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Melatonin alleviates behavioral deficits associated with apoptosis and cholinergic system dysfunction in the APP 695 transgenic mouse model of Alzheimer’s disease

Bibliographic

Year of Publication:
2004
Contact PI Name:
Jun-tian Zhang
Contact PI Affiliation:
Department of Pharmacology Institute of Materia Medica Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China
Co-Authors:
Zheng Feng, Yang Chang, Yong Cheng, Bin-ling Zhang, Zhi-wei Qu, Chuan Qin
Primary Reference (PubMED ID):
Funding Source:
National Basic Research Program of China
Ministry of Science and Technology of China
Study Goal and Principal Findings:

Melatonin is an endogenous antioxidant and free radical scavenger. A transgenic (Tg) mouse model for Alzheimer’s disease mimics the accumulation of senile plaques, neuronal apoptosis and memory impairment. Previous studies indicated that melatonin reduced beta-amyloid (Abeta)-induced neurotoxicity. In this study, after giving melatonin at 10 mg/kg to APP 695 transgenic (APP 695 Tg) mice for 4 months, we evaluated the long-term influence of melatonin on behavior, biochemical and neuropathologic changes in APP 695 Tg mice. Step-down and step-through passive avoidance tests suggested that 8-month-old APP 695 Tg mice showed decreases in stepdown latency and step-through latency and increases in count of error throughout the entire learning trial and memory session, which suggested learning and memory impairment. However, melatonin alleviated learning and memory deficits. Additionally, choline acetyltransferase (ChAT) activity also decreased in the frontal cortex and hippocampus of APP 695 Tg mice compared with non-Tg littermates. Melatonin supplementation increased ChAT activity in the frontal cortex and hippocampus. DNA fragmentation was present in the frontal cortex of the APP 695 Tg mice; melatonin reduced the number of apoptotic neurons. Congo Red staining and Bielschowsky silver impregnation both showed the apparent extracellular Abeta deposition in frontal cortex of APP 695 Tg mice. However, melatonin decreased the Abeta deposits. Our results indicate that neuroprotection by melatonin is partly related to modulation of apoptosis and protection of the cholinergic system. Early rational melatonin interventions may be one of the most promising strategies in the development of approaches to retard or prevent Ab-mediated disease progression

Therapeutic Agent

Therapeutic Information:
Therapy Type:
Dietary Interventions & Supplements
Therapeutic Agent:
Melatonin
Therapeutic Target:
Multi Target

Animal Model

Model Information:
Species:
Mouse
Model Type:
APP
Strain/Genetic Background:
C57BL/6
Species:
Mouse
Model Type:
Non-transgenic
Strain/Genetic Background:
C57BL/6
Animal Model Notes:
Original description for the animal model:
Chang Y, Zhu H, Cai YY. Construction and identification of eukaryotic expression vector of homo sapiens amyloid precursor protein (APP). Chin J Gerontol 1999; 16: 42–44.
Chang Y, Qin C, Yin HX et al. Establishment of the transgenic model of Alzheimer's disease. Acta Anat Sin 2000; 31: 144–147.

Experimental Design

Is the following information reported in the study?:
Power/Sample Size Calculation
Randomized into Groups
Blinded for Treatment
Blinded for Outcome Measures
Pharmacokinetic Measures
Pharmacodynamic Measures
Toxicology Measures
ADME Measures
Biomarkers
Dose
Formulation
Route of Delivery
Duration of Treatment
Frequency of Administration
Age of Animal at the Beginning of Treatment
Age of Animal at the End of Treatment
Sex as a Biological Variable
Study Balanced for Sex as a Biological Variable
Number of Premature Deaths
Number of Excluded Animals
Statistical Plan
Genetic Background
Inclusion/Exclusion Criteria Included
Conflict of Interest

Outcomes

Outcome Measured
Outcome Parameters
Behavioral
Passive Avoidance Test
Histopathology
beta Amyloid Deposits
Dense-core/Compact Plaques
Biochemical
Choline Acetyltransferase (ChAT)
Acetylcholinesterase (AChE)
Microscopy
Apoptosis
Toxicology
Body Weight