1.Peripheral blood differential count of white blood cells in blood donor
Tsendsuren S ; Gansukh Ch ; Khongorzul T ; Enkhsaikhan L ; Erdenebayar N ; Nyambayar D ; Tsogtsaikhan S ;
Mongolian Medical Sciences 2020;193(3):3-10
Background:
Establishment of quantitative reference intervals of white blood cells and its subpopulations using
a high accuracy analytic system is essential for clinical medicine, public health, and anthropology.
We are unable to identify peer-reviewed literature sources describing white blood cell counts and
their subpopulations using monoclonal antibodies to specific surface antigens in healthy Mongolians.
This study aimed to measure the counts of white blood cells and their subpopulations in healthy
Mongolians using flowcytometry.
Materials and Methods:
The absolute number (cell/L) of leukocytes (CD45+), granulocytes, monocytes and lymphocytes were
measured by Magnetic Activated Cell Sorting Assay (MACSQuant Analyzer 10) in 287 blood donors
(158 males and 129 females) 17-64 years of age (mean age 33.1±12.4). Peripheral blood samples
were collected at the time of blood donation at the National Center for Transfusion Medicine.
Results
The mean values of leukocytes and granulocytes were lower in donors over 30 years of age (ANOVA:
F=4.408, p=0.002 and F=5.685, p=0.001) and regression analysis demonstrated indirect correlation
between counts of these cells and age of donors (r= - 0.198, p=0.001 and r=-0.221, p=0.001,
respectively). Gender-related differences in white blood cell counts were not found.
Mean value of lymphocyte count in donors investigated in spring (May and March, n = 87; 2224.6±775.3) was significantly higher than those in winter (December – February, n=180; 1613.2±454.3, p=0.001) and autumn (October, n=20; 1576.1±438.6, p= 0.001).
Comparing of our findings with the data from available literature shown that healthy Mongolians
have lower leukocyte count compared with Koreans, Chinese Han population and lower mean value
of lymphocyte count comparing with Korean, Chinese Han population, and Arabian (Saudi Arabia)
populations.
2.Study on influence of the CpG DNA on activation of IFN-γ signaling transduction regulatory proteins
Baljinnyam T ; Khulan U ; Erkhembayar Sh ; Baasansuren E ; Javkhlan B ; Batkhishig M ; Enkhsaikhan L ; Ulziisaikhan J ; Baigalmaa B ; Galindev B ; Tsevelmaa N ; Khongorzul B ; Sodnomtsogt L ; Munkhbat B ; Munkhtuvshin N ; Bilegtsaikhan Ts
Mongolian Medical Sciences 2018;186(4):10-13
Introduction:
When human body encounters external pathogens primary/innate immunity cells are activated by
recognizing them and secondary/adaptive immunity is activated consecutively. In our previous study,
we revealed that there is a synergistic action between TLR9 and IFN-γ signaling in the endothelial cells.
Purpose:
To determine the role of negative and positive regulator proteins on the IFN-γ/TLR9 signaling pathway.
Methods:
In this study, murine endothelial cell (END-D) culture was used. END-D cells pre-treated with TLR9
ligand CpG DNA and then stimulated with IFN-γ. The negative (SHP-2, SOCS1, PIAS1) and positive
(p38) regulator protein expression was detected by Western blotting.
Results and Conclusion
Treatment by TLR9 ligand CpG DNA and IFN-γ increased positive regulator p38 phosphorylation in 0.5
hour. CpG DNA inhibited IFN-γ negative regulator PIAS1 protein expression in 6 hour and SOCS1 and
SHP-2 expression could not affect in 4 hour.
3.EFFECT OF TLR7 LIGAND ON SIGNAL TRANSDUCTION OF INTERFERON GAMMA
Baasansuren E ; Javkhlan B ; Baljinnyam T ; Erkhembayar Sh ; Batkhishig M ; Dolgorsuren S ; Enkhsaikhan L ; Ulziisaikhan J ; Khongorzul B ; Baigalmaa B ; Galindev B ; Sodnomtsogt L ; Nyambayar D ; Nyamdorj D ; Munkhtuvshin N ; Munkhbat B ; Bilegtsaikhan Ts
Innovation 2017;11(4):14-17
BACKGROUND: Toll like receptors (TLRs) are a class of proteins that key role in the innate immune system. TLR7 is expressed on monocytes, macrophages and dendritic cells, T cell, B cell and eosinophiles. TLR7, originally identified as recognizing imidaquinoline, loxibrine, broprimine and ssRNA, ssRNA viruses such as vesicular stomatitis virus, influenza A virus and human immunodefiency virus. It is known that virus ssRNA affects signaling molecule of IFN-y. Objective: To determine gene and protein activation of IFN-y signal transduction by TLR7 ligand in the endothelial cells.
MATERIAL: In study we used mouse aortic linear endothelial cell which is cultured (END-D) in 5% heat- inactivated fetal calf serum (FCS), medium (DMEM) containing antibiotic mix(penicillin G, streptomycin, amphotericin B) at 37°C (5% CO2). Endothelial cells treated with synthetic IFN-γ and imiquimodligands, then the NO (nitric oxide) concentration in the supernatant is determined by Griess reagent. Endothelial cells are cultured in 6 well cell culture plate and in each well 2*104cells are expected to be grown for 24 hours of culture. Then, the cells are treated with synthetic IFN-γ and имиквимод ligand for 6 hours and the NO signaling gene activation iNOS mRNA expression which is induced by IFN-γ is determined by RT-qPCR. Endothelial cells are cultured in 12 well cell culture plate and in each well 2*104 cells are expected to be grown for 18 hours of culture. Then, the cells are treated with synthetic IFN-γ and imiquimodligands for 24 hours and the NO signaling protein iNOS expression which is induced by IFN-γ is determined by western blotting. The experiment was conducted as representation mean of at least three test results. The difference between statistical probabilities is determined by the “Students” t test. The p<0.01 value is assumed to be statistically different.
RESULTS: TLR7 ligand imiquimodaugmented interferon gamma induced nitric oxide production TLR7 ligand imiquimodincreased interferon gamma induced iNOS mRNA gene expression. TLR7 ilgand imiquimodup-regulated interferon gamma induced iNOS protein expression.
CONCLUSIONS: TLR7 ligand imiquimod augments IFN-γ signaling in the endothelial cells. This synergistic effect has revealed in the levels of gene and protein expression.
4.Role of negative regulators on the TLR7 ligand/IFN-γ signaling in the endothelial cells
Baasansuren E ; Javkhlan B ; Baljinnyam T ; Khulan U ; Batkhishig M ; Enkhsaikhan L ; Ulziisaikhan J ; Khongorzul B ; Baigalmaa B ; Galindev B ; Tsevelmaa N ; Sodnomtsogt L ; Nyambayar D ; Munkhtuvshin N ; Munkhbat B ; Bilegtsaikhan Ts
Health Laboratory 2018;8(1):14-18
Introduction:
Toll like receptors (TLRs) are a class of proteins that key role in the innate immune system. The SOCS1 and SHP2 proteins are negative-feed loop inhibitors of signaling of JAK/STAT and TLRs pathways.
Purpose:
To determine negative regulator protein activation which is activated through TLR7 ligand/IFN-γ signal transduction in endothelial cells.
Methods:
We used mouse aortic linear endothelial cell (END-D); protein expressio was detected by western blotting
Results:
We analyzed a time dependent stimulation effects of negative regulator proteins stimulated by TLR7 ligand/IFN-γ in endothelial cell cultures. Imiquimod of 10 μg/ml treatment of 1 hr was followed by 100 ng/ml IFN-γ stimulation for 1-8hr to analysis of negative regulator SOCS1 and SHP2 protein expression.
In untreated cells, there was low activations of negative regulator SOCS1 and SHP2 proteins. IFN-γ stimulation alone had increased SOCS1 and SHP2 protein expressions, also imiquimod treatment highly elevated SOCS1 and SHP2 expressions. However imiquimod and IFN-γ doubled treatment have decreased activation of negative regulator SOCS1 and SHP2 proteins. These findings suggest SOCS1 and SHP2 proteins are inhibitors in the TLR7 ligand/IFN-γ signaling.
Conclusion
Negative regulators, SOCS1 and SHP2 strongly suppressed activations of TLR7 ligand/IFN-γ signaling
5.The effect of TLR9 ligand on IFN-ү signaling
Erkhembayar Sh ; Battsetseg Ts ; Baljinnyam T ; Altai E ; Baasansuren E ; Javkhlan B ; Batkhishig M ; Dolgorsuren S ; Ulziisaikhan J ; Enkhsaikhan L ; Tsendmaa Ts ; Galindev B ; Khongorzul B ; Baigalmaa B ; Nyambayar D ; Munkhbat B ; Bilegtsaikhan Ts
Health Laboratory 2017;6(1):15-23
Introduction:
The aim of this research project is to elucidate the crosstalk of innate and adaptive immune reactions against the DNA containing bacteria.
:
This study held in the Core laboratory, Science Technology Center, Mongolian National University of
Medical Sciences (MNUMS). Murine aortal endothelial cells, END-D cultured and the cell viability checked by MTT assay. In addition, the NO production, protein and gene expression studied by Griess Reagent
assay, R.T-PCR and immunoblotting, respectively.
Results:
0.1µM, 1µM and 10µM of TLR9 ligand exhibited no cytotoxic action against the cells by MTT assay. IFN-ү alone induced NO production in END-D cells. In the other hand, TLR9 ligand at 0.1µM, 1µM and 10µM up-regulated IFN-ү induced NO production in dose dependent manner. RTPCR results exhibit that TLR9 ligand up regulates iNOS mRNA. Immunoblotting analysis showed the enhanced iNOS protein expression and phosphorylation of STAT1 in cells pre-treated with TLR9 ligand.
Discussion:
We have demonstrated CpG DNA, TLR9 ligand, up-regulates IFN-ү induced NO via enhanced IFN-ү signaling. The result of Western Blotting and RT-PCR support the up-regulation of NO. CpG DNA can be used as agent against virus and bacteria. Further research need to be conducted.
Conclusion
TLR9 ligand, CpG DNA up-regulates IFN-ү induced NO production in time and dose dependent manner. TLR9 ligand augments the expression of iNOS mRNA and STAT1 phosphorylation in response to IFN-ү.