Exendin-4 Improves Glycemic Control, Ameliorates Brain and Pancreatic Pathologies, and Extends Survival in a Mouse Model of Huntington's Disease

被引:146
作者
Martin, Bronwen [1 ]
Golden, Erin [1 ]
Carlson, Olga D. [2 ]
Pistell, Paul [3 ]
Zhou, Jie [2 ]
Kim, Wook [2 ]
Frank, Brittany P. [4 ]
Thomas, Sam [2 ]
Chadwick, Wayne A. [1 ]
Greig, Nigel H. [1 ]
Bate, Gillian P. [5 ]
Sathasivam, Kirupa [5 ]
Bernier, Michel [2 ]
Maudsley, Stnart [1 ]
Mattson, Mark P. [1 ]
Egan, Josephine M. [2 ]
机构
[1] NIA, Neurosci Lab, Intramural Res Program, Baltimore, MD 21224 USA
[2] NIA, Clin Invest Lab, Intramural Res Program, Baltimore, MD 21224 USA
[3] NIA, Lab Expt Gerontol, Intramural Res Program, Baltimore, MD 21224 USA
[4] NIA, Res Resources Branch, Intramural Res Program, Baltimore, MD 21224 USA
[5] Kings Coll London, Sch Med, Guys Hosp, London WC2R 2LS, England
关键词
GLUCAGON-LIKE PEPTIDE-1; ANIMAL-MODEL; INSULIN-RESISTANCE; DIABETES-MELLITUS; CAG REPEAT; RECEPTOR; INHIBITION; MICE; RATS; NEUROPROTECTION;
D O I
10.2337/db08-0799
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
OBJECTIVE-The aim of this study was to find an effective treatment for the genetic form of diabetes that is present in some Huntington's disease patients and in Huntington's disease mouse models. Huntington's disease is a neurodegenerative disorder caused by a polyglutamine expansion within the huntingtin protein. Huntington's disease patients exhibit neuronal dysfunction/degeneration, chorea, and progressive weight loss. Additionally, they suffer from abnormalities in energy metabolism affecting both the brain and periphery. Similarly to Huntington's disease patients, mice expressing the mutated human huntingtin protein also exhibit neurodegenerative changes, motor dysfunction, perturbed energy metabolism, and elevated blood glucose levels. RESEARCH DESIGN AND METHODS-Huntington's disease mice were treated with an FDA-approved antidiabetic glucagon-like peptide 1 receptor agonist, exendin-4 (Ex-4), to test whether euglycemia could be achieved, whether pancreatic dysfunction could be alleviated, and whether the mice showed any neurological benefit. Blood glucose and insulin levels and various appetite hormone concentrations were measured during the study. Additionally, motor performance and life span were quantified and mutant huntingtin (mhtt) aggregates were measured in both the pancreas and brain. RESULTS-Ex-4 treatment ameliorated abnormalities in peripheral glucose regulation and suppressed cellular pathology in both brain and pancreas in a mouse model of Huntington's disease. The treatment also improved motor function and extended the survival time of the Huntington's disease mice. These clinical improvements were correlated with reduced accumulation of mhtt protein aggregates in both islet and brain cells. CONCLUSIONS-Targeting both peripheral and neuronal deficits, Ex-4 is an attractive agent for therapeutic intervention in Huntington's disease patients suffering from diabetes. Diabetes 58:318-328, 2009
引用
收藏
页码:318 / 328
页数:11
相关论文
共 50 条
[1]   Hypothalamic, metabolic, and behavioral responses to pharmacological inhibition of CNS melanocortin signaling in rats [J].
Adage, T ;
Scheurink, AJW ;
de Boer, SF ;
de Vries, K ;
Konsman, JP ;
Kuipers, F ;
Adan, RAH ;
Baskin, DG ;
Schwartz, MW ;
van Dijk, G .
JOURNAL OF NEUROSCIENCE, 2001, 21 (10) :3639-3645
[2]   Decreased plasma adiponectin is associated with insulin resistance and HDL cholesterol in overweight subjects [J].
Altinova, Alev E. ;
Toruner, Fusun ;
Bukan, Neslihan ;
Yasar, Demet Gokalp ;
Akturk, Mujde ;
Cakir, Nuri ;
Arslan, Metin .
ENDOCRINE JOURNAL, 2007, 54 (02) :221-226
[3]   Creatine increases survival and delays motor symptoms in a transgenic animal model of Huntington's disease [J].
Andreassen, OA ;
Dedeoglu, A ;
Ferrante, RJ ;
Jenkins, BG ;
Ferrante, KL ;
Thomas, M ;
Friedlich, A ;
Browne, SE ;
Schilling, G ;
Borchelt, DR ;
Hersch, SM ;
Ross, CA ;
Beal, MF .
NEUROBIOLOGY OF DISEASE, 2001, 8 (03) :479-491
[4]   THE RELATIONSHIP BETWEEN TRINUCLEOTIDE (CAG) REPEAT LENGTH AND CLINICAL-FEATURES OF HUNTINGTONS-DISEASE [J].
ANDREW, SE ;
GOLDBERG, YP ;
KREMER, B ;
TELENIUS, H ;
THEILMANN, J ;
ADAM, S ;
STARR, E ;
SQUITIERI, F ;
LIN, BY ;
KALCHMAN, MA ;
GRAHAM, RK ;
HAYDEN, MR .
NATURE GENETICS, 1993, 4 (04) :398-403
[5]  
Aziz NA, 2007, REV NEUROSCIENCE, V18, P223
[6]   Huntingtin aggregation and toxicity in Huntington's disease [J].
Bates, G .
LANCET, 2003, 361 (9369) :1642-1644
[7]   REPLICATION OF THE NEUROCHEMICAL CHARACTERISTICS OF HUNTINGTONS-DISEASE BY QUINOLINIC ACID [J].
BEAL, MF ;
KOWALL, NW ;
ELLISON, DW ;
MAZUREK, MF ;
SWARTZ, KJ ;
MARTIN, JB .
NATURE, 1986, 321 (6066) :168-171
[8]   Peptide hormone exendin-4 stimulates subventricular zone neurogenesis in the adult rodent brain and induces recovery in an animal model of Parkinson's disease [J].
Bertilsson, Goran ;
Patrone, Cesare ;
Zachrisson, Olof ;
Andersson, Annica ;
Dannaeus, Karin ;
Heidrich, Jessica ;
Kortesmaa, Jarkko ;
Mercer, Alex ;
Nielsen, Elisabet ;
Roennholm, Harriet ;
Wikstroem, Lilian .
JOURNAL OF NEUROSCIENCE RESEARCH, 2008, 86 (02) :326-338
[9]   The R6/2 transgenic mouse model of Huntington's disease develops diabetes due to deficient β-cell mass and exocytosis [J].
Björkqvist, M ;
Fex, M ;
Renström, E ;
Wierup, N ;
Petersén, Å ;
Gil, J ;
Bacos, K ;
Popovic, N ;
Li, JY ;
Sundler, F ;
Brundin, P ;
Mulder, H .
HUMAN MOLECULAR GENETICS, 2005, 14 (05) :565-574
[10]   Transcriptional dysregulation in Huntington's disease [J].
Cha, JHJ .
TRENDS IN NEUROSCIENCES, 2000, 23 (09) :387-392