Anti-inflammatory effects of novel curcumin analogs in experimental acute lung injury
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  • 作者:Yali Zhang ; Dandan Liang ; Lili Dong ; Xiangting Ge ; Fengli Xu…
  • 关键词:Curcumin ; LPS ; Acute lung injury ; ERK
  • 刊名:Respiratory Research
  • 出版年:2015
  • 出版时间:December 2015
  • 年:2015
  • 卷:16
  • 期:1
  • 全文大小:1,507 KB
  • 参考文献:1. Johnson, ER, Matthay, MA (2010) Acute lung injury: epidemiology, pathogenesis, and treatment. J Aerosol Med Pulm Drug Deliv 23: pp. 243-52 CrossRef
    2. Wheeler, AP, Bernard, GR (2007) Acute lung injury and the acute respiratory distress syndrome: a clinical review. Lancet 369: pp. 1553-64 CrossRef
    3. Levitt, JE, Matthay, MA (2012) Clinical review: early treatment of acute lung injury-paradigm shift toward prevention and treatment prior to respiratory failure. Crit Care 16: pp. 223 CrossRef
    4. Goodman, RB, Pugin, J, Lee, JS, Matthay, MA (2003) Cytokine-mediated inflammation in acute lung injury. Cytokine Growth Factor Rev 14: pp. 523-35 CrossRef
    5. Grommes, J, Soehnlein, O (2011) Contribution of neutrophils to acute lung injury. Mol Med 17: pp. 293 CrossRef
    6. Patel, BV, Wilson, MR, O’Dea, KP, Takata, M (2013) TNF-induced death signaling triggers alveolar epithelial dysfunction in acute lung injury. J Immunol 190: pp. 4272-4282 CrossRef
    7. Bosmann, M, Grailer, JJ, Zhu, K, Matthay, MA, Sarma, JV, Zetoune, FS (2012) Anti-inflammatory effects of β2 adrenergic receptor agonists in experimental acute lung injury. FASEB J 26: pp. 2137-44 CrossRef
    8. Ni, Y-F, Wang, J, Yan, X-L, Tian, F, Zhao, J-B, Wang, Y-J (2010) Histone deacetylase inhibitor, butyrate, attenuates lipopolysaccharide-induced acute lung injury in mice. Respir Res 11: pp. 33 CrossRef
    9. Liu, Z, Yang, Z, Fu, Y, Li, F, Liang, D, Zhou, E (2013) Protective effect of gossypol on lipopolysaccharide-induced acute lung injury in mice. Inflamm Res 62: pp. 499-506 CrossRef
    10. Yingkun, N, Zhenyu, W, Jing, L, Xiuyun, L, Huimin, Y (2013) Stevioside protects LPS-induced acute lung injury in mice. Inflammation 36: pp. 242-50 CrossRef
    11. Calfee, CS, Matthay, MA (2007) Nonventilatory treatments for acute lung injury and ARDS*. Chest J 131: pp. 913-20 CrossRef
    12. Levitt JE, Matthay MA. Treatment of Acute Lung Injury: Historical Perspective and Potential Future Therapies. In Seminars in Respiratory and Critical Care Medicine. Copyright? 2006 by Thieme Medical Publishers, Inc., 333 Seventh Avenue, New York, NY 10001, USA.; 2006: 426-37.
    13. O’Neal, HR, Koyama, T, Koehler, EA, Siew, E, Curtis, BR, Fremont, RD (2011) Prehospital statin and aspirin use and the prevalence of severe sepsis and ALI/ARDS. Crit Care Med 39: pp. 1343 CrossRef
    14. Ando, H, Takamura, T, Ota, T, Nagai, Y, Kobayashi, K-i (2000) Cerivastatin improves survival of mice with lipopolysaccharide-induced sepsis. J Pharmacol Exp Ther 294: pp. 1043-6
    15. Jacobson, JR, Barnard, JW, Grigoryev, DN, Ma, S-F, Tuder, RM, Garcia, JG (2005) Simvastatin attenuates vascular leak and inflammation in murine inflammatory lung injury. Am J Physiol-Lung Cellular Mol Physiol 288: pp. L1026-32 CrossRef
    16. Leitman, IM (2012) Curcumin for the prevention of acute lung injury in sepsis: is it more than the flavor of the month?. J Surg Res 176: pp. e5-7 CrossRef
    17. Liang, G, Shao, L, Wang, Y, Zhao, C, Chu, Y, Xiao, J (2009) Exploration and synthesis of curcumin analogues with improved structural stability both in vitro and in vivo as cytotoxic agents. Bioorg Med Chem 17: pp. 2623-31
文摘
Background Acute lung injury (ALI) and its most severe form acute respiratory distress syndrome (ARDS) have been the leading cause of morbidity and mortality in intensive care units (ICU). Currently, there is no effective pharmacological treatment for acute lung injury. Curcumin, extracted from turmeric, exhibits broad anti-inflammatory properties through down-regulating inflammatory cytokines. However, the instability of curcumin limits its clinical application. Methods A series of new curcumin analogs were synthesized and screened for their inhibitory effects on the production of TNF-α and IL-6 in mouse peritoneal macrophages by ELISA. The evaluation of stability and mechanism of active compounds was determined using UV-assay and Western Blot, respectively. In vivo, SD rats were pretreatment with c26 for seven days and then intratracheally injected with LPS to induce ALI. Pulmonary edema, protein concentration in BALF, injury of lung tissue, inflammatory cytokines in serum and BALF, inflammatory cell infiltration, inflammatory cytokines mRNA expression, and MAPKs phosphorylation were analyzed. We also measured the inflammatory gene expression in human pulmonary epithelial cells. Results In the study, we synthesized 30 curcumin analogs. The bioscreeening assay showed that most compounds inhibited LPS-induced production of TNF-α and IL-6. The active compounds, a17, a18, c9 and c26, exhibited their anti-inflammatory activity in a dose-dependent manner and exhibited greater stability than curcumin in vitro. Furthermore, the active compound c26 dose-dependently inhibited ERK phosphorylation. In vivo, LPS significantly increased protein concentration and number of inflammatory cells in BALF, pulmonary edema, pathological changes of lung tissue, inflammatory cytokines in serum and BALF, macrophage infiltration, inflammatory gene expression, and MAPKs phosphorylation . However, pretreatment with c26 attenuated the LPS induced increase through ERK pathway in vivo. Meanwhile, compound c26 reduced the LPS-induced inflammatory gene expression in human pulmonary epithelial cells. Conclusions These results suggest that the novel curcumin analog c26 has remarkable protective effects on LPS-induced ALI in rat. These effects may be related to its ability to suppress production of inflammatory cytokines through ERK pathway. Compound c26, with improved chemical stability and bioactivity, may have the potential to be further developed into an anti-inflammatory candidate for the prevention and treatment of ALI.

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