Aging Cell · 2011 · 31 citations · 14 references
Increased MortalityImmunologyMusculoskeletal SystemOsteoporosisMusculoskeletal ResearchOxidative StressInflammationIgf-1 SignalingBone Morphogenic ProteinOsteoarthritisFibroblast Growth FactorHealth SciencesMechanobiologyGrowth HormoneMusculoskeletal TissueMusculoskeletal FunctionCell BiologyBone MetabolismSerum Igf-1Igf-1 Null BackgroundPhysiologyMedicineSerum Igf-1 Levels
IGF‑1 is known to protect musculoskeletal tissues during growth and aging, yet reduced IGF‑1 signaling has been linked to lifespan extension via lowered oxidative stress. To resolve this paradox, the authors used hepatocyte‑specific IGF‑1 transgenic mice (HIT) with 3‑fold serum IGF‑1 and IGF‑1 null mice expressing IGF‑1 only in the liver (KO‑HIT) to isolate endocrine effects. In KO‑HIT mice, elevated serum IGF‑1 correlated with higher lipid peroxidation and 18‑month mortality in both sexes; female KO‑HIT mice lost trabecular bone, while male KO‑HIT mice showed no protection against age‑related muscle loss.
Although the literature suggests a protective (anabolic) effect of insulin-like growth factor-1 (IGF-1) on the musculoskeletal system during growth and aging, there is evidence that reductions in IGF-1 signaling are advantageous for promoting an increase in life span through reduction in oxidative stress-induced tissue damage. To better understand this paradox, we utilized the hepatocyte-specific IGF-1 transgenic (HIT) mice, which exhibit 3-fold increases in serum IGF-1, with normal IGF-1 expression in other tissues, and mice with an IGF-1 null background that exclusively express IGF-1 in the liver, which thereby deliver IGF-1 by the endocrine route only (KO-HIT mice). We found that in the total absence of tissue igf1 gene expression (KO-HIT), increases in serum IGF-1 levels were associated with increased levels of lipid peroxidation products in serum and increased mortality rate at 18 months of age in both genders. Surprisingly, however, we found that in female mice, tissue IGF-1 plays an important role in preserving trabecular bone architecture as KO-HIT mice show bone loss in the femoral distal metaphysis. Additionally, in male KO-HIT mice, increases in serum IGF-1 levels were insufficient to protect against age-related muscle loss.
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IGF-1 receptor regulates lifespan and resistance to oxidative stress in mice
Martin Holzenberger, Joëlle Dupont, Bertrand Ducos et al. · Nature · 2002 · 2.1K citations · Full text
Regulation of Oxidative Stress by the Anti-aging Hormone Klotho*♦
Masaya Yamamoto, Jeremy D. Clark, Johanne V. Pastor et al. · Journal of Biological Chemistry · 2005 · 722 citations · Full text