SCIENTIFIC-PRACTICAL JOURNAL

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No2(1) 2018

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DOI 10.37219/2528-8253-2018-2-58

Gornostay I, Yudina O, Petrova L
Morphological and immunohistochemical features of cartilage tissue used in reconstructive surgery of the perforations of the tympanic membrane
Gornostay I.
Republican scientific and practical centre of otorhinolaryngology
Head of the otorhinolaryngological Department for adults
E-mail: ivan23121971@gmail.com

Yudina O.
Republican Clinical Medical Center of the Office of the President of the Republic of Belarus
Pathologist
PhD, assistant professor
E-mail: bsmu@bsmu.by

Petrova Lyudmila G.
Belarusian Medical Academy of Postgraduate Education
Head of the Department of otorhinolaryngology
Doctor of Medical Sciences, professor

Abstract

Relevance: The problem of graft choosing to close the eardrum defect in chronic purulent otitis media remains relevant today. In the literature there are few scientific studies that examine the graft nutrition mechanisms.
The purpose of this study was to study water flow features in the free lying fragmented cartilage graft used by us in myringoplasty.
Materials and methods: The mass of fragmented cartilage autotransplants prepared for tympanoplasty, having the same area, was measured using electronic scales before immersing them in a physiological solution and after immersion. An increase of the transplant mass wasafter wetting it in a physiological solution. Morphological and immunohistochemical studies were carried out in 30 cases grouped into three groups: native cartilage, crushed (fragmented) cartilage and crushed cartilage hydrated by physiological solution. The histological material was 90 tissue samples. The histological preparations were made from all the pieces to assess the morphological characteristics of the cartilage. An immunohistochemical study was also conducted with antibodies to aquaporins (AQP 1, AQP 3 and AQP 8) to identify the localization of endogenous water channels in the auricle cartilage and to identify the role and transport function of aquaporins.
Results: It is proved that the nutrition of loosely lying fragmented cartilage improves due to the capillary effect after crushing it, the adsorption of fluid by cartilage tissue increases due to the activation of aquaporins. For the first time, the localization of aquaporin AQP8 in the auricle cartilage was determined.

Keywords

 tympanoplasty, fragmented cartilage, aquaporins, cartilage nutrition, capillary effect.


Reference

  1. Borisova K. [Causes of tympanoplasty failure and the prevention of complications]. [Proceeding of Russian Scientific and Practical conference of Otolaryngologists «Problems and possibilities of the ear microsurgery»].
    2002; 44-6. [Article in Russian].
  2. Boronoev O, Ryabov M, Boronoev B. [Comparative evaluation of tympanoplasty results with using of various
    transplant at chronic purulent otitis media]. Acta Biomedica Scientifica. 2009;(3):35-8. [Article in Russian].
  3. Vishnyakov V. [The results of tympanoplasty in chronic suppurative otitis media and its consequences]. [The 16th
    congress of otorhinolaryngologists of the Russian Federation: Materials]. 2001; 59-62. [Article in Russian].
  4. Gornostay I, Petrova L, Mikhasev G, Shil’ko S, Gavrilenko S. [Results of using afragmented cartilage graft to restore the integrity of the eardrum]. Otorinolaryngology. Eastern Europe. 2019; 9(1): 33-42. [Article in Russian].
  5. Diskalenko V, Kurmashova L. [The improving of the tympanoplasty efficiency for large defects]. Vestn Otorinolaringol. 2008; (4): 54-56. [Article in Russian].
  6. Krotov Yu. [Myringoplasty for large eardrum perforations]. Vestn Otorinolaringol. 2001; (5): 57-59. [Article in Russian].
  7. Krotov Yu. [The method of myringoplasty for large eardrum perforations]. [Proceeding of the 17th congress
    of otorhinolaryngologists of the Russian Federation]. St. Petersburg; 2006: 111-2. [Article in Russian].
  8. Mironov A. [Problems of diagnosis and treatment of chronic purulent otitis media]. [Proceeding of Russian Scientific and Practical conference of Otolaryngologists "Modern problems of upper respiratory tract and ear diseases"]. Moscow;
    2002; 97-9. [Article in Russian].
  9. Patyakina O. [The functional surgery of chronic otitis media]. [Proceeding of Russian Scientific and Practical conference of Otolaryngologists "Problems and possibilities of the ear microsurgery"]. Orenburg; 2002; 25-8. [Article in Russian].
  10. Pomatilov A. [The healing of post-traumatic eardrum defect by the method of human allofibroblast transplantation] Moscow; 2001. 22 p. [In Russian].
  11. Semenov F, Volik A. [To the question of the surgical treatment tactics of patients with chronic suppurative otitis media in various forms of the pathological process in the middle ear]. Vestn Otorinolaringol. 1998; (5):15-7. [Article in Russian].
  12. Sitnikov V, Kin T, Aleksandrovskij Yu. [The method of myringoplasty for large eardrum defects]. Vestn Otorinolaringol. 1992; (3):31-3. [Article in Russian].
  13. Soldatov I. [Otorhinolaryngology manual]. Moscow: Medicina; 1997. 608 p. [In Russian].
  14. Sushko Yu. [Three-stage tympanoplasty in the stapes fixation in patients with chronic suppurative otitis media]. Zhurnal. ushnyh, nosovyh i gorlovyh boleznej. 1982; (6): 61-2. [Article in Russian].
  15. Tarasov D, Fedorova O, Bykova V. [Middle ear diseases; the guideline for doctors]. Moscow: Medicina; 1988. 288 p. [In Russian].
  16. Titovec E. [Aquaporins of humans and animals: fundamental and clinical aspects]. Minsk: Belorus. Nauka; 2007. 239 p. [In Russian].
  17. Tos M. [Guide to middle ear surgery. Vol. 1. Approaches, myringoplasty, ossiculoplasty and tympanoplasty]. Tomsk: Siberian State Medical University; 2004. 412 p. [In Russian].
  18. Khorov O, Plavskij D. [Tympanoplasty with cartilage plates using for large eardrum defects]. Novosti khirurgii.
    2010; 18(1): 108-13. [Article in Russian].
  19. Yanov Yu, Uskov A, Kuzovkov V. [The life quality in patients with chronic suppurative otitis media]. [Proc. Of Russian Scientific and Practical conference of Otolaryngologists "Problems and possibilities of the ear microsurgery"]. Orenburg; 2002; 256-9. [Article in Russian].
  20. Agemark M, Kowal J, Kukulski W, Nordén K, Gustavsson N, Johanson U, et al. Reconstitution of water channel function and 2D-crystallization of human aquaporin 8. Biochim Biophys Acta. 2012;1818(3):839-50.
    doi: 10.1016/j.bbamem.2011.12.006.
  21. Agre P. Nobel Lecture. Aquaporin water channels. Biosci Rep. 2004 Jun;24(3):127-63. doi: 10.1007/s10540-005-2577-2.
  22. Chang CY, Gray LC. Pressed scar tissue for tympanic membrane grafting in revision tympanoplasty. Otolaryngol Head Neck Surg. 2005 Jan;132(1):30-6. doi: 10.1016/j.otohns.2004.09.086.
  23. Crane JM, Verkman AS. Long-range nonanomalous diffusion of quantum dot-labeled aquaporin-1 water channels in the cell plasma membrane. Biophys J. 2008 Jan 15;94(2):702-13. doi: 10.1529/biophysj.107.115121.
  24. Day RE, Kitchen P, Owen DS, Bland C, Marshall L, Conner AC Human aquaporins: Regulators of transcellular water flow. Biochim Biophys Acta. 2014 May;1840(5):1492-506. doi: 10.1016/j.bbagen.2013.09.033.
  25. Fayad J, Baino T, Parisier S. Preliminary results with the use of AlloDerm in chronic otitis media. Laryngoscope.
    2003 Jul;113(7):1228-30. doi: 10.1097/00005537-200307000-00022.
  26. Gamra OB, Mbarek C, Khammassi K, Methlouthi N, Ouni H, Hariga I, et al. Cartilage graft in type I tympanoplasty: audiological and otological outcome. Eur Arch Otorhinolaryngol. 2008 Jul;265(7):739-42.
    doi: 10.1007/s00405-008-0645-5.
  27. Hagiwara K, Shinozaki T, Matsuzaki T, Takata K, Takagishi K. Immunolocalization of water channel aquaporins in human knee articular cartilage with intact and early degenerative regions. Med Mol Morphol. 2013 Jun;46(2):104-8.
    doi: 10.1007/s00795-013-0014-3.
  28. Harris HW Jr, Zeidel ML. Water Channels. Curr Opin Nephrol Hypertens. 1993 Sep;2(5):699-707.
  29. Hirano Y, Okimoto N, Kadohira I, Suematsu M, Yasuoka K, Yasui M. Molecular mechanisms of how mercury
    inhibits water permeation through aquaporin-1: understanding by molecular dynamics simulation. Biophys J.
    2010 Apr 21;98(8):1512-9. doi: 10.1016/j.bpj. 2009.12.4310.
  30. Jalali MM, Motasaddi M, Kouhi A, Dabiri S, Soleimani R. Comparison of Cartilage With Temporalis Fascia
    Tympanoplasty: A Meta-Analysis of Comparative Studies. Laryngoscope. 2017 Sep;127(9):2139-2148.
    doi: 10.1002/lary.26451.
  31. Johansson I, Karlsson M, Johanson U, Larsson C, Kjellbom P. The role of aquaporins in cellular and whole plant water balanc. Biochim Biophys Acta. 2000 May 1;1465(1-2):324-42. doi: 10.1016/s0005-2736(00) 00147-4.
  32. Kim JY, Oh JH, Lee HH. Fascia versus cartilage graft in type I tympanoplasty: audiological outcome. J Craniofac
    Surg. 2012 Nov;23(6):e605-8. doi: 10.1097/SCS. 0b013e31826c7b55.
  33. Kotecha B, Fowler B, Topham J. Myringoplasty: a prospective audit study. Clin Otolaryngol Allied Sci.
    1999 Apr;24(2):126-9.
  34. Meli R, Pirozzi C, Pelagalli A. New Perspectives on the Potential Role of Aquaporins (AQPs) in the Physiology
    of Inflammation. Front Physiol. 2018 Feb 16;9:101. doi: 10.3389/fphys.2018.00101.
  35. Mohamad SH, Khan I, Hussain SS. Is cartilage tympanoplasty more effective than fascia tympanoplasty? A systematic review. Otol Neurotol. 2012 Jul;33(5):699-705. doi: 10.1097/MAO.0b013e318254fbc2.
  36. Perkins R, Bui H. Tympanic membrane reconstruction using formaldehyde-formed autogenous temporalis fascia: twenty years experience. Otolaryngol Head Neck Surg. 1996 Mar;114(3):366-79. doi: 10.1016/S0194-59989670205-X.
  37. Pradhan P, Anant A, Venkatachalam VP. Comparison of Temporalis Fascia and Full-Thickness Cartilage Palisades in Type-I Underlay Tympanoplasty for Large/Subtotal Perforations. Iran J Otorhinolaryngol. 2017 Mar;29(91):63-8.
  38. Preston GM, Jung JS, Guggino WB, Agre P. The mercury-sensitive residue at cysteine 189 in the CHIP28 water channel. J Biol Chem. 1993 Jan 5;268(1):17-20.
  39. Sarac S, Curse S. Use of homograft diehydrated temporal fascia in tympanoplasty. Otol Neurotol. 2002 Jul;23(4):416-21.
  40. Shi Z, Zhang T, Luo L, Zhao H, Cheng J, Xiang J, et al. Aquaporins in human breast cancer: Identification and involvement in carcinogenesis of breast cancer. J Surg Oncol. 2012 Sep 1;106(3):267-72. doi: 10.1002/ jso.22155.
  41. Verkman AS. Aquaporins in clinical medicine. Annu Rev Med. 2012;63:303-16.
    doi: 10.1146/annurev-med-043010-193843.
  42. Wakayama Y. Aquaporin expression in normal and pathological skeletal muscles: a brief review with focus on AQP4. J Biomed Biotechnol. 2010;2010:731569. doi: 10.1155/2010/731569.
  43. Zeidel ML, Nielsen S, Smith BL, Ambudkar SV, Maunsbach AB, Agre P. Ultrastructure, pharmacologic inhibition, and transport selectivity of aquaporin channel-forming integral protein in proteoliposomes. Biochemistry. 1994 Feb 15;33(6):1606-15
 

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