EXPERIMENTAL STUDY OF THE EFFECT OF SALPINGECTOMY ON REDOX PROCESSES AND THE DEVELOPMENT OF INFLAMMATION IN THE OVARIES OF SEXUALLY MATURE FEMALE RATS
DOI:
https://doi.org/10.11603/24116-4944.2025.1.15410Keywords:
rats, salpingectomy; ovary, redox processes, inflammation, superoxide dismutase, catalase, malondialdehyde, acid phosphataseAbstract
The aim of the study – to experimentally determine the effect of salpingectomy on the activity of inflammation, free radical oxidation and antioxidant protection in the ovaries of sexually mature female rats.
Materials and Methods. The experiment included 25 female white Wistar rats aged 4 months. Female rats were randomly divided into five experimental groups. Two groups of 5 intact rats aged 4 months and 7 months, 10 rats that had one fallopian tube removed at the age of 4 months, and 5 rats that had 2 tubes removed at the age of 4 months. Ovaries were removed from intact animals aged 4 and 7 months, as well as from 15 rats with salpingectomy 3 months after the operation. The removed ovaries were homogenized, centrifuged at the rate of 20 mg of tissue per 1 ml of 0.05M Tris-HCl buffer pH 7.5. The content of malondialdehyde, the activity of superoxide dismutase, catalase and acid phosphatase were determined in the supernatant.
Results and Discussion. It was established that age-related changes in the metabolic properties of rat ovaries are characterized by a decrease in the activity of the antioxidant defense system. Three months after unilateral salpingectomy, accumulation of free radical oxidation products and active inflammatory processes were observed in the ovaries on the side of removal of the fallopian tube and in the contralateral ovaries, which were more intense in the ovaries on the side of removal of the fallopian tube. Bilateral salpingectomy, compared with unilateral, led to a greater decrease in the activity of superoxide dismutase and more pronounced inflammatory processes in the tissues of the adjacent ovaries.
Conclusions. Both unilateral and bilateral salpingectomy lead to the development of inflammation and imbalance of free radical oxidation and antioxidant defense systems in the ovaries of sexually mature female rats, which are expected to be more pronounced with bilateral salpingectomy. The development of inflammation is indicated by an increase in the activity of the lysosomal enzyme acid phosphatase in ovarian homogenates. Oxidative stress is manifested by the accumulation of malondialdehyde in ovarian tissue against the background of depletion of superoxide dismutase activity and preservation of catalase activity.
References
Zhang, Y., Sun, Y., Guo, Y., Li, T. C., & Duan, H. (2015). Salpingectomy and proximal tubal occlusion for hydrosalpinx prior to in vitro fertilization: a meta-analysis of randomized controlled trials. Obstetrical & gynecological survey, 70(1), 33–38. DOI: 10.1097/OGX.0000000000000139. DOI: https://doi.org/10.1097/OGX.0000000000000139
Tjahyadi, D., Udayana, I.S., Nisa, A.S., Rachmawati, A., & Djuwantono, T. (2024). Comparison of salpingectomy and tubal occlusion for hydrosalpinx in in-vitro fertilization outcome. Annals of medicine and surgery (2012), 86(2), 886–890. DOI: 10.1097/MS9.0000000000001548. DOI: https://doi.org/10.1097/MS9.0000000000001548
Pereira, N., Pryor, K.P., Voskuilen-Gonzalez, A., Lekovich, J.P., Elias, R.T., Spandorfer, S.D., & Rosenwaks, Z. (2017). Ovarian Response and in Vitro Fertilization Outcomes After Salpingectomy: Does Salpingectomy Indication Matter? Journal of minimally invasive gynecology, 24(3), 446–454.e1. DOI: 10.1016/j.jmig.2016.12.023. DOI: https://doi.org/10.1016/j.jmig.2016.12.023
Daniilidis, A., Nisolle, M., Papandreou, P., Gordts, S., Krentel, H., & Pados, G. (2020). A European survey on treatment of hydrosalpinges in infertile women on behalf of the European Society for Gynaecological Endoscopy (ESGE) Special Interest Group (SIG) on Reproductive Surgery. Facts, views & vision in ObGyn, 12(3), 241–244.
Reitz, L., Balaya, V., Pache, B., Feki, A., Le Conte, G., Benammar, A., & Ayoubi, J.M. (2023). Ovarian Follicular Response Is Altered by Salpingectomy in Assisted Reproductive Technology: A Pre- and Postoperative Case-Control Study. Journal of clinical medicine, 12(15), 4942. DOI: 10.3390/jcm12154942. DOI: https://doi.org/10.3390/jcm12154942
Ho, C.Y., Chang, Y.Y., Lin, Y.H., & Chen, M.J. (2022). Prior salpingectomy impairs the retrieved oocyte number in in vitro fertilization cycles of women under 35 years old without optimal ovarian reserve. PloS one, 17(5), e0268021. DOI: 10.1371/journal.pone.0268021. DOI: https://doi.org/10.1371/journal.pone.0268021
Atilgan, R., Kuloğlu, T., Boztosun, A., Orak, U., Baspinar, M., Can, B., & Sapmaz, E. (2015). Investigation of the effects of unilateral total salpingectomy on ovarian proliferating cell nuclear antigen and follicular reserve: experimental study. European journal of obstetrics, gynecology, and reproductive biology, 188, 56–60. DOI: 10.1016/j.ejogrb.2015.02.028. DOI: https://doi.org/10.1016/j.ejogrb.2015.02.028
Ergün, Yu., Üremiş, M., Kılınç, M., & Alıcı, T. (2016). Antioxidant effect of Legalon(r) SIL in ischemiareperfusion injury of rat skeletal muscle. Acta Cirurgica Brasileira, 31(4), 264–270. DOI: 10.1590/S0102-865020160040000007. DOI: https://doi.org/10.1590/S0102-865020160040000007
Volotovska, N.V., Zarichna, O.Y., & Kuzmak, I.P. (2019). Catalase and superoxide dismutase activity in experimental limb ischemia-reperfusion. Hospital Surgery. Journal named after L. Ya. Kovalchuk, (2), 53–59. DOI: 10.11603/2414-4533.2019.2.10418. DOI: https://doi.org/10.11603/2414-4533.2019.2.10418
Iermolenko, T., Shapoval, O., & Krivoshapkа, A. (2020). Activity of antioxidant defense enzymes in the blood as a marker of nephroprotective action of sodium salt of poly-(2,5-dihydrophenylene)-4-thiosulfonic acid. Current problems of modern medicine: Bulletin of the Ukrainian Medical Stomatological Academy, 20(1), 18–22. DOI: 10.31718/2077-1096.20.1.1815. DOI: https://doi.org/10.31718/2077-1096.20.1.18
Borzykh, O., Lavrenko, A., Selikhova, L., Digtyar, N., Gerasimenko, N., Avramenko, Y., Belan, O., Кolomiets, G., Mormol, I., & Kaidashev, I. (2020). Modern aspects of free radical pathology (literature review and own research). Current problems of modern medicine: Bulletin of the Ukrainian Medical Stomatological Academy, 20(1), 4–8. DOI: 10.31718/2077-1096.20.1.4. DOI: https://doi.org/10.31718/2077-1096.20.1.4
Tsymbalyuk, G.Yu. (2018). Dynamics of changes in the antioxidant-prooxidant system in kidney tissues during abdominal trauma against the background of hypovolemic shock and ischemia-reperfusion syndrome Hospital Surgery. Journal named after L. Ya. Kovlchuk, 3: 63–69. DOI: 10.11603/2414-4533.2018.3.8898. DOI: https://doi.org/10.11603/2414-4533.2018.3.8898
Kashchak, T.V., Hudyma, A.A. (2018). Intensity of lipid peroxidation processes and the level of inflammatory markers in the late period of combined trauma in the experiment. Hospital Surgery. Journal named after L. Ya. Kovalchuk, 4, 62–78. DOI: 10.11603/2414-4533.2018.4.9715. DOI: https://doi.org/10.11603/2414-4533.2018.4.9715
European convention for the protection of vertebrale animals used for experimental and other scientific purposes (1986). Strasburg. Council of Europe, 123, 51. Available from: https://rm.coe.int/168007a67b.
Nakaz Ukrayiny No 249 vid 01.03.2012 “Pro zatverdzhennya Poryadku provedennya naukovykh ustanov doslidnykiv i doslidnykiv na tvarynakh»” [Order of Ukraine No. 249 of 01.03.2012 “On approval of the Procedure for conducting experiments and experiments on animals by scientific institutions”]. Ministerstvo osvity i nauky, molodi ta sportu Ukrayiny [Ministry of Education and Science, Youth and Sports of Ukraine]. Available from: https://ips.ligazakon.net/document/re20729?an=52.
Makarenko, O.A. et al. (2022). Metody doslidzhennya stanu kyshechnyku ta kistok u laboratornykh shchuriv: dovidnyk [Methods of research of the condition of the intestines and bones in laboratory rats: handbook]. Odesa: S. L. Nazarchuk.
Lankin, V.Z., Tikhaze, A.K., & Melkumyants, A.M. (2022). Malondialdehyde as an Important Key Factor of Molecular Mechanisms of Vascular Wall Damage under Heart Diseases Development. International journal of molecular sciences, 24(1), 128. DOI: 10.3390/ijms24010128. DOI: https://doi.org/10.3390/ijms24010128
Takhtfooladi, H.A, Takhtfooladi, H.A. (2019). Effect of curcumine on lung injury induced by skeletal muscle ischemia/ reperfusion in rats. Ulus Travma Acil. Derg., 25 (1), 7–11. DOI: 10.5505/tjtes.2018.83616 PMid:30742297. DOI: https://doi.org/10.5505/tjtes.2018.83616
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