Copyright: © 2024 by the authors. Licensee: Pirogov University.
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REVIEW

Morphological characteristics of toxic brain damage

Gaykova ON1, Kozlov AA1, Katretskaya GG1, Melnikova MV1, Melekhova AS1, Bondarenko AA1, Sokolova YuO1, Bazhanova ED1,2
About authors

1 Golikov Research Clinical Center of Toxicology of the Federal Medical and Biological Agency, Saint-Petersburg, Russia

2 Sechenov Institute of Evolutionary Physiology and Biochemistry of the Russian Academy of Sciences, Saint-Petersburg, Russia

Correspondence should be addressed: Elena D. Bazhanova
Bekhtereva, 1, Saint-Petersburg, Russia; 192019; ur.liam@eavonahzab

About paper

Funding: the study was conducted as part of the State Assignment of the FMBA of Russia No. 388-00071-24-00 (theme code 64.004.24.800) and supported by the State Assignment of the Sechenov Institute of Evolutionary Physiology and Biochemistry RAS No. 075-00264-24-00.

Author contribution: Gaikova ON, Sokolova YuO, Bazhanova ED, Kozlov AA – literature review, data acquisition and processing, manuscript writing and editing; Katretskaya GG, Melnikova MV, Melekhova AS, Bondarenko AA – editing, formatting, approval of the final version of the article.

Received: 2024-05-15 Accepted: 2024-06-17 Published online: 2024-06-28
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  1. Katamanova EV, Rukavishnikov VS, Lahman OL, Shevchenko OI, Denisova IA. Kognitivnye narushenija pri toksicheskom porazhenii mozga. Zhurnal nevrologii i psihiatrii. 2015; 2: 11–15. Russian.
  2. Dobbs RM. Toxic encephalopathy. Semin Neurol. 2011; 31 (2): 184–93.
  3. Eicher T, Avery E. Toxic encephalopathies. Neurol Clin. 2005; 23 (2): 353–76.
  4. Wylie AC, Short SJ. Environmental Toxicants and the Developing Brain. Biol Psychiatry. 2023; b93 (10): b921–33.
  5. Gagnon-Chauvin A, Bastien K, Saint-Amour D. Environmental toxic agents: The impact of heavy metals and organochlorides on brain development. Handb Clin Neurol. 2020; 173: 423–42.
  6. McNeish BL, Kolb N. Toxic Neuropathies. Continuum (Minneap Minn). 2023; 29 (5): 1444–68.
  7. Brambrink AM, Orfanakis A, Kirsch JR. Anesthetic neurotoxicity. Anesthesiol Clin. 2012; 30 (2): 207–28.
  8. Macko DE, Korshunov AG. Atlas opuholej central'noj nervnoj sistemy. SPb.: Izd. RNHI im. prof. A. L. Polenova, 1998; 200 s. Russian.
  9. Gulevskaja TS, Morgunov VA. Patologicheskaja anatomija narushenij mozgovogo krovoobrashhenija pri ateroskleroze i arterial'noj gipertenzii. M.: Medicina, 2009; 294 s. Russian.
  10. Medvedev YuA, Zabrodskaja YuM. Novaja koncepcija proishozhdenija bifurkacionnyh anevrizm arterij osnovanija golovnogo mozga. SPb.: Jeskulap, 2000; 168 s. Russian.
  11. Gaikova ON, Ananeva NI, Zabrodskaja YuM. Morfologicheskie projavlenija obshhepatologicheskih processov v nervnoj sisteme. SPb.: Ves', 2015; 158 s. Russian.
  12. Ermohin PN. Gistopatologija central'noj nervnoj sistemy. M.: Medicina, 1969; 244 s. Russian.
  13. Litvincev BS. Nevrologicheskie narushenija pri narkomanii: principy diagnostiki i terapii. Voenno-medicinskaja akademija imeni S. M. Kirova. SPb.: VmedA, 2018; 167 s. Russian.
  14. Litvincev BS. Porazhenija nervnoj sistemy pri narkomanii. Voennomedicinskaja akademija imeni S. M. Kirova. SPb.: VMedA, 2018; 160 s. Russian.
  15. Moreno-García A, Kun A, Calero O, Medina M, Calero M. An Overview of the Role of Lipofuscin in Age-Related Neurodegeneration. Front Neurosci. 2018; 12: 464.
  16. Hellas JA, Andrew RD. Neuronal Swelling: A Non-osmotic Consequence of Spreading Depolarization. Neurocrit Care. 2021; 35 (2): 112–34.
  17. Kim AA, Indiaminov SI, Assatulaev AF. Osobennosti porazhenija struktury golovnogo mozga pri otravlenii ugarnym gazom na fone termicheskoj travmy i alkogol'noj intoksikacii. Zhurnal biomediciny i praktiki. 2021; 6 (4): 247–54. Russian.
  18. Petrov LV, Salova IYu. Harakteristika ochagovyh izmenenij golovnogo mozga pri ostrom otravlenii okis'ju ugleroda. Uchenye zapiski SPbGMU im. akad. I. P. Pavlova. 2012; XIX (2): 61–64. Russian.
  19. Petrov AN, Vojcehovich KO, Melehova AS, Lisickij DS, Belskaja AV, Mihajlova MV, i dr. Problemy diagnostiki nejrotoksicheskih narushenij — posledstvij otravlenij veshhestvami sudorozhnogo dejstvija. Vestnik Rossijskoj voenno-medicinskoj akademii. 2017; 3 (59): 211–17. Russian.
  20. Torshin VI, Kastyro IV, Reshetov IV, Kostyaeva MG, Popadyuk VI. The Relationship between p53-Positive Neurons and Dark Neurons in the Hippocampus of Rats after Surgical Interventions on the Nasal Septum. Dokl Biochem Biophys. 2022; 502 (1): 30–35.
  21. Blümcke I, Thom M, Aronica E, et al. The clinic-pathologic spectrum of focal cortical dysplasias: a consensus classification proposed by an ad hoc Task Force of the ILAE Diagnostic Methods Commission. Epilepsia. 2011; 52 (1): 158–74.
  22. Hu X, Wang JY, Gu R, Qu H, Li M, Chen L, et al. The relationship between the occurrence of intractable epilepsy with glial cells and myelin sheath — an experimental study. Eur Rev Med Pharmacol Sci. 2016; 20 (21): 4516–24. PMID: 27874947.
  23. Lapato AS, Szu JI, Hasselmann JPC, et al. Chronic demyelinationinduced seizures. Neuroscience. 2017; 27 (346): 409–22.
  24. Kim SH, Choi J. Pathological Classification of Focal Cortical Dysplasia (FCD): personal comments for well understanding FCD classification. J Korean Neurosurg Soc. 2019; 62 (3): 288–95.
  25. Lanigan LG, Russell DS, Woolard KD, Pardo ID, Godfrey V, Jortner BS, et al. Comparative Pathology of the Peripheral Nervous System. Vet Pathol. 2021; 58 (1): 10–33.