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2016
Santos, S. S., Santos, S. M., Pinto, A. R. T., Ramu, V. G., et al. (2016). Amidated and ibuprofen-conjugated kyotorphins promote neuronal rescue and memory recovery in cerebral hypoperfusion dementia model. Frontiers in Aging Neuroscience, 8(JAN).
Lombo, C., Morgado, C., Tavares, I., & Neves, D. (2016). Effects of prolonged ingestion of epigallocatechin gallate on diabetes type 1-induced vascular modifications in the erectile tissue of rats. International Journal of Impotence Research, 28(4), 133 - 138.
Perazzo, J., Lopes-Ferreira, M., S. Santos, S., Serrano, I., et al. (2016). Endothelium-Mediated Action of Analogues of the Endogenous Neuropeptide Kyotorphin (Tyrosil-Arginine): Mechanistic Insights from Permeation and Effects on Microcirculation. ACS Chemical Neuroscience, 7(8), 1130 - 1140.
Silva, M., Martins, D., Charrua, A., Piscitelli, F., et al. (2016). Endovanilloid control of pain modulation by the rostroventromedial medulla in an animal model of diabetic neuropathy. Neuropharmacology, 107, 49 - 57.
Oliveira, M. C., Gano, L., Santos, I., Correia, J. D. G., et al. (2016). Improvement of the pharmacological properties of amidated kyotorphin by means of iodination. MedChemComm, 7(5), 906 - 913.
Oliveira, M. - M., Akerman, S., Tavares, I., & Goadsby, P. J. (2016). Neuropeptide y inhibits the trigeminovascular pathway through NPY Y1 receptor: Implications for migraine. Pain, 157(8), 1666 - 1673.
Silva, M., Costa-Pereira, J. T., Martins, D., & Tavares, I. (2016). Pain modulation from the brain during diabetic neuropathy: Uncovering the role of the rostroventromedial medulla. Neurobiology of Disease, 96, 346 - 356.
2011
Morgado, C., Silva, L., Pereira-Terra, P., & Tavares, I. (2011). Changes in serotoninergic and noradrenergic descending pain pathways during painful diabetic neuropathy: The preventive action of IGF1. Neurobiology of Disease, 43(1), 275 - 284.
Ribeiro, M. M. B., Pinto, A. R. T., Domingues, M. M., Serrano, I., et al. (2011). Chemical conjugation of the neuropeptide kyotorphin and ibuprofen enhances brain targeting and analgesia. Molecular Pharmaceutics, 8(5), 1929 - 1940.
Pinho, D., Morato, M., Couto, M. R., Marques-Lopes, J., et al. (2011). Does chronic pain alter the normal interaction between cardiovascular and pain regulatory systems? Pain modulation in the hypertensive-monoarthritic rat. Journal of Pain, 12(2), 194 - 204.
Ribeiro, M. M. B., Pinto, A., Pinto, M., Heras, M., et al. (2011). Inhibition of nociceptive responses after systemic administration of amidated kyotorphin. British Journal of Pharmacology, 163(5), 964 - 973.
Morgado, C., Pereira-Terra, P., Cruz, C. D., & Tavares, I. (2011). Minocycline completely reverses mechanical hyperalgesia in diabetic rats through microglia-induced changes in the expression of the potassium chloride co-transporter 2 (KCC2) at the spinal cord. Diabetes, Obesity and Metabolism, 13(2), 150 - 159.
Martins, I., Cabral, L., Pinto, A., Wilson, S. P., et al. (2011). Reversal of inflammatory pain by HSV-1-mediated overexpression of enkephalin in the caudal ventrolateral medulla. European Journal of Pain, 15(10), 1008 - 1014.
Morgado, C., Pereira-Terra, P., & Tavares, I. (2011). α-Lipoic acid normalizes nociceptive neuronal activity at the spinal cord of diabetic rats. Diabetes, Obesity and Metabolism, 13(8), 736 - 741.

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