English Українська
  • Main
  • Useful links
  • Information for Contributors
  • About
  • Editorial board

  • Article
    О. D. Danyliv, V. I. Shepitko, O. S. Yakushko, Ye. V. Stetsuk, N. V. Boruta

    CHANGES IN THE TRIGEMINAL GANGLION OF RATS WITH ACUTE CARRAGEENAN-INDUCED INFLAMMATION


    About the author: О. D. Danyliv, V. I. Shepitko, O. S. Yakushko, Ye. V. Stetsuk, N. V. Boruta
    Heading EXPERIMENTAL MEDICINE
    Type of article Scentific article
    Annotation The purpose of the study was to establish the response of the components of the trigeminal ganglion in rats to aseptic inflammation under experimental conditions. The study was performed on 40 mature white male rats. Trigeminal ganglion of rats was the object of the study. The animals were divided into two groups: the control group of animals (5), which were injected with isotonic NaCl solution and the group of experimental animals (35), which were simulated acute carrageenan-induced inflammation. The rats were sacrificed within days 3, 5, 7, 10, 14, 21, and 30 under thiopental anesthesia overdose. Histological examination showed that carrageenan-induced inflammation in the trigeminal ganglion of rats had a staged course. Reactive changes in the vessels of the hemomicrocirculatory bed were most pronounced on the 5th day of observation. After that, the blood flow gradually stabilised until its complete normalization on the 14th day. Signs of reactive changes in neurons in the form of gradual oedema of the cytoplasm and nucleus and perinuclear chromatolysis were already noticed in the early stages of the experiment. The nature of the changes intensified with the increase in the observation period. Some cells showed signs of degenerative-dystrophic processes. The proliferative activity of glial cells increased in response to changes in neurons. The signs of inflammation in the parenchyma reached their maximum manifestation on the 14th day with an incomplete regeneration process for up to the 30th day.
    Tags trigeminal ganglion,inflammation,carrageenan,rats
    Bibliography
    • Bahriy MM, Dibrova VA, Popadynets OH, Hryshchuk MI. Metodyky morfolohichnykh doslidzhen. Bahriy MM, Dibrova VA. redaktory. Vinnytsya: Nova knyha; 2016. 328s. [in Ukrainian]
    • Bista P, Imlach WL. Pathological Mechanisms and Therapeutic Targets for Trigeminal Neuropathic Pain. Medicines (Basel). 2019 Aug 22;6(3):91.
    • Cohen DT, Bragin I, Hwang R, Oselkin M. Cone Beam CT With Flat Panel Detector and Biplane Fluoroscopy-Guided Percutaneous Trigeminal Nerve
    • Daniliv ОD, Stetsuk YeV, Boruta NV, Lukiantseva GV, Shepitko VI. Morphological features of the trigeminal ganglion in acute aseptic inflammation at the early stages of the experiment. World of Medicine and Biology. 2021;2(76):207‒210.
    • De Santis D, Sinigaglia S, Faccioni P, Pancera P, Luciano U, Bertossi D, et.al. Syndromes associated with dental agenesis. Minerva Stomatol. 2019 Feb;68(1):42-56. doi: 10.23736/S0026‒4970.18.04129-8.
    • Maarbjerg S, Di Stefano G, Bendtsen L, Cruccu G. Trigeminal neuralgia - diagnosis and treatment. Cephalalgia. 2017 Jun;37(7):648‒657. doi: 10.1177/0333102416687280
    • Matsuda H, Sato I, Asaumi R, Omotehara T, Kawata S, Nagahori K, et.al. Comparison of CGRP distributions in the maxillary sinus and trigeminal ganglion between elderly dentulous and edentulous humans. Eur J Histochem. 2021 Mar 31;65(2):3234. doi: 10.4081/ejh.2021.3234.
    • Messlinger KJ. The big CGRP flood - sources, sinks and signalling sites in the trigeminovascular system. Headache Pain. 2018 Mar 12;19(1):22. doi: 10.1186/s10194-018-0848-0.
    • Rhizotomy Using Three-Dimensional Needle Trajectory Planning. Cureus. 2022 May 31;14(5): e25538.doi: 10.7759/cureus.25538.
    • Ritter A, Rozendorn N, Avishai G, Rosenfeld E, Koren I, Soudry E. Preoperative maxillary sinus imaging and the outcome of sinus floor augmentation and dental implants in asymptomatic patients. Ann Otol Rhinol Laryngol 2020; 129:209‒15. DOI: 10.1177/0003489419883292
    • Shoji I, Kemuriyama T, Tandai-Hiruma M, Maruyama S, Tashiro A, Yokoe H, et.al. Reflex arc of the teeth clenching-induced pressor response in rats. J Physiol Sci. 2018 Jan;68(1):89‒100. doi: 10.1007/s12576-016-0513-9. 
    • Stelman CR, Buxton W, Sharon JD Tapia's Syndrome (Concurrent Unilateral Recurrent Laryngeal and Hypoglossal Nerve Palsy) Following Left Retrosigmoid Craniotomy for Schwannoma Resection..Cureus. 2021 Sep 12;13(9): e17909. doi: 10.7759/cureus.17909. 
    • Svyrydiuk RV, Shepitko KV, Shepitko VI, Raskaliei TY. Morphometric characteristics of the sciatic nerve trunk in the acute aseptic inflammation in rats. World of Medicine and Biology. 2018;2(64):173‒75.
    • Yang Ni Y L, Han R, Guo G, Huang S, Weng L, Wang X, et.al. Implantable Peripheral Nerve Stimulation for Trigeminal Neuropathic Pain: A Systematic Review and Meta-Analysis. Neuromodulation. 2021 Aug;24(6):983‒991. doi: 10.1111/ner.13421.
    • Zheng XB, Gao ZW, Mo HB, Lin Q, Wang HQ, Yu LH, et.al. Neuronavigation-assisted percutaneous radiofrequency thermocoagulation of trigeminal gasserian ganglion for refractory craniofacial pain.2018 Nov 20;98(43):3519‒3523. doi: 10.3760/cma.j.issn.0376-2491.2018.43.011.
    Publication of the article «World of Medicine and Biology» №4(82), 2022 year, 206-211 pages, index UDK 612.82:618.36:612.08
    DOI 10.26724/2079-8334-2022-4-82-206-211