Modulation of insulin-like growth factor (IGF) action by IGF-binding proteins in normal, benign, and malignant smooth muscle tissues

The insulin-like growth factor (IGF) system is involved in the growth of uterine leiomyomas (L), as these tumors have higher IGF-II messenger ribonucleic acid levels, type I IGF receptor levels, and IGF-I peptide concentrations than myometrium (M). Furthermore, cultured L smooth muscle cells (SMC) r...

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Veröffentlicht in:The journal of clinical endocrinology and metabolism 1996-10, Vol.81 (10), p.3629-3635
Hauptverfasser: VAN DER VEN, L. T. M, VAN BUUL-OFFERS, S. C, GLOUDEMANS, T, BLOEMEN, R. J, ROHOLL, P. J. M, SUSSENBACH, J. S, DEN OTTER, W
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Sprache:eng
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Zusammenfassung:The insulin-like growth factor (IGF) system is involved in the growth of uterine leiomyomas (L), as these tumors have higher IGF-II messenger ribonucleic acid levels, type I IGF receptor levels, and IGF-I peptide concentrations than myometrium (M). Furthermore, cultured L smooth muscle cells (SMC) respond with greater efficiency to IGF-I than M SMC. Here we investigate a possible modulating role of the binding proteins for the IGFs (IGFBPs) on the actions of IGFs. IGFBP-3 is the most predominant IGFBP in conditioned medium from SMC, with levels ranging from 13-288 ng/mL. Incubation of SMC cultures with IGF-I and the IGF-I analogs long-R3IGF-I and des(1-3)-IGF-I, which have decreased affinity for IGFBPs, revealed a facilitating effect of IGFBPs on the growth-stimulating activity of a high concentration of IGF-I in cell lines with high IGFBP-3 levels. Both a decreased level of IGFBP-3 and a low concentration of the growth factors added were a disadvantage for the facilitating effect. In M and L tissue sections, IGFBP-3 was found exclusively bound to the constituting cells, not in the extracellular matrix. This suggests that a negative modulating role of IGFBP-3 due to sequestration of IGF-I, as occurs in culture medium, is less relevant in vivo. In leiomyosarcoma sections, IGFBP-3 levels are decreased, indicating a decreasing, role for this binding protein in malignant smooth muscle tissues.
ISSN:0021-972X
1945-7197
DOI:10.1210/jc.81.10.3629