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Lien, C.-C.

Publications and source records attributed to Lien, C.-C..

2 recordsLinked to original sources

Inhibitory fear memory engram in the mouse central lateral amygdala

Engrams are cellular substrates of memory traces that have been identified in various brain areas, including the amygdala. Most engrams identified so far are formed by excitatory, glutamatergic neurons. However, little attention has been paid to defining GABAergic inhibitory engrams. Here, we report an inhibitory engram in the central lateral amygdala (CeL), a crucial area for Pavlovian fear conditioning. This engram is primarily composed of GABAergic somatostatin-expressing (SST+) and to a lesser extent of protein kinase C-{delta}-expressing [PKC-{delta}(+)] neurons. Fear memory is accompanied by a preferential enhancement of mIPSC frequency onto PKC-{delta}(+) neurons as well as a general increment of amplitude. Moreover, non-engram cells exhibit higher mIPSC frequency than engram cells. The inhibition of the CeL GABAergic engram disinhibits the activity of engram-targeted areas and increases selectively the encoded fear expression. Our data defines the behavioral function of an engram formed exclusively by GABAergic inhibitory neurons in the mammalian CNS.

neuroscience↗

Cellular Mechanisms Underlying Central Sensitization in a Mouse Model of Chronic Muscle Pain

Chronic pain disorders are often associated with psychiatric symptoms. The central nucleus of the amygdala (CeA) has emerged as an integrative hub for nociceptive and affective components during the development of central pain. Although the exact cause for this process remains unknown, prior adverse injuries are precipitating factors and thought to transform nociceptors into a primed state for chronic pain. However, the cellular basis underlying the primed state and the subsequent pain chronification remains unknown. Here, we investigated cellular and synaptic alterations of the CeA in a mouse model of chronic muscle pain. In these mice, local infusion of pregabalin, a clinically approved drug for fibromyalgia and other chronic pain disorders, into the CeA or selective inactivation of somatostatin-expressing CeA (CeA-SST) neurons during the priming phase prevented pain chronification. Further, electrophysiological recording revealed that CeA-SST neurons received increased excitatory transmission and showed enhanced excitability in chronic pain states. In line with the possible role of CeA-SST neurons in central sensitization, chemogenetic inactivation of CeA-SST neurons or pharmacological suppression of nociceptive afferents from the brainstem to CeA-SST neurons by pregabalin after the development of chronic muscle pain alleviated pain and negative emotions.

neuroscience↗