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Effects of Recombinant Human IGF-I/IGF-Binding Protein-3 Complex on Glucose and Glycerol Metabolism in Type 1 Diabetes

  1. Tero Saukkonen12,
  2. Fariba Shojaee-Moradie3,
  3. Rachel M. Williams1,
  4. Rakesh Amin1,
  5. Kevin C. Yuen1,
  6. Angie Watts1,
  7. Carlo L. Acerini1,
  8. A. Margot Umpleby3 and
  9. David B. Dunger1
  1. 1Department of Paediatrics, University of Cambridge, Cambridge, U.K
  2. 2Hospital for Children and Adolescents, Helsinki University Central Hospital, Helsinki, Finland
  3. 3Department of Diabetes and Endocrinology, Guy’s, King’s and Thomas’ School of Medicine, London, U.K
  1. Address correspondence and reprint requests to David B Dunger, Department of Paediatrics, University of Cambridge, Box 116, Level 8, Addenbrooke’s Hospital, Hills Road, Cambridge CB2 2QQ, U.K. E-mail: dbd25{at}cam.ac.uk

Abstract

Recombinant human IGF-I (rhIGF-I) complexed with its natural binding protein IGF-binding protein (IGFBP)-3 (rhIGF-I/IGFBP-3) is a novel formulation that has been shown to improve insulin sensitivity in type 1 diabetes, yet the mechanisms are not clear. We used stable isotopes to investigate the effects of rhIGF-I/IGFBP-3 on glucose and glycerol metabolism in type 1 diabetes. Fifteen subjects (age 13–24 years; 10 males) were studied on three occasions in random order. Each study period lasted for two days, and an injection of either placebo or rhIGF-I/IGFBP-3 (0.1–0.8 mg · kg−1 · day −1) was given subcutaneously at 6:00 p.m. on days 1 and 2. Following the second injection, the subjects were kept euglycemic overnight by a variable rate insulin infusion, followed by a 4-h, two-step (insulin 0.6 and 1.5 mU · kg−1 · min −1) hyperinsulinemic-euglycemic clamp. During the overnight basal steady state, rhIGF-I/IGFBP-3 dose-dependently reduced endogenous glucose production rate (Ra) (P = 0.004), while peripheral glucose uptake (Rd) was not different from placebo. The increase in glucose Rd during hyperinsulinemic clamp was greater following rhIGF-I/IGFBP-3 than placebo, both during the first (P = 0.008) and second step (P = 0.008) of the clamp. No significant differences were found in glycerol Ra, a measure of lipolysis, between rhIGF-I/IGFBP-3 and placebo. In conclusion, rhIGF-I/IGFBP-3 enhances glucose metabolism by controlling both endogenous glucose output and peripheral glucose uptake.

Footnotes

  • The costs of publication of this article were defrayed in part by the payment of page charges. The article must therefore be hereby marked “advertisement” in accordance with 18 U.S.C. Section 1734 solely to indicate this fact.

    • Accepted May 22, 2006.
    • Received December 20, 2005.
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