Formation mechanisms of sub-micron pharmaceutical composite particles derived from far- and near-field Raman microscopy

Surface enhanced Raman spectroscopy (SERS) and confocal Raman microscopy are applied to investigate the structure and the molecular arrangement of sub-micron furosemide and polyvinylpyrrolidone (furosemide/PVP) particles produced by spray flash evaporation (SFE). Morphology, size and crystallinity o...

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Main Authors: Jakob Hübner, Jean-Baptiste Coty, Yan Busby, Denis Spitzer
Format: Article
Language:English
Published: Elsevier 2021-08-01
Series:Journal of Pharmaceutical Analysis
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2095177920310960
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spelling doaj-fb5b03b0e2ff46a3ad648181bf58d3352021-09-01T04:20:43ZengElsevierJournal of Pharmaceutical Analysis2095-17792021-08-01114480489Formation mechanisms of sub-micron pharmaceutical composite particles derived from far- and near-field Raman microscopyJakob Hübner0Jean-Baptiste Coty1Yan Busby2Denis Spitzer3Nanomatériaux pour Les Systèmes Sous Sollicitations Extrêmes (NS3E), ISL-CNRS-UNISTRA UMR 3208, French-German Research Institute of Saint-Louis, 5, Rue Du Général Cassagnou, B.P. 70034, 68301, Saint-Louis, France; Corresponding author.Spinofrin SAS, 20 Bis Rue Danjou, 92100, Boulogne, Billancourt, FranceNanomatériaux pour Les Systèmes Sous Sollicitations Extrêmes (NS3E), ISL-CNRS-UNISTRA UMR 3208, French-German Research Institute of Saint-Louis, 5, Rue Du Général Cassagnou, B.P. 70034, 68301, Saint-Louis, FranceNanomatériaux pour Les Systèmes Sous Sollicitations Extrêmes (NS3E), ISL-CNRS-UNISTRA UMR 3208, French-German Research Institute of Saint-Louis, 5, Rue Du Général Cassagnou, B.P. 70034, 68301, Saint-Louis, France; Spinofrin SAS, 20 Bis Rue Danjou, 92100, Boulogne, Billancourt, FranceSurface enhanced Raman spectroscopy (SERS) and confocal Raman microscopy are applied to investigate the structure and the molecular arrangement of sub-micron furosemide and polyvinylpyrrolidone (furosemide/PVP) particles produced by spray flash evaporation (SFE). Morphology, size and crystallinity of furosemide/PVP particles are analyzed by scanning electron microscopy (SEM) and X-ray powder diffraction (XRPD). Far-field Raman spectra and confocal far-field Raman maps of furosemide/PVP particles are interpreted based on the far-field Raman spectra of pure furosemide and PVP precursors. Confocal far-field Raman microscopy shows that furosemide/PVP particles feature an intermixture of furosemide and PVP molecules at the sub-micron scale. SERS and surface-enhanced confocal Raman microscopy (SECoRM) are performed on furosemide, PVP and furosemide/PVP composite particles sputtered with silver (40 nm). SERS and SECoRM maps reveal that furosemide/PVP particle surfaces mainly consist of PVP molecules. The combination of surface and bulk sensitive analyses reveal that furosemide/PVP sub-micron particles are formed by the agglomeration of primary furosemide nano-crystals embedded in a thin PVP matrix. Interestingly, both far-field Raman microscopy and SECoRM provide molecular information on a statistically-relevant amount of sub-micron particles in a single microscopic map; this combination is thus an effective and time-saving tool for investigating organic sub-micron composites.http://www.sciencedirect.com/science/article/pii/S2095177920310960SERSConfocal Raman microscopySurface characterizationSub-micron particlesPharmaceutic composites
collection DOAJ
language English
format Article
sources DOAJ
author Jakob Hübner
Jean-Baptiste Coty
Yan Busby
Denis Spitzer
spellingShingle Jakob Hübner
Jean-Baptiste Coty
Yan Busby
Denis Spitzer
Formation mechanisms of sub-micron pharmaceutical composite particles derived from far- and near-field Raman microscopy
Journal of Pharmaceutical Analysis
SERS
Confocal Raman microscopy
Surface characterization
Sub-micron particles
Pharmaceutic composites
author_facet Jakob Hübner
Jean-Baptiste Coty
Yan Busby
Denis Spitzer
author_sort Jakob Hübner
title Formation mechanisms of sub-micron pharmaceutical composite particles derived from far- and near-field Raman microscopy
title_short Formation mechanisms of sub-micron pharmaceutical composite particles derived from far- and near-field Raman microscopy
title_full Formation mechanisms of sub-micron pharmaceutical composite particles derived from far- and near-field Raman microscopy
title_fullStr Formation mechanisms of sub-micron pharmaceutical composite particles derived from far- and near-field Raman microscopy
title_full_unstemmed Formation mechanisms of sub-micron pharmaceutical composite particles derived from far- and near-field Raman microscopy
title_sort formation mechanisms of sub-micron pharmaceutical composite particles derived from far- and near-field raman microscopy
publisher Elsevier
series Journal of Pharmaceutical Analysis
issn 2095-1779
publishDate 2021-08-01
description Surface enhanced Raman spectroscopy (SERS) and confocal Raman microscopy are applied to investigate the structure and the molecular arrangement of sub-micron furosemide and polyvinylpyrrolidone (furosemide/PVP) particles produced by spray flash evaporation (SFE). Morphology, size and crystallinity of furosemide/PVP particles are analyzed by scanning electron microscopy (SEM) and X-ray powder diffraction (XRPD). Far-field Raman spectra and confocal far-field Raman maps of furosemide/PVP particles are interpreted based on the far-field Raman spectra of pure furosemide and PVP precursors. Confocal far-field Raman microscopy shows that furosemide/PVP particles feature an intermixture of furosemide and PVP molecules at the sub-micron scale. SERS and surface-enhanced confocal Raman microscopy (SECoRM) are performed on furosemide, PVP and furosemide/PVP composite particles sputtered with silver (40 nm). SERS and SECoRM maps reveal that furosemide/PVP particle surfaces mainly consist of PVP molecules. The combination of surface and bulk sensitive analyses reveal that furosemide/PVP sub-micron particles are formed by the agglomeration of primary furosemide nano-crystals embedded in a thin PVP matrix. Interestingly, both far-field Raman microscopy and SECoRM provide molecular information on a statistically-relevant amount of sub-micron particles in a single microscopic map; this combination is thus an effective and time-saving tool for investigating organic sub-micron composites.
topic SERS
Confocal Raman microscopy
Surface characterization
Sub-micron particles
Pharmaceutic composites
url http://www.sciencedirect.com/science/article/pii/S2095177920310960
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