Metabolic programming in the pathogenesis of insulin resistance

被引:0
|
作者
Sherin U. Devaskar
Manikkavasagar Thamotharan
机构
[1] David Geffen School of Medicine UCLA,Division of Neonatology & Developmental Biology and the Neonatal Research Center, Department of Pediatrics
关键词
Nutrient restriction; Intra-uterine growth restriction; Epigenetic regulation; Trans-generational propagation; Type 2 diabetes mellitus; Developmental origins of adult disease;
D O I
暂无
中图分类号
学科分类号
摘要
This review focuses on different animal models of nutrient perturbations, inclusive of restrictive and excessive states mimicking human situations during pregnancy and lactation that cause aberrations in the offspring. These aberrations consist of diminished insulin sensitivity in the presence of defective insulin production. These phenotypic changes are due to altered peripheral tissue post-insulin receptor signaling mechanisms and pancreatic β-islet insulin synthesis and secretion defects. While these changes during in utero or postnatal life serve as essential adaptations to overcome adverse conditions, they become maladaptive subsequently and set the stage for type 2 diabetes mellitus. Pregnancy leads to gestational diabetes with trans-generational propagation of the insulin resistant phenotype. This is in response to the metabolically aberrant maternal in utero environment, and tissue specific epigenetic perturbations that permanently alter expression of critical genes transmitted to future generations. These heritable aberrations consisting of altered DNA methylation and histone modifications remodel chromatin and affect transcription of key genes. Along with an altered in utero environment, these chromatin modifications contribute to the world-wide epidemic of type 2 diabetes mellitus, with nutrient excess dominating in developed and nutrient restriction in developing countries.
引用
收藏
页码:105 / 113
页数:8
相关论文
共 50 条
  • [21] Metabolic syndrome and insulin resistance
    Hanefeld M.
    Pistrosch F.
    Der Gastroenterologe, 2017, 12 (4): : 300 - 304
  • [22] Role of reduced insulin-stimulated bone blood flow in the pathogenesis of metabolic insulin resistance and diabetic bone fragility
    Hinton, Pamela S.
    MEDICAL HYPOTHESES, 2016, 93 : 81 - 86
  • [23] Metabolic aspects of insulin resistance
    Kraegen, E
    Furler, S
    Ye, JM
    Cooney, G
    CLINICAL AND EXPERIMENTAL PHARMACOLOGY AND PHYSIOLOGY, 2003, 30 (07) : A31 - A32
  • [24] The metabolic syndrome: Insulin resistance
    Nasser Mikhail
    Current Hypertension Reports, 2009, 11
  • [25] The role of systemic inflammation in the pathogenesis of insulin resistance and metabolic syndrome in patients with chronic hepatitis C
    Tkachenko, L., I
    Maleev, V. V.
    TERAPEVTICHESKII ARKHIV, 2018, 90 (11): : 24 - 31
  • [26] Fetal programming of hepatic insulin resistance
    Murphy, H
    Iles, R
    Burns, S
    DIABETES, 2003, 52 : A342 - A342
  • [27] Metabolic Programming of Macrophages: Implications in the Pathogenesis of Granulomatous Disease
    Wilson, Jayne Louise
    Mayr, Hannah Katharina
    Weichhart, Thomas
    FRONTIERS IN IMMUNOLOGY, 2019, 10
  • [28] Alterations in the vascular actions of insulin in the pathogenesis of insulin resistance and hypertension
    Verma, S
    McNeill, JH
    DIABETES AND CARDIOVASCULAR DISEASE: ETIOLOGY, TREATMENT, AND OUTCOMES, 2001, 498 : 133 - 142
  • [29] INSULIN RESISTANCE, INSULIN DEFICIENCY AND THE PATHOGENESIS OF DIABETES-MELLITUS
    FERRANNINI, E
    CLINICAL PHYSIOLOGY, 1986, 6 (04): : 311 - 317
  • [30] INSULIN RESISTANCE AND INSULIN DEFICIENCY IN THE PATHOGENESIS OF POSTTRANSPLANTATION DIABETES IN MAN
    EKSTRAND, AV
    ERIKSSON, JG
    GRONHAGENRISKA, C
    AHONEN, PJ
    GROOP, LC
    TRANSPLANTATION, 1992, 53 (03) : 563 - 568