TRPV1 as a molecular target for therapeutic interventions in stomatology
Resumen
Transient receptor potential vanilloid 1 (TRPV1) is a cation channel involved in sensory perception in various tissues, including the oral cavity. This review article addresses its distribution in structures such as dental components, the oral mucosa, the trigeminal nerve, the tongue, and the salivary glands, highlighting its role in the modulation of nociception and inflammation. It also participates in tissue homeostasis and the response to chemical or thermal stimuli in oral physiology. Likewise, its role in various oral conditions, such as dentin hypersensitivity and oral squamous cell carcinoma, is analyzed since TRPV1 overexpression is associated with tumor progression. On the other hand, in the context of COVID-19, the possible relationship between TRPV1 and sensory alterations linked to the viral infection is discussed. Finally, therapeutic strategies based on the modulation of this receptor with enafis are addressed in the use of agonists and antagonists for the control of orofacial pain and the improvement of pathological conditions in the oral cavity.
Descargas
Citas
Andrei, C., Zanfirescu, A., Nițulescu, G. M., Olaru, O. T., & Negreș, S. (2023). Natural active ingredients and TRPV1 modulation: focus on key chemical moieties involved in ligand-target interaction. Plants, 12(2), 339.
Andresen, M. C. (2019). Understanding diverse TRPV1 signaling–an update. F1000Research, 8.
Arendt-Nielsen, L., Carstens, E., Proctor, G., Boucher, Y., Clavé, P., Albin Nielsen, K., ... & Reeh, P. W. (2022). The role of TRP Channels in Nicotinic provoked Pain and Irritation from the oral cavity and Throat: translating Animal Data to humans. Nicotine and Tobacco Research, 24(12), 1849-1860.
Chen, J., Sun, W., Zhu, Y., Zhao, F., Deng, S., Tian, M., ... & Gong, Y. (2024). TRPV1: The key bridge in neuroimmune interactions. Journal of Intensive Medicine.
Choi, S., Shin, Y. H., Namkoong, E., Hwang, S. M., Cong, X., Yu, G., & Park, K. (2014). TRPV1 in salivary gland epithelial cells is not involved in salivary secretion via transcellular pathway. The Korean Journal of Physiology & Pharmacology: Official Journal of the Korean Physiological Society and the Korean Society of Pharmacology, 18(6), 525.
Devine, C., & Zur, K. (2021). Upper Airway Anatomy and Physiology. Diagnostic and Interventional Bronchoscopy in Children, 17-37.
Elokely, K., Velisetty, P., Delemotte, L., Palovcak, E., Klein, M. L., Rohacs, T., & Carnevale, V. (2016). Understanding TRPV1 activation by ligands: Insights from the binding modes of capsaicin and resiniferatoxin. Proceedings of the National Academy of Sciences, 113(2), E137-E145.
Gibbs, J. L., Melnyk, J. L., & Basbaum, A. (2011). Differential TRPV1 and TRPV2 channel expression in dental pulp. Journal of dental research, 90(6), 765-770.
Gonzales, C. B., Kirma, N. B., Jorge, J., Chen, R., Henry, M. A., Luo, S., & Hargreaves, K. M. (2014). Vanilloids induce oral cancer apoptosis independent of TRPV1. Oral oncology, 50(5), 437–447.
Gualdrón-Bobadilla, G. F., Briceño-Martínez, A. P., Caicedo-Téllez, V., Pérez-Reyes, G., Silva-Paredes, C., Ortiz-Benavides, R., ... & Bermúdez, V. (2022). Stomatognathic system changes in obese patients undergoing bariatric surgery: a systematic review—Journal of Personalized Medicine, 12(10), 1541.
Hellwig, N., Plant, T. D., Janson, W., Schäfer, M., Schultz, G., & Schaefer, M. (2004). TRPV1 acts as proton channel to induce acidification in nociceptive neurons. Journal of Biological Chemistry, 279(33), 34553-34561.
Huang, Y., Fliegert, R., Guse, A. H., Lü, W., & Du, J. (2020). A structural overview of the ion channels of the TRPM family. Cell Calcium, 85, 102111.
Hossain, M. Z., Bakri, M. M., Yahya, F., Ando, H., Unno, S., & Kitagawa, J. (2019). The role of transient receptor potential (TRP) channels in the transduction of dental pain. International journal of molecular sciences, 20(3), 526.
Kamakura, S. (2015). Tooth and tooth-supporting structures. Advances in Metallic Biomaterials: Tissues, Materials and Biological Reactions, 99–122.
Kido, M. A., Yoshimoto, R. U., Aijima, R., Cao, A. L., & Gao, W. Q. (2017). The oral mucosal membrane and transient receptor potential channels. Journal of Oral Science, 59(2), 189-193.
Liao, M., Cao, E., Julius, D., & Cheng, Y. (2013). Structure of the TRPV1 ion channel determined by electron cryo-microscopy. Nature, 504(7478), 107–112.
Liu, M., Jia, X., Liu, H., He, R., Zhang, X., & Shao, Y. (2022). Role of TRPV1 in respiratory disease and association with traditional Chinese medicine: A literature review. Biomedicine & Pharmacotherapy, 155, 113676.
Liviero, F., Campisi, M., Mason, P., & Pavanello, S. (2021). Transient receptor potential vanilloid subtype 1: potential role in infection, susceptibility, symptoms and treatment of COVID-19. Frontiers in Medicine, 8, 753819.
Lacruz, R. S., Habelitz, S., Wright, J. T., & Paine, M. L. (2017). Dental enamel formation and implications for oral health and disease. Physiological reviews, 97(3), 939–993.
Maaroufi, H. (2021). Interactions of SARS-CoV-2 spike protein and transient receptor potential (TRP) cation channels could explain smell, taste, and/or chemesthesis disorders—arXiv preprint arXiv:2101.06294.
Marincsák, R., Tóth, B. I., Czifra, G., Márton, I., Rédl, P., Tar, I., ... & Bíró, T. (2009). Increased expression of TRPV1 in squamous cell carcinoma of the human tongue. Oral diseases, 15(5), 328-335.
McKnight, C. A., Diehl, L. J., & Bergin, I. L. (2024). Digestive Tract and Salivary Glands. In Haschek and Rousseaux's Handbook of Toxicologic Pathology (pp. 1-148). Academic Press.
Moayedi, Y., Michlig, S., Park, M., Koch, A., & Lumpkin, E. A. (2022). Localization of TRP channels in healthy oral mucosa from human donors. eneuro, 9(6).
Nadezhdin, K. D., Neuberger, A., Nikolaev, Y. A., Murphy, L. A., Gracheva, E. O., Bagriantsev, S. N., & Sobolevsky, A. I. (2021). Extracellular cap domain is an essential component of the TRPV1 gating mechanism. Nature communications, 12(1), 2154.
Nanjo, Y., Okuma, T., Kuroda, Y., Hayakawa, E., Shibayama, K., Akimoto, T., ... & Takahashi, K. (2022). Multiple Types of Taste Disorders among Patients with COVID-19. Internal Medicine, 61(14), 2127-2134.
Nilius, B., Appendino, G., & Owsianik, G. (2012). The transient receptor potential channel TRPA1: from gene to pathophysiology. Pflügers Archiv-European Journal of Physiology, 464, 425-458.
Okumura, R., Shima, K., Muramatsu, T., Nakagawa, K. I., Shimono, M., Suzuki, T., ... & Shibukawa, Y. (2005). The odontoblast as a sensory receptor cell? The expression of TRPV1 (VR-1) channels. Archives of histology and cytology, 68(4), 251-257.
Omar, S., Clarke, R., Abdullah, H., Brady, C., Corry, J., Winter, H., ... & Cosby, S. L. (2017). Respiratory virus infection up-regulates TRPV1, TRPA1 and ASICS3 receptors on airway cells. PloS one, 12(2), e0171681.
Osada, A., Hitomi, S., Nakajima, A., Hayashi, Y., Shibuta, I., Tsuboi, Y., ... & Shinoda, M. (2022). Periodontal acidification contributes to tooth pain hypersensitivity during orthodontic tooth movement. Neuroscience Research, 177, 103-110.
Roper, S. D. (2014). TRPs in taste and chemesthesis. Mammalian Transient Receptor Potential (TRP) Cation Channels: Volume II, 827–871.
Samanta, A., Hughes, T. E., & Moiseenkova-Bell, V. Y. (2018). Transient receptor potential (TRP) channels. Membrane protein complexes: Structure and function, 141-165.
Santoni, G., Santoni, M., Maggi, F., Marinelli, O., & Morelli, M. B. (2020). Emerging role of mucolipins TRPML channels in cancer. Frontiers in Oncology, 10, 659.
Saunders, C. J., Li, W. Y., Patel, T. D., Muday, J. A., & Silver, W. L. (2013). Dissecting the role of TRPV1 in detecting multiple trigeminal irritants in three behavioral assays for sensory irritation. F1000Research, 2.
Sawicki, C. M., Janal, M. N., Nicholson, S. J., Wu, A. K., Schmidt, B. L., & Albertson, D. G. (2022). Oral cancer patients experience mechanical and chemical sensitivity at the site of the cancer. BMC cancer, 22(1), 1165.
Scheff, N. N., Wall, I. M., Nicholson, S., Williams, H., Chen, E., Tu, N. H., ... & Schmidt, B. L. (2022). Oral cancer induced TRPV1 sensitization is mediated by PAR2 signaling in primary afferent neurons innervating the cancer microenvironment. Scientific reports, 12(1), 4121.
Semmo, M., Köttgen, M., & Hofherr, A. (2014). The TRPP subfamily and polycystin-1 proteins. Mammalian Transient Receptor Potential (TRP) Cation Channels: Volume I, 675-711.
Smutzer, G., & Devassy, R. K. (2016). Integrating TRPV1 receptor function with capsaicin psychophysics. Advances in Pharmacological and Pharmaceutical Sciences, 2016(1), 1512457.
Sooampon, S., Phoolcharoen, W., & Pavasant, P. (2013). Thermal stimulation of TRPV1 up-regulates TNFα expression in human periodontal ligament cells. Archives of Oral Biology, 58(7), 887–895.
Takahashi, N., Matsuda, Y., Yamada, H., Tabeta, K., Nakajima, T., Murakami, S., & Yamazaki, K. (2014). Epithelial TRPV1 signaling accelerates gingival epithelial cell proliferation. Journal of Dental Research, 93(11), 1141-1147.
Takahashi, N., Tsuzuno, T., Mineo, S., Yamada-Hara, M., Aoki-Nonaka, Y., & Tabeta, K. (2020). Epithelial TRPV1 channels: expression, function, and pathogenicity in the oral cavity. Journal of Oral Biosciences, 62(3), 235-241.
Tsuchiya, H. (2023). COVID-19 oral sequelae: persistent gustatory and saliva secretory dysfunctions after recovery from Covid-19. Medical Principles and Practice, 32(3), 166.
Valdiviezo Cacay , M. H., Granda Dávila , P. E., Ruilova Reyes , B. G., & Córdova Rosario , I. M. (2024). Turismo de naturaleza: un tesoro para la identidad y la economía en la ruralidad del cantón Las Lajas de la provincia de El Oro, Ecuador. Estudios Y Perspectivas Revista Científica Y Académica , 4(1), 53–73. https://doi.org/10.61384/r.c.a.v4i1.78
Tama Sánchez , F. A., Vasquez Falconí, J. A., Aguilar Mejía , R. M., Rodríguez Pérez, J. C. A., López Solórzano, A. A., & Paredes Jeréz, K. D. (2024). Xeroderma Pigmentoso Reporte De Caso Y Revisión De La Literatura. Revista Científica De Salud Y Desarrollo Humano, 5(2), 44–55. https://doi.org/10.61368/r.s.d.h.v5i2.117
Valdiviezo Cacay , M. H., Granda Dávila , P. E., Ruilova Reyes , B. G., & Córdova Rosario , I. M. (2024). Turismo de naturaleza: un tesoro para la identidad y la economía en la ruralidad del cantón Las Lajas de la provincia de El Oro, Ecuador. Estudios Y Perspectivas Revista Científica Y Académica , 4(1), 53–73. https://doi.org/10.61384/r.c.a.v4i1.79
Martínez, O., Aranda , R., Barreto , E., Fanego , J., Fernández , A., López , J., Medina , J., Meza , M., Muñoz , D., & Urbieta , J. (2024). Los tipos de discriminación laboral en las ciudades de Capiatá y San Lorenzo. Arandu UTIC, 11(1), 77–95. Recuperado a partir de https://www.uticvirtual.edu.py/revista.ojs/index.php/revistas/article/view/179
v, H., & Quispe Coca, R. A. (2024). Tecno Bio Gas. Horizonte Académico, 4(4), 17–23. Recuperado a partir de https://horizonteacademico.org/index.php/horizonte/article/view/14
Da Silva Santos , F., & López Vargas , R. (2020). Efecto del Estrés en la Función Inmune en Pacientes con Enfermedades Autoinmunes: una Revisión de Estudios Latinoamericanos. Revista Científica De Salud Y Desarrollo Humano, 1(1), 46–59. https://doi.org/10.61368/r.s.d.h.v1i1.9
Tynan, A., Tsaava, T., Gunasekaran, M., Bravo Iñiguez, C. E., Brines, M., Chavan, S. S., & Tracey, K. J. (2024). TRPV1 nociceptors are required to optimize antigen-specific primary antibody responses to novel antigens. Bioelectronic Medicine, 10(1), 14.
Wen, H., Gwathmey, J. K., & Xie, L. H. (2020). Role of transient receptor potential canonical channels in heart physiology and pathophysiology. Frontiers in Cardiovascular Medicine, 7, 24.
Wen, W., Que, K., Zang, C., Wen, J., Sun, G., Zhao, Z., & Li, Y. (2017). Expression and distribution of three transient receptor potential vanilloid (TRPV) channel proteins in human odontoblast-like cells. Journal of Molecular Histology, 48, 367-377.
Vega Alvarez, E., & Huang Chang, Y. (2024). Blended Learning, and Its Impact on English Speaking Skills in Pronunciation in Group 11-4 of Liceo de Santo Domingo, I Quarter 2024. Ciencia Y Reflexión, 3(2), 159–173. https://doi.org/10.70747/cr.v3i2.18
Chavarría Hidalgo, C. (2024). Calculation of productive capacity: From theory to practice. Ciencia Y Reflexión, 3(2), 194–214. https://doi.org/10.70747/cr.v3i2.20
Agrela Rodrigues, F. de A., Moreira da Silveira, F., Moreira de Lima, M. R., & Pinto Uchôa , K. S. (2024). Identificando a Inteligência em Crianças: Traços Físicos e Comportamentais. Ciencia Y Reflexión, 3(2), 21–51. https://doi.org/10.70747/cr.v3i2.5
Yang, F., & Zheng, J. (2017). Understand spiciness: mechanism of TRPV1 channel activation by capsaicin. Protein & cell, 8, 169-177.
Xia, M. (2023). Oral and Maxillofacial Anatomy. In Anesthesia for Oral and Maxillofacial Surgery (pp. 7–26). Singapore: Springer Nature Singapore.
Zhai, K., Liskova, A., Kubatka, P., & Büsselberg, D. (2020). Calcium entry through TRPV1: a potential target for the regulation of proliferation and apoptosis in cancerous and healthy cells. International journal of molecular sciences, 21(11), 4177.
Zheng, W., & Wen, H. (2019). Heat activation mechanism of TRPV1: New insights from molecular dynamics simulation. Temperature, 6(2), 120-131.
Zhang, M., Ma, Y., Ye, X., Zhang, N., Pan, L., & Wang, B. (2023). TRP (transient receptor potential) ion channel family: Structures, biological functions and therapeutic interventions for diseases. Signal Transduction and Targeted Therapy, 8(1), 261.
Zieliński, G., Filipiak, Z., Ginszt, M., Matysik-Woźniak, A., Rejdak, R., & Gawda, P. (2021). The organ of vision and the stomatognathic system—Review of association studies and evidence-based discussion. Brain Sciences, 12(1), 14.
Derechos de autor 2025 Paloma Montserrat Rosas Licona , Ana Delia Licona Ibarra, Aurora Linares Campos, Laura Morales Lara, Victorino Gilberto Serafín Alatriste Bueno

Esta obra está bajo licencia internacional Creative Commons Reconocimiento 4.0.