Page last updated: 2024-08-24

nile red and n-vinyl-2-pyrrolidinone

nile red has been researched along with n-vinyl-2-pyrrolidinone in 3 studies

Research

Studies (3)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's0 (0.00)29.6817
2010's3 (100.00)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Ben Sasson, S; Ben Yehuda Greenwald, M; Bianco-Peled, H1
Bertin, D; Delair, T; Gigmes, D; Handké, N; Lahaye, V; Trimaille, T; Verrier, B1
Alexiev, U; Boreham, A; Brodwolf, R; Gerecke, C; Kleuser, B; Kral, V; Lendlein, A; Li, W; Neffe, AT; Said, A; Schäfer-Korting, M; Volz, P; Wischke, C; Zhang, N1

Other Studies

3 other study(ies) available for nile red and n-vinyl-2-pyrrolidinone

ArticleYear
A new method for encapsulating hydrophobic compounds within cationic polymeric nanoparticles.
    Journal of microencapsulation, 2013, Volume: 30, Issue:6

    Topics: Cations; Drug Carriers; Drug Delivery Systems; Fluorescent Dyes; Hydrophobic and Hydrophilic Interactions; Nanoparticles; Oxazines; Povidone

2013
Elaboration of glycopolymer-functionalized micelles from an N-vinylpyrrolidone/lactide-based reactive copolymer platform.
    Macromolecular bioscience, 2013, Volume: 13, Issue:9

    Topics: Absorption; Aminoquinolines; Concanavalin A; Hydrogen-Ion Concentration; Imiquimod; Magnetic Resonance Spectroscopy; Micelles; Nephelometry and Turbidimetry; Oxazines; Polyesters; Polymers; Pyrrolidinones; Spectrometry, Fluorescence

2013
Poly[acrylonitrile-co-(N-vinyl pyrrolidone)] nanoparticles - Composition-dependent skin penetration enhancement of a dye probe and biocompatibility.
    European journal of pharmaceutics and biopharmaceutics : official journal of Arbeitsgemeinschaft fur Pharmazeutische Verfahrenstechnik e.V, 2017, Volume: 116

    Topics: Acrylonitrile; Biocompatible Materials; Cell Survival; Cells, Cultured; Chemistry, Pharmaceutical; Drug Carriers; Drug Delivery Systems; Epidermis; Fluorescent Dyes; Humans; Hydrophobic and Hydrophilic Interactions; Keratinocytes; Nanoparticles; Oxazines; Particle Size; Polymers; Pyrrolidinones; Skin Absorption; Surface Properties

2017