Study summary · research use only
Mechano-growth factor peptide, the COOH terminus of unprocessed insulin-like growth factor 1, has no apparent effect on myoblasts or primary muscle stem cells
Plain-language summary
Paraphrased from the published abstract below — not a verdict on whether anything works.
In this in vitro study using human and mouse muscle cells, two pharmaceutical companies attempted to reproduce claimed effects of the mechano-growth factor (MGF) peptide, the 24-amino acid COOH-terminal peptide of IGF-1Eb. The abstract reports that MGF concentrations up to 500 ng/ml did not increase proliferation of C2C12 cells or primary human skeletal muscle myoblasts, whereas mature IGF-1 or full-length IGF-1Eb did. MGF also did not inhibit myoblast differentiation into myotubes, did not significantly affect primary mouse skeletal muscle stem cells, and did not activate p-ERK or p-Akt in cardiac myocytes. The authors state these results question whether MGF has a physiological role.
Abstract
A splice form of IGF-1, IGF-1Eb, is upregulated after exercise or injury. Physiological responses have been ascribed to the 24-amino acid COOH-terminal peptide that is cleaved from the NH3-terminal 70-amino acid mature IGF-1 protein. This COOH-terminal peptide was termed "mechano-growth factor" (MGF). Activities claimed for the MGF peptide included enhancing muscle satellite cell proliferation and delaying myoblast fusion. As such, MGF could represent a promising strategy to improve muscle regeneration. Thus, at our two pharmaceutical companies, we attempted to reproduce the claimed effect of MGF peptides on human and mouse muscle myoblast proliferation and differentiation in vitro. Concentrations of peptide up to 500 ng/ml failed to increase the proliferation of C2C12 cells or primary human skeletal muscle myoblasts. In contrast, all cell types exhibited a proliferative response to mature IGF-1 or full-length IGF-1Eb. MGF also failed to inhibit the differentiation of myoblasts into myotubes. To address whether the response to MGF was lost in these tissue culture lines, we measured proliferation and differentiation of primary mouse skeletal muscle stem cells exposed to MGF. This, too, failed to demonstrate a significant effect. Finally, we tested whether MGF could alter a separate documented in vitro effect of the peptide, activation of p-ERK, but not p-Akt, in cardiac myocytes. Although a robust response to IGF-1 was observed, there were no demonstrated activating responses from the native or a stabilized MGF peptide. These results call in to question whether there is a physiological role for MGF.
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