TY - JOUR
T1 - Amelioration of 2,4,6-trinitrobenzene sulfonic acid-induced colitis in mice by immunoregulatory dendritic cells
AU - Hoshino, Shoichi
AU - Kurishima, Akiko
AU - Inaba, Muneo
AU - Ando, Yugo
AU - Fukui, Toshiro
AU - Uchida, Kazushige
AU - Nishio, Akiyoshi
AU - Iwai, Hiroshi
AU - Yokoi, Takashi
AU - Ito, Tomoki
AU - Hasegawa-Ishii, Sanae
AU - Shimada, Atsuyoshi
AU - Li, Ming
AU - Okazaki, Kazuichi
AU - Ikehara, Susumu
N1 - Funding Information:
The authors thank Ms. K. Ando and Mr. Hilary Eastwick-Field for their help in the preparation of the manuscript, and also thank Mr. Hiroyuki Gonda, Central Research of Laboratory, for his help in the flow cytometry analyses. This work was supported by a grant from the Ministry of Education, Culture, Sports, Science, and Technology and also a grant from the Department of Transplantation for Regeneration Therapy (Sponsored by Otsuka Pharmaceutical Co., Ltd.); a grant from the Molecular Medical Science Institute, Otsuka Pharmaceutical Co., Ltd.; a grant from Japan Immunoresearch Laboratories Co., Ltd. (JIMRO); a grant from Intractable Diseases, the Health and Labor Sciences Research Grants (KO) from Minister of Labor and Welfare of Japan; and research grant F from Kansai Medical University.
PY - 2011/12
Y1 - 2011/12
N2 - Dendritic cells (DCs) are widely distributed throughout the lymphoid and nonlymphoid tissues, and are important initiators of acquired immunity. They also serve as regulators by inducing self-tolerance. However, it has not been thoroughly clarified whether DCs are somehow involved in the regulation or treatment of inflammatory bowel diseases. We established an ileitis model by transmurally injecting 2,4,6-trinitrobenzene sulfonic acid (TNBS) into the lumen of the ileocolonic junction. The kinetic movement of DCs at the inflammatory sites was analyzed histologically and by flow cytometry, and DCs obtained from the small intestine were analyzed in order to determine the expression of paired immunoglobulin-like receptor-A/B (PIR-A/B) by flow cytometry and quantitative RT-PCR. Furthermore, the regulatory role of DCs was directly determined by a transfer experiment using TNBS-induced colitis model mice. We observed three DC subsets (PIR-A/Bhigh, PIR-A/Bmed, and PIR-A/B- DCs) in the conventional DCs (cDCs) from day 3, and the number of PIR-A/B med cDCs increased from the time the inflammatory responses ceased (day 7). PIR-A/Bmed cDCs actually migrated to the inflamed colon, and ameliorated the colitis induced by TNBS when transferred to colitis-induced recipients. The colitis was greatly exacerbated when mice had been treated with the indoleamine-pyrrole 2,3-dioxygenase (IDO) inhibitor 1-methyltryptophan (1-mT) at the time PIR-A/Bmed cDCs were transferred, indicating that the therapeutic ability of PIR-A/Bmed cDCs is partially dependent on IDO. The PIR-A/Bmed cDCs, which increase in number during the final stages of inflammation, can be used to treat colitis via an IDO-dependent mechanism.
AB - Dendritic cells (DCs) are widely distributed throughout the lymphoid and nonlymphoid tissues, and are important initiators of acquired immunity. They also serve as regulators by inducing self-tolerance. However, it has not been thoroughly clarified whether DCs are somehow involved in the regulation or treatment of inflammatory bowel diseases. We established an ileitis model by transmurally injecting 2,4,6-trinitrobenzene sulfonic acid (TNBS) into the lumen of the ileocolonic junction. The kinetic movement of DCs at the inflammatory sites was analyzed histologically and by flow cytometry, and DCs obtained from the small intestine were analyzed in order to determine the expression of paired immunoglobulin-like receptor-A/B (PIR-A/B) by flow cytometry and quantitative RT-PCR. Furthermore, the regulatory role of DCs was directly determined by a transfer experiment using TNBS-induced colitis model mice. We observed three DC subsets (PIR-A/Bhigh, PIR-A/Bmed, and PIR-A/B- DCs) in the conventional DCs (cDCs) from day 3, and the number of PIR-A/B med cDCs increased from the time the inflammatory responses ceased (day 7). PIR-A/Bmed cDCs actually migrated to the inflamed colon, and ameliorated the colitis induced by TNBS when transferred to colitis-induced recipients. The colitis was greatly exacerbated when mice had been treated with the indoleamine-pyrrole 2,3-dioxygenase (IDO) inhibitor 1-methyltryptophan (1-mT) at the time PIR-A/Bmed cDCs were transferred, indicating that the therapeutic ability of PIR-A/Bmed cDCs is partially dependent on IDO. The PIR-A/Bmed cDCs, which increase in number during the final stages of inflammation, can be used to treat colitis via an IDO-dependent mechanism.
UR - https://www.scopus.com/pages/publications/84655161481
UR - https://www.scopus.com/pages/publications/84655161481#tab=citedBy
U2 - 10.1007/s00535-011-0460-4
DO - 10.1007/s00535-011-0460-4
M3 - Article
C2 - 21922185
AN - SCOPUS:84655161481
SN - 0944-1174
VL - 46
SP - 1368
EP - 1381
JO - Journal of Gastroenterology
JF - Journal of Gastroenterology
IS - 12
ER -