1.Deficiencies of Circulating Mucosal-associated Invariant T Cells and Natural Killer T Cells in Patients with Acute Cholecystitis.
Jung Chul KIM ; Hye Mi JIN ; Young Nan CHO ; Yong Soo KWON ; Seung Jung KEE ; Yong Wook PARK
Journal of Korean Medical Science 2015;30(5):606-611
Mucosal-associated invariant T (MAIT) cells and natural killer T (NKT) cells are known to play crucial roles in a variety of diseases, including autoimmunity, infectious diseases, and cancers. However, little is known about the roles of these invariant T cells in acute cholecystitis. The purposes of this study were to examine the levels of MAIT cells and NKT cells in patients with acute cholecystitis and to investigate potential relationships between clinical parameters and these cell levels. Thirty patients with pathologically proven acute cholecystitis and 47 age- and sex-matched healthy controls were enrolled. Disease grades were classified according to the revised Tokyo guidelines (TG13) for the severity assessment for acute cholecystitis. Levels of MAIT and NKT cells in peripheral blood were measured by flow cytometry. Circulating MAIT and NKT cell numbers were significantly lower in acute cholecystitis patients than in healthy controls, and these deficiencies in MAIT cells and NKT cell numbers were associated with aging in acute cholecystitis patients. Notably, a reduction in NKT cell numbers was found to be associated with severe TG13 grade, death, and high blood urea nitrogen levels. The study shows numerical deficiencies of circulating MAIT and NKT cells and age-related decline of these invariant T cells. In addition, NKT cell deficiency was associated with acute cholecystitis severity and outcome. These findings provide an information regarding the monitoring of these changes in circulating MAIT and NKT cell numbers during the course of acute cholecystitis and predicting prognosis.
Aged
;
Antibodies, Monoclonal/immunology
;
Case-Control Studies
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Cholecystitis, Acute/*diagnosis/immunology/pathology
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Female
;
Flow Cytometry
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Humans
;
Leukocytes, Mononuclear/cytology
;
Male
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Middle Aged
;
Natural Killer T-Cells/*cytology/immunology
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Patients
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Prognosis
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Severity of Illness Index
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T-Lymphocyte Subsets/*cytology/immunology
2.MUC1-2VNTR DNA Vaccine Induces Immune Responses in Mouse Model with Multiple Myeloma.
Yue-Bo LIU ; Ze-Ping ZHOU ; Hao WANG ; Hong YANG ; Hong MU ; Gui-Yun HUANG ; You ZHANG
Journal of Experimental Hematology 2015;23(5):1366-1369
OBJECTIVETo investigate the humoral and cellular immune responses induced by MUC1-2VNTR DNA vaccine in multiple myeloma (MM) tumor-bearing mice.
METHODSIn vitro, multiple myeloma cells were transfected by plasmid pcDNA3.1-2VNTR/myc-hisB with Lipofectamine2000. The above-mentioned mouse myeloma cells were inoculated subcutaneously into female BALB/c mice for establishing tumor-bearing animal models. These female BALB/c mice were immunized with pcDNA-2VNTR/myc-hisB or pcDNA/myc-hisB. The cytotoxic T lymphocyte (CTL) activity was detected by the LDH method and the spleen lymphocyte proliferation activity was detected by CCK-8 method.
RESULTSAfter immunization of BALB/c tumor-bearing mice with recombinant plasmid for 25 days, the tumor mass (0.5605 ± 0.2065 g) was significantly lighter than that in the empty plasmid control group (1.521 ± 0.6985 g) (P < 0.01) and the control group (1.5315 ± 0.5425 g) (P < 0.01). The difference of tumor mass was not statislically significant between empty plasmid control group (1.521 ± 0.6985 g) and the control group (1.5315 ± 0.5425 g) (P > 0.05). The CTL and NK cell activity was significantly higher in the group of intramuscular injection with recombinant plasmid than that in control group. The spleen lymphocyte proliferation was statistically significantly increased after being immunized with recombinant plasmid pcDNA3.1-2VNTR/myc-hisB, compared with empty vector (P < 0.01). The results showed that MUC1-2VNTR gene immunization could induce anti-tumor effect in MM tumor-bearing mice.
CONCLUSIONMUC1-2VNTR DNA immunization can elicit both humoral and cellular tumor specific immune response to multiple myeloma in MM tumor-bearing mice. It suggested that the MUC1-2VNTR DNA vaccine may be a potential treatment measure for patients with MM.
Animals ; Cancer Vaccines ; therapeutic use ; Female ; Genetic Vectors ; Humans ; Immunization ; Killer Cells, Natural ; immunology ; Lymphocyte Activation ; Mice ; Mice, Inbred BALB C ; Minisatellite Repeats ; Mucin-2 ; genetics ; Multiple Myeloma ; immunology ; therapy ; Neoplasm Transplantation ; Plasmids ; Spleen ; cytology ; T-Lymphocytes, Cytotoxic ; immunology ; Transfection ; Vaccines, DNA ; therapeutic use
3.Radiofrequency ablation inhibits lung metastasis ofbreast cancer in mice.
Zhenling DENG ; Wanjiu ZHANG ; Yue HAN ; Shuren ZHANG
Chinese Journal of Oncology 2015;37(7):497-500
OBJECTIVETo explore the effects of radiofrequency ablation(RFA) on immune system and lung metastasis in a mouse model of triple negative breast cancer 4T1.
METHODSMouse breast cancer 4T1 cells were injected into the right hind limb of female Bal B/c mice. When the tumor size was 6-8 mm in diameter, RFA was used to treat the transplanted breast cancer in mice. We examined the splenic lymphocyte subsets by flow cytometry at different time points after RFA. Fourteen days after treatment, we sacrificed the mice of both control and treatment groups, counted the number of lung metastatic nodules, and detected the changes of splenic lymphocyte subsets by flow cytometry.
RESULTSRFA basically eliminated the orthotopic carcinoma with a low local recurrence rate. After the RFA treatment, the amount of spleic CD4⁺ T cells, CD8⁺ T cells, B cells, NK and NKT cells was increased. Fourteen days after the RFA treatment, all mice were sacrificed, and the lung metastatic nodules were 24 ± 18 in the control group and 81 ± 35 in the RFA-treated group (P = 0.012). The mechanism of suppression of metastatic lung cancers was related to the increase of splenic CD4⁺ T cells, CD8⁺ T cells, B cells and NK cells, and the decrease of myeloid-derived suppressor cells.
CONCLUSIONSRFA can enhance the anti-tumor immunity and effectively inhibit lung metastasis of 4T1 cell-induced breast cancer, and has a good potential effect in the treatment of triple-negative breast cancer and the control of distant metastasis.
Animals ; B-Lymphocytes ; cytology ; CD4-Positive T-Lymphocytes ; cytology ; CD8-Positive T-Lymphocytes ; cytology ; Catheter Ablation ; Female ; Flow Cytometry ; Humans ; Killer Cells, Natural ; cytology ; Lung Neoplasms ; immunology ; prevention & control ; secondary ; Mice ; Mice, Inbred BALB C ; Neoplasm Recurrence, Local ; Triple Negative Breast Neoplasms ; immunology ; pathology ; surgery ; Tumor Burden
4.Effects of Psychosocial Interventions on Cortisol and Immune Parameters in Patients with Cancer: A Meta-analysis.
Journal of Korean Academy of Nursing 2014;44(4):446-457
PURPOSE: This study was done to evaluate the effects of psychosocial interventions on cortisol and immune response in adult patients with cancer. METHODS: MEDLINE via PubMed, Cochrane Library CENTRAL, EMBASE, CINAHL and domestic electronic databases were searched. Twenty controlled trials (11 randomized and 9 non-randomized trials) met the inclusion criteria with a total of 862 participants. Methodological quality was assessed using the Cochrane's Risk of Bias for randomized studies and the Risk of Bias Assessment tool for non randomized studies. Data were analyzed using the RevMan 5.2.11 program of Cochrane library. RESULTS: Overall, study quality was moderate to high. The weighted average effect size across studies was -0.32 (95% CI [-0.56, -0.07], p=.010, I2=45%) for cortisol concentration, -0.62 (95%CI [-0.96,-0.29], p<.001, I2=0%) for T lymphocyte (CD3) and -0.45 (95%CI [-0.74, -0.16], p=.003, I2=0%) for Th lymphocyte (CD4) numbers. Psychosocial interventions were not effective for Tc lymphocyte (CD4), NK cell, monocyte, and cytokine response. CONCLUSION: Although these results provide only small evidence of successful immune modulation, they support the conclusion that psychosocial interventions can assist cancer patients in reducing emotional distress and improving immune response.
CD4-Positive T-Lymphocytes/cytology/immunology
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Cytokines/metabolism
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Databases, Factual
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Humans
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Hydrocortisone/*analysis
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Killer Cells, Natural/cytology/immunology
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Monocytes/cytology/immunology
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Neoplasms/metabolism/pathology/*therapy
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Psychotherapy
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T-Lymphocytes/cytology/*immunology
5.Analysis of T lymphocyte absolute number and function in the early phase after haploidentical hematopoietic stem cell transplantation.
Li DING ; Lei DONG ; Xiao-Li ZHENG ; Shan-Shan LIN ; Heng ZHU ; Zhi-Dong WANG ; Hong-Ming YAN ; Zi-Kuan GUO ; Heng-Xiang WANG ; Zu-Ze WU
Journal of Experimental Hematology 2013;21(3):702-706
This study was purposed to investigate the immune reconstitution of T-cells in patients who received haploidentical hematopoietic stem cell transplantation (hiHSCT). The peripheral blood was harvested from 22 patients before transplantation and at month 1, 3, 6 after hiHSCT. The proportions of T lymphocyte subtypes including CD3(+), CD4(+), CD8(+), CD45RO(+), and CD45RA(+)CD62L(+) were analyzed by flow cytometry, followed by the calculation of T cell numbers according to the amounts of peripheral blood leukocytes. Adenosine triphosphate (ATP) value in CD4(+) T cells was measured by ImmuKnow method to evaluate the function of lymphocytes. The results showed that the CD3(+) cell absolute value before transplantation was 833.75 ± 359.84/µl, but those values at month 1, 3, 6 after transplantation were 318.87 ± 266.71/µl, 1006.76 ± 512.32/µl and 1296.38 ± 958.77/µl respectively. The CD4(+) cell absolute value before transplantation was 336.99 ± 211.11/µl, but such values at month 1, 3, 6 after transplantation were 45.89 ± 44.21/µl, 142.97 ± 114.85/µl, and 181.78 ± 120.61/µl respectively. The CD8(+) cell absolute value before transplantation was 430.21 ± 159.48/µl, but those values at month 1, 3, 6 after transplantation were 230.44 ± 195.89/µl, 621.64 ± 318.83/µl, and 823.07 ± 633.55/µl respectively. The CD4(+)CD45RO(+) memory T cell absolute value before transplantation was 227.44 ± 73.34/µl, but such values at month 1, 3, 6 after transplantation were 43.47 ± 43.40/µl, 138.69 ± 110.17/µl, 147.73 ± 82.94/µl respectively. The CD8(+)CD45RO(+) memory T cell absolute value before transplantation was 212.70 ± 98.48/µl, but such values at month 1, 3, 6 after transplantation were 184.76 ± 168.65/µl, 445.90 ± 252.50/µl, 519.80 ± 475.53/µl respectively. CD4(+)CD45RA(+)CD62L(+) naive T cell number before transplantation was 68.94 ± 59.74/µl, but such cell numbers at month 1, 3, 6 after transplantation decreased to 2.44 ± 2.93/µl, 3.14 ± 3.48/µl, 23.22 ± 38.38/µl respectively. The CD8(+)CD45RA(+)CD62L(+) naive T cell absolute value before transplantation was 124.82 ± 60.95/µl, but those values at month 1, 3, 6 decreased to 19.37 ± 17.71/µl, 76.63 ± 50.85/µl, and 114.49 ± 174.29/µl respectively. The ATP value in CD4(+) T cells decreased to 210.19 ± 119.37 ng/ml at month 1 after transplantation and increased to 280.62 ± 110.03 ng/ml at month 3, and 357.28 ± 76.18 ng/ml at month 6 after transplantation. It is concluded that CD8(+) memory T cell reconstruction contributes critically to T cell recovery early after hiHSCT, while the thymic output function remains low. However, T cell function recovers to normal range at month 3 after transplantation.
Adolescent
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Adult
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CD8-Positive T-Lymphocytes
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cytology
;
Child
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Child, Preschool
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Female
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Haplotypes
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Hematopoietic Stem Cell Transplantation
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Humans
;
Immunophenotyping
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Killer Cells, Natural
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immunology
;
Lymphocyte Count
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Male
;
T-Lymphocyte Subsets
;
immunology
;
Young Adult
6.Role of Regulatory T Cells in Transferable Immunological Tolerance to Bone Marrow Donor in Murine Mixed Chimerism Model.
Il Hee YOON ; Yong Hee KIM ; You Sun KIM ; Jun Seop SHIN ; Chung Gyu PARK
Journal of Korean Medical Science 2013;28(12):1723-1728
Constructing a bone marrow chimera prior to graft transplantation can induce donor-specific immune tolerance. Mixed chimerism containing hematopoietic cells of both recipient- and donor-origin has advantages attributed from low dose of total body irradiation. In this study, we explored the mechanism of mixed chimerism supplemented with depletion of Natural Killer cells. Mixed chimerism with C57BL/6 bone marrow cells was induced in recipient BALB/c mice which were given 450 cGy of gamma-ray irradiation (n = 16). As revealed by reduced proliferation and cytokine production in mixed leukocyte reaction and ELISpot assay (24.6 vs 265.5), the allo-immune response to bone marrow donor was reduced. Furthermore, the induction of transferable immunological tolerance was confirmed by adoptive transfer and subsequent acceptance of C57BL/6 skin graft (n = 4). CD4+FoxP3+ regulatory T cells were increased in the recipient compartment of the mixed chimera (19.2% --> 33.8%). This suggests that regulatory T cells may be therapeutically used for the induction of graft-specific tolerance by mixed chimerism.
Animals
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Bone Marrow Cells/cytology
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*Bone Marrow Transplantation
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Cell Proliferation
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Chimerism
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Cytokines/metabolism
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Gamma Rays
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Graft Survival
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*Immune Tolerance
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Killer Cells, Natural/immunology/radiation effects
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Leukocytes/immunology/radiation effects
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Mice
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Mice, Inbred BALB C
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Mice, Inbred C57BL
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Models, Animal
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Skin Transplantation
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T-Lymphocytes, Regulatory/cytology/*immunology/metabolism
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Whole-Body Irradiation
7.Dynamic changes and clinical significance of HBcAg18-27 specific cytotoxic T lymphocytes in acute hepatitis B patients.
Jun LI ; Ya-ping HAN ; Bo LIU ; Yuan LIU ; Nian CHEN ; Li DONG ; You-de YAN ; Long-feng JIANG ; Zu-hu HUANG
Chinese Journal of Hepatology 2011;19(1):38-43
This report aims to investigate the dynamical changes of HBcAg18-27 epitope specific cytotoxic T lymphocytes(CTL), alanine aminotransferase (ALT), HBV DNA and HBsAg in peripheral blood of acute hepatitis B patients, and to explore the roles of HBcAg18-27-specific CTLs in virus clearance and liver injury. Acute hepatitis B (AHB) and chronic hepatitis B (CHB) patients were divided into two groups according to results of HLA-A0201. Patients with positive HLA-A0201 were classified into HBcAg-specific CTL group and those with negative HLA-A0201 were referred as control group. The specific CTLs were stained with HLA-A0201 limited HBcAg18-27 epitope MHC-Pentamer and the frequencies of CTLs, T, B, NK and NKT cells were detected by flow cytometry (FCM). The serum ALT, HBV DNA and HBsAg were examined using speed analysis, quantitative PCR and abbott chemiluminescent technology. The frequencies of HBcAg18-27-specific CTLs in AHB patients were higher in the early three weeks as compared to the late three weeks. The apex time of HBV-specific CTL frequencies lagged behind those of HBV DNA, HBsAg and ALT. The loss of HBsAg in patients with high frequencies of HBV-specific CTL was earlier than that in patients with low frequencies (t = 2.018, P value is less than 0.05). In the second week the peak frequencies of CD3+CD8+ cells overlapped with that of HBcAg18-27-specific CTLs and with a positive correlation between (r = 0.420, P value is less than 0.05). During the early stages of AHB, the frequencies of NK and NKT cells were found significantly lower than that of control group and CHB group and the levels were back to normal after recovery. Moreover, a negative correlation existed between the frequencies of NK cells and the dynamic changes of HBcAg18-27-specific CTLs (r = -0.435, P value is less than 0.01) in AHB group. The frequencies of HBcAg18-27-specific CTLs were significantly higher as compared to CHB group in the first three weeks (z = -3.258, -4.04, and -3.259, P value is less than 0.01). The early loss of HBsAg was closely related to the high frequencies of HBcAg18-27 specific CTLs in AHB patients. HBcAg-specific CTL frequencies in peripheral blood could be used to predict clinical outcome after HBV infection. The frequencies of CD8+ T cells can reflect the changes of frequencies of HBcAg-specific CTL during acute HBV infection.
Adolescent
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Adult
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Case-Control Studies
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Female
;
HLA-A2 Antigen
;
immunology
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Hepatitis B
;
immunology
;
Hepatitis B Core Antigens
;
blood
;
immunology
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Humans
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Killer Cells, Natural
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immunology
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Lymphocyte Count
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Male
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Middle Aged
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T-Lymphocytes, Cytotoxic
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cytology
;
immunology
;
Young Adult
8.The in vitro proliferation and cytokine production of Vα24+Vβ11+ natural killer T cells in patients with systemic lupus erythematosus.
Chinese Medical Journal 2011;124(1):61-65
BACKGROUNDActivation in vitro of natural killer T (NKT) cells in systemic lupus erythematosus (SLE) with α-galactosylceramide (α-GalCer) and dendritic cells (DC) may affect the immunoregulatory role of NKT cells. This study was designed to compare the number of NKT cells in patients with SLE to the number in healthy volunteers and measure the cytokines secreted from these NKT cells in vitro.
METHODSThree sets of culture conditions using (i) α-GalCer, (ii) DC, or (iii) both α-GalCer and DC (α-GalCer+DC) were adopted to expand NKT cells from peripheral blood mononuclear cells (PBMC) of patients with SLE and healthy volunteers. Flow cytometry was used to assess the levels of interleukin (IL)-4, IL-10, interferon (IFN)-γ and tumor necrosis factor (TNF)-α produced by the Vα24(+)Vβ11(+) NKT cells.
RESULTSAfter 14 days in culture, the total cell count and percentage of Vα24(+)Vβ11(+) NKT cells were increased under all conditions but were highest in the α-GalCer+DC group. The level of IL-4 and IL-10 secreted by Vα24(+)Vβ11(+) NKT cells from patients with active SLE was found to be higher than that of inactive patients and the control group (P < 0.05), while the levels of IFN-γ and TNF-α were lower than those found in the inactive and control groups (P < 0.05).
CONCLUSIONSVα24(+)Vβ11(+) NKT cells showed the greatest expansion in vitro with α-GalCer and DC. Th2-type cytokines from Vα24(+)Vβ11(+) NKT cells are the predominant type in patients with SLE, while Th1 cytokines predominate in the control group. This evolution of NKT cell function during the progression of the disease may have important implications in understanding the mechanism of SLE and for the development of possible therapies using NKT cell agonists.
Adolescent ; Adult ; Cell Proliferation ; drug effects ; Cells, Cultured ; Cytokines ; metabolism ; Dendritic Cells ; metabolism ; Female ; Flow Cytometry ; Galactosylceramides ; pharmacology ; Humans ; Interferon-gamma ; metabolism ; Interleukin-10 ; metabolism ; Interleukin-4 ; metabolism ; Lupus Erythematosus, Systemic ; immunology ; metabolism ; Male ; Middle Aged ; Natural Killer T-Cells ; cytology ; drug effects ; metabolism ; Receptors, Antigen, T-Cell ; metabolism ; Receptors, Antigen, T-Cell, alpha-beta ; metabolism ; Tumor Necrosis Factor-alpha ; metabolism ; Young Adult
9.Recent research advance in immunomodulatory function of mesenchymal stem cells on immune cells.
Journal of Experimental Hematology 2010;18(4):1079-1083
Mesenchymal stem cells (MSCs) can inhibit T cell proliferation, the effects of MSCs on various T cell subsets have showed different immune regulatory reactions, and their mechanisms mainly include cell-cell contact and mediation by cytokines secreted from MSCs. Encouragingly, recent studies have showed that the effects of MSCs on T-cell response to pathogens is not significant, but can obviously suppress T cell response to allogeneic antigens. In addition, MSCs can regulate the proliferation, survival, antibody secretion and differentiation of B cells, inhibit the production, proliferation, migration and antigen-presentation of DCs, and modulate the differentiation and maturation of DCs, and regulate the proliferation, cell toxicity and cytokine secretion of NK cells. In this review, the research advances on immunomodulatory effects of MSCs on various immune cells including T-lymphocytes, B-lymphocytes, NK cells and DCs are summarized with emphasis on the immunoregulatory effects of MSCs on T-lymphocytes.
B-Lymphocytes
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immunology
;
Dendritic Cells
;
immunology
;
Humans
;
Killer Cells, Natural
;
immunology
;
Mesenchymal Stromal Cells
;
cytology
;
immunology
;
T-Lymphocytes
;
immunology
10.Analysis of Characteristics of Mononuclear Cells Remaining in the Leukoreduction System Chamber of Trima Accel(R) and Their Differentiation Into Dendritic Cells.
Yangsoon LEE ; Sinyoung KIM ; Seung Tae LEE ; Han Soo KIM ; Eun Jung BAEK ; Hyung Jin KIM ; MeeKyung LEE ; Hyun Ok KIM
The Korean Journal of Laboratory Medicine 2009;29(4):353-360
BACKGROUND: We investigated the characteristics of the mononuclear cells remaining in the leukoreduction system (LRS) chambers of Trima Accel(R) in comparison with those of standard buffy coat cells, and evaluated their potential for differentiation into dendritic cells. METHODS: Twenty-six LRS chambers of Trima Accel(R) were collected after platelet pheresis from healthy adults. Flow cytometric analysis for T, B, NK, and CD14+ cells was performed and the number of CD34+ cells was counted. Differentiation and maturation into dendritic cells were induced using CD14+ cells seperated via Magnetic cell sorting (MACS(R)) Seperation (Miltenyi Biotec Inc., USA). RESULTS: Total white blood cell (WBC) count in LRS chambers was 10.8x108 (range 7.7-18.0x108). The median values (range) of proportions of each cells were CD4+ T cell 29.6% (18.7-37.6), CD8+ T cell 27.7% (19.2-40.0), B cell 5.5% (2.2-12.1), NK cell 15.7% (13.7-19.9), and CD14+ cells 12.4% (8.6-32.3) respectively. Although total WBC count was significantly higher in the buffy coat (whole blood of 400 mL) than the LRS chambers, the numbers of lymphocytes and monocytes were not statistically different. The numbers of B cells and CD4+ cells were significantly higher in the buffy coat than the LRS chambers (P<0.05). The median value (range) of CD34+ cells obtained from the LRS chambers was 0.9x10(6) (0.2-2.6x10(6)). After 7 days of cytokine-supplemented culture, the CD14+ cells were successfully differentiated into dendritic cells. CONCLUSIONS: The mononuclear cells in LRS chambers of Trima Accel(R) are an excellent alternative source of viable and functional human blood cells, which can be used for research purposes.
Adult
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B-Lymphocytes/cytology/immunology
;
CD4-Positive T-Lymphocytes/cytology/immunology
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CD8-Positive T-Lymphocytes/cytology/immunology
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Cell Differentiation
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Dendritic Cells/*cytology/immunology
;
Flow Cytometry
;
Humans
;
Killer Cells, Natural/cytology/immunology
;
Plateletpheresis/*instrumentation

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