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Delayed behavioral effects following intrahippocampal injection of aggregated A beta (1-42)
E O'Hare1, D T Weldon, P W Mantyh
1Geriatric Research, Education and Clinical Center, Veterans Affairs Medical Center, Minneapolis, MN 55417, USA.
Abstract:
Beta amyloid protein (A beta) is the major extracellular component of Alzheimer's disease (AD) plaques. In the current study, A beta (1-42) was aggregated in vitro using a method which produces A beta aggregates similar to those found in the AD brain. Twelve male Sprague-Dawley rats were trained in two-lever operant chambers under an alternating lever cyclic-ratio (ALCR) schedule. When performance was stable on the ALCR schedule, six subjects were injected (bilaterally into the CA3 area of the dorsal hippocampus) with 5.0 microliters aggregated A beta in suspension, and the remaining six subjects were injected with 5.0 microliters sterile water. Behavioral testing resumed 5 days after surgery and continued for 90 days post-injection. Aggregated A beta injection did not affect the number of lever switching errors made in a daily session but did affect the number of incorrect lever response perseverations. After approximately 30 days post-injection, aggregated A beta injection detrimentally affected ability to track the changing parameters of the schedule, and decreased the efficiency by which subjects obtained reinforcers. From approximately day 50 post-injection onward, A beta-injected subjects demonstrated significantly higher numbers of incorrect lever response perseverations than did sterile water-injected subjects. These effects appeared to be central rather than peripheral, as A beta injection did not decrease running response rates under the ALCR schedule. The delayed onset of behavioral effects seen in this and other behavioral studies may be a result of a cascade of potentially harmful responses induced through glial activation following aggregated A beta injection.
Insights
Aggregated beta-amyloid protein (A beta) impairs cognitive function in rats, leading to persistent lever pressing and reduced learning efficiency. These effects suggest a central nervous system impact, potentially mediated by glial activation.
Area of Science:
- Neuroscience
- Biochemistry
Background:
- Beta-amyloid protein (A beta) is a key component of Alzheimer's disease (AD) plaques.
- In vitro aggregation methods can mimic A beta structures found in the AD brain.
Purpose of the Study:
- To investigate the behavioral effects of aggregated A beta (1-42) injection in the rat hippocampus.
- To determine the impact of aggregated A beta on learning and cognitive performance.
Main Methods:
- Twelve male Sprague-Dawley rats were trained on an alternating lever cyclic-ratio (ALCR) schedule.
- Six rats received bilateral hippocampal injections of aggregated A beta (1-42); six received sterile water.
- Behavioral testing was conducted for 90 days post-injection.
Main Results:
- Aggregated A beta injection led to increased incorrect lever response perseverations.
- Impaired ability to track schedule changes and reduced reinforcer acquisition efficiency were observed.
- Effects were central, as running response rates remained unaffected.
Conclusions:
- Aggregated A beta induces delayed-onset behavioral deficits in rats, mimicking aspects of cognitive impairment.
- The findings suggest a central mechanism, possibly involving glial activation, underlying A beta's neurotoxic effects.
- Hippocampal A beta aggregation impacts learning and cognitive flexibility relevant to Alzheimer's disease research.