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Munoz Zamora, A.

Publications and source records attributed to Munoz Zamora, A..

2 recordsLinked to original sources

Sickness engrams modulate anticipatory immune responses

A threat to survival in the wild is vulnerability to infection. The immune system is essential for defence against foreign species which cause sickness. During infection the brain triggers conserved behaviors, including fever, tiredness and anorexia that support immunity. The immune system stores infection information via adaptive immunity, however it remains unclear whether the brain stores immune-related information as long-term memory engrams. Here we demonstrate that mice form contextual memories for sickness events. Upon sickness-memory recall mice lower whole-body metabolism, and increase coactivation between the hippocampus and sickness regions such as the central amygdala, alongside elevated engram activation. Optogenetic reactivation of sickness engrams decreases metabolism, similar to natural recall. Finally, natural recall and artificial reactivation of a sickness-memory increased genes associated with the acute phase response in the liver. These findings suggest that sickness experiences are encoded as engrams, which upon reactivation trigger coordinated metabolic and innate immune responses.

neuroscience↗

Plasticity of visual looming response reveals a dissociation of innate and learned components

Animals rely on innate and learned behaviour to respond to their environment, but how the brain balances hardwired responses with adaptive flexibility remains unclear. Here, we demonstrate that innate looming stimulus responses in mice can be attenuated via repeated unreinforced presentation. This attenuation is long-lasting and generalising, but is rapidly recovered when the stimulus is paired with an electric foot-shock. Fiber photometry recordings reveal attenuation of responses to visual looming stimuli in the SC and PAG, which do not recover following recovery of behavioural responses. Analysis of c-Fos expression uncovered a ventral CA1 (vCA1) ensemble that is active during both innate and learned looming fear responses. We report that this vCA1 engram is not necessary for innate defensive behaviour but is necessary for learned fear responses. These findings reveal a novel role of the hippocampus in adapting to looming stimuli, and provide a platform for understanding the interaction of memory and instinct.

neuroscience↗