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Gene expression in hippocampus of streptozotocin-induced diabetic rats.

Kwan Hon Pong. / Thesis (M.Phil.)--Chinese University of Hong Kong, 2000. / Includes bibliographical references (leaves 115-156). / Abstracts in English and Chinese. / Abstract --- p.i / 摘要 --- p.iii / Abbreviations --- p.v / Acknowledgment --- p.vii / Chapter 1. --- Introduction / Chapter 1.1 --- Diabetes mellitus - general introduction --- p.1 / Chapter 1.1.1 --- Animal models of diabetes --- p.5 / Chapter 1.1.2 --- Streptozotocin-induced diabetes (SID) --- p.6 / Chapter 1.1.2.1 --- Mechanism of the diabetogenic effect of STZ --- p.7 / Chapter 1.1.2.2 --- Administration of STZ --- p.9 / Chapter 1.2 --- Impairment of cognitive function in diabetes mellitus --- p.9 / Chapter 1.3 --- Common mechanisms suggested in diabetic neuropathy --- p.15 / Chapter 1.3.1 --- Polyol pathway activation --- p.15 / Chapter 1.3.2 --- Redox potential alterations --- p.16 / Chapter 1.3.3 --- Nonenzymatic glycation --- p.17 / Chapter 1.3.4 --- PKC alteration --- p.18 / Chapter 1.4 --- Do the common mechanisms of neuropathy induced the cognitive impairment in diabetes --- p.18 / Chapter 1.5 --- Structure and function of the hippocampus --- p.20 / Chapter 1.6 --- The definition and mechanism of learning and memory --- p.21 / Chapter 1.7 --- The mechanisms underlying the early and late phases of LTP in hippocampus --- p.23 / Chapter 1.7.1 --- Perforant and schaffer collaterals pathways --- p.23 / Chapter 1.7.2 --- Mossy fibre pathway --- p.24 / Chapter 1.7.3 --- Late phase of LTP in hippocampus --- p.25 / Chapter 1.8 --- GABAergic interaction in hippocampal plasticity --- p.25 / Chapter 1.9 --- The objective of the project --- p.27 / Chapter 1.10 --- Hypothesis --- p.27 / Chapter 1.10.1 --- The initial role of glutamate receptors --- p.28 / Chapter 1.10.2 --- Involvement of putative retrograde messengers --- p.30 / Chapter 1.10.3 --- The role of GABA receptors --- p.37 / Chapter 1.10.4 --- The role of the CREB --- p.40 / Chapter 2. --- Materials and methods / Chapter 2.1 --- Animals --- p.43 / Chapter 2.1.1 --- Induction of diabetes mellitus --- p.43 / Chapter 2.1.2 --- Insulin therapy --- p.45 / Chapter 2.1.3 --- Sample collection --- p.46 / Chapter 2.2 --- Isolation of total RNA --- p.47 / Chapter 2.3 --- Quantitation of total RNA --- p.51 / Chapter 2.4 --- Reverse transcription --- p.53 / Chapter 2.5 --- PCR --- p.54 / Chapter 2.5.1 --- Preparation of PCR --- p.54 / Chapter 2.5.2 --- Purification of PCR product --- p.60 / Chapter 2.5.3 --- Confirmation of PCR products by DNA sequencing --- p.61 / Chapter 2.5.4 --- PCR analysis --- p.62 / Chapter 2.5.4.1 --- Quantitation of cDNA --- p.62 / Chapter 2.5.4.2 --- Radioactive PCR --- p.65 / Chapter 2.5.4.3 --- cDNA gel electrophoresis --- p.66 / Chapter 3. --- Results / Chapter 3.1 --- Ionotropic glutamate receptor subtypes --- p.72 / Chapter 3.1.1 --- Non-NMDA receptors --- p.72 / Chapter 3.1.1.1 --- AMPA receptors --- p.72 / Chapter 3.1.1.2 --- Kainate receptors --- p.72 / Chapter 3.1.2 --- NMDA receptors --- p.76 / Chapter 3.2 --- Metabotropic glutamate receptor subtypes --- p.79 / Chapter 3.2.1 --- Group I subtype --- p.79 / Chapter 3.2.2 --- Group II subtypes --- p.79 / Chapter 3.3 --- Synthases of retrograde messengers --- p.79 / Chapter 3.4 --- Calcium-related receptors --- p.82 / Chapter 3.5 --- "GABA receptor subtypes (Aαl-4,BRla)" --- p.85 / Chapter 3.6 --- Glutamic acid decarboxylase (GAD) --- p.88 / Chapter 3.7 --- Enzyme genes related to CREB dephosphorylation --- p.88 / Chapter 3.8 --- Effect of insulin therapy on ionotropic glutamate receptor subtypes --- p.91 / Chapter 3.9 --- Effect of insulin therapy on metabotropic glutamate receptor subtypes --- p.91 / Chapter 3.10 --- Effect of insulin therapy on synthases of retrograde messenger --- p.91 / Chapter 3.11 --- Effect of insulin therapy on GAB A receptor subtype --- p.91 / Chapter 4. --- Discussion / Chapter 4.1 --- SID on Glutamate receptor subtypes --- p.96 / Chapter 4.2 --- SID on Calcium-related receptors --- p.105 / Chapter 4.3 --- SID on Synthases of retrograde messengers --- p.106 / Chapter 4.4 --- SID on GABA receptor subtypes --- p.109 / Chapter 4.5 --- SID on enzyme genes related to dephosphorylation of CREB --- p.111 / Chapter 4.6 --- Effect on insulin therapy on gene expression in hippocampus --- p.113 / Chapter 5. --- References --- p.115

Identiferoai:union.ndltd.org:cuhk.edu.hk/oai:cuhk-dr:cuhk_323030
Date January 2000
ContributorsKwan, Hon Pong., Chinese University of Hong Kong Graduate School. Division of Physiology.
Source SetsThe Chinese University of Hong Kong
LanguageEnglish, Chinese
Detected LanguageEnglish
TypeText, bibliography
Formatprint, viii, 156 leaves : ill. ; 30 cm.
RightsUse of this resource is governed by the terms and conditions of the Creative Commons “Attribution-NonCommercial-NoDerivatives 4.0 International” License (http://creativecommons.org/licenses/by-nc-nd/4.0/)

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