Immunohistochemical Study of Neuroglia in the Mediastinum Structures of Newborn Rats
https://doi.org/10.33647/2074-5982-20-4-59-69
Abstract
In this work, we conduct a comparative morphological study of the diversity of glial cells in the tissues and organs of the mediastinum of newborn rats using immunohistochemical markers. In rats aged 1 day, the innervation of the organs of the cardiovascular, digestive, and respiratory systems was studied in frontal sections through the cardiopulmonary complex (using the neural immunohistochemical protein marker PGP 9.5 and glial markers GFAP and S100β). In the mediastinal organs (SRDS), two type of glia — astrocyte-like cells and neurolemmocytes — were revealed. Astrocyte-like cells are similar to the glia of the CNS, neurolemmocytes or Schwann cells are similar to the glia of the PNS. Some were found in the neuropil of the Aurbach's ganglionic plexus of the enteric nervous system of the esophagus, and others were detected in the ganglia, microganglia, in the large trunks, and bundles of the nerve plexuses of the parasympathetic and sympathetic divisions of the somatic and autonomic nervous system. Among the neurolemmocytes in the SRDS, the following populations were identified: myelin-forming Schwann cells, neurolemmocytes of unmyelinated nerve fibers, neurolemmocytes of the Remak fascicles of the main terminal synaptic plexus, as well as satellite or capsule cells of neurocytes of the intramural ganglia. According to the modern knowledge, glia plays an important role in the functioning of vital organs in the norm, as well as in the preservation of the integrity of neural structures in pathology. Therefore, the results obtained are important for biomedical research on the development of new therapies aimed at changing the functional status of glial cells.
Keywords
About the Authors
E. I. ChumasovRussian Federation
Evgenii I. Chumasov, Dr. Sci. (Biol.), Prof.
197022, Saint Petersburg, Akademika Pavlova Str., 12; 196084, Saint Petersburg, Chernigovskaya Str., 5
E. S. Petrova
Russian Federation
Elena S. Petrova, Cand. Sci. (Biol.)
197022, Saint Petersburg, Akademika Pavlova Str., 12
D. E. Korzhevskii
Russian Federation
Dmitry E. Korzhevskii, Prof. of the RAS, Dr. Sci. (Med.)
197022, Saint Petersburg, Akademika Pavlova Str., 12
References
1. Zavarzin A.A. Ocherki po evolyutsionnoy gistologii nervnoy sistemy. Izbrannye trudy. T. III [Essays on the evolutionary histology of the nervous system. Selected works. Vol. III]. Moscow: Izd-vo Akad. nauk SSSR, 1950. (In Russian).
2. Klishov A.A. Gistogenez i regeneratsiya tkaney [Histogenesis and tissue regeneration]. Leningrad: Meditsina Publ., 1984. (In Russian).
3. Knorre A.G. Embrional'nyy gistogenez [Embryonic histogenesis]. Leningrad: Meditsina Publ., 1971. (In Russian).
4. Korzhevskiy D.E., Kirik O.V., Petrova E.S., Karpenko M.N., Grigoriev I.P., Sukhorukova E.G., Kolos E.A., Gilyarov A.V. Teoreticheskie osnovy i prakticheskoe primenenie metodov immunogistokhimii (rukovodstvo) [Theoretical foundations and practical application of immunohistochemistry methods (guide)]. Saint Petersburg: SpetsLit Publ., 2014. (In Russian).
5. Kupriyanov V.V. Morfologicheskie zakonomernosti perifericheskoy innervatsii [Morphological patterns of peripheral innervations]. Kishinev: Min-vo zdravookhraneniya MSSR, 1958. (In Russian).
6. Lavrentyev B.I. Teoriya stroeniya vegetativnoy nervnoy sistemy (sb. trudov) [The theory of the structure of the autonomic nervous system (collection of works)]. Moscow: Meditsina Publ., 1983. (In Russian).
7. Lashkov V.F. Innervatsiya organov dykhaniya [Innervation of the respiratory organs]. Moscow: Izd-vo med. lit-ry, 1963. (In Russian).
8. Mikhaylov V.P. Geneticheskaya sistema tkaney i ikh ierarkhicheskaya taksonomiya [Genetic system of tissues and their hierarchical taxonomy]. V kn.: Tkanevaya biologiya [In: Tissue biology]. Tartu: Izd-vo TGU, 1980:3–14. (In Russian).
9. Nozdrachev A.D. Fiziologiya vegetativnoy nervnoy sistemy [Physiology of the autonomic nervous system]. Minsk: Meditsina Publ., 1983. (In Russian).
10. Nozdrachev A.D., Chumasov E.I. Perifericheskaya nervnaya sistema [Peripheral nervous system]. Saint Petersburg: Nauka Publ., 1999. (In Russian).
11. Odintsova I.A., Danilov R.K Uchenie o tkanyakh — osnova gistologii kak triedinoy uchebnoy i nauchnoy distsipliny [The study of tissues is the basis of histology as a triune educational and scientific discipline]. V kn.: Voprosy morfologii XXI veka [In: Morphology issues of the 21st century]. Saint Petersburg: Izd-vo DEAN, 2021:17–25. (In Russian).
12. Khachatryan A.A., Erofeeva L.M., Kutvitskaya S.A. Rol' neyroglii v funktsionirovanii nervnoy sistemy [The role of neuroglia in the functioning of the nervous system]. Uspekhi sovremennogo estestvoznaniya [Advances inCurrent Natural Sciences]. 2014;6:66–70. (In Russian).
13. Khlopin N.G. Obshchegistologicheskie i eksperimental'nye osnovy gistologii [General histological and experimental fundamentals of histology]. Moscow: Meditsina Publ., 1946. (In Russian).
14. Chumasov E.I. K voprosu o klassifikatsii tkaney nervnoy sistemy pozvonochnykh zhivotnykh [On the issue of classification of tissues of the nervous system of vertebrates]. Voprosy normativno-pravovogo regulirovaniya v veterinarii [Issues of legal regulation in veterinary medicine]. 2015;4:224–230. (In Russian).
15. Chumasov E.I., Kolos E.A., Petrova E.S., Korzhevskiy D.E. Immunogistokhimiya perifericheskoy nervnoy sistemy [Immunohistochemistry of the peripheral nervous system]. Saint Petersburg: SpetsLit Publ., 2020. (In Russian).
16. Chumasov E.I., Maystrenko N.A., Romashchenko P.N., Samedov V.B., Petrova E.S., Korzhevskiy D.E. Patologicheskie izmeneniya glial'nykh kletok v enteral'noy nervnoy sisteme tolstoy kishki pri khronicheskom medlenno-tranzitnom zapore [Pathological changes in glial cells in the enteric nervous system of the colon during chronic transitory constipation]. Sibirskiy nauchnyy meditsinskiy zhurnal [Siberian Scientific Medical Journal]. 2023;43(6):191–202. (In Russian). DOI: 10.18699/SSMJ20230624
17. Chumasov E.I., Petrova E.S. Nervnye struktury organov sredosteniya novorozhdennoy krysy [Nervous structures of the mediastinal organs of the newborn rat]. Morfologiya [Morfology]. 2023;161(4):23–32. (In Russian). DOI: 10.17816/morph.629184
18. Shvalev V.N., Sosunov A.A., Guski G. Morfologicheskie osnovy innervatsii serdtsa [Morphological basis of heart innervations]. Moscow: Nauka Publ., 1992. (In Russian).
19. Allen N.J., Barres B.A. Neuroscience: Glia — More than just brain glue. Nature. 2009;457(7230):675–677. DOI: 10.1038/457675a
20. Barres B.A. The mystery and magic of glia: A perspective on their roles in health and disease. Neuron. 2008;60(3):430–440. DOI: 10.1016/j.neuron.2008.10.013
21. Furness J.B., Stebbing M.J. The first brain: Species comparisons and evolutionary implications for the enteric and central nervous systems. Neurogastroenterol. Motil. 2018;30(2). DOI: 10.1111/nmo.13234
22. Grigorev I.P., Korzhevskii D.E. Modern imaging technologies of mast cells for biology and medicine (review). Modern Tehnologies Med. 2021;13(4):93–109. DOI: 10.17691/stm2021.13.4.10
23. Grundmann D., Loris E., Maas-Omlor S., Huang W., Scheller A., Kirchhoff F., Schäfer K.H. Enteric glia: S100, GFAP, and beyond. Anat. Rec. (Hoboken). 2019;302(8):1333–1344. DOI: 10.1002/ar.24128
24. Gulbransen B.D., Sharkey K.A. Novel functional roles for enteric glia in the gastrointestinal tract. Nat. Rev. Gastroenterol. Hepatol. 2012;9(11):625–632. DOI: 10.1038/nrgastro.2012.138
25. Pawolski V., Schmidt M.H.H. Neuron-glia interaction in the developing and adult enteric nervous system. Cells. 2020;10(1):47. DOI: 10.3390/cells10010047
26. Reed C.B., Feltri M.L., Wilson E.R. Peripheral glia diversity. J. Anat. 2022;241(5):1219–1234. DOI: 10.1111/joa.13484
27. Rumessen J.J., Thuneberg L. Pacemaker cells in the gastrointestinal tract: Interstitial cells of Cajal. Scand. J. Gastroenterol. Suppl. 1996;216:82–94. DOI: 10.3109/00365529609094564
28. Rumessen J.J., Vanderwinden J.M., Horn T. Ulcerative colitis: Ultrastructure of interstitial cells in myenteric plexus. Ultrastruct. Pathol. 2010;34(5):279–287. DOI: 10.3109/01913121003770701
29. Rumessen J.J., Vanderwinden J.M., Hansen A., Horn T. Ultrastructure of interstitial cells in subserosa of human colon. Cells Tissues Organs. 2013;197(4):322–332. DOI: 10.1159/000346314
30. Saburkina I., Gukauskiene L., Rysevaite K., Brack K.E., Pauza A.G., Pauziene N., Pauza D.H. Morphological pattern of intrinsic nerve plexus distributed on the rabbit heart and interatrial septum. J. Anat. 2014;224(5):583– 593. DOI: 10.1111/joa.12166
31. Sinegubov A., Andreeva D., Burzak N., Vasyutina M., Murashova L., Dyachuk V. Heterogeneity and potency of peripheral glial cells in embryonic development and adults. Front. Mol. Neurosci. 2022;15:737949. DOI: 10.3389/fnmol.2022.737949
32. Suarez-Mier G.B., Buckwalter M.S. Glial fibrillary acidic protein-expressing glia in the mouse lung. ASN Neuro. 2015;7(5):1759091415601636. DOI: 10.1177/1759091415601636
33. Verkhratsky A., Ho M.S., Parpura V. Evolution of neuroglia. Adv. Exp. Med. Biol. 2019;1175:15–44. DOI: 10.1007/978-981-13-9913-8_2
Review
For citations:
Chumasov E.I., Petrova E.S., Korzhevskii D.E. Immunohistochemical Study of Neuroglia in the Mediastinum Structures of Newborn Rats. Journal Biomed. 2024;20(4):59-69. (In Russ.) https://doi.org/10.33647/2074-5982-20-4-59-69