Preview

Regional blood circulation and microcirculation

Advanced search

The coagulation hemostasis dynamics in rats in the post-ischemic time

https://doi.org/10.24884/1682-6655-2018-17-4-62-68

Abstract

Introduction. Ischemic injury to the endothelium influences on a coagulation hemostasis, worsening hemodynamics of cerebral microcirculation as a result of rheological occlusion. The long-term post-ischemic blood clotting system changes are not studied well by now.

The work purpose – to study a coagulation hemostasis and endothelial prostacyclin – synthetic activity of pial vessels within 21 days after single short-term transient cerebral ischemia in rat.

Material and Methods. Ischemia was reproduced by means of 12-minute time occlusion of both carotids with the simultaneous arterial hypotension. Post-ischemic changes were investigated in 4 groups of rats: on the 3rd, 7th, 14th and 21st day after ischemia. The state of blood clotting system was estimated on time of clot formation in the blood plasma by an automatic optical method with use of screening tests of definition of prothrombin and thrombin clotting time and concentration of fibrinogen. Endothelial prostacyclin – synthetic activity was estimated by pial vessel reaction to indometacin.

Results. On the 3rd day after ischemia the increase in prothrombin time was observed. Level of fibrinogen increased on the 3rd and the 14th days of the post-ischemic time. On the 21st day after ischemia thrombin time decreased. The inverse correlation of pial vessel endothelial prostacyclin – synthetic activity with the fibrinogen level and direct correlation with vessel cross-sectional area of these vessels is established.

Conclusions. Short-time global cerebral ischemia causes changes of blood clotting system mechanisms lasting for 21 days of the post-ischemic time. Post-ischemic abnormalities in hemostasis system are connected with changes in endothelial prostacyclin – synthetic activity of cerebral vessels that, along with decreased anti-aggregation ability of vascular system, is also the reason of narrowing of the lumen in pial vessels. 

About the Authors

O. P. Gorshkova
Federal State Budgetary Institution of Science «Pavlov Institute of Physiology» of Russian Academy of Sciences
Russian Federation

Senior Researcher,

199034, St. Petersburg, Makarova Emb., 6



V. N. Shuvaeva
Federal State Budgetary Institution of Science «Pavlov Institute of Physiology» of Russian Academy of Sciences
Russian Federation

Senior Researcher,

199034, St. Petersburg, Makarova Emb., 6



D. P. Dvoretskij
Pavlov Institute of Physiology, Russian Academy of Sciences (IF RAS), Laboratory of Physiology of the Cardiovascular and Lymphatic Systems
Russian Federation

Chief Researcher,

 



References

1. Krivokhizhina LV, Davydova EV, Al’tman DSh, ZurochkaAV, ErmolaevaEN. Cerebral’nye mikrocirkulyatornye rasstrojstva I pokazateli gemostaza y veteranov Afganistana s raznymi formami khronicheskoj ishemii mozga. Omsk scientific bulletin. 2013;1(118):65–67. (In Russ.).

2. Tanashyan ММ, Ionova VG. Malye ishemicheskie insul’ty: gemoreologiya, gemostaz. Zhurnal nevrologii i psikhiatrii imeni S. S. Korsakova. (Prilozhenie «Insul’t»). 2003;9:138–141. (In Russ.].

3. Shutov AA, Bajdina TV, Agafonov AV. Disfunkciya endoteliya u bol’nykh s ishemicheskim insul’tom. Zhurnal nevrologii i psikhiatrii. 2005;14:42–45. (In Russ.).

4. Armaganian L, Kam G, Eisenberg PR, Schechtman KB, Abendschein DR. Role of tissue factor-mediated coagulation in ischemia reperfusion-induced injury of Langendorf-perfosed rabbit hearts. Coron. Artery Dis. 2000;11(6):481–487. (In Russ.)]. Doi: 10.1097/00019501-200009000-00006.

5. Babichev AV. Rol’ endoteliya v mekhanizmakh gemostaza. Pediatrics. 2013;4(1):122–127. (In Russ.). Doi: 10.17816/ped41122-127.

6. Vasina LV, Petrishсрev NN, Vlasov TD. Endotelial’naya disfunkciya i ee osnovnye marker. Regional hemodynamics and mikrocirkulation. 2017;16(1):4–15. (In Russ.). Doi: 10.17513/spno.2015.5.

7. Voronkov AV, Pozdnyakov DI, Mamleev AV. Izuchenie vazodilatiruushchej i antitromboticheskoj funkcii endoteliya sosudov golovnogo mozga krys na razlichnykh modelyakh ego ishemicheskogo povrezhdeniya. Modern problems of science and education. 2015; 5. Available at: https:// science-education.ru/ru/article/view?id=22406 (accesssed 02.10.2018). (In Russ.). Doi: 10.17513/spno.2015.5.

8. Glagoleva TI, Medvedev IN. Vyrazhennost’ antiagregacionnykh vliyanij sosudistoj stenki na trombocity u novorozhdennykh telyat s deficitom zheleza na fone metabolicheski znachimogo vozdeistvia. Modern problems of science and education. 2013;2. Available at: https://www.science-education.ru/108–9043 (accessed 23.09.2018). Doi: 10.17513/spno.2013.2.

9. Cooper D, Chitman KD, Williams MC, Granger DN. Time-dependent platelet-vessel wall interactions induced by intestinal ischemia-reperfusion. Am. J. Physiol. Gastrointest. Liver Physiol. 2003;284:G1027–G1033. Doi: 10.1152/ajpgi. 00457.2002.

10. Forstermann U. Biochemistry and molecular biology of nitric oxide synthases. Arzeimittelforschung. 1994;Bd. 44:402–407. Doi: 10.1016/b978-012721985-1/50004-6.

11. Gorshkova OP, Lentsman MV, Artem’eva AI, Dvoretsky DP. Dinamika izmeneniya reaknivnosti pial’nyh sosudov posle kratkovremennoi ishemii golovnogo mozga. Regional hemodynamics and mikrocirkulation. 2015;14(1(53)):74–78. (In Russ.).

12. Davidge ST. Prostaglandin H synthase and vascular function. Circ Res. 2001;89(8):650–660. Doi: 10.1161/hh2001.098351.

13. ShuvaevaVN, KostylevAV, Lin’kova NS, Gorshkova OP. Vliyanie He-Ne-lasernogo izlutcheniya niskoi moshchnosti na adrenoreaktivnost’ pial’nyh arterial’nyh sosudov I deformiruemost’ eritrotsitov u krys. Regional hemodynamics and mikrocirkulation. 2008;7(1(25)):31–37. (In Russ.).

14. Barsukov VU, Chesnokova NP, Plokhov VN. Sostoyanie koagulyacionnogo gemostaza i fibrinoliza u bol’nykh uzlovoj formoj raka molochnoi zhelezy v dinamike opukholevoj progressii. Fundamental research. 2009;4:7–11. Available at: https://www.fundamentalresearch.ru/pdf/2009/4/1.pdf (accessed 03.09.2018).

15. Kashkin VA, Steklova AP, Abrashova TV, Makarova MN, Makarov VG. Osobennosti sostoyaniya gemostaza u krys. International bulletin of Veterinary Medicine. 2013;4:88–93. (In Russ.). Doi: 10.17238/issn2072-2419.

16. Shcherbak NS, Bel’tyukov PP, Ovchinnikov DA, Kuz’menkov AN, Gordeeva MS, Galagudza MM, Barantsevich ER, Shlyahto EV. Vliyanie ishemicheskogo postkondicionirovaniya na aktivnost’ C3 komponenta pri ishemicheskom i reperfuzionnom povrezhdenii golovnogo mozga. The Scientific Notes of the I. P. Pavlov St. Petersburg State Medical University. 2012;19(3):29–32. (In Russ.).

17. Kawabori M, Yenari MA. Inflamatori responses in brain ischemia. Curr. Med Chem. 2015;22(10):1258–1277. Doi: 10. 2174/0929867322666150209154036.

18. Zoppo G, Ginis I, Hallenberck JM, Iadekola C, Wang X, Feuerstein GZ. Inflamation and stroke: putative role for cytokines, adhesion molecules and iNOS in brain response to ischemia. Brain Pathology. 2006;10:95–112. Doi: 10.1111/j.1750-3639.2000.tb00247.x.

19. Bredikhin AV, Chekha OA, Bredikhin KA, Rad’ko II, Lyashko VN. K voprosu korrekcii giperfibrinemii pri ishemicheskom insul’te (klinicheskij sluchaj). The Journal of Neuroscience of B. M. Mankovsky. 2014;2(1);36–38. (In Russ.).

20. Gafarova ME, Domashenko MA, Korobkova DZ, Maksimova MYu, Loskutnikov MN, Shabalina AA, Kostyreva MV, Konovalov RN. Gemoreologiya i gemostaz u pacientov s ishemicheskim insul’tom pri provedenii tromboliticheskoi terapii. Annaly nevrologii. 2015;9(1):4–10. (In Russ.).

21. Rojtman EV, Firsov NN, Dement’eva MG. Terminy, ponyatiya i podkhody k issledovaniu reologii krovi. Tromboz, gemostaz i Reologia. 2000;33:5–12. (In Russ.).

22. Dolgov VV, Svirin PV. Laboratornaya diagnostika narushenij gemostaza. KLD. М., 2005. 227 p. (In Russ.).

23. Jespersen J, Bertina RM, Haverkate F. Laboratory techniques in thrombosis. A Manual Dordrecht: Kluwer Academic Publishers BV. 1999:308. Doi: 10.1007/978-94-011-4722-4.

24. Maksimovich NE. Rol’ oksida azota nejronal’nogo i extranejronal’nogo proiskhozhdeniya v povrezhdenii endoteliya i formirovanii ego disfunkcii pri ishemii reperfuzii golovnogo mozga u krys. Regional hemodynamics and mikrocirkulation. 2004;3:63–68. (In Russ.).

25. Vasilevskaya LA, Nechipurenko NI, Pashkovskaya ID. Funkcional’noe sostoyanie endoteliya i ocenka tkanevoj gipoksii na momentrazvitiya u pacientov tranzitornoi ishemicheskoi ataki. Regional hemodynamics and mikrocirkulation. 2018;17(2):30–36. (In Russ.).

26. Golino P, Ragni M, Cirillo P, Avvedimento VE, Feliciello A, Esposito N, Scognamiglio A, Trimarco B, Iaccarino G, Condorelli M, Chiariello M, Ambrosio G. Effects of tissue factor induced by oxygen free radicals on coronary flow during reperfusion. Nat Med. 1996;2(1):35–40. Doi: 10.1038/nm0196-35.

27. Prostaglandins and related substances / PaceAsciak C., Granstrom E. (eds.). Amsterdam: Elsevier Science Publishers B. V. 1983:229. Doi: 10.1016/s0167-7306(08)60539-6.

28. Warner TD, Giuliano F, Vojnovic I, Bukasa A, Mitchell JA, Vane JR. Nonsteroid drug selectivies for cyclo-oxygenase-1 rather than cyclo-oxygenase-2 are associated with human gastrointestinal toxicity: A full in vitro analysis. Proc. Nat. Acad. Sci. USA. 1999;96:7563–7568. Doi: 10.1073/pnas.96.13.7563.

29. Totolyan AA, Freidlin IS. Kletki immunnoi sistemy. SPb.: Nauka, 2000:231. (In Russ.).

30. Tanashyan ММ, Lagoda OV. Profilaktika ishemicheskogo insul’ta u bol’nyh s aterotrombosom. Medical Journal of the Russian Federation. 2014;22:1600. Available at: https://www.rmj.ru/articles/nevrologiya/Profilaktika ishemicheskogo insulyta u bolynyh s aterotrombozom. (In Russ.).


Review

For citations:


Gorshkova O.P., Shuvaeva V.N., Dvoretskij D.P. The coagulation hemostasis dynamics in rats in the post-ischemic time. Regional blood circulation and microcirculation. 2018;17(4):62-68. (In Russ.) https://doi.org/10.24884/1682-6655-2018-17-4-62-68

Views: 1154


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1682-6655 (Print)
ISSN 2712-9756 (Online)