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Connection

David Serreze to Mice, Knockout

This is a "connection" page, showing publications David Serreze has written about Mice, Knockout.
Connection Strength

0.855
  1. Racine JJ, Dwyer JR, Chapman HD, Bell A, Robledo RF, Serreze DV. Direct-in-NOD genetic ablation of Bcl3 leads to complete type 1 diabetes protection. J Immunol. 2025 Nov 01; 214(11):2847-2860.
    View in: PubMed
    Score: 0.169
  2. Racine JJ, Misherghi A, Dwyer JR, Maser R, Forte E, Bedard O, Sattler S, Pugliese A, Landry L, Elso C, Nakayama M, Mannering S, Rosenthal N, Serreze DV. HLA-DQ8 Supports Development of Insulitis Mediated by Insulin-Reactive Human TCR-Transgenic T Cells in Nonobese Diabetic Mice. J Immunol. 2023 12 15; 211(12):1792-1805.
    View in: PubMed
    Score: 0.148
  3. Racine JJ, Stewart I, Ratiu J, Christianson G, Lowell E, Helm K, Allocco J, Maser RS, Chen YG, Lutz CM, Roopenian D, Schloss J, DiLorenzo TP, Serreze DV. Improved Murine MHC-Deficient HLA Transgenic NOD Mouse Models for Type 1 Diabetes Therapy Development. Diabetes. 2018 05; 67(5):923-935.
    View in: PubMed
    Score: 0.099
  4. Chen YG, Scheuplein F, Driver JP, Hewes AA, Reifsnyder PC, Leiter EH, Serreze DV. Testing the role of P2X7 receptors in the development of type 1 diabetes in nonobese diabetic mice. J Immunol. 2011 Apr 01; 186(7):4278-84.
    View in: PubMed
    Score: 0.061
  5. Scheuplein F, Rissiek B, Driver JP, Chen YG, Koch-Nolte F, Serreze DV. A recombinant heavy chain antibody approach blocks ART2 mediated deletion of an iNKT cell population that upon activation inhibits autoimmune diabetes. J Autoimmun. 2010 Mar; 34(2):145-54.
    View in: PubMed
    Score: 0.055
  6. Chen YG, Choisy-Rossi CM, Holl TM, Chapman HD, Besra GS, Porcelli SA, Shaffer DJ, Roopenian D, Wilson SB, Serreze DV. Activated NKT cells inhibit autoimmune diabetes through tolerogenic recruitment of dendritic cells to pancreatic lymph nodes. J Immunol. 2005 Feb 01; 174(3):1196-204.
    View in: PubMed
    Score: 0.040
  7. Serreze DV, Silveira PA. The role of B lymphocytes as key antigen-presenting cells in the development of T cell-mediated autoimmune type 1 diabetes. Curr Dir Autoimmun. 2003; 6:212-27.
    View in: PubMed
    Score: 0.035
  8. Debreceni IL, Chimenti MS, Serreze DV, Geurts AM, Chen YG, Lieberman SM. Toll-Like Receptor 7 Is Required for Lacrimal Gland Autoimmunity and Type 1 Diabetes Development in Male Nonobese Diabetic Mice. Int J Mol Sci. 2020 Dec 13; 21(24).
    View in: PubMed
    Score: 0.030
  9. Shapiro MR, Yeh WI, Longfield JR, Gallagher J, Infante CM, Wellford S, Posgai AL, Atkinson MA, Campbell-Thompson M, Lieberman SM, Serreze DV, Geurts AM, Chen YG, Brusko TM. CD226 Deletion Reduces Type 1 Diabetes in the NOD Mouse by Impairing Thymocyte Development and Peripheral T Cell Activation. Front Immunol. 2020; 11:2180.
    View in: PubMed
    Score: 0.029
  10. Ye C, Low BE, Wiles MV, Brusko TM, Serreze DV, Driver JP. CD70 Inversely Regulates Regulatory T Cells and Invariant NKT Cells and Modulates Type 1 Diabetes in NOD Mice. J Immunol. 2020 10 01; 205(7):1763-1777.
    View in: PubMed
    Score: 0.029
  11. Foda BM, Ciecko AE, Serreze DV, Ridgway WM, Geurts AM, Chen YG. The CD137 Ligand Is Important for Type 1 Diabetes Development but Dispensable for the Homeostasis of Disease-Suppressive CD137+ FOXP3+ Regulatory CD4 T Cells. J Immunol. 2020 06 01; 204(11):2887-2899.
    View in: PubMed
    Score: 0.029
  12. Sandor AM, Lindsay RS, Dyjack N, Whitesell JC, Rios C, Bradley BJ, Haskins K, Serreze DV, Geurts AM, Chen YG, Seibold MA, Jacobelli J, Friedman RS. CD11c+ Cells Are Gatekeepers for Lymphocyte Trafficking to Infiltrated Islets During Type 1 Diabetes. Front Immunol. 2019; 10:99.
    View in: PubMed
    Score: 0.026
  13. Lee JS, Scandiuzzi L, Ray A, Wei J, Hofmeyer KA, Abadi YM, Loke P, Lin J, Yuan J, Serreze DV, Allison JP, Zang X. B7x in the periphery abrogates pancreas-specific damage mediated by self-reactive CD8 T cells. J Immunol. 2012 Oct 15; 189(8):4165-74.
    View in: PubMed
    Score: 0.017
  14. Stolp J, Chen YG, Cox SL, Henck V, Zhang W, Tsaih SW, Chapman H, Stearns T, Serreze DV, Silveira PA. Subcongenic analyses reveal complex interactions between distal chromosome 4 genes controlling diabetogenic B cells and CD4 T cells in nonobese diabetic mice. J Immunol. 2012 Aug 01; 189(3):1406-17.
    View in: PubMed
    Score: 0.017
  15. Bogdanik LP, Chapman HD, Miers KE, Serreze DV, Burgess RW. A MusD retrotransposon insertion in the mouse Slc6a5 gene causes alterations in neuromuscular junction maturation and behavioral phenotypes. PLoS One. 2012; 7(1):e30217.
    View in: PubMed
    Score: 0.016
  16. Chaparro RJ, Burton AR, Serreze DV, Vignali DA, DiLorenzo TP. Rapid identification of MHC class I-restricted antigens relevant to autoimmune diabetes using retrogenic T cells. J Immunol Methods. 2008 Jun 01; 335(1-2):106-15.
    View in: PubMed
    Score: 0.012
  17. Jarchum I, Baker JC, Yamada T, Takaki T, Marron MP, Serreze DV, DiLorenzo TP. In vivo cytotoxicity of insulin-specific CD8+ T-cells in HLA-A*0201 transgenic NOD mice. Diabetes. 2007 Oct; 56(10):2551-60.
    View in: PubMed
    Score: 0.012
  18. Chen J, Chen YG, Reifsnyder PC, Schott WH, Lee CH, Osborne M, Scheuplein F, Haag F, Koch-Nolte F, Serreze DV, Leiter EH. Targeted disruption of CD38 accelerates autoimmune diabetes in NOD/Lt mice by enhancing autoimmunity in an ADP-ribosyltransferase 2-dependent fashion. J Immunol. 2006 Apr 15; 176(8):4590-9.
    View in: PubMed
    Score: 0.011
  19. Xu BY, Yang H, Serreze DV, MacIntosh R, Yu W, Wright JR. Rapid destruction of encapsulated islet xenografts by NOD mice is CD4-dependent and facilitated by B-cells: innate immunity and autoimmunity do not play significant roles. Transplantation. 2005 Aug 15; 80(3):402-9.
    View in: PubMed
    Score: 0.010
  20. Pearson T, Markees TG, Serreze DV, Pierce MA, Marron MP, Wicker LS, Peterson LB, Shultz LD, Mordes JP, Rossini AA, Greiner DL. Genetic disassociation of autoimmunity and resistance to costimulation blockade-induced transplantation tolerance in nonobese diabetic mice. J Immunol. 2003 Jul 01; 171(1):185-95.
    View in: PubMed
    Score: 0.009
Connection Strength

The connection strength for concepts is the sum of the scores for each matching publication.

Publication scores are based on many factors, including how long ago they were written and whether the person is a first or senior author.