407
Views
32
CrossRef citations to date
0
Altmetric
Research Article

Cytokine and adhesion molecule expression in primary human endothelial cells stimulated with fever-range hyperthermia

, , , , , , , , & show all
Pages 534-551 | Published online: 09 Jul 2009

  • Girard JP, Springer TA. High endothelial venules (HEVs): specialized endothelium for lymphocyte migration. Immunol Today 1995; 16: 449.
  • Butcher EC, Williams M, Youngman K, Rott L, Briskin M. Lymphocyte trafficking and regional immunity. Adv Immunol 1999; 72: 209-53.
  • Rosen SD. Endothelial ligands for L-selectin: from lymphocyte recirculation to allograft rejection. Am J Pathol 1999; 155: 1013-20.
  • Springer TA. Traffic signals for lymphocyte recirculation and leukocyte emigration: the multi-step paradigm. Cell 1994; 76: 301-14.
  • Muller WA, Randolph GJ. Migration of leukocytes across endothelium and beyond: molecules involved in the transmigration and fate of monocytes. J Leukocyte Biol 1999; 66: 698-704.
  • Michie SA, Sytwu H-K, McDevitt JO. The roles of a4 integrins in the development of insulin-dependent diabetes mellitus. Curr Topics Microbiol Immunol 1998; 231: 65-83.
  • Cyster JG. Chemokines and cell migration in secondary lymphoid organs. Science 1999; 286: 2098-102.
  • Evans SS, Wang WC, Bain MD, Burd R, Ostberg JR, Repasky EA. Fever-range hyperthermia dynamically regulates lymphocyte delivery to high endothelial venules. Blood 2001:97:2727-33.
  • Wang WC, Goldman LM, Schleider DM, Subjeck JR, Repasky EA, Evans SS. Feverrange hyperthermia enhances L-selectin-dependent adhesion of lymphocytes to vascular endothelium. J Immunol 1998; 160: 961-9. 550.
  • Evans SS, Frey M, Schleider DM, Bruce RA, Wang WC, Repasky EA, Appenheimer MM. Leukocyte-endothelial cell interactions in tumor immunity. In: Mihich E, Croce C, eds. The Biology of Tumors. New York: Plenum, 1998; 273-86.
  • Evans SS, Schleider DM, Bowman L, Francis ML, Kansas GS, Black JD. Dynamic association of L-selectin with the lymphocyte cytoskeletal matrix. J Immunol 1999; 162: 3615-24.
  • Evans SS, Bain MD, Wang W-C. Fever-range hyperthermia stimulates a4ß7 integrindependent lymphocyte-endothelial adhesion. Int J Hyperthermia 2000; 16: 45-59.
  • Ostberg JR, Repasky EA. Comparison of the effects of two different whole body hyperthermia protocols on the distribution of murine leukocyte populations. Int J Hyperthermia 2000; 16: 29-43.
  • Kraybill WG, Olenki T, Evans SS, Ostberg J, O'Leary KA, Gibbs J, Repasky EA. A Phase I study of low level whole body hyperthermia (LL-WBH) in patients with advanced solid tumors: determination of tolerance and correlation of immune status with mouse models. Int J Hyperthermia, 2002; 18: 253-266.
  • Evans SS, Shah A, Unger E, Bain MD, Wang WC, Repasky EA. Dynamic stimulation of L-selectin ligands and ICAM-1 in high endothelial venules by fever-range hyperthermia FASEB J 2000; 15: A682.
  • Lefor AT, Foster CE, Sartor W, Engbrecht B, Fabian DF, Silverman D. Hyperthermia increases intercellular adhesion molecule-1 expression and lymphocyte adhesion to endothelial cells. Surgery 1994; 116: 214-20.
  • Brand K, Lubbe AS, Justus DJ. Hyperthermia decreases cytokine-mediated adhesion molecule expression on human umbilical vein endothelial cells. Int J Hyperthermia 1996; 12: 527-38.
  • Lin PS, Ho KC, Sung SJ, Gladding J. Effect of tumour necrosis factor, heat, and radiation on the viability and microfilament organization in cultured endothelial cells. Int J Hyperthermia 1992; 8: 667-77.
  • Hasday JD, Bannerman D, Sakarya S, Cross AS, Singh IS. Howard D, Drysdale BE, Goldblum SE. Exposure to febrile temperature modifies endothelial cell response to tumor necrosis factor-a. J App Physiol 2001; 90: 90-8.
  • Andrew DP, Berlin C, Honda S, Yoshino T, Hamann A, Holzmann B, Kilshaw PJ, Butcher EC. Distinct but overlapping epitopes are involved in a4/37-mediated adhesion to vascular cell adhesion molecule-1, mucosal addressin-1, fibronectin, and lymphocyte aggregation. J Immunol 1994; 153: 3847-61.
  • Kansas GS, Ley K, Munro JM, Tedder TF. Regulation of leukocyte rolling and adhesion to high endothelial venules through the cytoplasmic domain of L-selectin. / Exp Med 1993; 177: 833-8.
  • Barak LS, Yocum RR, Nothnagel EA, Webb WW. Fluorescence staining of the actin cytoskeleton in living cells with 7-nitrobenz-2-oxal,3-diazole-phallacidin Proc Natl Acad Sd USA 1980; 77: 980-4.
  • Pumarola-Sune T, Graus F, Chen YX, Cordon-Cardo C, Evans RL. A monoclonal antibody that induces T cell aggregation reacts with vascular endothelial cells and placenta! trophoblasts. J Immunol 1986; 137: 826.
  • Seon BK, Matsuno F, Haruta Y, Kondo M, Barcos M. Long-lasting complete inhibition of human solid tumors in SCID mice by targeting endothelial cells of tumor vasculature with antihuman endoglin immunotoxin Clin Cancer Res 1997; 3: 1031-44.
  • Haruta Y, Seon BK. Distinct human leukemia-associated cell surface glycoprotein GP160 defined by monoclonal antibody SN6. Proc Natl Acad Sd USA 1986; 83: 7898-902.
  • Frey M, Appenheimer MM, Evans SS. Tyrosine kinase-dependent regulation of L-selectin expression through the Leu-13 signal transduction molecule. Evidence for a protein kinase C-independent mechanism of L-selectin shedding. J Immunol 1997; 158: 5424-34.
  • Streeter PR, Berg EL, Rouse BT, Bargatze RF, Butcher EC. A tissue-specific endothelial cell molecule involved in lymphocyte homing. Nature 1988; 331: 41-6.
  • Nakache M, Lakey-Berg E, Streeter PR, Butcher EC. The mucosal vascular addressin is a tissue-specific endothelial adhesion molecule for circulating lymphocytes. Nature 1989; 337: 179-81.
  • Timm EA Jr, Stewart CC. Discrimination between dead and viable apoptotic cells using two-cool TdT assay and surface labeling as detected by flow cytometry. Biochemica 1996; 1:44-7.
  • Barakat AI. Responsiveness of vascular endothelium to shear stress: potential role of ion channels and cellular cytoskeleton. Int J Molec Med 1999; 4: 323-32.
  • Gnant MF, Turner EM, Alexander HR Jr. Effects of hyperthermia and tumour necrosis factor on inflammatory cytokine secretion and procoagulant activity in endothelial cells. Cytokine 2000; 12: 339-47.
  • Frey M., Packianathan, NB, Fehniger TA, Ross ME, Wang WC, Stewart CC, Cahgiuri MA, Evans SS. Differential expression and function of L-selectin on CD56bright and CD56dim natural killer cell subsets. J Immunol 1998; 161: 400-8.
  • Burrows FJ, Derbyshire EJ, Tazzari PL, Amlot P, Gazdar AF, King SW, Letarte M, Vitetta ES, Thorpe PE. Up-regulation of endoglin on vascular endothelial cells in human solid tumors: implications for diagnosis and therapy. Clin Cancer Res 1995; 1: 1623-34.
  • Evans SS. CD225 (Leu-13) Summary and Workshop Report Leu-13 (CD225): an IFNinducible regulator of cellular proliferation and adhesion. In Mason D, ed. Leucocyte Typing VII. Oxford: Oxford University Press, 2001; 49-53.
  • St Croix B, Rago C, Velculescu V, Traverso G, Romans KE, Montgomery E, Lal A, Riggins GJ, Lengauer C, Vogelstein B, Kinzler KW. Genes expressed in human tumor endothelium. Science 2000; 289: 1197-202.
  • Kluger MJ. Fever: role of pyrogens and cryogens. Physiol Rev 1991; 71: 93-127.
  • Hanahan D, Folkman J. Patterns and emerging mechanisms of the angiogenic switch during tumorigenesis. Cell 1996; 86: 353-64.
  • Jaffe EA, Armellino D, Lam G, Cordon-Cardo C, Murray HW, Evans RL. IFN-? and IFN-a induce the expression and synthesis of Leu-13 antigen by cultured human endothelial cells. J Immunol 1989; 143: 3961.
  • Evans SS, Wang WC, Lanzen J, Dewhirst MW, Repasky EA. Fever-range hyperthermia stimulates lymphocyte adhesion to breast tumor microvasculature. Proceedings of the Era of Hope, Department of Defense Breast Cancer Research Program Meeting 8-12 June 2000, Atlanta, GO.
  • Fajardo LF, Prionas SD. Endothelial cells and hyperthermia Int J Hyperthermia 1994; 10: 347-53.
  • Ang C, Dawes J. The effects of hyperthermia on human endothelial mono layers: modulation of thrombotic potential and permeability. Blood Coag Fibrinolysis 1994; 5: 193-9.
  • Kong G, Braun RD, Dewhirst MW. Hyperthermia enables tumor-specific nonparticle delivery: effect of particle size. Cancer Res 2000; 60: 4440-5.
  • Kong G, Braun RD, Dewhirst MW. Characterization of the effect of hyperthermia on nanoparticle from tumor vasculature. Cancer Res 2001; 61: 3027-32.
  • Burd R, Dziedzic TS, Xu Y, Caligiuri MA, Subjeck JR, Repasky EA. Tumor cell apoptosis, lymphocyte recruitment and tumor vascular changes are induced by low temperature, long duration (fever-like) whole body hyperthermia J Cell Physiol 1998; 177: 137-47.
  • Nah BS, Choi IB, Oh WY, Osborn JL, Song CW. Vascular thermal adaptation in tumors and normal tissue in rats. Int J Radial Oncol Biol Phys 1996; 35: 95-101.
  • Jiang Q, Detolla L, Singh IS, Gatdula L, Fitzgerald B, van Rooijen N, Cross AS, Hasday JD. Exposure to febrile temperature upregulates expression of pyrogenic cytokines in endotoxin-challenged mice. Am J Physiol 1999; 276: 1653-60.
  • Ostberg, JR, Taylor SL, Baumann H, Repasky EA. Regulatory effects of fever-range whole body hyperthermia on the LPS-induced acute inflammatory response. J Leukocyte Biol 2000; 68: 815-20.
  • Hasday JD, Fairchild KD, Shanholtz C. The role of fever in the infected host. Microbes & Infection 2000; 2: 1891-904.
  • Bruce RA., Mulbury MJ, Bain MD, Wang WC, Li H, Baumann H, Evans SS. Central role of IL-6 in stimulation of L-selectin adhesion during fever-range hyperthermia FASEB J 2001; 15: A681.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.