C
Cecilia Camacho-Hübner
Researcher at St Bartholomew's Hospital
Publications - 81
Citations - 6589
Cecilia Camacho-Hübner is an academic researcher from St Bartholomew's Hospital. The author has contributed to research in topics: Growth factor & Insulin-like growth factor. The author has an hindex of 39, co-authored 80 publications receiving 6414 citations. Previous affiliations of Cecilia Camacho-Hübner include John Radcliffe Hospital & University of North Carolina at Chapel Hill.
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Journal ArticleDOI
Intrauterine Growth Retardation and Postnatal Growth Failure Associated with Deletion of the Insulin-Like Growth Factor I Gene
TL;DR: Insulin-like growth factor I (IGF-I) mediates the majority of the growth-promoting effects of growth hormone (GH) after birth, and fetal tissues express IGF-I from fetal tissues.
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Extracellular matrix contains insulin-like growth factor binding protein-5 : potentiation of the effects of IGF-I
TL;DR: It is concluded that IGFBP-5 is present in fibroblast ECM, where it is protected from degradation and can potentiate the biologic actions of IGF-I.
Journal Article
Consensus statement : Childhood obesity
Phyllis W. Speiser,Mary C J Rudolf,Henry Anhalt,Cecilia Camacho-Hübner,Francesco Chiarelli,Michael Freemark,Annette Grüters,Eli Hershkovitz,Heiko Krude,Yael Latzer,Robert H. Lustig,Ora H. Pescovitz,Orit Pinhas-Hamiel,Alan D. Rogol,Shlomit Shalitin,Charles Sultan,Pnina Vardi,George A. Werther,Zvi Zadik,Nehama Zuckerman-Levin,Zeev Hochberg,James Whitcomb +21 more
TL;DR: In developing a consensus statement, this international group has presented the evidence, developed recommendations, and provided a platform aimed toward future corrective action and ongoing debate in the international community.
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Phosphorylation of insulin-like growth factor (IGF)-binding protein 1 in cell culture and in vivo: effects on affinity for IGF-I
TL;DR: It is concluded that IGFBP-1 is phosphorylated and that this phosphorylation is a physiologically important posttranslational modification.
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Identification of the forms of insulin-like growth factor-binding proteins produced by human fibroblasts and the mechanisms that regulate their secretion.
TL;DR: The results show that human fibroblasts synthesize and secrete IGFBP-3, -4, and -5 and that changes in intracellular cAMP regulate synthesis, whereas the IGFs regulate IGF BP-4 and-5 levels by post-transcriptional mechanisms.