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Die Pharmazie|January 27, 2010
Resveratrol nanosuspensions for dermal application--production, characterization, and physical stabilityS Kobierski, K Ofori-Kwakye, R H Müller, et al.Journal of Microencapsulation|April 20, 2001
Formulation and in vitro-in vivo evaluation of piribedil solid lipid micro- and nanoparticlesM Demirel, Y Yazan, R H Müller, et al.International Journal of Pharmaceutics|February 21, 2012
Adsorption kinetics of plasma proteins on ultrasmall superparamagnetic iron oxide (USPIO) nanoparticlesM Jansch, P Stumpf, C Graf, et al.Pharmaceutical Research|July 1, 1997
Determination of plasma protein adsorption on magnetic iron oxides: sample preparationK Thode, M Lück, W Semmler, et al.Die Pharmazie|May 22, 2019
Azithromycin nanocrystals for dermal prevention of tick bite infectionsNan Jin, Sung Min Pyo, C M Keck, et al.International Journal of Pharmaceutics|April 3, 2001
The role of plasma proteins in brain targeting: species dependent protein adsorption patterns on brain-specific lipid drug conjugate (LDC) nanoparticlesA Gessner, C Olbrich, W Schröder, et al.Clinical Nutrition (Edinburgh, Scotland)|August 1, 1996
Fat emulsions based on structured lipids (1,3-specific triglycerides): an investigation of the in vitro interaction with plasma proteinsH Hedeman, M Lück, T Blunk, et al.Die Pharmazie|February 9, 2012
Resveratrol nanosuspensions: interaction of preservatives with nanocrystal productionS Kobierski, K Ofori-Kwakye, R H Müller, et al.Die Pharmazie|May 30, 2019
Maximum Loaded Amorphous Azithromycin Produced Using the Wetness Impregnation Method with Fractional Steps for Dermal Prophylaxis Against Lyme DiseaseNan Jin, Sung Min Pyo, C M Keck, et al.International Journal of Pharmaceutics|January 12, 2011
Polyhydroxy surfactants for the formulation of lipid nanoparticles (SLN and NLC): effects on size, physical stability and particle matrix structureA Kovacevic, S Savic, G Vuleta, et al.Pageof 19