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Dontscho Kerjaschki, Zsuzsanna Bago-Horvath, Margaretha Rudas, Veronika Sexl, Christine Schneckenleithner, Susanne Wolbank, Gregor Bartel, Sigurd Krieger, Romana Kalt, Brigitte Hantusch, Thomas Keller, Katalin Nagy-Bojarszky, Nicole Huttary, Ingrid Raab, Karin Lackner, Katharina Krautgasser, Helga Schachner, Klaus Kaserer, Sandra Rezar, Sybille Madlener, Caroline Vonach, Agnes Davidovits, Hitonari Nosaka, Monika Hämmerle, Katharina Viola, Helmut Dolznig, Martin Schreiber, Alexander Nader, Wolfgang Mikulits, Michael Gnant, Satoshi Hirakawa, Michael Detmar, Kari Alitalo, Sebastian Nijman, Felix Offner, Thorsten J. Maier, Dieter Steinhilber, Georg Krupitza
Published in Volume 121, Issue 5
J Clin Invest. 2011; 121(5):2000–2012 doi:10.1172/JCI44751
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Figure 7
12(S)-HETE and ALOX15 in human sentinel metastases.

(A) Localization of 12(S)-HETE (red) in the mammary carcinoma cells in a representative sentinel lymph node of a patient with postsentinel lymph node metastasis (total examined: n = 12). 12(S)-HETE colocalizes with tumor cell keratin (blue and merge) and is also expressed by nontumor, presumably inflammatory cells (arrows). (B) The 12(S)-HETE–producing enzyme ALOX15 shows a localization similar to that of its product (ALOX15: green; keratin: red). (C) Results of the tissue array scoring of the immunostaining for ALOX15 in the tumor cells of the sentinel metastasis in 15 cases of ductal carcinoma. In 5 cases without postsentinel metastases, the score is lower (N1, green column) than in 10 cases with postsentinel spreading (N2/3, red column). (D) Metastasis-free survival correlates inversely with the expression of ALOX15 in the tumor cells of the sentinel lymph nodes (P = 0.0507). Scale bars: 50 μm. All data are presented as mean ± SEM.