Natural Killer Cell Receptor Expression by Human First Trimester Decidual Granular Leukocytes and T-Lymphocytes
PROBLEM: Detailed analysis of the expression of natural killer (NK) cell activatory and inhibitory receptors by human decidual leukocyte subpopulations has not been undertaken. METHOD OF STUDY: Expression of the natural cytotoxicity receptors NKp30, NKp44 and NKp46 by decidual leukocytes were studie...
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Published in: | American journal of reproductive immunology (1989) Vol. 48; no. 2; pp. 103 - 109 |
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01-08-2002
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Abstract | PROBLEM: Detailed analysis of the expression of natural killer (NK) cell activatory and inhibitory receptors by human decidual leukocyte subpopulations has not been undertaken.
METHOD OF STUDY: Expression of the natural cytotoxicity receptors NKp30, NKp44 and NKp46 by decidual leukocytes were studied by reverse transcriptase polymerase chain reaction. Expression of the killer cell Ig‐like receptors CD158a and CD158b on decidual T cells were studied by flow cytometry.
RESULTS: First trimester decidual leukocytes expressed mRNA for the NKp30 and NKp46 receptors but expression of NKp44, a marker of activated NK cells, was not detected. A mean of 11.8 and 15.8% of decidual T cells expressed CD158a or 158b, respectively, while only around 1% of peripheral blood T cells were CD158a+ or CD158b+.
CONCLUSIONS: Like peripheral blood NK cells, decidual NK cells express the natural cytotoxicity receptors NKp30 and NKp46 but the significance of this will not become apparent until ligands for these molecules have been identified. Only a minority of decidual T cells express CD158, indicating that this is not a mechanism for inhibition of cytotoxicity mediated by all decidual T cells. |
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AbstractList | PROBLEM: Detailed analysis of the expression of natural killer (NK) cell activatory and inhibitory receptors by human decidual leukocyte subpopulations has not been undertaken.
METHOD OF STUDY: Expression of the natural cytotoxicity receptors NKp30, NKp44 and NKp46 by decidual leukocytes were studied by reverse transcriptase polymerase chain reaction. Expression of the killer cell Ig‐like receptors CD158a and CD158b on decidual T cells were studied by flow cytometry.
RESULTS: First trimester decidual leukocytes expressed mRNA for the NKp30 and NKp46 receptors but expression of NKp44, a marker of activated NK cells, was not detected. A mean of 11.8 and 15.8% of decidual T cells expressed CD158a or 158b, respectively, while only around 1% of peripheral blood T cells were CD158a+ or CD158b+.
CONCLUSIONS: Like peripheral blood NK cells, decidual NK cells express the natural cytotoxicity receptors NKp30 and NKp46 but the significance of this will not become apparent until ligands for these molecules have been identified. Only a minority of decidual T cells express CD158, indicating that this is not a mechanism for inhibition of cytotoxicity mediated by all decidual T cells. PROBLEMDetailed analysis of the expression of natural killer (NK) cell activatory and inhibitory receptors by human decidual leukocyte subpopulations has not been undertaken.METHOD OF STUDYExpression of the natural cytotoxicity receptors NKp30, NKp44 and NKp46 by decidual leukocytes were studied by reverse transcriptase polymerase chain reaction. Expression of the killer cell Ig-like receptors CD158a and CD158b on decidual T cells were studied by flow cytometry.RESULTSFirst trimester decidual leukocytes expressed mRNA for the NKp30 and NKp46 receptors but expression of NKp44, a marker of activated NK cells, was not detected. A mean of 11.8 and 15.8% of decidual T cells expressed CD158a or 158b, respectively, while only around 1% of peripheral blood T cells were CD158a+ or CD158b+.CONCLUSIONSLike peripheral blood NK cells, decidual NK cells express the natural cytotoxicity receptors NKp30 and NKp46 but the significance of this will not become apparent until ligands for these molecules have been identified. Only a minority of decidual T cells express CD158, indicating that this is not a mechanism for inhibition of cytotoxicity mediated by all decidual T cells. PROBLEM: Detailed analysis of the expression of natural killer (NK) cell activatory and inhibitory receptors by human decidual leukocyte subpopulations has not been undertaken. METHOD OF STUDY: Expression of the natural cytotoxicity receptors NKp30, NKp44 and NKp46 by decidual leukocytes were studied by reverse transcriptase polymerase chain reaction. Expression of the killer cell Ig‐like receptors CD158a and CD158b on decidual T cells were studied by flow cytometry. RESULTS: First trimester decidual leukocytes expressed mRNA for the NKp30 and NKp46 receptors but expression of NKp44, a marker of activated NK cells, was not detected. A mean of 11.8 and 15.8% of decidual T cells expressed CD158a or 158b, respectively, while only around 1% of peripheral blood T cells were CD158a + or CD158b + . CONCLUSIONS: Like peripheral blood NK cells, decidual NK cells express the natural cytotoxicity receptors NKp30 and NKp46 but the significance of this will not become apparent until ligands for these molecules have been identified. Only a minority of decidual T cells express CD158, indicating that this is not a mechanism for inhibition of cytotoxicity mediated by all decidual T cells. Detailed analysis of the expression of natural killer (NK) cell activatory and inhibitory receptors by human decidual leukocyte subpopulations has not been undertaken. Expression of the natural cytotoxicity receptors NKp30, NKp44 and NKp46 by decidual leukocytes were studied by reverse transcriptase polymerase chain reaction. Expression of the killer cell Ig-like receptors CD158a and CD158b on decidual T cells were studied by flow cytometry. First trimester decidual leukocytes expressed mRNA for the NKp30 and NKp46 receptors but expression of NKp44, a marker of activated NK cells, was not detected. A mean of 11.8 and 15.8% of decidual T cells expressed CD158a or 158b, respectively, while only around 1% of peripheral blood T cells were CD158a+ or CD158b+. Like peripheral blood NK cells, decidual NK cells express the natural cytotoxicity receptors NKp30 and NKp46 but the significance of this will not become apparent until ligands for these molecules have been identified. Only a minority of decidual T cells express CD158, indicating that this is not a mechanism for inhibition of cytotoxicity mediated by all decidual T cells. |
Author | NEWTON, DARREN J. LEWIS, BARRY J. JOHNSON, PETER M. CHRISTMAS, STEPHEN E. CROKER, SIMON LENNON, GREIG P. |
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CitedBy_id | crossref_primary_10_1111_j_1600_0897_2004_00139_x crossref_primary_10_1016_S1472_6483_10_60576_7 crossref_primary_10_1034_j_1600_0897_2003_00080_x crossref_primary_10_4049_jimmunol_181_1_39 crossref_primary_10_1210_me_2004_0489 crossref_primary_10_1002_eji_200636429 crossref_primary_10_1093_molehr_gah181 crossref_primary_10_1016_j_jri_2003_09_002 crossref_primary_10_1111_j_1600_0897_2006_00431_x |
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Keywords | Pregnancy Natural killer cell Human Uterus Leukocyte Female genital system T-Lymphocyte Cytotoxicity Female Decidua Gene expression Biological receptor |
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SubjectTerms | Biological and medical sciences CD158 Cytotoxicity, Immunologic Decidua - cytology Decidua - immunology endometrial granular leukocytes Female Flow Cytometry Fundamental and applied biological sciences. Psychology Gene Expression Humans Killer Cells, Natural - immunology killer inhibitory receptors Mother. Fetoplacental unit. Mammary gland. Milk natural cytotoxicity receptors Natural Cytotoxicity Triggering Receptor 3 Pregnancy Pregnancy Trimester, First - immunology Pregnancy. Parturition. Lactation Receptors, Immunologic - biosynthesis Reverse Transcriptase Polymerase Chain Reaction T-lymphocytes T-Lymphocytes - immunology T-Lymphocytes - metabolism Vertebrates: reproduction |
Title | Natural Killer Cell Receptor Expression by Human First Trimester Decidual Granular Leukocytes and T-Lymphocytes |
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