Changes in Blood System Parameters in Mouse Modeling of Long-Term Hypokinesia
https://doi.org/10.33647/2074-5982-21-4-39-43
Abstract
In this study, we evaluate the main hematological parameters and subfractional composition of mouse blood serum when modeling long-term hypokinesia. Hypokinesia was induced by placing the animal in a special glass and its fixation by the tail for 14 days. Hematological parameters were determined by a hematological analyzer; the subfractional composition of the serum were studied by laser correlation spectroscopy. Following 14-day hypokinesia, mice showed a significant increase in the number of neutrophils and a decrease in the number of lymphocytes. A significant increase in the number of circulating erythrocytes was also detected. The subfractional composition of mouse blood serum after hypokinesia was distinguished by a significant increase in the contribution to light scattering of particles with a radius of 91.26 to 165.57 nm. Modeling long-term hypokinesia in laboratory animals is essential for developing approaches to the prevention and treatment of the consequences of decreased motor activity.
About the Authors
I. B. AlchinovaРоссия
Irina B. Alchinova, Cand. Sci. (Biol.)
125315, Moscow, Baltiyskaya Str., 8
M. V. Polyakova
Россия
Margarita V. Polyakova, Cand. Sci. (Biol.)
125315, Moscow, Baltiyskaya Str., 8
F. A. Sadovnikov
Россия
Fedor A. Sadovnikov
125315, Moscow, Baltiyskaya Str., 8
References
1. Ageeva V.A., Samusev R.P. Morfologicheskie osobennosti timusa rastushchego organizma v usloviyah dlitel'nogo immobilizacionnogo stressa [Morphological features of the thymus of a growing organism under conditions of prolonged immobilization stress]. Morfologicheskie vedomosti (prilozhenie) [Morphological statements (appendix)]. 2004;1–2:4–5. (In Russian)].
2. Alchinova I.B., Shoibonov B.B., Puchkova A.A., Karganov M.Yu. Aktivaciya sistemy komplementa i izmeneniya v soderzhanii modificirovannyh lipoproteinov pri antiortostaticheskoj gipokinezii u cheloveka i myshej [Activation of the complement system and changes in the content of modified lipoproteins during antiorthostatic hypokinesia in humans and mice]. Bulletin of Experimental Biology and Medicine. 2024;178(10):412–416. (In Russian)]. DOI: 10.47056/0365-9615-2024-178-10412-416.
3. Atkov O.Yu., Bednenko V.S. Gipokineziya, nevesomost': klinicheskie i fiziologicheskie aspekty [Hypokinesia, weightlessness: clinical and physiological aspects]. Moscow: Nauka Publ., 1989:304. (In Russian)].
4. Kamskova Yu.G. Izmenenie antioksidantnogo statusa i urovnya POL v krovi i pecheni v dinamike 30-sutochnoj gipokinezii [Changes in antioxidant status and LPO level in blood and liver in the dyna- mics of 30-day hypokinesia]. Bulletin of Experimental Biology and Medicine. 2001;132(10):387–389. (In Russian)].
5. Dumaeva Z.N., Yuldasheva G.A., Olimova M.Sh., Sirojiddinova S.M., and Dumaeva M.Sh. Origin of hypokinesia and general impact on the human body. Eura. Scie. Hera. 2022;8:1–11.
6. Karganov M., Alchinova I., Arkhipova E., Skalny A.V. Laser Correlation Spectroscopy: Nutritional, Ecological and Toxic Aspects. Ed. by A.N. Misra. Biophysics. 2012:1–16. DOI: 10.5772/35254.
7. https://www.dissercat.com/content/vliyanie-dlitelnoi-gipokinezii-na-soderzhanie-lipidnykh-metabolitov-v-krovi-i-uroven-ikh-per
8. https://cyberleninka.ru/article/n/mehanizmy-adaptatsii-organizma-pri-gipokinezii
Review
For citations:
Alchinova I.B., Polyakova M.V., Sadovnikov F.A. Changes in Blood System Parameters in Mouse Modeling of Long-Term Hypokinesia. Journal Biomed. 2025;21(4):39-43. (In Russ.) https://doi.org/10.33647/2074-5982-21-4-39-43
JATS XML



























