Preview

Regional blood circulation and microcirculation

Advanced search

Impact of food load test on microcirculation parameters in the liver of rats of different gender and age

https://doi.org/10.24884/1682-6655-2022-21-1-71-77

Abstract

Introduction. One of the promising directions of studying liver microcirculation is searching for age-related features of its hemodynamics and early markers of pathological changes. Objective – to study the parameters of microcirculation in the liver of animals of different sex and age during a load test. Materials and methods. The study was conducted on 60 mongrel rats of both sexes weighing 120–270 g, divided into three age groups. The first group included 20 rats aged 1 month, the second – 20 rats aged 6–12 months and the third – 20 rats aged more than 18–24 months. The study of microcirculation was performed using a laser Doppler flowmeter LAKK-02 (Russia) under zoletil-xylazine anesthesia. Then, the rats were injected per os with mixture for enteral nutrition Nutridrink (Nutricia) in a ratio of 5 mg/kg of body weight. After 15 minutes the microcirculation parameters were determined again. Digital data were processed by methods of variation statistics. Results. In the liver of rats, the basic parameters of microcirculation were slightly higher in females compared to males: by 8.22 % (R=0.31) in the I, by 8.66 % (R= 0.05) in the II and by 1.19 % (R=0.48) in the III age group. With an increase in the age of the animals, the microcirculation indicators decreased. After the load test, an increase in microcirculation indexes was noted in the liver of rats in all age groups: by 45.13 % (R=0.82) in the I, by 27.99 % (R=0.64) in the II and by 15.88 % (R=0.91) in the III age group. Conclusion. There was no statistically significant dependence of the parameters of microcirculation in the liver of rats on the sex of the animals. With an increase in the rat’s age, the microcirculation rates decreased. After a food load test in the liver of rats, a statistically significant increase of the parameters of microcirculation was noted in all age groups. With an increase in the age of animals, the increase in microcirculation rates after a food load test significantly decreased.

About the Authors

I. V. Andreeva
Ryazan State Medical University named after Academician I. P. Pavlov
Russian Federation

Andreeva Irina V. – Doctor of Medical Sciences, Professor,
Professor of the Department of Urology with a course of surgical diseases

7, Vysokovoltnaya str., Ryazan, 390026



A. A. Vinogradov
Ryazan State Medical University named after Academician I. P. Pavlov
Russian Federation

Vinogradov Alexander A. – Doctor of Medical Sciences, Professor, Professor of the Department of Anatomy

7, Vysokovoltnaya str., Ryazan, 390026



V. D. Telia
Ryazan State Medical University named after Academician I. P. Pavlov
Russian Federation

Teliya Vladimir D. – Graduate student of the Department of
Physiology

7, Vysokovoltnaya str., Ryazan, 390026



R. Yu. Simakov
Ryazan State Medical University named after Academician I. P. Pavlov
Russian Federation

Simakov Roman Yu. – Graduate student of the Department
of Physiology

7, Vysokovoltnaya str., Ryazan, 390026



References

1. Andreeva IV, Vinogradov AA, Zhestkova TM, Kalina NV, Simakov RYu, Simakova ES, Grigoriev AS, Svyativoda RV. A comparative analysis of the experimental parameters of transcutaneous oxygen tension with the microcirculation parameters // Yakut medical journal. 2019;65(1):14–16. (In Russ.). Doi: 10.25789/YMJ.2019.65.04.

2. Andreeva IV, Vinogradov AA, Zhestkova TM, Kalina NV, Simakov RYu, Simakova ES, Grigoriev AS, Svyativoda RV. Modern options of hemodynamics studies in experimental researches. Far Eastern Medical Journal. 2019;2:54–58. (In Russ.). Doi: 10.35177/1994-5191-2019-1-54-58.

3. Andreeva IV, Vinogradov AA. The perspectives of usage of modern visualization methods in morphological and experimental researches // Nauka molodyh. 2015;4:59–69. (In Russ.).

4. Pokrovskiy AV, Goloviuk AP. What changes in treatmenf of vascular patients (role of statins and beta-adrenoblockers). Angiology and vascular surgery. 2010;2(16):7–12. (In Russ.).

5. Kashyap VS, Gilani R, Bena JF, Bannazadeh M, Sarac TP. Endovascular therapy for acute limb ischemia // J. Vasc. Surg. 2011;(53):340–346. Doi: 10.1016/j.jvs.2010.08.064.

6. Kozlov VI, Korsi LV, Sokolov VG. Analiz fliuktuatsiy kapillyarnogo krovotoka u cheloveka metodom lazernoy dopplerovskoy floumetrii // Primenenie lazernoy dopplerovskoy floumetrii v meditsinskoy praktike: Materialy I Vserossiyskogo simpoziuma. Moscow. 1996:38–47. (In Russ.).

7. Lazernaya dopplerovskaya floumetriya mikrotsirkulyatsii krovi. / pod red. Krupatkin AI, Sidorov VV. Moscow, Medicine, 2005;256. (In Russ.).

8. Rogatkin DA. Fizicheskie osnovy sovremennyh opticheskih metodov issledovaniya mikrogemodinamiki in vivo // Medical physics. 2017;(4):75–93. (In Russ.).

9. Sukharev II, Radzikhovskiy AP, Guch AA. Regionarnaya gemodinamika i mikrotsirkulyatsiya pri patologii sosudov nizhnih konechnostey. Kiev, Feniks, 2000:40.

10. Kozlov VI, Sakharov VN, Gurova OA, Sidorov VV. Laser doppler flowmetry assessment of microcirculation in children of 6–7 years old // Regional hemodynamics and microcirculation. 2021;20(3):46–53. (In Russ.). Doi: 10.24884/1682-6655-2021-20-3-46-53.

11. Козлов В. И. Развитие системы микроциркуляции. М.: Изд-во РУДН, 2012. [Kozlov VI. Razvitie sistemy mikrotsirkulatsii. Мoscow, RUDN Publ., 2012. (In Russ.)].

12. Dremin V, Kozlov I, Volkov M, Margaryants N, Potemkin A, Zherebtsov E, Dunaev A, Gurov I. Dynamic evaluation of blood flow microcirculation by combined use of the laser Doppler flowmetry and high-speed videocapillaroscopy methods // J. Biophotonics. 2019;12(6): E201800317. Doi: 10.1002/jbio.201800317.

13. Eipel C, Abshagen K, Vollmar B. Regulation of hepatic blood flow: the hepatic arterial buffer response revisited // World Journal of Gastroenterology. 2010;16(48):6046–6057. Doi: 10.3748/wjg.v16.i48.6046.

14. Lautt WW. Regulatory process interacting to maintain hepatic blood flow constancy: vascular compliance, hepatic arterial buffer response, hepatorenal reflex, liver regeneration, escape from vasoconstriction // Hepatol. Res.2007;(37): 891–903.

15. Farell GC, Teon NC, McCuskey RS. Hepatic microcirculation in fatty liver disease // The anatomical record. 2008;(291):684–692. Doi:10.1111/j.1872-034x.2007.00148.x.

16. Bel’skih AN, Pyatchenkov MO, Tyrenko VV, Bologov SG, Tishko VV. Dinamika pokazateley regionarnoy gemodinamiki I mikrososudistoy reaktivnosti na fone ispol’zovaniya modifitsirovannyh metodov ekstrakorporal’noy gemokorrektsii u bol’nyh podagroy // Metody issledovaniya microtsirkulyatsii v klinike: sbornik nauchnyh trudov nauchnoprakticheskoy konferentsii. Pod red. Prof. Petrishchev NN. SPb., SP Minimacs, 2014:41–54. (In Russ.).

17. Eleftheriadis E, Kotzampassi K, Iliadis S. Hepatic tissue microcirculation, oxygenation and energy charge in ischemia-reperfusion subjected cirrhotic rat liver // Hepatogastroenterology. 1997,44(16):1187–1192. Doi: 10.1016/j. hepres.1997.04.002.

18. Nakata M, Nakamura K, Koda Y. Hemodynamics in the microvasculature of thioacetamide-induced cirrhotic rat livers // Hepatogastroenterology. 2002,49(45):652–656.

19. Sukovatykh BS, Feyziev EE, Sukovatykh MB. Influence of autologous bone marrow fraction and simvastatin on microcirculation of leg mus.cles in experimental critical ischemia of the lower limbs. Regional blood circulation and microcirculation. 2021;20(2):65–67. (In Russ.). Doi:10.24884/1682-6655-2021-20-2-65-69.

20. Kozlov VI, Azizov GA, Gurova OA, Litvin FB. Lazernaya dopplerovskaya floumetriya v otsenke sostoyaniya i rasstroystv mikrotsirkulyatsii krovi. Moscow, Edition of RUDN. 2012:32. (In Russ.).

21. Intaglietta M. Capillary flowmotion and vasomotion // J. Microcirculation. 1994;14(1):3.

22. Tikhonova IV. Age-dependent changes of oscillation processes of human skin microcirculation in normal and vascular pathologies // Regional blood circulation and microcirculation. 2018;17(3):42–57. (In Russ.).

23. Dolgova EV, Fedorovich AA, Martynyuk TM, Rogoza AN, Chazova IE. The state of the microcirculation of the skin in patients with pulmonary hypertension due to congenital heart defects // Regional blood circulation and microcirculation. 2018;17(3):65–70. (In Russ.). Doi: 10.24884/1682-6655-2018-17-3-65-70.


Review

For citations:


Andreeva I.V., Vinogradov A.A., Telia V.D., Simakov R.Yu. Impact of food load test on microcirculation parameters in the liver of rats of different gender and age. Regional blood circulation and microcirculation. 2022;21(1):71-77. (In Russ.) https://doi.org/10.24884/1682-6655-2022-21-1-71-77

Views: 534


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


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