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1.
J Neurosci ; 40(11): 2314-2331, 2020 03 11.
Artículo en Inglés | MEDLINE | ID: mdl-32005764

RESUMEN

Distinct components of working memory are coordinated by different classes of inhibitory interneurons in the PFC, but the role of cholecystokinin (CCK)-positive interneurons remains enigmatic. In humans, this major population of interneurons shows histological abnormalities in schizophrenia, an illness in which deficient working memory is a core defining symptom and the best predictor of long-term functional outcome. Yet, CCK interneurons as a molecularly distinct class have proved intractable to examination by typical molecular methods due to widespread expression of CCK in the pyramidal neuron population. Using an intersectional approach in mice of both sexes, we have succeeded in labeling, interrogating, and manipulating CCK interneurons in the mPFC. Here, we describe the anatomical distribution, electrophysiological properties, and postsynaptic connectivity of CCK interneurons, and evaluate their role in cognition. We found that CCK interneurons comprise a larger proportion of the mPFC interneurons compared with parvalbumin interneurons, targeting a wide range of neuronal subtypes with a distinct connectivity pattern. Phase-specific optogenetic inhibition revealed that CCK, but not parvalbumin, interneurons play a critical role in the retrieval of working memory. These findings shine new light on the relationship between cortical CCK interneurons and cognition and offer a new set of tools to investigate interneuron dysfunction and cognitive impairments associated with schizophrenia.SIGNIFICANCE STATEMENT Cholecystokinin-expressing interneurons outnumber other interneuron populations in key brain areas involved in cognition and memory, including the mPFC. However, they have proved intractable to examination as experimental techniques have lacked the necessary selectivity. To the best of our knowledge, the present study is the first to report detailed properties of cortical cholecystokinin interneurons, revealing their anatomical organization, electrophysiological properties, postsynaptic connectivity, and behavioral function in working memory.


Asunto(s)
Colecistoquinina/fisiología , Interneuronas/fisiología , Memoria a Corto Plazo/fisiología , Recuerdo Mental/fisiología , Corteza Prefrontal/fisiología , Animales , Conducta Apetitiva/fisiología , Aprendizaje Discriminativo/fisiología , Discriminación en Psicología/fisiología , Femenino , Genes Reporteros , Interneuronas/clasificación , Masculino , Ratones , Ratones Transgénicos , Proteínas del Tejido Nervioso/análisis , Odorantes , Optogenética , Parvalbúminas/análisis , Técnicas de Placa-Clamp , Recompensa , Esquizofrenia/fisiopatología , Olfato/fisiología , Potenciales Sinápticos/fisiología
2.
J Neurosci ; 36(50): 12570-12585, 2016 12 14.
Artículo en Inglés | MEDLINE | ID: mdl-27974613

RESUMEN

Atypical multisensory integration is an understudied cognitive symptom in schizophrenia. Procedures to evaluate multisensory integration in rodent models are lacking. We developed a novel multisensory object oddity (MSO) task to assess multisensory integration in ketamine-treated rats, a well established model of schizophrenia. Ketamine-treated rats displayed a selective MSO task impairment with tactile-visual and olfactory-visual sensory combinations, whereas basic unisensory perception was unaffected. Orbitofrontal cortex (OFC) administration of nicotine or ABT-418, an α4ß2 nicotinic acetylcholine receptor (nAChR) agonist, normalized MSO task performance in ketamine-treated rats and this effect was blocked by GABAA receptor antagonism. GABAergic currents were also decreased in OFC of ketamine-treated rats and were normalized by activation of α4ß2 nAChRs. Furthermore, parvalbumin (PV) immunoreactivity was decreased in the OFC of ketamine-treated rats. Accordingly, silencing of PV interneurons in OFC of PV-Cre mice using DREADDs (Designer Receptors Exclusively Activated by Designer Drugs) selectively impaired MSO task performance and this was reversed by ABT-418. Likewise, clozapine-N-oxide-induced inhibition of PV interneurons in brain slices was reversed by activation of α4ß2 nAChRs. These findings strongly imply a role for prefrontal GABAergic transmission in the integration of multisensory object features, a cognitive process with relevance to schizophrenia. Accordingly, nAChR agonism, which improves various facets of cognition in schizophrenia, reversed the severe MSO task impairment in this study and appears to do so via a GABAergic mechanism. Interactions between GABAergic and nAChR receptor systems warrant further investigation for potential therapeutic applications. The novel behavioral procedure introduced in the current study is acutely sensitive to schizophrenia-relevant cognitive impairment and should prove highly valuable for such research. SIGNIFICANCE STATEMENT: Adaptive behaviors are driven by integration of information from different sensory modalities. Multisensory integration is disrupted in patients with schizophrenia, but little is known about the neural basis of this cognitive symptom. Development and validation of multisensory integration tasks for animal models is essential given the strong link between functional outcome and cognitive impairment in schizophrenia. We present a novel multisensory object oddity procedure that detects selective multisensory integration deficits in a rat model of schizophrenia using various combinations of sensory modalities. Moreover, converging data are consistent with a nicotinic-GABAergic mechanism of multisensory integration in the prefrontal cortex, results with strong clinical relevance to the study of cognitive impairment and treatment in schizophrenia.


Asunto(s)
Isoxazoles/farmacología , Agonistas Nicotínicos/farmacología , Corteza Prefrontal/efectos de los fármacos , Desempeño Psicomotor/fisiología , Pirrolidinas/farmacología , Receptores Nicotínicos/efectos de los fármacos , Psicología del Esquizofrénico , Transmisión Sináptica/efectos de los fármacos , Animales , Técnicas In Vitro , Ketamina , Masculino , Ratones , Ratones Endogámicos C57BL , Corteza Prefrontal/fisiología , Ratas , Ratas Long-Evans , Esquizofrenia/inducido químicamente , Ácido gamma-Aminobutírico/fisiología
3.
J Neurosci ; 34(45): 14948-60, 2014 Nov 05.
Artículo en Inglés | MEDLINE | ID: mdl-25378161

RESUMEN

Hyperactivity within the ventral hippocampus (vHPC) has been linked to both psychosis in humans and behavioral deficits in animal models of schizophrenia. A local decrease in GABA-mediated inhibition, particularly involving parvalbumin (PV)-expressing GABA neurons, has been proposed as a key mechanism underlying this hyperactive state. However, direct evidence is lacking for a causal role of vHPC GABA neurons in behaviors associated with schizophrenia. Here, we probed the behavioral function of two different but overlapping populations of vHPC GABA neurons that express either PV or GAD65 by selectively inhibiting these neurons with the pharmacogenetic neuromodulator hM4D. We show that acute inhibition of vHPC GABA neurons in adult mice results in behavioral changes relevant to schizophrenia. Inhibiting either PV or GAD65 neurons produced distinct behavioral deficits. Inhibition of PV neurons, affecting ∼80% of the PV neuron population, robustly impaired prepulse inhibition of the acoustic startle reflex (PPI), startle reactivity, and spontaneous alternation, but did not affect locomotor activity. In contrast, inhibiting a heterogeneous population of GAD65 neurons, affecting ∼40% of PV neurons and 65% of cholecystokinin neurons, increased spontaneous and amphetamine-induced locomotor activity and reduced spontaneous alternation, but did not alter PPI. Inhibition of PV or GAD65 neurons also produced distinct changes in network oscillatory activity in the vHPC in vivo. Together, these findings establish a causal role for vHPC GABA neurons in controlling behaviors relevant to schizophrenia and suggest a functional dissociation between the GABAergic mechanisms involved in hippocampal modulation of sensorimotor processes.


Asunto(s)
Neuronas GABAérgicas/fisiología , Hipocampo/fisiología , Interneuronas/fisiología , Aprendizaje por Laberinto , Inhibición Neural , Reflejo de Sobresalto , Esquizofrenia/fisiopatología , Potenciales de Acción , Animales , Clozapina/análogos & derivados , Clozapina/farmacología , Neuronas GABAérgicas/metabolismo , Glutamato Descarboxilasa/genética , Glutamato Descarboxilasa/metabolismo , Hipocampo/citología , Hipocampo/metabolismo , Interneuronas/efectos de los fármacos , Interneuronas/metabolismo , Locomoción , Ratones , Parvalbúminas/genética , Parvalbúminas/metabolismo , Receptor Muscarínico M4/agonistas , Esquizofrenia/metabolismo , Potenciales Sinápticos
4.
iScience ; 27(2): 108824, 2024 Feb 16.
Artículo en Inglés | MEDLINE | ID: mdl-38303709

RESUMEN

Associating contexts with rewards depends on hippocampal circuits, with local inhibitory interneurons positioned to play an important role in shaping activity. Here, we demonstrate that the encoding of context-reward memory requires a ventral hippocampus (vHPC) to nucleus accumbens (NAc) circuit that is gated by cholecystokinin (CCK) interneurons. In a sucrose conditioned place preference (CPP) task, optogenetically inhibiting vHPC-NAc terminals impaired the acquisition of place preference. Transsynaptic rabies tracing revealed vHPC-NAc neurons were monosynaptically innervated by CCK interneurons. Using intersectional genetic targeting of CCK interneurons, ex vivo optogenetic activation of CCK interneurons increased GABAergic transmission onto vHPC-NAc neurons, while in vivo optogenetic inhibition of CCK interneurons increased cFos in these projection neurons. Notably, CCK interneuron inhibition during sucrose CPP learning increased time spent in the sucrose-associated location, suggesting enhanced place-reward memory. Our findings reveal a previously unknown hippocampal microcircuit crucial for modulating the strength of contextual reward learning.

5.
Sci Adv ; 9(22): eadg4881, 2023 06 02.
Artículo en Inglés | MEDLINE | ID: mdl-37256958

RESUMEN

Extinction memory retrieval is influenced by spatial contextual information that determines responding to conditioned stimuli (CS). However, it is poorly understood whether contextual representations are imbued with emotional values to support memory selection. Here, we performed activity-dependent engram tagging and in vivo single-unit electrophysiological recordings from the ventral hippocampus (vH) while optogenetically manipulating basolateral amygdala (BLA) inputs during the formation of cued fear extinction memory. During fear extinction when CS acquire safety properties, we found that CS-related activity in the vH reactivated during sleep consolidation and was strengthened upon memory retrieval. Moreover, fear extinction memory was facilitated when the extinction context exhibited precise coding of its affective zones. Last, these activity patterns along with the retrieval of the fear extinction memory were dependent on glutamatergic transmission from the BLA during extinction learning. Thus, fear extinction memory relies on the formation of contextual and stimulus safety representations in the vH instructed by the BLA.


Asunto(s)
Extinción Psicológica , Miedo , Miedo/fisiología , Extinción Psicológica/fisiología , Amígdala del Cerebelo/fisiología , Hipocampo/fisiología , Aprendizaje/fisiología
6.
Nat Commun ; 12(1): 4156, 2021 07 06.
Artículo en Inglés | MEDLINE | ID: mdl-34230461

RESUMEN

Fear extinction is an adaptive process whereby defensive responses are attenuated following repeated experience of prior fear-related stimuli without harm. The formation of extinction memories involves interactions between various corticolimbic structures, resulting in reduced central amygdala (CEA) output. Recent studies show, however, the CEA is not merely an output relay of fear responses but contains multiple neuronal subpopulations that interact to calibrate levels of fear responding. Here, by integrating behavioural, in vivo electrophysiological, anatomical and optogenetic approaches in mice we demonstrate that fear extinction produces reversible, stimulus- and context-specific changes in neuronal responses to conditioned stimuli in functionally and genetically defined cell types in the lateral (CEl) and medial (CEm) CEA. Moreover, we show these alterations are absent when extinction is deficient and that selective silencing of protein kinase C delta-expressing (PKCδ) CEl neurons impairs fear extinction. Our findings identify CEA inhibitory microcircuits that act as critical elements within the brain networks mediating fear extinction.


Asunto(s)
Núcleo Amigdalino Central/fisiología , Extinción Psicológica/fisiología , Miedo/fisiología , Animales , Conducta Animal , Condicionamiento Clásico/fisiología , Masculino , Memoria , Ratones , Ratones Endogámicos C57BL , Neuronas/metabolismo
7.
Langmuir ; 26(11): 8988-99, 2010 Jun 01.
Artículo en Inglés | MEDLINE | ID: mdl-20361735

RESUMEN

Clusters of metal nanoparticles with an overall size of less than 100 nm and high metal loadings for strong optical functionality are of interest in various fields including microelectronics, sensors, optoelectronics, and biomedical imaging and therapeutics. Herein we assemble approximately 5 nm gold particles into clusters with controlled size, as small as 30 nm and up to 100 nm, that contain only small amounts of polymeric stabilizers. The assembly is kinetically controlled with weakly adsorbing polymers, PLA(2K)-b-PEG(10K)-b-PLA(2K) or PEG (MW = 3350), by manipulating electrostatic, van der Waals (VDW), steric, and depletion forces. The cluster size and optical properties are tuned as a function of particle volume fractions and polymer/gold ratios to modulate the interparticle interactions. The close spacing between the constituent gold nanoparticles and high gold loadings (80-85 w/w gold) produce a strong absorbance cross section of approximately 9 x 10(-15) m(2) in the NIR at 700 nm. This morphology results from VDW and depletion attractive interactions that exclude the weakly adsorbed polymeric stabilizer from the cluster interior. The generality of this kinetic assembly platform is demonstrated for gold nanoparticles with a range of surface charges from highly negative to neutral with the two different polymers.


Asunto(s)
Oro/química , Nanoestructuras , Polímeros/química , Adsorción , Cinética , Espectroscopía Infrarroja Corta
8.
Cell Rep ; 23(8): 2379-2391, 2018 05 22.
Artículo en Inglés | MEDLINE | ID: mdl-29791849

RESUMEN

Social interactions are essential to our mental health, and a deficit in social interactions is a hallmark characteristic of numerous brain disorders. Various subregions within the medial temporal lobe have been implicated in social memory, but the underlying mechanisms that tune these neural circuits remain unclear. Here, we demonstrate that optical activation of excitatory entorhinal cortical perforant projections to the dentate gyrus (EC-DG) is necessary and sufficient for social memory retrieval. We further show that inducible disruption of p21-activated kinase (PAK) signaling, a key pathway important for cytoskeletal reorganization, in the EC-DG circuit leads to impairments in synaptic function and social recognition memory, and, importantly, optogenetic activation of the EC-DG terminals reverses the social memory deficits in the transgenic mice. These results provide compelling evidence that activation of the EC-DG pathway underlies social recognition memory recall and that PAK signaling may play a critical role in modulating this process.


Asunto(s)
Giro Dentado/fisiología , Corteza Entorrinal/fisiología , Recuerdo Mental/fisiología , Conducta Social , Animales , Giro Dentado/efectos de los fármacos , Corteza Entorrinal/efectos de los fármacos , Recuerdo Mental/efectos de los fármacos , Ratones Transgénicos , Optogenética , Terminales Presinápticos/efectos de los fármacos , Terminales Presinápticos/metabolismo , Inhibidores de Proteínas Quinasas/farmacología , Reconocimiento en Psicología/efectos de los fármacos , Transducción de Señal/efectos de los fármacos , Transmisión Sináptica/efectos de los fármacos , Quinasas p21 Activadas/antagonistas & inhibidores , Quinasas p21 Activadas/metabolismo
9.
Neuropsychopharmacology ; 42(8): 1715-1728, 2017 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-28294135

RESUMEN

Anxiety is an adaptive response to potentially threatening situations. Exaggerated and uncontrolled anxiety responses become maladaptive and lead to anxiety disorders. Anxiety is shaped by a network of forebrain structures, including the hippocampus, septum, and prefrontal cortex. In particular, neural inputs arising from the ventral hippocampus (vHPC) to the lateral septum (LS) and medial prefrontal cortex (mPFC) are thought to serve as principal components of the anxiety circuit. However, the role of vHPC-to-LS and vHPC-to-mPFC signals in anxiety is unclear, as no study has directly compared their behavioral contribution at circuit level. We targeted LS-projecting vHPC cells and mPFC-projecting vHPC cells by injecting the retrogradely propagating canine adenovirus encoding Cre recombinase into the LS or mPFC, and injecting a Cre-responsive AAV (AAV8-hSyn-FLEX-hM3D or hM4D) into the vHPC. Consequences of manipulating these neurons were examined in well-established tests of anxiety. Chemogenetic manipulation of LS-projecting vHPC cells led to bidirectional changes in anxiety: activation of LS-projecting vHPC cells decreased anxiety whereas inhibition of these cells produced opposite anxiety-promoting effects. The observed anxiety-reducing function of LS-projecting cells was in contrast with the function of mPFC-projecting cells, which promoted anxiety. In addition, double retrograde tracing demonstrated that LS- and mPFC-projecting cells represent two largely anatomically distinct cell groups. Altogether, our findings suggest that the vHPC houses discrete populations of cells that either promote or suppress anxiety through differences in their projection targets. Disruption of the intricate balance in the activity of these two neuron populations may drive inappropriate behavioral responses seen in anxiety disorders.


Asunto(s)
Ansiedad/fisiopatología , Hipocampo/fisiología , Corteza Prefrontal/fisiología , Núcleos Septales/fisiología , Animales , Conducta Animal/fisiología , Clozapina/análogos & derivados , Clozapina/farmacología , Hipocampo/efectos de los fármacos , Masculino , Ratones , Vías Nerviosas/fisiología , Técnicas de Trazados de Vías Neuroanatómicas , Corteza Prefrontal/efectos de los fármacos , Núcleos Septales/efectos de los fármacos
10.
Am J Physiol Heart Circ Physiol ; 284(3): H804-14, 2003 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-12578813

RESUMEN

This study examined the effects of either IkappaBalpha overexpression (transgenic mice) or N-acetyl-leucinyl-leucinyl-norleucinal (ALLN) administration (proteosome inhibitor in wild-type mice) on cardiomyocyte secretion of tumor necrosis factor-alpha (TNF-alpha) and on cardiac performance after burn trauma. Transgenic mice were divided into four experimental groups. IkappaBalpha overexpressing mice were given a third-degree scald burn over 40% of the total body surface area or wild-type littermates were given either a scald or sham burn to provide appropriate controls. Pharmacological studies included ALLN (20 mg/kg) administration in either burned wild-type mice or wild-type shams. Burn trauma in wild-type mice promoted nuclear factor-kappaB (NF-kappaB) nuclear translocation, cardiomyocyte secretion of TNF-alpha, and impaired cardiac performance. IkappaBalpha overexpression or ALLN treatment of burn trauma prevented NF-kappaB activation in cardiac tissue, prevented cardiomyocyte secretion of TNF-alpha, and ablated burn-mediated cardiac contractile dysfunction. These data suggest that NF-kappaB activation and inflammatory cytokine secretion play a significant role in postburn myocardial abnormalities.


Asunto(s)
Proteínas I-kappa B/biosíntesis , Miocitos Cardíacos/metabolismo , FN-kappa B/metabolismo , Transporte de Proteínas/fisiología , Heridas y Lesiones/metabolismo , Animales , Quemaduras/tratamiento farmacológico , Quemaduras/metabolismo , Inhibidores de Cisteína Proteinasa/uso terapéutico , Citocinas/biosíntesis , Citocinas/metabolismo , Femenino , Proteínas I-kappa B/genética , Leupeptinas/uso terapéutico , Masculino , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Contracción Miocárdica/efectos de los fármacos , Contracción Miocárdica/genética , Inhibidor NF-kappaB alfa , FN-kappa B/antagonistas & inhibidores , Factor de Necrosis Tumoral alfa/análisis , Factor de Necrosis Tumoral alfa/biosíntesis , Factor de Necrosis Tumoral alfa/metabolismo , Heridas y Lesiones/tratamiento farmacológico
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