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Table representation of search results timeline featuring number of search results per year.

Year Number of Results
1976 1
1977 1
1979 1
1980 1
1981 6
1982 2
1983 11
1984 9
1985 8
1986 3
1987 4
1988 3
1989 3
1990 6
1991 1
1992 4
1993 2
1994 5
1995 4
1996 3
1997 3
1998 3
1999 7
2000 5
2001 4
2002 3
2003 3
2004 1
2005 4
2006 6
2007 10
2008 2
2009 8
2010 3
2011 4
2012 8
2013 6
2014 6
2015 1
2016 3
2017 4
2018 1
2019 3
2020 5
2021 3
2022 5
2023 1
2024 0

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180 results

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Page 1
Reproductive immunology.
Gurka G, Rocklin RE. Gurka G, et al. JAMA. 1987 Nov 27;258(20):2983-7. JAMA. 1987. PMID: 3312681 Review.
The maternal immune system is challenged with paternal antigens through exposure to trophoblast tissue and fetal cells crossing the placenta into the maternal circulation. ...It is also clear that complex maternal immunologic responses, including antibodies to red b …
The maternal immune system is challenged with paternal antigens through exposure to trophoblast tissue and fetal cells crossin …
Characterization of primary models of human trophoblast.
Sheridan MA, Zhao X, Fernando RC, Gardner L, Perez-Garcia V, Li Q, Marsh SGE, Hamilton R, Moffett A, Turco MY. Sheridan MA, et al. Development. 2021 Nov 1;148(21):dev199749. doi: 10.1242/dev.199749. Epub 2021 Nov 5. Development. 2021. PMID: 34651188 Free PMC article.
We find that trophoblast organoids retain these in vivo characteristics. In contrast, TSCs express classical HLA-A and HLA-B molecules, and maintain their expression after EVT differentiation, with upregulation of HLA-G. ...
We find that trophoblast organoids retain these in vivo characteristics. In contrast, TSCs express classical HLA-A and HLA-B m …
HLA-DR and HLA-A, B, C typing of human fetal tissue.
Danilovs JA, Brown J, Terasaki PI, Clark WR. Danilovs JA, et al. Tissue Antigens. 1983 Apr;21(4):296-308. doi: 10.1111/j.1399-0039.1983.tb00175.x. Tissue Antigens. 1983. PMID: 6574618
In contrast, HLA-A, B, C antigens could be detected on all four tissues. Excellent HLA-DR typing, confirmed by maternal typing, was obtained for 19 fetuses (14 to 23 weeks old) using bone marrow cells isolated by two-fold purification on discontinuous …
In contrast, HLA-A, B, C antigens could be detected on all four tissues. Excellent HLA-DR typing, confirmed by m …
Guidelines for Cord Blood Unit Selection.
Politikos I, Davis E, Nhaissi M, Wagner JE, Brunstein CG, Cohen S, Shpall EJ, Milano F, Scaradavou A, Barker JN; American Society for Transplantation and Cellular Therapy Cord Blood Special Interest Group. Politikos I, et al. Biol Blood Marrow Transplant. 2020 Dec;26(12):2190-2196. doi: 10.1016/j.bbmt.2020.07.030. Epub 2020 Jul 28. Biol Blood Marrow Transplant. 2020. PMID: 32736011 Free article. Review.
Topics addressed include the use of both the TNC and the CD34(+) cell dose, as well as the CD34(+) cell to TNC content ratio to evaluate unit progenitor cell content and engraftment potential, the acceptable TNC and CD34(+) cell dose criteria that define an adequate single-unit g …
Topics addressed include the use of both the TNC and the CD34(+) cell dose, as well as the CD34(+) cell to TNC content ratio to evaluate uni …
Allele and Haplotype Frequencies of HLA-A, -B, -C, and -DRB1 Genes in 3,750 Cord Blood Units From a Kinh Vietnamese Population.
Que TN, Khanh NB, Khanh BQ, Van Son C, Van Anh NT, Anh TTT, Tung PD, Thang ND. Que TN, et al. Front Immunol. 2022 Jun 29;13:875283. doi: 10.3389/fimmu.2022.875283. eCollection 2022. Front Immunol. 2022. PMID: 35844516 Free PMC article.
The most frequent haplotypes of two-locus combinations of HLA-A-B, HLA-A-C, HLA-A-DRB1, HLA-B-C, HLA-B-DRB1, and HLA-C-DRB1 haplotypes were A*11:01-B*15:02 (7.63%), A*11:01-C*08:01 (7.98%), A*11:01-DRB1*12:02 (10.56%), B*15:02-C*08:01 (14 …
The most frequent haplotypes of two-locus combinations of HLA-A-B, HLA-A-C, HLA-A-DRB1, HLA-B-C, H …
HLA and maternal-fetal recognition.
Hunt JS, Orr HT. Hunt JS, et al. FASEB J. 1992 Mar;6(6):2344-8. doi: 10.1096/fasebj.6.6.1544544. FASEB J. 1992. PMID: 1544544 Review.
Despite genetic differences, mothers do not reject their semiallogeneic embryos. Regulated expression of the major histocompatibility antigens (HLA) by placental trophoblast cells, which intervene between the embryo and maternal blood and tissues, is now believed to …
Despite genetic differences, mothers do not reject their semiallogeneic embryos. Regulated expression of the major histocompatibility ant
Significance of regional population HLA immunogenetic datasets in the efficacy of umbilical cord blood banks and marrow donor registries: a study of Cretan HLA genetic diversity.
Latsoudis H, Stylianakis E, Mavroudi I, Kanterakis A, Pavlidis P, Georgopoulou A, Batsali A, Gontika I, Fragiadaki I, Zamanakou M, Germenis AE, Papadaki HA. Latsoudis H, et al. Cytotherapy. 2022 Feb;24(2):183-192. doi: 10.1016/j.jcyt.2021.07.010. Epub 2021 Aug 28. Cytotherapy. 2022. PMID: 34465516 Free article.
METHODS: A cohort of 1835 samples representative of the Cretan population was typed for HLA class I (HLA-A, HLA-B, HLA-C) and class II (HLA-DRB1, HLA-DQB1, HLA-DPB1) loci by high-resolution second field next-generation sequencing. ...
METHODS: A cohort of 1835 samples representative of the Cretan population was typed for HLA class I (HLA-A, HLA-B, HLA-C) and …
The Dual Role of HLA-C in Tolerance and Immunity at the Maternal-Fetal Interface.
Papúchová H, Meissner TB, Li Q, Strominger JL, Tilburgs T. Papúchová H, et al. Front Immunol. 2019 Dec 9;10:2730. doi: 10.3389/fimmu.2019.02730. eCollection 2019. Front Immunol. 2019. PMID: 31921098 Free PMC article. Review.
To establish a healthy pregnancy, maternal immune cells must tolerate fetal allo-antigens and remain competent to respond to infections both systemically and in placental tissues. Extravillous trophoblasts (EVT) are the most invasive cells of extra-embryonic
To establish a healthy pregnancy, maternal immune cells must tolerate fetal allo-antigens and remain competent to respond to infectio …
Genome editing HLA alleles for a pilot immunocompatible hESC line in a Chinese hESC bank for cell therapies.
Ji TT, Niu SS, Fang MH, Xu LX, Wang X, Zou J, Xu F, Zhang M, Niu R, Wu J, Wang L, Li ZK, Yang YG, Hao J, Li W, Hu Z, Zhou Q. Ji TT, et al. Cell Prolif. 2023 May;56(5):e13471. doi: 10.1111/cpr.13471. Epub 2023 May 17. Cell Prolif. 2023. PMID: 37199039 Free PMC article.
We generated an immunocompatible hESC line by disrupting HLA-B, HLA-C, and CIITA genes while retaining HLA-A*11:01 (HLA-A*11:01-retained, HLA-A11(R) ), which covers ~21% of the Chinese population. ...This approach provides a basis for establishment of …
We generated an immunocompatible hESC line by disrupting HLA-B, HLA-C, and CIITA genes while retaining HLA-A*11:01 (HLA
Differential expression of HLA-E, HLA-F, and HLA-G transcripts in human tissue.
Wei XH, Orr HT. Wei XH, et al. Hum Immunol. 1990 Oct;29(2):131-42. doi: 10.1016/0198-8859(90)90076-2. Hum Immunol. 1990. PMID: 2249951
The data presented here demonstrate that the HLA-G class I gene is unique among the members of the human class I gene family in that its expression is restricted to extraembryonic tissues during gestation. Furthermore, the pattern of HLA-G expression in these tissues
The data presented here demonstrate that the HLA-G class I gene is unique among the members of the human class I gene family in that its exp …
180 results