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Sheep recombinant IGF-1 promotes organ-specific growth in fetal sheep

Study · Frontiers in physiology · 2022 · DOI 10.3389/fphys.2022.954948 · PMID 36091374

Plain-language summary

Paraphrased from the published abstract below — not a verdict on whether anything works.

In this fetal sheep study, researchers developed an ovine-specific recombinant IGF-1 (oIGF-1) and tested it against saline infusion (SAL). oIGF-1 stimulated myoblast proliferation in vitro. When infused for 1 week in fetal sheep, oIGF-1 increased growth of the heart, kidney, spleen, and adrenal glands and stimulated skeletal myoblast proliferation compared to SAL, without increasing muscle fractional synthetic rate or hindlimb muscle mass. Hepatic and muscular IGFBP one to three gene expression was similar between groups. Serial skeletal muscle biopsies were also examined after a 2 hour oIGF-1 or saline infusion. The authors describe oIGF-1 as promoting tissue- and organ-specific growth in the normal sheep fetus.

Abstract

IGF-1 is a critical fetal growth-promoting hormone. Experimental infusion of an IGF-1 analog, human recombinant LR3 IGF-1, into late gestation fetal sheep increased fetal organ growth and skeletal muscle myoblast proliferation. However, LR3 IGF-1 has a low affinity for IGF binding proteins (IGFBP), thus reducing physiologic regulation of IGF-1 bioavailability. The peptide sequences for LR3 IGF-1 and sheep IGF-1 also differ. To overcome these limitations with LR3 IGF-1, we developed an ovine (sheep) specific recombinant IGF-1 (oIGF-1) and tested its effect on growth in fetal sheep. First, we measured in vitro myoblast proliferation in response to oIGF-1. Second, we examined anabolic signaling pathways from serial skeletal muscle biopsies in fetal sheep that received oIGF-1 or saline infusion for 2 hours. Finally, we measured the effect of fetal oIGF-1 infusion versus saline infusion (SAL) for 1 week on fetal body and organ growth, in vivo myoblast proliferation, skeletal muscle fractional protein synthetic rate, IGFBP expression in skeletal muscle and liver, and IGF-1 signaling pathways in skeletal muscle. Using this approach, we showed that oIGF-1 stimulated myoblast proliferation in vitro. When infused for 1 week, oIGF-1 increased organ growth of the heart, kidney, spleen, and adrenal glands and stimulated skeletal myoblast proliferation compared to SAL without increasing muscle fractional synthetic rate or hindlimb muscle mass. Hepatic and muscular gene expression of IGFBPs one to three was similar between oIGF-1 and SAL. We conclude that oIGF-1 promotes tissue and organ-specific growth in the normal sheep fetus.

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