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COMPARATIVE ASPECTS OF REGENERATIVE POTENCY OF SPHINCTER CERVICAL TISSUES IN RATS WITH CANALIS CERVICIS UTERI TRACTION UNDER EXPERIMENTAL CONDITIONS
Author(s) -
YuV V Grigoryeva,
Ю. В. Григорьева,
Г. Н. Суворова,
Г. Н. Суворова,
N A Renz,
Н. А. Ренц,
А В Бормотов,
А В Бормотов
Publication year - 2016
Publication title -
nauka i innovacii v medicine
Language(s) - English
Resource type - Journals
eISSN - 2618-754X
pISSN - 2500-1388
DOI - 10.35693/2500-1388-2016-0-1-31-35
Subject(s) - cervix , myocyte , regeneration (biology) , anatomy , pathology , lamina propria , syncytium , biology , medicine , chemistry , epithelium , microbiology and biotechnology , cell culture , cancer , genetics
Aim - to study the reparative regeneration processes after experimental gradual traction of cervix uteri in rats. Materials and methods. The object of the study is the cervix at the sphincter. We performed gradual traction of cervix uteri in 25 rats under aether anesthesia and gathered the samples.We analyzed the course of reparative regeneration and performed sampling after 1, 3, 5, 7, 10, 15, 21 and 30 days. We carried out complex morphological examination with optical and transmission electron microscopy, and immunohistochemistry. The immunohistochemical examination of cervical tissues was performed using a set of monoclonal antibodies to а-smooth muscle actin. Results. It was determined that cervical traction formed three distinguishable zones: the zone of damage, the periwound zone and the zone of morphological integrity. The zone of damage corresponds to the actual sphincter and the periwound zone - to pre- and postsphincteral compartments. Several myocytes undergo necrosis in the damage zone. There is no necrosis in the periwound area, but we found some abnormality of intercellular contacts due to the change of the morphology of intercellular substance. The experimental traction causes the development of local septic inflammation, affecting all the layers. The synthesis of fibrous connective tissue components starts in the proliferative phase. It leads to restructuring of histoarchitecture and disruption of the functional syncytium structure. Conclusion. Post-traumatic regeneration is performed by changing the phenotype of survived myocytes from mantle to mantle-synthetic myocytes with synthesis of the fiber component of the intercellular substance. Also, there is an incomplete mitosis in several myocytes, which leads to the formation of binuclear or polyploid cells.

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