Authors:  Kimberley C W Wang; Doug A Brooks; Kent L Thornburg; Janna L Morrison
Journal:  J Physiol       Date:  2012-08-28       Impact factor: 5.182

Review 7.  The role of miRNA regulation in fetal cardiomyocytes, cardiac maturation and the risk of heart disease in adults.

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8.  Population Study Confirms Serum Proteins' Change and Reveals Diagnostic Values in Congenital Ventricular Septal Defect.

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9.  Maternal dietary restriction during the periconceptional period in normal-weight or obese ewes results in adrenocortical hypertrophy, an up-regulation of the JAK/STAT and down-regulation of the IGF1R signaling pathways in the adrenal of the postnatal lamb.

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10.  Development of an experimental model of maternal allergic asthma during pregnancy.

Authors:  Vicki L Clifton; Timothy J M Moss; Amy L Wooldridge; Kathryn L Gatford; Bahar Liravi; Dasom Kim; Beverly S Muhlhausler; Janna L Morrison; Andrew Davies; Robert De Matteo; Megan J Wallace; Robert J Bischof
Journal:  J Physiol       Date:  2015-09-02       Impact factor: 5.182

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