Research Report
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2021
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2022
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2023
- http://research.umh.es/vivo/pub/proyecto/101083002
- http://research.umh.es/vivo/pub/proyecto/INNEST2023321
- http://research.umh.es/vivo/pub/proyecto/INNTA1202317
- http://research.umh.es/vivo/pub/proyecto/INVEST20234621
- http://research.umh.es/vivo/pub/proyecto/INVEST20234622
- http://research.umh.es/vivo/pub/proyecto/RED2022134420T
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2024
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academic article
- Design and Validation of Novel Potential Antiperspirant Peptides Blocking M3-G¿q Sweat Signaling Cascade
- EMOTION: un máster universitario con vocación innovadora e internacional
- Identification of novel inhibitors of plant GH3 IAA-amido synthetases through molecular docking studies
- KCNE4-dependent modulation of Kv1.3 pharmacology
- Molecular mapping of KCNE4-dependent regulation of Kv1.3
- The multicomponent Passerini reaction as a means of accessing diversity in structure, activity and properties: soft and hard vanilloid/cannabinoid modulators
- Transplantation of dorsal root ganglia overexpressing the NaChBac sodium channel improves locomotion after complete SCI
- ¿Es la neurocosmética el futuro del cuidado integral?
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congress communication
- . Structural-Based Virtual Screening of in-house compound collections to identify TRPM8 ligands
- /. 4-trans-Hydorxyproline derivatives as TRPM8 modulators.
- 4--trans-Hydorxyproline derivatives as TRPM8 antagonists
- Changes in the Kv1.3 pharmacology upon the association with KCNE4
- Identification of novel modulators of TRPM8 through virtual screening and molecular dynamics
- Impact of KCNE4 on Kv1.3 pharmacology
- In silico screening of compounds to modulate Nav1.1 in Dravet syndrome
- NaV channels as key therapeutic targets for oxaliplatin-induced neuropathy: alterations in male and female rat sensory neurons
- Peptides inhibiting isoforms phospholipase C beta show a potential anti-inflammatory activity
- Poster
- THERMO TRP ION CHANNELS AS A KEY MOLECULAR AND FUNCTIONAL LANDMARK FOR NEUROPATHIC PAIN TRANSDUCTION IN SUBSETS OF SOMATOSENSORY NEURONS
- Targeting Cold-Sensitive TRPM8 Ion Channels for the Alleviation of Migraine-Related Symptomatology
- ThermoTRP ion channels as a key molecular and functional landmark forchemotherapy-induced neuropathic pain
- Unveiling the role of thermo TRP ion channels and neuronal excitability in paclitaxelinduced peripheral neuropathy: a molecular and functional perspective
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event
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invited conference
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person (active)
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research project
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thesis