1 - 3 |
Pharmaceutical particles Hapgood K, Litster JD, Wang CH |
4 - 12 |
Effect of formulation factors on the bioactivity of glucose oxidase encapsulated chitosan-alginate microspheres: In vitro investigation and mathematical model prediction Abdekhodaie MJ, Cheng J, Wu XY |
13 - 19 |
Attrition of paracetamol and aspirin under bulk shear deformation Hare C, Ghadiri M |
20 - 24 |
Non-spherical particles for targeted drug delivery Chen JR, Clay NE, Park NH, Kong H |
25 - 31 |
Improvement of dissolution rate of poorly water-soluble drug by wet grinding with bio-compatible phospholipid polymer Watano S, Matsuo M, Nakamura H, Miyazaki T |
32 - 57 |
Electrohydrodynamic atomization: A two-decade effort to produce and process micro-/nanoparticulate materials Xie JW, Jiang J, Davoodi P, Srinivasan MP, Wang CH |
58 - 74 |
Discrete element method simulation of a conical screen mill: A continuous dry coating device Deng XL, Scicolone J, Han X, Dave RN |
75 - 84 |
Controlled drug release from pharmaceutical nanocarriers Lee JH, Yeo Y |
85 - 97 |
Uniform-sized particles in biomedical field prepared by membrane emulsification technique Wu J, Fan QZ, Xia YF, Ma GH |
98 - 107 |
Sustained release and stabilization of therapeutic antibodies using amphiphilic polyanhydride nanoparticles Carrillo-Conde BR, Darling RJ, Seiler SJ, Ramer-Tait AE, Wannemuehler MJ, Narasimhan B |
108 - 120 |
Core-shell particles for controllable release of drug He DG, Wang S, Lei L, Hou ZT, Shang P, He XX, Nie HM |
121 - 128 |
Surface engineered cyclodextrin embedded polymeric nanoparticles through host-guest interaction used for drug delivery Ahmed A, Wang HH, Yu HL, Zhou ZY, Ding Y, Hu Y |
129 - 143 |
Uniform biodegradable microparticle systems for controlled release Xia YJ, Pack DW |
144 - 157 |
DEM-compartment-population balance model for particle coating in a horizontal rotating drum Kumar R, Freireich B, Wassgren C |
158 - 164 |
Smart nanoparticles for drug delivery: Boundaries and opportunities Lee BK, Yun YH, Park K |
165 - 175 |
Distributive mixing elements: Towards improved granule attributes from a twin screw granulation process Sayin R, El Hagrasy AS, Litster JD |
176 - 190 |
Microneedle assisted micro-particle delivery by gene guns: Mathematical model formulation and experimental verification Zhang DW, Das DB, Rielly CD |
191 - 199 |
Remote control of enzymatic reaction in compartmentalized microparticles: A system for the delivery of unstable actives Ullrich M, Hanus J, Stepanek F |
200 - 208 |
Calibration-free in-line monitoring of pellet coating processes via optical coherence tomography Markl D, Zettl M, Hannesschlager G, Sacher S, Leitner M, Buchsbaum A, Khinast JG |
209 - 224 |
Flow and bulk density enhancements of pharmaceutical powders using a conical screen mill: A continuous dry coating device Huang ZH, Scicolone JV, Gurumuthy L, Dave RN |
225 - 237 |
Electrostatics in pharmaceutical solids Wong J, Kwok PCL, Chan HK |
238 - 247 |
Contact electrification and charge distribution on elongated particles in a vibrating container Pei CL, Wu CY, Adams M, England D, Byard S, Berchtold H |