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Hugo A Tejeda

Explore the profile of Hugo A Tejeda including associated specialties, affiliations and a list of published articles. Areas
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Articles 40
Citations 995
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Recent Articles
1.
Alkaslasi M, Lloyd E, Gable A, Silberberg H, Yarur H, Tsai V, et al.
Nat Commun . 2025 Jan; 16(1):1097. PMID: 39870620
Traumatic brain injury (TBI) is a risk factor for neurodegeneration, however little is known about how this kind of injury alters neuron subtypes. In this study, we follow neuronal populations...
2.
Enriquez-Traba J, Arenivar M, Yarur-Castillo H, Noh C, Flores R, Weil T, et al.
Nat Neurosci . 2024 Dec; 28(1):105-121. PMID: 39653808
Dopamine (DA) release in striatal circuits, including the nucleus accumbens medial shell (mNAcSh), tracks separable features of reward like motivation and reinforcement. However, the cellular and circuit mechanisms by which...
3.
Dong C, Gowrishankar R, Jin Y, He X, Gupta A, Wang H, et al.
Nat Neurosci . 2024 Jul; 27(9):1844-1857. PMID: 39009835
Neuropeptides are ubiquitous in the nervous system. Research into neuropeptides has been limited by a lack of experimental tools that allow for the precise dissection of their complex and diverse...
4.
Wang H, Flores R, Yarur H, Limoges A, Bravo-Rivera H, Casello S, et al.
Neuron . 2024 Apr; 112(12):2062-2078.e7. PMID: 38614102
Prefrontal cortical (PFC) circuits provide top-down control of threat reactivity. This includes ventromedial PFC (vmPFC) circuitry, which plays a role in suppressing fear-related behavioral states. Dynorphin (Dyn) has been implicated...
5.
Alkaslasi M, Lloyd E, Gable A, Silberberg H, Yarur H, Tsai V, et al.
bioRxiv . 2024 Mar; PMID: 38463961
Traumatic brain injury (TBI) is a risk factor for neurodegeneration, however little is known about how different neuron types respond to this kind of injury. In this study, we follow...
6.
Wang H, Flores R, Yarur H, Limoges A, Bravo-Rivera H, Casello S, et al.
bioRxiv . 2024 Jan; PMID: 38283686
Prefrontal cortical (PFC) circuits provide top-down control of threat reactivity. This includes ventromedial PFC (vmPFC) circuitry, which plays a role in suppressing fear-related behavioral states. Dynorphin (Dyn) has been implicated...
7.
Jiang S, Shahoha M, Zhang H, Brancaleone W, Elkahloun A, Tejeda H, et al.
Cell Mol Life Sci . 2024 Jan; 81(1):48. PMID: 38236296
The MAP kinase ERK is important for neuronal plasticity underlying associative learning, yet specific molecular pathways for neuronal ERK activation are undetermined. RapGEF2 is a neuron-specific cAMP sensor that mediates...
8.
Yarur H, Casello S, Tsai V, Enriquez-Traba J, Kore R, Wang H, et al.
Mol Psychiatry . 2023 Dec; 28(11):4934. PMID: 38114634
No abstract available.
9.
Agarwal K, Manza P, Tejeda H, Courville A, Volkow N, Joseph P
J Adolesc Health . 2023 Oct; PMID: 37804305
Purpose: We aimed to identify significant contributing factors to the risk of maladaptive behaviors, such as alcohol use disorder or obesity, in children. To achieve this, we utilized the extensive...
10.
Yarur H, Casello S, Tsai V, Enriquez-Traba J, Kore R, Wang H, et al.
Mol Psychiatry . 2023 Aug; 28(11):4801-4813. PMID: 37644172
The medial prefrontal cortex (mPFC) controls behavior via connections with limbic excitatory afferents that engage various inhibitory motifs to shape mPFC circuit function. The dynorphin (Dyn) / kappa-opioid receptor (KOR)...