General Principles and Special Features of Histological and Immunohistochemical Methods of Bone Tissue Examination

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The detailed research and analysis of modern data on the problem of methods of histological and immunohistochemical researches of connective tissue, bone in particular, was conducted by us so as to evaluate the possibility of creating a single method of bone tissue immunohistochemical analysis.The description was given in detail to most widespread methods of preparation of connective, bone in particular, tissues for the research conduction during experiments connected with the study of bone tissue regeneration including implants with bioactive coverage. The present-day medical data reflects a variety of methods of immunohistochemistry, as well as the experience of their use in complex trauma surgery. However, there is no consensus about which method and material are most reliable when conducting this analysis.

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45-51

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June 2020

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© 2020 Trans Tech Publications Ltd. All Rights Reserved

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[1] Klishov A.A. Histogenetic aspect of regeneration problem. Archive of anatomy, histology and embryology. 1981; 80 (2): 84–89.

Google Scholar

[2] Klishov A.A. Histogenesis and tissue regeneration. Leningrad: Medicine, 1984: 232.

Google Scholar

[3] Nuzov B.G. Stimulation of reparative tissue regeneration. 2005; 165.

Google Scholar

[4] Odintsova I.A. Regenerative histogenesis in the skin-muscular wound (experimental and histological study). 2005; 1.

Google Scholar

[5] Brantley AGU, Mayfield JK, Koeneman JB, Clark KR. The effects of pedicle screw fit. An in vitro study. Spine 1994;19(15):1572–1758.

DOI: 10.1097/00007632-199408000-00016

Google Scholar

[6] Chavassieux P, Pastoureau P, Boivin G, Charhon S, Chapuy MC, Delmas PD, Meunier PJ. Effects of sodium fluoride on bone remodelling in ewes. J Bone Miner Res 1987;2(suppl 1): abstract 359.

DOI: 10.1016/8756-3282(91)90031-d

Google Scholar

[7] Soshi S, Shiba R, Kondo H, Murota K. An experimental study on transpedicular screw fixation in relation to osteoporosis of the lumbar spine. Spine1991;16(11):1335–1341.

DOI: 10.1097/00007632-199111000-00015

Google Scholar

[8] Skinner R, Maybee J, Transfeldt E, Venter R, Chalmers W. Experimental pullout testing and comparaison of variables in transpedicular screw fixation. A biomechanical study. Spine 1990;15(3):195–201.

DOI: 10.1097/00007632-199003000-00007

Google Scholar

[9] Baimagambetov S.A., Balgazarov A.S., Ramazanov Z.K., Markov A.A., Ponomarev A.A., Turgumbayeva R.K. Abdikarimov M.N. Modern models of endoprostheses and periprosthetic infection. Biomedical Research (India). 2018; 29: Iss.11.

DOI: 10.4066/biomedicalresearch.37-18-476

Google Scholar

[10] Markov A.A. The Development of Dental Implant with the Bioactive Covering on the Basis of Synthetic Complex with Biogenic Elements. Sys. Rev. Pharm. 2020; 11(2): 278-283.

Google Scholar

[11] Carlsson L, Rostlund T, Albrektsson B, Branemark PI. Osseointegration of titanium implants. Acta Orthop Scand 1986;57(4):285–289.

DOI: 10.3109/17453678608994393

Google Scholar

[12] Dahlin C, Sennerby L, Lekholm U, Linde A, Nyman S. Generation of new bone around titanium implants using a membrane technique: an experimental study in rabbits, Inter J oral Max Impl 1989:4(1):19–25.

Google Scholar

[13] Markov A.A. Problems of the surgical treatment of patients with fractures of the proximal femur on the basis of osteoporosis. Sys. Rev. Pharm. 2019; 10(1): 143-145.

Google Scholar

[14] Naumenko L.Y., Panasiuk A.F., Kostritsa K.Y., Goregliad A.M., Bondarenko A.A., Khoroshikh V.V. Effect of osteomatrix biocomposite material on bone tissue regeneration in experimental conditions. 2014; 15 (4): 66.

Google Scholar

[15] Rusanov G.A. Bone replacement after transverse resection of the diaphysis. Leningrad: Medicine, 1969; 238.

Google Scholar

[16] Naish S.J. Handbook. Immunochemical staining methods. Carpinteria: DAKO Corporation,1989; 120.

Google Scholar

[17] Lozovoi V.P. Dysregulation of immunogenesis in diffuse diseases of the connective tissue. Abstract of Papers. Physiology and pathology of connective tissue. Novosibirsk, 1980; 2.

Google Scholar

[18] Deev R.V., Tsupkina N.V., Gololobov V.G., Nikolaenko N.S. et al. Influence of transplanted culture of bone marrow osteogenic cells on reparative osteogenesis in the area of defect of parietal bones. Cytology. 2008; 50 (4): 293-301.

Google Scholar

[19] Nazarenko M.Y., Didenko V.I. Experimental substantiation of various types of allografts for the replacement of mandibular defects. Stomatology. 1990; 69(3): 19–23.

Google Scholar

[20] Davydov D.A., Avdalyan A.M., Agadzhanyan V.V., Lushnikova E.L., Ustyantseva I.M. Morphometric characteristic of histopathological parameters of bone tissue and articular surface of the femoral head with various nosological forms of coxarthrosis. Siberian Scientific Medical Journal. 2016; 36 (2): 62-64.

DOI: 10.17116/patol201678520-26

Google Scholar

[21] Mushegyan S.A., Martirosyan V.A., Mnatsakanyan A.A. Some questions of the effect of ethanolamine on reparative osteogenesis in an experiment. Journal. experimental and clinical medicine. 1983; 23 (6): 566-569.

Google Scholar

[22] Iordanishvili A.K., Slugina A.G., Balin D.V., Serikov A.A. Age-related features of reparative osteogenesis of the jaw. Kursk scientific and practical bulletin Man and his health., 2014; 3:15-17.

Google Scholar

[23] Shurygina IA, Shurygin MG, A method for preparing a bone tissue preparation and a kit for its implementation. Patent. 2013;1-4.

Google Scholar

[24] Nadein K.A. Immunohistochemical study of CD-3 lymphocytes in the connective tissue of cattle with chronic inflammation. BULLETIN Buryat State Agricultural Academy. V.R. PHILIPPOVA. 201; 2: 161-164.

Google Scholar

[25] Ryzhkov A.D. Comprehensive radionuclide diacrisis of osteogenic sarcoma. Absract of Ph.D. thesis Bulanov D.M., 2011; 31.

Google Scholar

[26] Yuka A., Hiroshi Sh., Kazuhiro O. et al. Immunohistochemical study of lymphomas of abdominal cavity origin in two cows with bovine leukemia virus. Jap. Agr. Res. Quart. 2007; 2: 153-156.

Google Scholar

[27] Kiiasov A.P. Methods of immunohistochemistry. Kazan, 1998; 95.

Google Scholar