Antonio Ferrer-Montiel

Affiliations: 
Institute of Molecular and Cellular Biology Universidad Miguel Hernández de Elche 
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"Antonio Ferrer-Montiel"
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Publications

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Martín-Escura C, Bonache MÁ, Medina JA, et al. (2023) β-Lactam TRPM8 Antagonists Derived from Phe-Phenylalaninol Conjugates: Structure-Activity Relationships and Antiallodynic Activity. International Journal of Molecular Sciences. 24
Giorgi S, Lamberti A, Butrón L, et al. (2023) Compartmentalized primary cultures of dorsal root ganglion neurons to model peripheral pathophysiological conditions. Molecular Pain. 19: 17448069231197102
Butron L, Nikolaeva-Koleva M, Sempere A, et al. (2023) Design and validation of neuronal exocytosis blocking peptides as potential novel antiperspirants. Experimental Dermatology
Fernández-Ballester G, Fernández-Carvajal A, Ferrer-Montiel A. (2023) Progress in the Structural Basis of thermoTRP Channel Polymodal Gating. International Journal of Molecular Sciences. 24
Blanes-Mira C, Fernández-Aguado P, de Andrés-López J, et al. (2022) Comprehensive Survey of Consensus Docking for High-Throughput Virtual Screening. Molecules (Basel, Switzerland). 28
Alarcón-Alarcón D, Cabañero D, de Andrés-López J, et al. (2022) TRPM8 contributes to sex dimorphism by promoting recovery of normal sensitivity in a mouse model of chronic migraine. Nature Communications. 13: 6304
Cabañero D, Villalba-Riquelme E, Fernández-Ballester G, et al. (2022) ThermoTRP channels in pain sexual dimorphism: new insights for drug intervention. Pharmacology & Therapeutics. 240: 108297
Fernández-Carvajal A, Fernández-Ballester G, Ferrer-Montiel A. (2022) TRPV1 in chronic pruritus and pain: Soft modulation as a therapeutic strategy. Frontiers in Molecular Neuroscience. 15: 930964
Martín-Escura C, Medina-Peris A, Spear LA, et al. (2022) β-Lactam TRPM8 Antagonist RGM8-51 Displays Antinociceptive Activity in Different Animal Models. International Journal of Molecular Sciences. 23
Villalba-Riquelme E, de la Torre-Martínez R, Fernández-Carvajal A, et al. (2022) Paclitaxel in vitro reversibly sensitizes the excitability of IB4(-) and IB4(+) sensory neurons from male and female rats. British Journal of Pharmacology
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