entity

SST interneurons

Entity Detail — Knowledge Graph Node

Understanding Entity Pages

This page aggregates everything SciDEX knows about SST interneurons: its mechanistic relationships (Knowledge Graph edges), hypotheses targeting it, analyses mentioning it, and supporting scientific papers. The interactive graph below shows its immediate neighbors. All content is AI-synthesized from peer-reviewed literature.

1Connections
6Hypotheses
1Analyses
0Outgoing
1Incoming

Wiki Pages (20)

Knowledge base pages for this entity

Myoclonus and Cortical Hyperexcitability in Corticobasal Syndrome

mechanism · 6138 words

gabaergic-dysfunction

mechanism · 4621 words

Cerebral Cortex

brain · 2852 words

putamen

brain_region · 2802 words

Nav1.1 Sodium Channel

protein · 2694 words

Outgoing (0)

TargetRelationTypeStr
No outgoing edges

Incoming (1)

SourceRelationTypeStr
amyloid-β oligomerscauses (specifically disrupt somatostatin-positive interne)protein0.82

Targeting Hypotheses (6)

Hypotheses where this entity is a therapeutic target

HypothesisScoreDiseaseAnalysis
Closed-loop tACS targeting EC-II SST interneurons to block t 0.697 Alzheimer's disease Circuit-level neural dynamics in neurode
Closed-loop focused ultrasound targeting EC-II SST interneur 0.697 Alzheimer's disease Circuit-level neural dynamics in neurode
Closed-loop transcranial focused ultrasound targeting EC-II 0.633 Alzheimer's disease Circuit-level neural dynamics in neurode
Closed-loop tACS targeting entorhinal cortex layer II SST in 0.625 Alzheimer's disease Circuit-level neural dynamics in neurode
Closed-loop transcranial focused ultrasound targeting EC-II 0.612 Alzheimer's disease Circuit-level neural dynamics in neurode
Real-time gamma-guided transcranial focused ultrasound targe 0.538 Alzheimer's disease Circuit-level neural dynamics in neurode

Mentioning Analyses (1)

Scientific analyses that reference this entity

Circuit-level neural dynamics in neurodegeneration

neuroscience | 2026-04-03 | 49 hypotheses Top: 0.709

Related Papers (17)

Scientific publications cited in analyses involving this entity

Title & PMIDAuthorsJournalYearCitations
Duloxetine Improves Early Clinical Outcomes Including Range of Motion, Functiona [PMID:41934361] Han SC, Han J, Min YK, Han JW, Jeong HJ Am J Sports Med 2026 0
External fixation versus reverse shoulder arthroplasty for proximal humerus frac [PMID:41940987] Vadalà A, Benelli C, Suraci F, Carta B, Arch Orthop Trauma Surg 2026 0
Modeling and simulation of conducting airways during continuous high-frequency o [PMID:41941967] Huang X, Francis I, Gu Y, Saha SC Respir Physiol Neurobiol 2026 0
Potential antidepressant properties of aminophylline in male mice exposed to chr [PMID:41945313] Samante FI, Galangue CG, Avelino DC, Bel Pharmacol Rep 2026 0
Robot-assisted immediate implant placement with the socket shield technique in t [PMID:41963213] Wu J, Lin B, Yang S, Xu S, Li S J Prosthet Dent 2026 0
Anterior cingulate cortex parvalbumin and somatostatin interneurons shape social [PMID:40320404] Qi C, Sima W, Mao H, Hu E, Ge J et al. Nat Commun 2025 0
Distinct dendritic integration strategies control dynamics of inhibition in the [PMID:40592329] Morabito A, Zerlaut Y, Dhanasobhon D, Be Neuron 2025 0
Cortical somatostatin long-range projection neurons and interneurons exhibit div [PMID:38086373] Fisher J, Verhagen M, Long Z, Moissidis Neuron 2024 0
Locus Coeruleus-Dorsolateral Septum Projections Modulate Depression-Like Behavio [PMID:38155473] Zhang Q, Xue Y, Wei K, Wang H, Ma Y et a Adv Sci (Weinh) 2024 0
Somatostatin and the pathophysiology of Alzheimer's disease. [PMID:38484981] Almeida VN Ageing Res Rev 2024 0
Somatostatin interneurons control the timing of developmental desynchronization [PMID:38599213] Mòdol L, Moissidis M, Selten M, Oozeer F Neuron 2024 0
De novo gene synthesis by an antiviral reverse transcriptase. [PMID:39116258] Tang S, Conte V, Zhang DJ, Žedaveinytė R Science 2024 0
Novel App knock-in mouse model shows key features of amyloid pathology and revea [PMID:35690868] Xia D, Lianoglou S, Sandmann T, Calvert Mol Neurodegener 2022 0
Inhibition of GABA interneurons in the mPFC is sufficient and necessary for rapi [PMID:33070149] Fogaça MV, Wu M, Li C, Li XY, Picciotto Mol Psychiatry 2021 0
Identification of Faecalibacterium prausnitzii strains for gut microbiome-based [PMID:34622235] Ueda A, Shinkai S, Shiroma H, Taniguchi Cell Rep Med 2021 0
Somatostatin, Olfaction, and Neurodegeneration. [PMID:32140092] Saiz-Sanchez D, Ubeda-Bañon I, Flores-Cu Front Neurosci 2020 0
Somatostatin replacement: a new strategy for treating diabetic retinopathy. [PMID:23745546] Hernández C, Simó R, European Consortium Curr Med Chem 2013 0