Department of Anesthesiology/Section for Critical Care, Wake Forest University School of Medicine, Winston-Salem, North Carolina 27157, USA.
Microcirculation. 2010 Aug;17(6):407-16. doi: 10.1111/j.1549-8719.2010.00039.x.
Circulating cell-endothelial cell interaction in sepsis is a rate-determining factor in organ dysfunction, and interventions targeting this process have a potential therapeutic value. In this project, we examined whether curcumin, an active ingredient of turmeric and an anti-inflammatory agent, could disrupt interactions between circulating blood cells and endothelium and improve survival in a murine model of sepsis.
Mice were subjected to cecal ligation and puncture (CLP) to induce sepsis vs. sham surgery. We studied leukocyte and platelet adhesion in cerebral microcirculation using intravital fluorescent video microscopy technique, blood-brain barrier (BBB) dysfunction using Evans Blue (EB) leakage method, P-selectin expression using dual radiolabeling technique, and survival in mice subjected to Sham, CLP, and CLP with curcumin pre-treatment (CLP + curcumin).
Curcumin significantly attenuated leukocyte and platelet adhesion in cerebral microcirculation, EB leakage in the brain tissue, and improved survival in mice with CLP. P-selectin expression in mice with CLP + curcumin was significantly attenuated compared with CLP in various microcirculatory beds, including brain. Reduction in platelet adhesion was predominantly via modulation of endothelium by curcumin.
Curcumin pre-treatment modulates leukocyte and platelet adhesion and BBB dysfunction in mice with CLP via P-selectin expression and improves survival in mice with CLP.
脓毒症中循环细胞-内皮细胞相互作用是器官功能障碍的决定因素,针对该过程的干预措施具有潜在的治疗价值。在本项目中,我们研究了姜黄素(姜黄的一种活性成分和抗炎剂)是否可以破坏循环血细胞与内皮细胞的相互作用,并改善脓毒症小鼠模型的存活率。
通过盲肠结扎和穿刺(CLP)使小鼠发生脓毒症与假手术对照。我们使用活体荧光视频显微镜技术研究了脑微循环中的白细胞和血小板黏附,使用 Evans Blue(EB)渗漏法研究了血脑屏障(BBB)功能障碍,使用双放射性标记技术研究了 P-选择素表达,并研究了接受假手术、CLP 和 CLP 加姜黄素预处理(CLP+curcumin)的小鼠的存活率。
姜黄素显著减轻了 CLP 小鼠脑微循环中的白细胞和血小板黏附、脑组织中的 EB 渗漏,并提高了 CLP 小鼠的存活率。与 CLP 相比,CLP+curcumin 小鼠的 P-选择素表达在各种微循环床(包括大脑)中均显著降低。血小板黏附的减少主要是通过姜黄素对内皮的调节。
姜黄素预处理通过 P-选择素表达调节 CLP 小鼠的白细胞和血小板黏附和 BBB 功能障碍,并提高 CLP 小鼠的存活率。