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Pavan Reddy, Yaping Sun, Tomomi Toubai, Raimon Duran-Struuck, Shawn G. Clouthier, Elizabeth Weisiger, Yoshinobu Maeda, Isao Tawara, Oleg Krijanovski, Erin Gatza, Chen Liu, Chelsea Malter, Paolo Mascagni, Charles A. Dinarello, James L.M. Ferrara
Published in Volume 118, Issue 7
J Clin Invest. 2008; 118(7):2562–2573 doi:10.1172/JCI34712
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Figure 8
IDO is critical for regulation of GVHD by HDAC inhibitors.

(A and B) WT C57BL/6 mice were irradiated and transplanted with TCD BM and T cells from either allogeneic BALB/c or syngeneic C57BL/6 Ly5.2 (black line; n = 8) animals. Allogeneic recipients were injected with 4 × 106 to 5 × 106 of either diluent-treated control (gray line; n = 14) or SAHA-treated (dotted line; n = 14) B6BMDCs from Indo–/– mice on days –1, 0 and 2. All mice were evaluated for survival (A) and clinical GVHD severity (B). P = NS, SAHA-treated versus control allogeneic recipients. Data (mean ± SEM) were combined from 2 experiments with similar results. (C and D) [C57BL/6→C57BL/6] and [C57BL/6→Indo–/–C57BL/6] chimeras were generated as described in Methods and used as recipients in allogeneic BMT. Chimeras were reirradiated and transplanted with TCD BM and T cells from either allogeneic BALB/c or syngeneic C57BL/6 Ly5.2 (gray line; n = 4) animals. Allogeneic [C57BL/6→C57BL/6] recipients were injected with either diluent (thin line; n = 6) or ITF 2357 (thick line; n = 6) as described in Methods. [C57BL/6→Indo–/–C57BL/6] recipients were also injected with diluent (dotted line; n = 5) or ITF 2357 (dashed line; n = 6). All mice were evaluated for (C) survival and (D) clinical severity of GVHD. *P < 0.05 versus ITF 2357. Data (mean ± SEM) are from 1 of 2 similar experiments.