这是一篇来自已证抗体库的有关大鼠 Cd4的综述,是根据49篇发表使用所有方法的文章归纳的。这综述旨在帮助来邦网的访客找到最适合Cd4 抗体。
Cd4 同义词: W3/25; p55

伯乐(Bio-Rad)公司
小鼠 单克隆(W3/25)
  • 免疫组化; 大鼠; 1:100; 图 4a
伯乐(Bio-Rad)公司 Cd4抗体(Bio-Rad, MCA55G)被用于被用于免疫组化在大鼠样本上浓度为1:100 (图 4a). BMC Med (2020) ncbi
小鼠 单克隆(W3/25)
  • 免疫组化-冰冻切片; 大鼠; 图 s1a
伯乐(Bio-Rad)公司 Cd4抗体(Bio-Rad Serotec, MCA55A647)被用于被用于免疫组化-冰冻切片在大鼠样本上 (图 s1a). J Clin Invest (2020) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠; 1:10; 图 4b
伯乐(Bio-Rad)公司 Cd4抗体(Bio-Rad, W3/25)被用于被用于流式细胞仪在大鼠样本上浓度为1:10 (图 4b). J Immunol (2018) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠; 图 s7
伯乐(Bio-Rad)公司 Cd4抗体(AbD Serotec, W3/25)被用于被用于流式细胞仪在大鼠样本上 (图 s7). Proc Natl Acad Sci U S A (2017) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠; 1:100; 图 s1
伯乐(Bio-Rad)公司 Cd4抗体(Serotec, W3/25)被用于被用于流式细胞仪在大鼠样本上浓度为1:100 (图 s1). Acta Neuropathol (2015) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠; 图 9A
伯乐(Bio-Rad)公司 Cd4抗体(AbD Serotec, MCA55PB)被用于被用于流式细胞仪在大鼠样本上 (图 9A). Transplantation (2015) ncbi
小鼠 单克隆(W3/25)
  • 免疫组化-石蜡切片; 大鼠; 1:100; 图 3
伯乐(Bio-Rad)公司 Cd4抗体(AbD Serotec, MCA55R)被用于被用于免疫组化-石蜡切片在大鼠样本上浓度为1:100 (图 3). MBio (2015) ncbi
小鼠 单克隆(OX-38)
  • 抑制或激活实验; 大鼠; 10 ug/ml
伯乐(Bio-Rad)公司 Cd4抗体(AbD, MCA372G)被用于被用于抑制或激活实验在大鼠样本上浓度为10 ug/ml. Exp Neurol (2015) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠; 图 7c
伯乐(Bio-Rad)公司 Cd4抗体(AbD Serotec, MCA55PB)被用于被用于流式细胞仪在大鼠样本上 (图 7c). J Immunotoxicol (2015) ncbi
小鼠 单克隆(OX-35)
  • 免疫组化-石蜡切片; 大鼠; 图 1
伯乐(Bio-Rad)公司 Cd4抗体(Serotec, OX35)被用于被用于免疫组化-石蜡切片在大鼠样本上 (图 1). Methods Mol Biol (2014) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 小鼠; 图 8
伯乐(Bio-Rad)公司 Cd4抗体(AbD Serotec, W3/25)被用于被用于流式细胞仪在小鼠样本上 (图 8). BMC Immunol (2012) ncbi
赛默飞世尔
小鼠 单克隆(OX35)
  • 流式细胞仪; 大鼠; 1:100; 图 2d
赛默飞世尔 Cd4抗体(eBioscience, 12-C0040)被用于被用于流式细胞仪在大鼠样本上浓度为1:100 (图 2d). Mol Med Rep (2017) ncbi
小鼠 单克隆(OX-35)
  • 流式细胞仪; 大鼠; 图 s1a
赛默飞世尔 Cd4抗体(Caltag, OX-35)被用于被用于流式细胞仪在大鼠样本上 (图 s1a). PLoS ONE (2016) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠; 图 2
赛默飞世尔 Cd4抗体(Caltag, W3/25)被用于被用于流式细胞仪在大鼠样本上 (图 2). Clin Immunol (2011) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠
赛默飞世尔 Cd4抗体(Invitrogen, W3/25)被用于被用于流式细胞仪在大鼠样本上. Inflamm Bowel Dis (2008) ncbi
小鼠 单克隆(W3/25)
  • 免疫组化; 大鼠
赛默飞世尔 Cd4抗体(BioSource, W3/25)被用于被用于免疫组化在大鼠样本上. Int J Androl (2009) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠; 表 1
赛默飞世尔 Cd4抗体(Caltag, W3/25)被用于被用于流式细胞仪在大鼠样本上 (表 1). Inflamm Bowel Dis (2007) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠; 表 1
赛默飞世尔 Cd4抗体(Caltag, W3/25)被用于被用于流式细胞仪在大鼠样本上 (表 1). Clin Exp Immunol (2006) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠
赛默飞世尔 Cd4抗体(Caltag, W3/25)被用于被用于流式细胞仪在大鼠样本上. Immunology (2005) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠; 图 5
赛默飞世尔 Cd4抗体(Caltag, W3/25)被用于被用于流式细胞仪在大鼠样本上 (图 5). Clin Exp Immunol (2004) ncbi
小鼠 单克隆(IF4/W3-25)
  • 流式细胞仪; 大鼠
赛默飞世尔 Cd4抗体(caltag, if4)被用于被用于流式细胞仪在大鼠样本上. Transplantation (2000) ncbi
小鼠 单克隆(IF4/W3-25)
  • 流式细胞仪; 大鼠; 图 1
赛默飞世尔 Cd4抗体(Caltag, IF4)被用于被用于流式细胞仪在大鼠样本上 (图 1). Transplantation (1999) ncbi
小鼠 单克隆(W3/25)
  • 免疫组化; 大鼠; 1:100
赛默飞世尔 Cd4抗体(Biosource, W3/25)被用于被用于免疫组化在大鼠样本上浓度为1:100. Cancer Res (1999) ncbi
小鼠 单克隆(IF4/W3-25)
  • 流式细胞仪; 大鼠
赛默飞世尔 Cd4抗体(Caltag, if4)被用于被用于流式细胞仪在大鼠样本上. Transplantation (1998) ncbi
小鼠 单克隆(IF4/W3-25)
  • 流式细胞仪; 大鼠
赛默飞世尔 Cd4抗体(caltag, if4)被用于被用于流式细胞仪在大鼠样本上. Transplantation (1998) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠
赛默飞世尔 Cd4抗体(Caltag, W3/25)被用于被用于流式细胞仪在大鼠样本上. Transplantation (1998) ncbi
小鼠 单克隆(W3/25)
  • 免疫组化; 大鼠; 1:100; 图 6
赛默飞世尔 Cd4抗体(Biosource, W3/25)被用于被用于免疫组化在大鼠样本上浓度为1:100 (图 6). Hum Gene Ther (1997) ncbi
小鼠 单克隆(W3/25)
  • 其他; 大鼠
  • 流式细胞仪; 大鼠
赛默飞世尔 Cd4抗体(noco, W3/25)被用于被用于其他在大鼠样本上 和 被用于流式细胞仪在大鼠样本上. Cell (1977) ncbi
小鼠 单克隆(W3/25)
  • 抑制或激活实验; 大鼠; 图 1
赛默飞世尔 Cd4抗体(noco, W3/25)被用于被用于抑制或激活实验在大鼠样本上 (图 1). Nature (1979) ncbi
小鼠 单克隆(W3/25)
  • 流式细胞仪; 大鼠
赛默飞世尔 Cd4抗体(noco, W3/25)被用于被用于流式细胞仪在大鼠样本上. J Exp Med (1978) ncbi
艾博抗(上海)贸易有限公司
小鼠 单克隆(OX-35)
  • 免疫组化; 大鼠; 1:100
艾博抗(上海)贸易有限公司 Cd4抗体(Abcam, ab33775)被用于被用于免疫组化在大鼠样本上浓度为1:100. Biol Proced Online (2020) ncbi
小鼠 单克隆(OX-35)
  • 免疫组化; 大鼠; 1:1000; 图 4
艾博抗(上海)贸易有限公司 Cd4抗体(Abcam, AB33775)被用于被用于免疫组化在大鼠样本上浓度为1:1000 (图 4). Exp Neurol (2016) ncbi
圣克鲁斯生物技术
大鼠 单克隆(GK1.5)
  • 免疫组化-冰冻切片; 小鼠; 1:500
  • 免疫组化; 小鼠; 图 45
圣克鲁斯生物技术 Cd4抗体(Santa Cruz, sc-13573)被用于被用于免疫组化-冰冻切片在小鼠样本上浓度为1:500 和 被用于免疫组化在小鼠样本上 (图 45). J Toxicol Pathol (2017) ncbi
小鼠 单克隆(RIV6)
  • 免疫沉淀; 大鼠; 图 s3
圣克鲁斯生物技术 Cd4抗体(Santa Cruz, sc-52385)被用于被用于免疫沉淀在大鼠样本上 (图 s3). PLoS ONE (2015) ncbi
大鼠 单克隆(GK1.5)
  • 免疫组化-冰冻切片; 小鼠; 1:100
圣克鲁斯生物技术 Cd4抗体(Santa Cruz, sc-13573)被用于被用于免疫组化-冰冻切片在小鼠样本上浓度为1:100. J Mol Cell Cardiol (2014) ncbi
大鼠 单克隆(GK1.5)
  • 免疫沉淀; 大鼠
  • 免疫印迹; 大鼠; 1:500
圣克鲁斯生物技术 Cd4抗体(Santa Cruz Biotech, sc-13573)被用于被用于免疫沉淀在大鼠样本上 和 被用于免疫印迹在大鼠样本上浓度为1:500. PLoS ONE (2014) ncbi
Novus Biologicals
domestic rabbit 多克隆
Novus Biologicals Cd4抗体(Novus Biologicals, NBP1-19371)被用于. Sci Rep (2015) ncbi
碧迪BD
小鼠 单克隆(OX-35)
  • 流式细胞仪; 大鼠; 图 5a
碧迪BD Cd4抗体(BD Biosciences, OX-35)被用于被用于流式细胞仪在大鼠样本上 (图 5a). Biomed Res Int (2019) ncbi
小鼠 单克隆(OX-35)
  • 流式细胞仪; 大鼠; 图 s1c
碧迪BD Cd4抗体(BD, OX-35)被用于被用于流式细胞仪在大鼠样本上 (图 s1c). Nature (2019) ncbi
小鼠 单克隆(OX-35)
  • 流式细胞仪; 小鼠; 1:400; 图 2a
碧迪BD Cd4抗体(BD Biosciences, 561833)被用于被用于流式细胞仪在小鼠样本上浓度为1:400 (图 2a). Oncol Rep (2018) ncbi
小鼠 单克隆(OX-35)
  • 流式细胞仪; 大鼠; 图 2e, 2f
碧迪BD Cd4抗体(BD, OX-35)被用于被用于流式细胞仪在大鼠样本上 (图 2e, 2f). Invest Ophthalmol Vis Sci (2018) ncbi
小鼠 单克隆(OX-38)
  • 免疫组化-冰冻切片; 大鼠; 1:50
  • 免疫组化; 大鼠; 图 46
碧迪BD Cd4抗体(BD Biosciences, 550297)被用于被用于免疫组化-冰冻切片在大鼠样本上浓度为1:50 和 被用于免疫组化在大鼠样本上 (图 46). J Toxicol Pathol (2017) ncbi
小鼠 单克隆(OX-35)
  • 流式细胞仪; 大鼠; 图 1f
碧迪BD Cd4抗体(BD Pharmingen, OX-35)被用于被用于流式细胞仪在大鼠样本上 (图 1f). Eur J Immunol (2017) ncbi
小鼠 单克隆(OX-38)
  • 流式细胞仪; 大鼠; 图 5
碧迪BD Cd4抗体(BD Biosciences, 554843)被用于被用于流式细胞仪在大鼠样本上 (图 5). Int J Mol Med (2017) ncbi
小鼠 单克隆(OX-35)
  • 流式细胞仪; 大鼠; 图 5
碧迪BD Cd4抗体(BD Pharmingen, 554839)被用于被用于流式细胞仪在大鼠样本上 (图 5). Exp Ther Med (2016) ncbi
小鼠 单克隆(OX-38)
  • 流式细胞仪; 大鼠; 图 2b
碧迪BD Cd4抗体(BD Biosciences, OX-38)被用于被用于流式细胞仪在大鼠样本上 (图 2b). Brain Behav Immun (2015) ncbi
小鼠 单克隆(OX-35)
  • 流式细胞仪; 大鼠; 图 4
碧迪BD Cd4抗体(BD Biosciences, OX-35)被用于被用于流式细胞仪在大鼠样本上 (图 4). PLoS ONE (2015) ncbi
小鼠 单克隆(OX-35)
  • 流式细胞仪; 大鼠
碧迪BD Cd4抗体(BD Pharmingen, OX-35)被用于被用于流式细胞仪在大鼠样本上. Neuroimmunomodulation (2015) ncbi
小鼠 单克隆(OX-35)
  • 流式细胞仪; 大鼠; 图 4c
碧迪BD Cd4抗体(BD Pharmingen, OX-35)被用于被用于流式细胞仪在大鼠样本上 (图 4c). J Immunol (2015) ncbi
小鼠 单克隆(OX-38)
  • 流式细胞仪; 大鼠
碧迪BD Cd4抗体(BD Pharmingen, 551397)被用于被用于流式细胞仪在大鼠样本上. J Neurosci (2014) ncbi
小鼠 单克隆(OX-35)
  • 免疫组化-冰冻切片; 大鼠; 图 6
碧迪BD Cd4抗体(BD Biosciences, 550296)被用于被用于免疫组化-冰冻切片在大鼠样本上 (图 6). J Immunotoxicol (2015) ncbi
小鼠 单克隆(OX-38)
  • 流式细胞仪; 小鼠; 图 8
碧迪BD Cd4抗体(BD Pharmingen, 554843)被用于被用于流式细胞仪在小鼠样本上 (图 8). BMC Immunol (2012) ncbi
文章列表
  1. Aaltonen N, Singha P, Jakupović H, Wirth T, Samaranayake H, Pasonen Seppänen S, et al. High-Resolution Confocal Fluorescence Imaging of Serine Hydrolase Activity in Cryosections - Application to Glioma Brain Unveils Activity Hotspots Originating from Tumor-Associated Neutrophils. Biol Proced Online. 2020;22:6 pubmed 出版商
  2. Jörns A, Ishikawa D, Teraoku H, Yoshimoto T, Wedekind D, Lenzen S. Remission of autoimmune diabetes by anti-TCR combination therapies with anti-IL-17A or/and anti-IL-6 in the IDDM rat model of type 1 diabetes. BMC Med. 2020;18:33 pubmed 出版商
  3. N diaye M, Brauner S, Flytzani S, Kular L, Warnecke A, Adzemovic M, et al. C-type lectin receptors Mcl and Mincle control development of multiple sclerosis-like neuroinflammation. J Clin Invest. 2020;130:838-852 pubmed 出版商
  4. Jirsova Z, Heczkova M, Dankova H, Malinska H, Videnska P, Vespalcova H, et al. The Effect of Butyrate-Supplemented Parenteral Nutrition on Intestinal Defence Mechanisms and the Parenteral Nutrition-Induced Shift in the Gut Microbiota in the Rat Model. Biomed Res Int. 2019;2019:7084734 pubmed 出版商
  5. Lodygin D, Hermann M, Schweingruber N, Flügel Koch C, Watanabe T, Schlosser C, et al. β-Synuclein-reactive T cells induce autoimmune CNS grey matter degeneration. Nature. 2019;566:503-508 pubmed 出版商
  6. Chen Y, Huang Y, Lu X, Wang G, Chi P. Antitumor effects of the silencing of programmed cell death ligand 1 in colorectal cancer via immunoregulation. Oncol Rep. 2018;40:3370-3380 pubmed 出版商
  7. Pridans C, Raper A, Davis G, Alves J, Sauter K, Lefèvre L, et al. Pleiotropic Impacts of Macrophage and Microglial Deficiency on Development in Rats with Targeted Mutation of the Csf1r Locus. J Immunol. 2018;201:2683-2699 pubmed 出版商
  8. Pepple K, Wilson L, Van Gelder R. Comparison of Aqueous and Vitreous Lymphocyte Populations From Two Rat Models of Experimental Uveitis. Invest Ophthalmol Vis Sci. 2018;59:2504-2511 pubmed 出版商
  9. Kyratsous N, Bauer I, Zhang G, Pesic M, Bartholomäus I, Mues M, et al. Visualizing context-dependent calcium signaling in encephalitogenic T cells in vivo by two-photon microscopy. Proc Natl Acad Sci U S A. 2017;114:E6381-E6389 pubmed 出版商
  10. Furukawa S, Nagaike M, Ozaki K. Databases for technical aspects of immunohistochemistry. J Toxicol Pathol. 2017;30:79-107 pubmed 出版商
  11. Tuncel J, Haag S, Holmdahl R. MHC class II alleles associated with Th1 rather than Th17 type immunity drive the onset of early arthritis in a rat model of rheumatoid arthritis. Eur J Immunol. 2017;47:563-574 pubmed 出版商
  12. Sun C, Zhang J, Chen L, Liu T, Xu G, Li C, et al. IL-17 contributed to the neuropathic pain following peripheral nerve injury by promoting astrocyte proliferation and secretion of proinflammatory cytokines. Mol Med Rep. 2017;15:89-96 pubmed 出版商
  13. Liu T, Zhang Y, Shen Z, Zou X, Chen X, Chen L, et al. Immunomodulatory effects of OX40Ig gene-modified adipose tissue-derived mesenchymal stem cells on rat kidney transplantation. Int J Mol Med. 2017;39:144-152 pubmed 出版商
  14. Rigo Adrover M, Franch A, Castell M, Pérez Cano F. Preclinical Immunomodulation by the Probiotic Bifidobacterium breve M-16V in Early Life. PLoS ONE. 2016;11:e0166082 pubmed 出版商
  15. Heuer A, Kirkeby A, Pfisterer U, Jönsson M, Parmar M. hESC-derived neural progenitors prevent xenograft rejection through neonatal desensitisation. Exp Neurol. 2016;282:78-85 pubmed 出版商
  16. Hu G, Yang S, Hu W, Wen Z, He D, Zeng L, et al. Effect of cold stress on immunity in rats. Exp Ther Med. 2016;11:33-42 pubmed
  17. Zeka B, Hastermann M, Hochmeister S, Kögl N, Kaufmann N, Schanda K, et al. Highly encephalitogenic aquaporin 4-specific T cells and NMO-IgG jointly orchestrate lesion location and tissue damage in the CNS. Acta Neuropathol. 2015;130:783-98 pubmed 出版商
  18. Ren H, Li F, Tian C, Nie H, Wang L, Li H, et al. Inhibition of Proteasome Activity by Low-dose Bortezomib Attenuates Angiotensin II-induced Abdominal Aortic Aneurysm in Apo E(-/-) Mice. Sci Rep. 2015;5:15730 pubmed 出版商
  19. Rodríguez Muñoz R, Cárdenas Aguayo M, Alemán V, Osorio B, Chávez González O, Rendon A, et al. Novel Nuclear Protein Complexes of Dystrophin 71 Isoforms in Rat Cultured Hippocampal GABAergic and Glutamatergic Neurons. PLoS ONE. 2015;10:e0137328 pubmed 出版商
  20. Nacka Aleksić M, Djikić J, Pilipović I, Stojić Vukanić Z, Kosec D, Bufan B, et al. Male rats develop more severe experimental autoimmune encephalomyelitis than female rats: sexual dimorphism and diergism at the spinal cord level. Brain Behav Immun. 2015;49:101-18 pubmed 出版商
  21. Abril Gil M, Garcia Just A, Pérez Cano F, Franch Ã, Castell M. Development and characterization of an effective food allergy model in Brown Norway rats. PLoS ONE. 2015;10:e0125314 pubmed 出版商
  22. Reese S, Wilson N, Huang G, Redfield R, Zhong W, Djamali A. Calcineurin Inhibitor Minimization With Ixazomib, an Investigational Proteasome Inhibitor, for the Prevention of Antibody Mediated Rejection in a Preclinical Model. Transplantation. 2015;99:1785-95 pubmed 出版商
  23. Fernández Hurst N, Bibolini M, Roth G. Diazepam Inhibits Proliferation of Lymph Node Cells Isolated from Rats with Experimental Autoimmune Encephalomyelitis. Neuroimmunomodulation. 2015;22:293-302 pubmed 出版商
  24. Haag S, Tuncel J, Thordardottir S, Mason D, Yau A, Dobritzsch D, et al. Positional identification of RT1-B (HLA-DQ) as susceptibility locus for autoimmune arthritis. J Immunol. 2015;194:2539-50 pubmed 出版商
  25. Safeukui I, Gómez N, Adelani A, Burté F, Afolabi N, Akondy R, et al. Malaria induces anemia through CD8+ T cell-dependent parasite clearance and erythrocyte removal in the spleen. MBio. 2015;6: pubmed 出版商
  26. Pusic A, Mitchell H, Kunkler P, Klauer N, Kraig R. Spreading depression transiently disrupts myelin via interferon-gamma signaling. Exp Neurol. 2015;264:43-54 pubmed 出版商
  27. Yang D, Sun Y, Bhaumik S, Li Y, Baumann J, Lin X, et al. Blocking lymphocyte trafficking with FTY720 prevents inflammation-sensitized hypoxic-ischemic brain injury in newborns. J Neurosci. 2014;34:16467-81 pubmed 出版商
  28. Thorn M, Hudson A, Kreeger J, Kawabe T, Bowman C, Collinge M. Evaluation of a novel delayed-type hypersensitivity assay to Candida albicans in adult and neonatal rats. J Immunotoxicol. 2015;12:350-60 pubmed 出版商
  29. Wu C, He S, Peng Y, Kushwaha K, Lin J, Dong J, et al. TSLPR deficiency attenuates atherosclerotic lesion development associated with the inhibition of TH17 cells and the promotion of regulator T cells in ApoE-deficient mice. J Mol Cell Cardiol. 2014;76:33-45 pubmed 出版商
  30. Cavaretta J, Sherer K, Lee K, Kim E, Issema R, Chung H. Polarized axonal surface expression of neuronal KCNQ potassium channels is regulated by calmodulin interaction with KCNQ2 subunit. PLoS ONE. 2014;9:e103655 pubmed 出版商
  31. Wang Y, Alexander S. DNA vaccination as a treatment for chronic kidney disease. Methods Mol Biol. 2014;1143:297-303 pubmed 出版商
  32. Zschemisch N, Glage S, Wedekind D, Weinstein E, Cui X, Dorsch M, et al. Zinc-finger nuclease mediated disruption of Rag1 in the LEW/Ztm rat. BMC Immunol. 2012;13:60 pubmed 出版商
  33. Mu L, Zhang Y, Sun B, Wang J, Xie X, Li N, et al. Activation of the receptor for advanced glycation end products (RAGE) exacerbates experimental autoimmune myasthenia gravis symptoms. Clin Immunol. 2011;141:36-48 pubmed 出版商
  34. Qian B, Tonkonogy S, Sartor R. Aberrant innate immune responses in TLR-ligand activated HLA-B27 transgenic rat cells. Inflamm Bowel Dis. 2008;14:1358-65 pubmed 出版商
  35. Hou M, Andersson M, Zheng C, Sundblad A, Soder O, Jahnukainen K. Immunomagnetic separation of normal rat testicular cells from Roser's T-cell leukaemia cells is ineffective. Int J Androl. 2009;32:66-73 pubmed
  36. Hoentjen F, Tonkonogy S, Qian B, Liu B, Dieleman L, Sartor R. CD4(+) T lymphocytes mediate colitis in HLA-B27 transgenic rats monoassociated with nonpathogenic Bacteroides vulgatus. Inflamm Bowel Dis. 2007;13:317-24 pubmed
  37. Hoentjen F, Tonkonogy S, Liu B, Sartor R, Taurog J, Dieleman L. Adoptive transfer of nontransgenic mesenteric lymph node cells induces colitis in athymic HLA-B27 transgenic nude rats. Clin Exp Immunol. 2006;143:474-83 pubmed
  38. Qian B, Tonkonogy S, Hoentjen F, Dieleman L, Sartor R. Dysregulated luminal bacterial antigen-specific T-cell responses and antigen-presenting cell function in HLA-B27 transgenic rats with chronic colitis. Immunology. 2005;116:112-21 pubmed
  39. Dieleman L, Hoentjen F, Qian B, Sprengers D, Tjwa E, Torres M, et al. Reduced ratio of protective versus proinflammatory cytokine responses to commensal bacteria in HLA-B27 transgenic rats. Clin Exp Immunol. 2004;136:30-9 pubmed
  40. Lan F, Hayamizu K, Strober S. Cyclosporine facilitates chimeric and inhibits nonchimeric tolerance after posttransplant total lymphoid irradiation. Transplantation. 2000;69:649-55 pubmed
  41. Hayamizu K, Lan F, Huie P, Sibley R, Strober S. Comparison of chimeric acid and non-chimeric tolerance using posttransplant total lymphoid irradiation: cytokine expression and chronic rejection. Transplantation. 1999;68:1036-44 pubmed
  42. Benedetti S, Bruzzone M, Pollo B, DiMeco F, Magrassi L, Pirola B, et al. Eradication of rat malignant gliomas by retroviral-mediated, in vivo delivery of the interleukin 4 gene. Cancer Res. 1999;59:645-52 pubmed
  43. Hayamizu K, Huie P, Sibley R, Strober S. Monocyte-derived dendritic cell precursors facilitate tolerance to heart allografts after total lymphoid irradiation. Transplantation. 1998;66:1285-91 pubmed
  44. Hayamizu K, Zeng D, Huie P, Garcia Ojeda M, Bloch D, Fong L, et al. Donor blood monocytes but not T or B cells facilitate long-term allograft survival after total lymphoid irradiation. Transplantation. 1998;66:585-93 pubmed
  45. Olver S, Goto S, Chiba S, Clouston A, Kelso A. Persistence of donor-reactive CD4+ T cells in liver and spleen of rats tolerant to a liver allograft. Transplantation. 1998;66:132-5 pubmed
  46. Benedetti S, DiMeco F, Pollo B, Cirenei N, Colombo B, Bruzzone M, et al. Limited efficacy of the HSV-TK/GCV system for gene therapy of malignant gliomas and perspectives for the combined transduction of the interleukin-4 gene. Hum Gene Ther. 1997;8:1345-53 pubmed
  47. Williams A, Galfre G, Milstein C. Analysis of cell surfaces by xenogeneic myeloma-hybrid antibodies: differentiation antigens of rat lymphocytes. Cell. 1977;12:663-73 pubmed
  48. Webb M, Mason D, Williams A. Inhibition of mixed lymphocyte response by monoclonal antibody specific for a rat T lymphocyte subset. Nature. 1979;282:841-3 pubmed
  49. White R, Mason D, Williams A, Galfre G, Milstein C. T-lymphocyte heterogeneity in the rat: separation of functional subpopulations using a monoclonal antibody. J Exp Med. 1978;148:664-73 pubmed