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A bis-malonic acid fullerene derivative significantly suppressed IL-33-induced IL-6 expression by inhibiting NF-κB activation
Institution:1. Graduate School of Pharmaceutical Sciences, Keio University, 1-5-30 Shibakoen, Minato-ku, Tokyo 105-8512, Japan;2. Division of Structural Biochemistry, Department of Biochemistry, Jichi Medical University, 3311-1 Yakushiji, Shimotsuke-shi, Tochigi-ken 329-0498, Japan;1. Tianjin Key Laboratory for Prevention and Control of Occupational and Environmental Hazard, Tianjin, People''s Republic of China;2. Department of Pharmacology, Logistics College of Chinese People''s Armed Police Forces, Tianjin, People''s Republic of China;3. Department of Medical Administration, The General Hospital of Chinese People''s Armed Police Forces, Beijing, People''s Republic of China;4. Department of Orthodontics, Tianjin Stomatological Hospital, Tianjin, People''s Republic of China;5. Department of Pathogenic Biology and Immunology, Logistics College of Chinese People''s Armed Police Forces, Tianjin, People''s Republic of China;6. Department of Pharmaceutical Chemistry, Logistics College of Chinese People''s Armed Police Forces, Tianjin, People''s Republic of China;7. Ministry of Training, Logistics College of Chinese People''s Armed Police Forces, Tianjin, People''s Republic of China
Abstract:IL-33 functions as a ligand for ST2L, which is mainly expressed in immune cells, including mast cells. IL-33 is a potent inducer of pro-inflammatory cytokines, such as IL-6, and has been implicated in the pathogenesis of allergic inflammatory diseases. Therefore, IL-33 has recently been attracting attention as a new target for the treatment of inflammatory diseases. In the present study, we demonstrated that a water-soluble bis-malonic acid fullerene derivative (C60-dicyclopropane-1,1,1′,1′-tetracarboxylic acid) markedly diminished the IL-33-induced expression of IL-6 in bone marrow-derived mast cells (BMMC). The bis-malonic acid fullerene derivative suppressed the canonical signaling steps required for NF-κB activation such as the degradation of IκBα and nuclear translocation of NF-κB by directly inhibiting the IL-33-induced IKK activation. Although p38 and JNK also contributed to IL-33-induced expression of IL-6, the bis-malonic acid fullerene derivative did not affect their activation. Furthermore, the bis-malonic acid fullerene derivative had no effect on the NF-κB activation pathway induced by TNFα and IL-1. These results suggest that the bis-malonic fullerene derivative has potential as a specific drug for the treatment of IL-33-induced inflammatory diseases by specifically inhibiting the NF-κB activation pathway.
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