Dental Injury Models: Experimental Tools for Understanding Neuroinflammatory Interactions and Polymodal Nociceptor Functions
Open Access
- 1 January 1999
- journal article
- other
- Published by SAGE Publications in Critical Reviews in Oral Biology & Medicine
- Vol. 10 (1), 4-39
- https://doi.org/10.1177/10454411990100010101
Abstract
Recent research has shown that peripheral mechanisms of pain are much more complex than previously thought, and they differ for acutely injured normal tissues compared with chronic inflammation or neuropathic (nerve injury) pain. The purpose of the present review is to describe uses of dental injury models as experimental tools for understanding the normal functions of polymodal nociceptive nerves in healthy tissues, their neuroinflammatory interactions, and their roles in healing. A brief review of normal dental innervation and its interactions with healthy pulp tissue will be presented first, as a framework for understanding the changes that occur after injury. Then, the different types of dental injury that allow gradation of the extent of tissue damage will be described, along with the degree and duration of inflammation, the types of reactions in the trigeminal ganglion and brainstem, and the type of healing. The dental injury models have some unique features compared with neuroinflammation paradigms that affect other peripheral tissues such as skin, viscera, and joints. Peripheral inflammation models can all be contrasted to nerve injury studies that produce a different kind of neuroplasticity and neuropathic pain. Each of these models provides different insights about the normal and pathologic functions of peripheral nerve fibers and their effects on tissue homeostasis, inflammation, and wound healing. The physical confinement of dental pulp and its innervation within the tooth, the high incidence of polymodal A-delta and C-fibers in pulp and dentin, and the somatotopic organization of the trigeminal ganglion provide some special advantages for experimental design when dental injury models are used for the study of neuroinflammatory interactions.Keywords
This publication has 196 references indexed in Scilit:
- Neuropeptide Y Expression in the Trigeminal Ganglion and Mandibular Division of the Trigeminal Nerve after Inferior Alveolar Nerve Axotomy in Young RatsExperimental Neurology, 1996
- Neurogenic influences on contralateral responses during experimental rat monoarthritisBrain Research, 1995
- Fos expression in the medullary dorsal horn of the rat after chronic constriction injury to the infraorbital nerveJournal of Comparative Neurology, 1995
- Effects of postnatal anti-nerve growth factor serum exposure on development of apical nerves of the rat molarDevelopmental Brain Research, 1994
- Effects of experimental and clinical noxious counterirritants on pain perceptionPain, 1994
- The effect of injury on the properties of afferent fibres in the lingual nerveBritish Journal of Oral and Maxillofacial Surgery, 1992
- Activity-dependent neuronal plasticity following tissue injury and inflammationTrends in Neurosciences, 1992
- Segregation of NGF receptor in sensory receptors, nerves and local cells of teeth and periodontium demonstrated by EM immunocytochemistryJournal of Neurocytology, 1990
- The sensory-efferent function of capsaicin-sensitive sensory neuronsGeneral Pharmacology: The Vascular System, 1988
- The central projections of tooth pulp afferent neurons in the rat as determined by the transganglionic transport of horseradish peroxidaseJournal of Comparative Neurology, 1984