Morris Benveniste
Overview
Explore the profile of Morris Benveniste including associated specialties, affiliations and a list of published articles.
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Articles
26
Citations
365
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0
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Recent Articles
1.
Stowie A, Qiao Z, Buonfiglio D, Beckner D, Ehlen J, Benveniste M, et al.
Proc Natl Acad Sci U S A
. 2023 Jan;
120(4):e2209329120.
PMID: 36656857
The suprachiasmatic nucleus (SCN) is composed of functionally distinct subpopulations of GABAergic neurons which form a neural network responsible for synchronizing most physiological and behavioral circadian rhythms in mammals. To...
2.
Bush B, Donnay C, Andrews E, Lewis-Sanders D, Gray C, Qiao Z, et al.
Elife
. 2022 Sep;
11.
PMID: 36149059
Resilience, the ability to overcome stressful conditions, is found in most mammals and varies significantly among individuals. A lack of resilience can lead to the development of neuropsychiatric and sleep...
3.
Owen B, Bichler E, Benveniste M
Neurobiol Dis
. 2021 Mar;
154:105343.
PMID: 33753293
This study examines changes in synaptic transmission with progression of the chronic epileptic state. Male Sprague-Dawley rats (P40-45) were injected with either saline or pilocarpine. In rats injected with pilocarpine,...
4.
Morel C, Sherrin T, Kennedy N, Forest K, Barutcu S, Robles M, et al.
J Neurosci
. 2018 Mar;
38(15):3708-3728.
PMID: 29540552
The c-Jun N-terminal kinase (JNK) signal transduction pathway is implicated in learning and memory. Here, we examined the role of JNK activation mediated by the JNK-interacting protein 1 (JIP1) scaffold...
5.
Carpenter-Hyland E, Bichler E, Smith M, Sloviter R, Benveniste M
Physiol Rep
. 2017 Nov;
5(21).
PMID: 29138358
Hippocampal neuron plasticity is strongly associated with learning, memory, and cognition. In addition to modification of synaptic function and connectivity, the capacity of hippocampal neurons to undergo plasticity involves the...
6.
Weeks A, Harms J, Partin K, Benveniste M
Neuropharmacology
. 2014 Jun;
85:57-66.
PMID: 24878241
Positive allosteric modulators of α-amino-3-hydroxy-5-methyl-isoxazole-propionic acid (AMPA) ionotropic glutamate receptors facilitate synaptic plasticity and contribute essentially to learning and memory, properties which make AMPA receptors targets for drug discovery and...
7.
Harms J, Benveniste M, Kessler M, Stone L, Arai A, Partin K
J Biol Chem
. 2014 Feb;
289(15):10702-10714.
PMID: 24550387
AMPA receptors are gated through binding of glutamate to a solvent-accessible ligand-binding domain. Upon glutamate binding, these receptors undergo a series of conformational rearrangements regulating channel function. Allosteric modulators can...
8.
Inagaki A, Frank C, Usachev Y, Benveniste M, Lee A
Neuron
. 2014 Jan;
81(1):91-102.
PMID: 24411734
Voltage-gated ion channels exhibit complex properties, which can be targeted in pharmacological therapies for disease. Here, we report that the pro-oxidant, tert-butyl dihydroquinone (BHQ), modulates Ca(v)2.1 Ca²⁺ channels in ways...
9.
Ehlen J, Jefferson F, Brager A, Benveniste M, Paul K
Sleep
. 2013 Nov;
36(11):1723-35.
PMID: 24179307
Study Objectives: Electroencephalographic slow wave activity (SWA) during non-rapid eye movement (NREM) sleep results from the synchronous oscillation of cortical neurons and is the standard measurement of sleep homeostasis. SWA...
10.
Harms J, Benveniste M, Maclean J, Partin K, Jamieson C
Neuropharmacology
. 2012 Jun;
64:45-52.
PMID: 22735771
Positive allosteric modulators of α-amino-3-hydroxy-5-methyl-isoxazole-propionic acid (AMPA) receptors facilitate synaptic plasticity and can improve various forms of learning and memory. These modulators show promise as therapeutic agents for the treatment...