Effects of nateglinide and repaglinide administered intracerebroventricularly on the CA3 hippocampal neuronal cell death and hyperglycemia induced by kainic acid in mice. 2014

Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
Department of Pharmacology, Institute of Natural Medicine, College of Medicine, Hallym University, 39 Hallymdaehak-gil, Chuncheon, Gangwon-do 200-702, Republic of Korea.

Meglitinides (nateglinide and repaglinide) are widely used oral drugs for the treatment of type II diabetes mellitus. In the present study, the effects of meglinitides administered supraspinally on kainic acid (KA)-induced hippocampal neuronal cell death and hyperglycemia were studied in ICR mice. Mice were pretreated intracerebroventricularly (i.c.v.) with 30 μg of nateglinide and repaglinide for 10 min and then, mice were administered i.c.v. with KA (0.1 μg). The neuronal cell death in the CA3 region in the hippocampus was assessed 24h after KA administration and the blood glucose level was measured 30, 60, and 120 min after KA administration. We found that i.c.v. pretreatment with repaglinide attenuated the KA-induced neuronal cell death in CA3 region of the hippocampus and hyperglycemia. However, nateglinide pretreated i.c.v. did not affect the KA-induced neuronal cell death and hyperglycemia. In addition, KA administered i.c.v. caused an elevation of plasma corticosterone level and a reduction of the plasma insulin level. Furthermore, i.c.v. pretreatment with repaglinide attenuated KA-induced up-regulation of plasma corticosterone level. Furthermore, i.c.v. administration of repaglinide alone increased plasma insulin level and repaglinide pretreated i.c.v. caused a reversal of KA-induced hypoinsulinemic effect. Our results suggest that supraspinally administered repaglinide, but not nateglinide, exerts a protective effect against the KA-induced neuronal cells death in CA3 region of the hippocampus. The neuroprotective effect of repaglinide appears to be mediated by lowering the blood glucose level induced by KA.

UI MeSH Term Description Entries
D007004 Hypoglycemic Agents Substances which lower blood glucose levels. Antidiabetic,Antidiabetic Agent,Antidiabetic Drug,Antidiabetics,Antihyperglycemic,Antihyperglycemic Agent,Hypoglycemic,Hypoglycemic Agent,Hypoglycemic Drug,Antidiabetic Agents,Antidiabetic Drugs,Antihyperglycemic Agents,Antihyperglycemics,Hypoglycemic Drugs,Hypoglycemic Effect,Hypoglycemic Effects,Hypoglycemics,Agent, Antidiabetic,Agent, Antihyperglycemic,Agent, Hypoglycemic,Agents, Antidiabetic,Agents, Antihyperglycemic,Agents, Hypoglycemic,Drug, Antidiabetic,Drug, Hypoglycemic,Drugs, Antidiabetic,Drugs, Hypoglycemic,Effect, Hypoglycemic,Effects, Hypoglycemic
D007328 Insulin A 51-amino acid pancreatic hormone that plays a major role in the regulation of glucose metabolism, directly by suppressing endogenous glucose production (GLYCOGENOLYSIS; GLUCONEOGENESIS) and indirectly by suppressing GLUCAGON secretion and LIPOLYSIS. Native insulin is a globular protein comprised of a zinc-coordinated hexamer. Each insulin monomer containing two chains, A (21 residues) and B (30 residues), linked by two disulfide bonds. Insulin is used as a drug to control insulin-dependent diabetes mellitus (DIABETES MELLITUS, TYPE 1). Iletin,Insulin A Chain,Insulin B Chain,Insulin, Regular,Novolin,Sodium Insulin,Soluble Insulin,Chain, Insulin B,Insulin, Sodium,Insulin, Soluble,Regular Insulin
D007608 Kainic Acid (2S-(2 alpha,3 beta,4 beta))-2-Carboxy-4-(1-methylethenyl)-3-pyrrolidineacetic acid. Ascaricide obtained from the red alga Digenea simplex. It is a potent excitatory amino acid agonist at some types of excitatory amino acid receptors and has been used to discriminate among receptor types. Like many excitatory amino acid agonists it can cause neurotoxicity and has been used experimentally for that purpose. Digenic Acid,Kainate,Acid, Digenic,Acid, Kainic
D008297 Male Males
D008813 Mice, Inbred ICR An inbred strain of mouse that is used as a general purpose research strain, for therapeutic drug testing, and for the genetic analysis of CARCINOGEN-induced COLON CANCER. Mice, Inbred ICRC,Mice, ICR,Mouse, ICR,Mouse, Inbred ICR,Mouse, Inbred ICRC,ICR Mice,ICR Mice, Inbred,ICR Mouse,ICR Mouse, Inbred,ICRC Mice, Inbred,ICRC Mouse, Inbred,Inbred ICR Mice,Inbred ICR Mouse,Inbred ICRC Mice,Inbred ICRC Mouse
D009474 Neurons The basic cellular units of nervous tissue. Each neuron consists of a body, an axon, and dendrites. Their purpose is to receive, conduct, and transmit impulses in the NERVOUS SYSTEM. Nerve Cells,Cell, Nerve,Cells, Nerve,Nerve Cell,Neuron
D010649 Phenylalanine An essential aromatic amino acid that is a precursor of MELANIN; DOPAMINE; noradrenalin (NOREPINEPHRINE), and THYROXINE. Endorphenyl,L-Phenylalanine,Phenylalanine, L-Isomer,L-Isomer Phenylalanine,Phenylalanine, L Isomer
D010880 Piperidines A family of hexahydropyridines.
D001786 Blood Glucose Glucose in blood. Blood Sugar,Glucose, Blood,Sugar, Blood
D002219 Carbamates Derivatives of carbamic acid, H2NC( Carbamate,Aminoformic Acids,Carbamic Acids,Acids, Aminoformic,Acids, Carbamic

Related Publications

Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
January 2019, Animal cells and systems,
Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
November 2008, Brain : a journal of neurology,
Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
April 2007, Neuroscience letters,
Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
September 2021, Cells,
Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
October 1998, Neuroscience letters,
Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
July 1980, The Journal of comparative neurology,
Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
January 2018, The Korean journal of physiology & pharmacology : official journal of the Korean Physiological Society and the Korean Society of Pharmacology,
Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
February 2010, Neuroscience,
Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
October 2011, Neuroscience,
Chea-Ha Kim, and Soo-Hyun Park, and Yun-Beom Sim, and Sung-Su Kim, and Su-Jin Kim, and Su-Min Lim, and Jun-Sub Jung, and Hong-Won Suh
November 2007, Journal of neurochemistry,
Copied contents to your clipboard!