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    Z. M. Yashchyshyn, S. V. Ziablitsev, L. M. Zaiats

    IMMUNOHISTOCHEMICAL DETECTION OF NEUROFILAMENTS IN THE SCIATIC NERVE, WHICH REGENERATES AFTER NEUROTOMY AND SURGICAL SUTURING


    About the author: Z. M. Yashchyshyn, S. V. Ziablitsev, L. M. Zaiats
    Heading EXPERIMENTAL MEDICINE
    Type of article Scentific article
    Annotation The purpose of the study was to determine the expression of neurofilaments in the sciatic nerve, which regenerates after neurotomy and surgical suturing, and to compare the effect of laser irradiation of different spectrum. The experiment was performed on 20 laboratory Wistar rats (200–250 g) with crossing the left sciatic nerve and suturing with an epineural suture end to end 30 minutes after neurotomy. 90 days later, an immunohistochemical study was performed using monoclonal anti-neurofilament antibodies (clone 2F11; Thermo Fisher Scientific; USA). In the control group (without the use of a laser), the main type of regenerated nerve fiber was a small diameter myelinated fiber (2–3 μm), the number and density of the myelin sheath of axons were low, and the growth of connective tissue was high. Neurofilaments expression is weak (up to 25 % of neurons) or absent. The use of laser irradiation of the green spectrum (560 and 520 nm) allowed to significantly increase the level of neurofilaments expression, and the use of irradiation of the blue spectrum (450–480 nm) – to restore the structure of the sciatic nerve.
    Tags nerve regeneration,neurofilaments,expression,immunohistochemistry
    Bibliography
    • Svyrydiuk RV, Shepitko VI, Shepitko KV, Klypachenko IV. Kharakterystyka strukturnykh komponentiv stovbura sidnychnoho nerva pry vvedenni kriokonservovanoi platsenty u shchuriv. Svit medytsyny ta biolohii. 2018; № 4: 202–207. doi: 10.26724/2079-8334-2018-4-66-202-207. [in Ukrainian].
    • Yashchyshyn ZM, Zaiats LM, Nebesna ZM, Poliuk MI, Rohuzhynska VH, Kerniakevych SIa. Morfofunktsionalni zminy v strukturi sidnychnoho nerva pislia neirotomii z ushyvanniam epinevralnym shvom cherez rizni promizhky chasu ta podalshoiu lazernoiu korektsiiu. Aktualni problemy transportnoi medytsyny. 2020. № 2 (60):85–91 [in Ukrainian]. Doi http://dx.doi.org/10.5281/zenedo.3967612.
    • Abu Hamdeh S, Ciuculete DM, Sarkisyan D, Bakalkin G, Ingelsson M, Schiöth HB, Marklund N. Differential DNA Methylation of the Genes for Amyloid Precursor Protein, Tau, and Neurofilaments in Human Traumatic Brain Injury. J Neurotrauma. 2021 Jun 15;38(12):1679–1688. doi: 10.1089/neu.2020.7283.
    • Chen J, Yang R, Li H, Lao J. Green Tea Polyphenols Promote Functional Recovery from Peripheral Nerve Injury in Rats. Med Sci Monit. 2020 Aug 27; 26: e923806. doi: 10.12659/MSM.923806.
    • Dang Do AN, Sinaii N, Masvekar RR, Baker EH, Thurm AE, Soldatos AG, Bianconi SE, Bielekova B, 5. Porter FD. Neurofilament light chain levels correlate with clinical measures in CLN3 disease. Genet Med. 2021 Apr;23(4):751–757. doi: 10.1038/s41436-020-01035-3. Epub 2020 Nov 26. PMID: 33239751; PMCID: PMC8035240.
    • Dubois M, Lalonde R, Julien JP, Strazielle C. Mice with the deleted neurofilament of low-molecular-weight (Nefl) gene: 1. Effects on regional brain metabolism. J Neurosci Res. 2005 Jun 15;80(6):741–50. doi: 10.1002/jnr.20449. PMID: 15742362.
    • Hendry JM, Alvarez-Veronesi MC, Chiang C, Gordon T, Borschel GH. Neurofilament-histomorphometry comparison in the evaluation of unmyelinated axon regeneration following peripheral nerve injury: An alternative to electron microscopy. J Neurosci Methods. 2019 May 15; 320:37–43. doi: 10.1016/j.jneumeth.2019.03.006.
    • Mandelbaum-Livnat MM, Almog M, Nissan M, Loeb E, Shapira Y, Rochkind S. Photobiomodulation Triple Treatment in Peripheral Nerve Injury: Nerve and Muscle Response. Photomed Laser Surg. 2016 Dec;34(12):638–645. doi: 10.1089/pho.2016.4095. PMID: 28001757.
    • Sainio MT, Ylikallio E, Mäenpää L, Lahtela J, Mattila P, Auranen M, Palmio J, Tyynismaa H. Absence of NEFL in patient-specific neurons in early-onset Charcot-Marie-Tooth neuropathy. Neurol Genet. 2018 Jun 5;4(3): e244. doi: 10.1212/NXG.0000000000000244. PMID: 29888333; PMCID: PMC5991776.
    • Sta M, Cappaert NL, Ramekers D, Baas F, Wadman WJ. The functional and morphological characteristics of sciatic nerve degeneration and regeneration after crush injury in rats. J Neurosci Methods. 2014 Jan 30; 222:189–98. doi: 10.1016/j.jneumeth.2013.11.012. Epub 2013 Nov 25. PMID: 24286698.
    • Svyrydiuk RV, Shepitko KV, Shepitko VI, Raskaley TYa. Morphometric characteristics of the sciatic nerve trunk in the acute aseptic inflammation in rats. World of Medicine and Biology. 2018; № 2(64):173–175. doi: 10.26724 / 2079-8334-2018-2-64-173-175.
    Publication of the article «World of Medicine and Biology» №3(81), 2022 year, 252-256 pages, index UDK 616-071+616.833.5+616-089+615.849.19
    DOI 10.26724/2079-8334-2022-3-81-252-256