scholarly journals ESTIMATION AND ASSESSMENT OF CYTOGENETIC CHANGES IN BONE MARROW CELLS OF LABORATORY ANIMALS RECEIVED A GENE-MODIFIED PRODUCT

2021 ◽  
Vol 2 (1) ◽  
Author(s):  
N.A. Nuraliev ◽  
A.Kh. Allanazarov
2021 ◽  
Vol 58 (2) ◽  
pp. 4988-4995
Author(s):  
N.A.Nuraliyev, A.Kh.Allanazarov, M.S.Gildiyeva, D.R.Sobirova

The aim was to study cytogenetic changes in bone marrow cells of laboratory animals that received and did not receive a genetically modified (GM) product (GM-soy) in a comparative aspect. It was found that in the group of white outbred rats that received GM-soy, cytogenetic changes were found in the cells of the red bone marrow, expressed in partial inhibition of cell proliferation due to the cytotoxic effect. They also had polyploidy (5.35%) and aneuploidy (5.35%) in 10.7% of cases. In addition, this group contained cells with mitotic pathology - chromosome scattering, chromosome pulverization, impaired spiralization and despiralization of chromosomes, premature spiralization of chromosomes, delayed mitosis at the prophase stage. In the group of animals that did not receive soy with and without GM in the cells, there were metaphase plates with a normal karyotype. The mitotic activity of bone marrow cells in the control group was higher (MI - 9%) than in the first (MI - 3%) and the second group (MI - 5%).  


1981 ◽  
Vol 194 (3) ◽  
pp. 789-796 ◽  
Author(s):  
F L Harrison ◽  
T M Beswick ◽  
C J Chesterton

The separation of haemopoietic bone-marrow cells by centrifugation through discontinuous density gradients of Percoll is described. This method was used to prepare fractions enriched in erythroblasts, myeloid blast cells or reticulocytes from bone marrow of anaemic and non-anaemic rabbits, from the marrow of other anaemic laboratory animals and from human samples. It is a simple, rapid, reproducible and inexpensive technique that can be readily adapted to suit individual requirements. Secondly, a convenient method is presented for the separation of large quantities of bone-marrow cells into fractions enriched in erythroblasts at different stages of maturation, by velocity sedimentation through a linear gradient of 1-2% sucrose at unit gravity. In vitro, erythroblasts adhere together strongly via a mechanism almost certainly involving a beta-galactoside-specific surface lectin termed erythroid developmental agglutinin. Since the efficiency of cell-separation techniques depends heavily on the maintenance of a single cell suspension in which each unit can move independently, the presence of an adhesive molecule at the cell surface is of considerable significance. The effect of washing the marrow with a lactose-containing medium, which has been shown to remove the agglutinin, was therefore investigated in relation to both methods. The separation on Percoll gradients is considerably enhanced by this treatment. In addition, the unit-gravity sedimentation gradient can be loaded with 5-10 times more cells after lactose extraction in comparison with intact marrow. Although enrichment is less, a useful fractionation according to maturation is still obtained.


2021 ◽  
Author(s):  
N.A. Mikheeva ◽  
E.P. Drozhdina ◽  
N.A. Kurnosova

The effect of the synthetic PSMA peptide on dividing cells of laboratory animals was studied. The experiment was carried out on male white laboratory mice of the BALB/c-line. The toxic effect of PSMA peptidi was evaluated at therapeutic (1.4 μg / kg of animal weight or 0.04 μg / animal) and subtoxic (140 μg / kg of animal weight or 4.0 μg / animal) doses. The cytotoxic effect of PSMA peptide on red bone marrow cells and cambial intestinal cells of the of laboratory mice was determined. A decrease in the proliferative activity of the colon crypt cells was revealed upon administration of a subtoxic dose of the PSMA peptide and there were no signs of toxic damage to the red bone marrow cells of animals. Key words: toxicity, proliferation, synthetic peptides, mitotic index, micronucleus test.


2006 ◽  
Vol 54 (S 1) ◽  
Author(s):  
C Stamm ◽  
YH Choi ◽  
A Liebold ◽  
HD Kleine ◽  
S Dunkelmann ◽  
...  

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