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Early Post-Natal Immune Activation Leads to Object Memory Deficits in Female Tsc2+/- Mice: The Importance of
Manuel F López-Aranda1,2,3, Karen Bach2, Raymond Bui2
1Departamento de Biología Celular, Genética y Fisiología, Facultad de Ciencias, Universidad de Málaga, 29010 Málaga, Spain.
Insights
Early post-natal immune activation causes object memory deficits in female Tuberous Sclerosis Complex (TSC) mice, but not males. This critical developmental window highlights sex-specific impacts of immune challenges on memory.
Area of Science:
- Neuroscience
- Immunology
- Developmental Biology
Background:
- Prenatal viral infections are linked to neuropsychiatric disorders and memory deficits.
- The impact of early post-natal immune activation on learning and memory shows sex-specific differences.
- Previous work showed social memory deficits in male Tsc2+/- mice after early immune activation.
Purpose of the Study:
- To investigate the sex-specific effects of early post-natal immune activation on object memory in a mouse model of Tuberous Sclerosis Complex (TSC).
- To determine if the early post-natal period is a critical window for immune-induced memory deficits.
- To explore the role of mTOR in observed memory deficits.
Main Methods:
- Utilized Tuberous Sclerosis Complex (TSC; Tsc2+/-) and wild-type (WT) mice.
- Administered a viral-like immune challenge during the first two weeks of life.
- Assessed object memory in early post-natal challenged mice and adult mice.
- Investigated the involvement of mTOR signaling.
Main Results:
- Early post-natal immune activation induced object memory deficits in female Tsc2+/- mice, but not in males or WT mice.
- No object memory deficits were observed when the same immune challenge was given to adult female Tsc2+/- mice.
- Results suggest mTOR plays a critical role in the object memory deficits in female Tsc2+/- mice.
Conclusions:
- Early post-natal immune activation creates a critical window for developing object memory deficits in female Tsc2+/- mice.
- Sex-specific effects of immune challenges on memory are evident, emphasizing the need for both sexes in research.
- Estrogen's neuroprotective role and influence on inflammation may contribute to observed sex differences in immune-related memory impairments.
Abstract:
There is evidence that viral infections during pre-natal development constitute a risk factor for neuropsychiatric disorders and lead to learning and memory deficits. However, little is known about why viral infections during early post-natal development have a different impact on learning and memory depending on the sex of the subject. We previously showed that early post-natal immune activation induces hippocampal-dependent social memory deficits in a male, but not in a female, mouse model of tuberous sclerosis complex (TSC; Tsc2+/- mice). Here, we explored the impact of a viral-like immune challenge in object memory. We demonstrate that early post-natal immune activation (during the first 2 weeks of life) leads to object memory deficits in female, but not male, mice that are heterozygous for a gene responsible for tuberous sclerosis complex (Tsc2+/- mice), while no effect was observed in wild type (WT) mice. Moreover, we found that the same immune activation in Tsc2+/- adult mice was not able to cause object memory deficits in females, which suggests that the early post-natal development stage constitutes a critical window for the effects of immune challenge on adult memory. Also, our results suggest that mTOR plays a critical role in the observed deficit in object memory in female Tsc2+/- mice. These results, together with previous results published by our laboratory, showing sex-specific memory deficits due to early post-natal immune activation, reinforce the necessity of using both males and females for research studies. This is especially true for studies related to immune activation, since the higher levels of estrogens in females are known to affect inflammation and to provide neuroprotection.
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