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CYSTOGENESIS: CELLULAR AND MOLECULAR MECHANISMS OF PATHO- AND MORPHOGENESIS

https://doi.org/10.34822/2304-9448-2020-1-59-65

Abstract

The aim of the study is to analyze modern ideas about patho- and morphogenesis, morphogenetic potencies and the significance of cyst formation for pathology. Material and methods. A literature search has been conducted using the following databases: CyberLeninka, eLIBRARY.RU, PubMed, Nature Pathology, MEDLINE, PLOS ONE. The search includes only fundamental works for the last 7–10 years. Keywords used in the search are cystogenesis, patho- and morphogenesis of cyst formation, epithelial morphogenesis, epithelial-stromal interactions. Results. In recent years, cystogenesis is viewed not only as the most important phenomenon of epithelial morphogenesis, which is of great importance in physiological and reparative regeneration but also as the process that makes up the morphological essence of many diseases (polycystic kidney disease, nonneoplastic cysts of the central nervous system, etc.), as well as the outcome of chronic processes in many organs, increasing the risk of tumour transformation. This determines the interest in both the mechanisms of cyst formation and the discovery of the biological potencies of the process. The disorder of cell polarity and changes in the qualitative composition of the extracellular matrix are considered the most important morphogenetic mechanism of cyst formation. In the genesis of cysts, both hereditary and acquired gene mutations are important, as well as epigenetic effects, causing a violation of epithelial-stromal interactions. It is believed that cystogenesis is associated with abnormalities in the Wnt-pathway, the most important signaling cell pathway, which is involved in the development of cancer (in particular, stomach cancer), and embryonic morphogenesis, the formation of cell polarity and cystogenesis. At the same time, the interaction between many signaling pathways of the cell in cyst formation, as well as the connection between cystogenesis and tumour growth, remains unclear

About the Author

L. A. Naumova
Surgut State University, Surgut, Russiа
Russian Federation

Doctor of Sciences (Medicine), Professor of the Department of Pathophysiology and General Pathology, Medical Institute;

E-mail: naumovala@yandex.ru



References

1. Polgar N., Lee A. J., Lui V. H., Napoli J. A., Fogelgren B. The Exocyst Gene Sec10 Regulates Renal Epithelial Monolayer Homeostasis and Apoptotic Sensitivity // Am J Physiol Cell Physiol. 2015. No. 309 (3). P. 190–201. DOI 10.1152/ ajpcell.00011.2015.

2. Bhatt A. S., Mhatre R., Nadeesh B. N., Mahadevan A., Yasha T. Ch., Santosh V. Nonneoplastic Cystic Lesions of the Central Nervous System – Histomorphological Spectrum: A Study of 538 Cases // J Neurosci Rural Pract. 2019. No. 10 (3). P. 494–501. DOI 10.1055/s-0039-1698033.

3. Menditti D., Laino L., Di Domenico M., Troiano G., Guglielmotti M., Sava S., Mezzogiorno A., Baldi A. Cysts and Pseudocysts of the Oral Cavity: Revision of the Literature and a New Proposed Classification // In Vivo. 2018. No. 32 (5).

4. P. 999–1007. DOI 10.21873/invivo.11340.

5. Saluja P., Arora M., Dave A., Shetty V. P., Khurana Ch., Madan A., Rai R., Katiyar A. Role of Cytokeratin-7 in the Pathogenesis of Odontogenic Cysts – an Immunohistochemical Study // Med Pharm Rep. 2019. No. 92 (3). P. 282–287. DOI 10.15386/ mpr-1112.

6. Stachs A., Stubert J., Reimer T., Hartmann S. Benign Breast Disease in Women // Dtsch Arztebl Int. 2019. No. 116 (33–34). P. 565–574. DOI 10.3238/arztebl.2019.0565.

7. Коган Е. А., Мануйлова Т. Ю., Краева В. В., Попова Е. Н. Атипическая аденоматозная гиперплазия и дисплазия в плоском эпителии в сотовом легком в исходе идиопатического фиброзирующего альвеолита // Архив патологии 2003. № 5. P. 35–40.

8. Мумладзе Р. Б., Дзукаева Н. Т., Запирова С. Б. Современная концепция патогенеза, диагностики и лечения кистозной мастопатии // Вестник Рос. науч. центра рентгенорадиологии Минздрава России 2012 № 12. URL:

9. https://vestnik.rncrr.ru/ (дата обращения: 30.11.2019).

10. Holger M. Cystic Renal Tumors: New Entities and Novel

11. Concepts // Advances in Anatomic Pathology. 2010. No. 3 (17). P. 209–214.

12. Maeda D., Shin Le-M. Pathogenesis and the Role of ARIDA1A

13. Mutation in Endometriosis-related Ovarian Neoplasms // Adv Anat Pathol. 2013. No. 20 (1) P. 45–52. DOI 10.1097/ PAP.0b013e31827bc24d.

14. Аруин Л. И., Григорьев П. Я., Исаков В. А., Яковенко Э. П. Хронический гастрит. Амстердам, 1993. 362 с.

15. Наумова Л. А. Общепатологические аспекты атрофического поражения слизистой оболочки желудка. Особенности клинических и структурно-функциональных проявлений различных морфогенетических вариантов

16. атрофического процесса. М. : Высшее образование и наука, 2013. 176 с.

17. Наумова Л. А., Осипова О. Н. Феномен кистообразования как возможный маркер нарушения эпителиостромальных отношений // Вестник СурГУ. Медицина. 2017. № 1. С. 62–67.

18. Наумова Л. А. Общепатологические аспекты рака желудка, ассоциированного с системной недифференцированной дисплазией соединительной ткани. Сургут, 2019. 152 c.

19. Dressler G. R. Polarity and Renal Cystogenesis // J Am Soc Nephrol. 2012. No. 23 (1). P. 4–5. DOI 10.1681/ ASN.2011111121.

20. Neufeld Т., Douglass D., Grant M., Ye M., Silva F., Nadasdy T.,

21. Grantham J. In Vitro Formation and Expansion of Cysts Derived from Human Renal Cortex Epithelial Cells // Kidney Int. 1992. No. 41 (5). P. 1222–1236. DOI 10.1038/ki.1992.184.

22. Jiang S. T., Chiang H. C., Cheng M. H., Yang T. P., Chuang W. J.,

23. Tang M. J. Role of Fibronectin Deposition in Cystogenesis of Madin-Darby Canine Kidney Cells // Kidney Int. 1999. No. 56. P. 92–103. DOI 10.1046/j.1523-1755.1999.00520.x.

24. Joly D., Morel V., Hummel A., Ruello A., Nusbaum P., Patey N., Noël L. H., Rousselle P., Knebelmann B. Beta4 Integrin and Laminin 5 are Aberrantly Expressed in Polycystic Kidney Disease: Role in Increased Cell Adhesion and Migration // Am J Pathol. 2003. No. 163 (5). P. 1791–1800. DOI 10.1016/

25. s0002-9440(10)63539-0.

26. Ohtsuka J., Oshima H., Ezawa I., Abe R., Oshima M., Ohki R. Functional Loss of p53 Cooperates with the In Vivo Microenvironment to Promote Malignant Progression of Gastric Cancers // Sci Rep. 2018. No. 8 (1). DOI 10.1038/ s41598-018-20572-1.

27. Lancaster М. A., Louie C. M., Silhavy J. L., Sintasath L., Deсambre M., Nigam S. K., Willert K., Gleeson J.G. Impaired Wnt-betaсatenin Signaling Disrupts Adult Renal Homeostasis and Leads to Cystic Kidneyciliopathy // Nat

28. Med. 2009. No. 15 (9). P. 1046–1054. DOI 10.1038/nm.2010.

29. Natoli T. A., Smith L. A., Rogers K. A., Wang B., Komarnitsky S., Budman Y., Belenky A., Bukanov N. O., Dackowski W. R., Husson H., Russo R. J., Shayman J. A., Ledbetter S. R., Leonard J. P., Ibraghimov-Beskrovnaya O. Inhibition of Glucosylceramide Accumulation Results in Effective

30. Blockade of Polycystic Kidney Disease in Mouse Models // Nat Med. 2010. No. 16 (7). P. 788–792. DOI 10.1038/nm.2171.

31. Zhou J., Ouyang X., Schoeb T. R., Bolisetty S., Cui X., Mrug S. et al. Kidney Injury Accelerates Cystogenesis Via Pathways Modulated by Heme Oxygenase and Complement // J Am Soc Nephrol. 2012. No. 3 (7). P. 1161–1171.

32. Shi J., Qu Y. P., Hou P. Pathogenetic Mechanisms in Gastric Cancer // World J Gastroenterol. 2014. No. 20 (38). P. 13804–13819. DOI 10.3748/wjg. v20.i38.13804.

33. Андреева Э. Ф., Ларионова В. И., Савенкова Н. Д. Аутосомно-доминантный и аутосомно-рецессивный поликистоз почек // Нефрология. 2004. № 2 (8). C. 7–13.

34. Van de Laarschot L. F. M., Drenth J. P. H. Genetics and Mechanisms of Hepatic Cystogenesis // Biochim Biophys Acta Mol Basis Dis. 2018. No. 1864 (4 Pt. B). P. 1491–1497. DOI 10.1016/j.bbadis.2017.08.003.

35. Li X., Magenheimer B. S., Xia S., Johnson T., Wallace D. P., Calvet J. P. et al. A Tumor Necrosis Factor-alpha-mediated Pathway Promoting Autosomal Dominant Polycystic Kidney Disease // Nat Med. 2008. No. 14. P. 863–868.

36. DOI 10.1038/nm1783.

37. Wu Z., Wu H., Md S., Yu G., Habib S. L., Li B., Li J. Tsc1 Ablation in Prx1 and Osterix Lineages Causes Renal Cystogenesis in Mouse // Scientific Reports volume. 2019. No. 9 (837).DOI 10.1038/s41598-018-37139-9.

38. Onori P., Franchitto A., Mancinelli R., Carpino G., Alvaro D., Francis H., Alpini G., Gaudio E. Polycystic Liver Diseases // Dig Liver Dis. 2010. No. 42 (4). P. 261–271. DOI 10.1016/j. dld.2010.01.006.


Review

For citations:


Naumova L.A. CYSTOGENESIS: CELLULAR AND MOLECULAR MECHANISMS OF PATHO- AND MORPHOGENESIS. Vestnik SurGU. Meditsina. 2020;(1 (43)):59-65. (In Russ.) https://doi.org/10.34822/2304-9448-2020-1-59-65

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