TY - JOUR
T1 - TP receptor-mediated release of eosinophil chemotactic activity from human bronchial smooth muscle cells
AU - Suzuki, Yusuke
AU - Asano, Koichiro
AU - Niimi, Kyoko
AU - Miyata, Jun
AU - Shiraishi, Yoshiki
AU - Fukunaga, Koichi
AU - Shiomi, Tetsuya
AU - Nakajima, Takeshi
AU - Oguma, Tsuyoshi
AU - Sayama, Koichi
AU - Ishizaka, Akitoshi
N1 - Funding Information:
This work was supported by Grants-in-Aid from the Japanese Ministries of Education, Culture, Sports, Science and Technology and of Health, Labor and Welfare, and by the Keio Gijuku Academic Development Fund.
PY - 2008/12/14
Y1 - 2008/12/14
N2 - There are reports indicating that thromboxane A2 receptors (TP receptors) may stimulate the eosinophil accumulation in the lower airways of asthmatics, however, the mechanisms behind such an effect remain unknown. We quantified the synthesis of eosinophil chemotactic activity and eosinophilic CC chemokines, including CCL5, CCL7, CCL8, CCL11, CCL13, CCL24, and CCL26 in primary cultures of human bronchial smooth muscle cells (BSMC) stimulated with a prostanoid TP receptor agonist, IBOP (10- 9-10- 7 M). The activation of prostanoid TP receptors in BSMC induced the release of potent eosinophil chemoattractant(s) in the presence of interleukin (IL)-4. CCL11/eotaxin-1 was the only synthesis significantly increased by IBOP co-stimulated with IL-4, and pretreatment with an anti-CCL11 antibody abrogated the eosinophil chemotactic activity released from IBOP/IL-4-stimulated BSMC. The effect of IBOP was also completely blocked by pretreatment with a prostanoid TP receptor-specific antagonist, AA-2414. IBOP had no effect on the expression of IL-4 receptor-α, or on the IL-4-induced phosphorylation of STAT6 in BSMC. In conclusion, activation of prostanoid TP receptors in a Th2-dominant microenvironment might exacerbate the eosinophilic inflammation of the airways by synthesis and release of CCL11 from BSMC.
AB - There are reports indicating that thromboxane A2 receptors (TP receptors) may stimulate the eosinophil accumulation in the lower airways of asthmatics, however, the mechanisms behind such an effect remain unknown. We quantified the synthesis of eosinophil chemotactic activity and eosinophilic CC chemokines, including CCL5, CCL7, CCL8, CCL11, CCL13, CCL24, and CCL26 in primary cultures of human bronchial smooth muscle cells (BSMC) stimulated with a prostanoid TP receptor agonist, IBOP (10- 9-10- 7 M). The activation of prostanoid TP receptors in BSMC induced the release of potent eosinophil chemoattractant(s) in the presence of interleukin (IL)-4. CCL11/eotaxin-1 was the only synthesis significantly increased by IBOP co-stimulated with IL-4, and pretreatment with an anti-CCL11 antibody abrogated the eosinophil chemotactic activity released from IBOP/IL-4-stimulated BSMC. The effect of IBOP was also completely blocked by pretreatment with a prostanoid TP receptor-specific antagonist, AA-2414. IBOP had no effect on the expression of IL-4 receptor-α, or on the IL-4-induced phosphorylation of STAT6 in BSMC. In conclusion, activation of prostanoid TP receptors in a Th2-dominant microenvironment might exacerbate the eosinophilic inflammation of the airways by synthesis and release of CCL11 from BSMC.
KW - Asthma
KW - CCL11
KW - CCR3
KW - Chemotaxis
KW - Interleukin-4
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U2 - 10.1016/j.ejphar.2008.09.044
DO - 10.1016/j.ejphar.2008.09.044
M3 - Article
C2 - 18950617
AN - SCOPUS:55949107827
SN - 0014-2999
VL - 600
SP - 133
EP - 139
JO - European journal of pharmacology
JF - European journal of pharmacology
IS - 1-3
ER -