[1] HARADA S,NAKAGAWA T,YOKOE S,et al. Autophagy deficiency diminishes indomethacin-induced intestinal epithelial cell damage through the activation of ERK/Nrf2/HO-1 pathway[J]. Journal of Pharmacology & Experimental Therapeutics,2015,9(24):1-28. [2] 许崇文,秦思达,李硕,等. 吲哚美辛诱导食管癌EC109细胞凋亡的Smac依赖性机制[J]. 现代肿瘤医学,2015,23(14):1935-1939. [3] 刘张玲,胡晶,黄峥兰,等. 吲哚美辛对K562细胞株BCR/ABL-Wnt/β-catenin信号通路的影响[J]. 南方医科大学学报,2015,35(7):998-1002. [4] 姜伟化,王东凯,王翔林. 吲哚美辛新剂型研究进展[J]. 中国新药杂志,2012,21(24):2899-2902. [5] 吴巧利,权桂兰,洪瑜. 介孔二氧化硅/乙基纤维素缓释骨架的制备与释放行为的研究[J]. 药学学报,2014,33(8):2089-2096. [6] 杨惠,黄超. 具有特殊形貌的介孔氧化硅的合成及其应用研究进展[J]. 化工进展,2014,33(8):2089-2096. [7] 黄超,杨惠,杨旭,等. 介孔氧化硅负载贵金属催化剂研究进展[J]. 化工进展,2014,33(6):1459-1464. [8] 张娟,任腾杰,胡颜荟,等. MCM-41分子筛负载金属酞菁在氧化脱硫反应中的催化性能[J]. 化工学报,2014,65(8):3012-3018. [9] 桂万元,王文谦,焦翔宇,等. 基于中空介孔二氧化硅小球的 pH 响应性控制释放系统[J]. 中国科学:化学,2015,45(7):703-709. [10] 郝晓红,张翠妙,刘小龙,等. 基于介孔二氧化硅的多功能纳米药物输送体系研究进展[J]. 生物化学与生物物理进展,2013,40(10):1014-1022. [11] SHE X D,CHEN LJ,VELLEMAN L,et al. Fabrication of high specificity hollow mesoporous silica nanoparticles assisted by Eudragit for targeted drug delivery[J]. Journal of Colloid and Interface Science,2015,445:151-160. [12] DU P C,ZHAO X B,ZENG J,et al. Layer-by-layer engineering fluorescent polyelectrolyte coated mesoporous silica nanoparticles as pH-sensitive nanocarriers for controlled release[J]. Applied Surface Science,2015,345:90-98. [13] XU H J,ZHANG H J,WANG D H,et al. A facile route for rapid synthesis of hollow mesoporous silica nanoparticles as pH-responsive delivery carrier[J]. Journal of Colloid & Interface Science,2015,451:101-107. [14] BA-ABBAD M M,CHAI P V,TAKRIFF M S,et al. Optimization of nickel oxide nanoparticle synthesis through the sol-gel method using Box-Behnken design[J]. Materials & Design,2015,86:948-956. [15] 翟婷婷,王海媛,刘静. 响应面法优化超声辅助提取普洱茶中类胡萝卜素工艺研究[J]. 应用化工,2013,42(9):1667-1672. [16] 刘静,翟婷婷,于晓倩. Box-Behnken 法优化不同孔径MCM-41包载β-胡萝卜素的处方工艺[J]. 化工进展,2015,34(9):3392-3399. |