1 |
Impact of nanoparticle size and solid state on dissolution rate by investigating modified drug powders Liu T, Yu XX, Yin HP Powder Technology, 376, 167, 2020 |
2 |
Boosting visible-light photocatalytic degradation of indomethacin by an efficient and photostable Ag3PO4/NG/WO3 composites Li H, Zhang YL, Zhang Q, Wang YF, Fan YP, Gao X, Niu J Applied Surface Science, 490, 481, 2019 |
3 |
Advanced bioactive lipid nanocarriers loaded with natural and synthetic anti-inflammatory actives Lacatusu I, Badea N, Badea G, Mihaila M, Ott C, Stan R, Meghea A Chemical Engineering Science, 200, 113, 2019 |
4 |
The incorporation of drug molecules with poor water solubility into polypyrrole as dopants: Indomethacin and sulindac Ryan EM, Breslin CB Electrochimica Acta, 296, 848, 2019 |
5 |
Ordered cubic nanoporous silica support MCM-48 for delivery of poorly soluble drug indomethacin Zelenak V, Halamova D, Almasi M, Zid L, Zelenakova A, Kapusta O Applied Surface Science, 443, 525, 2018 |
6 |
Removal of indomethacin using UV-vis/peroxydisulfate: Kinetics, toxicity, and transformation pathways Li RB, Kong J, Liu HJ, Chen P, Su YH, Liu GG, Lv WY Chemical Engineering Journal, 331, 809, 2018 |
7 |
Development of micellar electrokinetic chromatography method for the determination of three defined impurities in indomethacin Riasova P, Doubkova D, Pincova L, Jung O, Polasek M, Jac P Electrophoresis, 39(20), 2550, 2018 |
8 |
Design and in vitro evaluation of self-assembled indometacin prodrug nanoparticles for sustained/controlled release and reduced normal cell toxicity Lin JY, Pan Z, Song L, Zhang YM, Li Y, Hou ZQ, Lin CJ Applied Surface Science, 425, 674, 2017 |
9 |
Indomethacin inhabits the NLRP3 inflammasome pathway and protects severe acute pancreatitis in mice Lu GT, Pan YY, Kayoumu A, Zhang L, Yin T, Tong ZH, Li BQ, Xiao WM, Ding YB, Li WQ Biochemical and Biophysical Research Communications, 493(1), 827, 2017 |
10 |
Development of a Circulated Flow Mixing Method with a Tubular Crystallizer for Controlling Indomethacin Polymorphs Furuta M, Katayama J, Maki T, Mae K Journal of Chemical Engineering of Japan, 50(7), 501, 2017 |