Scroll Up
Scroll Down
Play Play Play Play
Unregistered User
Click here if this is not your Personal Edition
 
Contact Us | Free E-Mail Updates | Journals | Register a colleague
 
 
Diabetes
 
   
 
SEARCH   
Doctor's Guide Free CME
Medline
Congress Resource Centre
 

 EXPLORE :
   Most Read News
 All News  All News
 All Webcasts / CME  All Webcasts / CME
 All Cases  All Cases
 Congress Resource Centre  Congress Resource Centre
 All Medical Resources  All Medical Resources
 Medical  My Personal Edition



Warning | Privacy

 

 
 Recent news - Diabetes
    Darbepoetin Alfa Risks Outweigh Benefits for Patients With CKD, Diabetes, and Anaemia: Presented at Renal Week 2009 - (DGDispatch)
    Fenofibrate May Protect Diabetics Against Loss of Renal Function: Presented at Renal Week 2009 - (DGDispatch)
    A Trial of Darbepoetin Alfa in Type 2 Diabetes and Chronic Kidney Disease - (N Engl J Med)
    TopAbstracts in Diabetes 11/03/2009 - (DGNews)
    Paricalcitol Added to Hypertension Therapy Lowers Albuminuria in Patients With Diabetes and Chronic Kidney Disease: Presented at Renal Week 2009 - (DGDispatch)

    News archive

     Recent webcasts/CME - Diabetes
    • Optimizing Insulin-Dependent Diabetes Management in Long-Term Care
    • Insulin-Dependent Diabetes in Long-Term Care: Scope of the Problem and Effective Management
    • Cases in Practice: Incretin-Based Therapies for Common Patient Encounters
      Diabetes Management - Pearls of Lipid Control
      Obesity Management in Patients with Type 2 Diabetes

      Webcasts/CME archive

       Recent cases - Diabetes
        Acquired Perforating Dermatosis: Association with Diabetes and Renal Failure
        A Patient Presenting with Symptomatic Hypomagnesemia Caused by Metformin-Induced Diarrhoea: A Case Report
        Absence of Diabetic Retinopathy in a Patient who has had Diabetes Mellitus for 69 Years, and Inadequate Glycemic Control: Case Report
        Gallbladder Edema in Type 1 Diabetic Patient due to Delayed-type Insulin Allergy
        Compound Heterozygous Mutation of Aquaporin 2 Gene in Woman Patient with Congenital Nephrogenic Diabetes Insipidus

        Cases archive
          




        my personal edition > diabetes > news
        divider

          E-Mail this DGNews to a colleague

        DGNews


        UCSD Researchers Discover Inflammation, Not Obesity, Cause of Insulin Resistance

        SAN DIEGO, CA -- November 6, 2007 -- Researchers at the University of California, San Diego (UCSD) School of Medicine have discovered that inflammation provoked by immune cells called macrophages leads to insulin resistance and Type 2 diabetes. Their discovery may pave the way to novel drug development to fight the epidemic of Type 2 diabetes associated with obesity, the most prevalent metabolic disease worldwide.

        In recent years, it has been theorized that chronic, low-grade tissue inflammation related to obesity contributes to insulin resistance, the major cause of Type 2 diabetes. In research done in mouse models, the UCSD scientists proved that, by disabling the macrophage inflammatory pathway, insulin resistance and the resultant Type 2 diabetes can be prevented.

        The findings of the research team, led by principle investigators Michael Karin, PhD, Professor of Pharmacology in UCSD's Laboratory of Gene Regulation and Signal Transduction, and Jerrold Olefsky, Distinguished Professor of Medicine and Associate Dean for Scientific Affairs, will be published as the feature article of the November 7 issue of Cell Metabolism.

        "Our research shows that insulin resistance can be disassociated from the increase in body fat associated with obesity," said Olefsky.

        Macrophages, found in white blood cells in the bone marrow, are key players in the immune response. When these immune cells get into tissues, such as adipose (fat) or liver tissue, they release cytokines, which are chemical messenger molecules used by immune and nerve cells to communicate. These cytokines cause the neighboring liver, muscle or fat cells to become insulin resistant, which in turn can lead to Type 2 diabetes.

        The UCSD research team showed that the macrophage is the cause of this cascade of events by knocking out a key component of the inflammatory pathway in the macrophage, JNK1, in a mouse model. This was done through a procedure called adoptive bone marrow transfer, which resulted in the knockout of JNK1 in cells derived from the bone marrow, including macrophages.

        With this procedure, bone marrow was transplanted from a global JNK1 knockout mouse (lacking JNK1 in all cell types) into a normal mouse that had been irradiated to kill off its endogenous bone marrow. This resulted in a chimeric mouse in which all tissues were normal except the bone marrow, which is where macrophages originate. As a control, the scientists used normal, wild-type mice as well as mice lacking JNK1 in all cell types. These control mice were also subjected to irradiation and bone marrow transfer.

        The mice were all fed a high-fat diet. In regular, wild-type mice, this diet would normally result in obesity, leading to inflammation, insulin resistance and mild Type 2 diabetes. The chimeric mice, lacking JNK1 in bone marrow-derived cells, did become obese; however, they showed a striking absence of insulin resistance – a pre-condition that can lead to development of Type 2 diabetes.

        "If we can block or disarm this macrophage inflammatory pathway in humans, we could interrupt the cascade that leads to insulin resistance and diabetes," said Olefsky. "A small molecule compound to block JNK1 could prove a potent insulin-sensitizing, anti-diabetic agent."

        The research also proved that obesity without inflammation does not result in insulin resistance. Olefsky explained that when an animal or a human being becomes obese, they develop steatosis, or increased fat in the liver. The steatosis leads to liver inflammation and hepatic insulin resistance.

        The chimeric mice did develop fatty livers, but not inflammation. "Their livers remained normal in terms of insulin sensitivity," said Olefsky, adding that this shows that insulin resistance can also be disassociated from fatty liver.

        "We aren't suggesting that obesity is healthy, but indications are promising that, by blocking the macrophage pathway, scientists may find a way to prevent the Type 2 diabetes now linked to obesity and fatty livers," Olefsky said.

        Co-first authors of the paper are Giovanni Solinas, UCSD Department of Pharmacology and Cristian Vilcu, UCSD Division of Endocrinology and Metabolism.

        This research was supported by National Institutes of Health grants ES004151, ES006376, DK033651 and DK074868. Additional funding was provided by a fellowship from the Swiss National Science Foundation, a University of California Discovery Grant and Mentor-Based Postdoctoral Fellowships from the American Diabetes Association. Michael Karin is an American Cancer Society Research Professor.


        SOURCE: University of California - San Diego



        E-Mail this DGNews to a colleague   To print, use this version






        All contents Copyright (c) 1995-2009 Doctor's Guide Publishing Limited. All rights reserved.



        The NTK initiative. Physicians helping physicians identify Need-To-Know science
           Feedback
        Please rate this article: Strongly DISAGREE...Strongly AGREE NTK logo
        Question 1 - Physicians need to become aware of this information as soon as possible. Question 2 - This information is likely to have an impact on the way physicians practice medicine.
        1
        2
        3
        4
        5
        6
        7
        Send