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Article

Incorporation of Fluorescent Fluorinated Methacrylate Nano-Sized Particles into Chitosan Matrix Formed as a Membranes or Beads

by
Anna Szwajca
1,*,
Sandra Juszczyńska
1,
Maciej Jarzębski
2 and
Elżbieta Baryła-Pankiewicz
3
1
Department of Chemistry, Adam Mickiewicz University in Poznań, Uniwersytetu Poznańskiego 8, 61-614 Poznań, Poland
2
Department of Physics and Biophysics, Faculty of Food Science and Nutrition, Poznan University of Life Sciences, Wojska Polskiego 38/42, 60-637 Poznań, Poland
3
Faculty of Health Sciences, Pomeranian Medical University in Szczecin, Żołnierska 48, 71-210 Szczecin, Poland
*
Author to whom correspondence should be addressed.
Polymers 2022, 14(13), 2750; https://doi.org/10.3390/polym14132750
Submission received: 5 April 2022 / Revised: 28 June 2022 / Accepted: 29 June 2022 / Published: 5 July 2022
(This article belongs to the Special Issue Processing and Analysis of Natural Polymers)

Abstract

Fluorescent particles are of particular interest as probes and active agents for biomedical, pharmaceutical, and food applications. Here, we present two strategies for incorporation of core-shell acrylic fluorescent nanoparticles (NPs) with Rhodamine B (RhB) as a dye into a chitosan (CS) matrix. We selected two variants of NPsRhB immobilisation in a CS membrane and biopolymeric CS beads. Modification of the method for production of the biopolymer cover/transporter of nanoparticles allowed two series of hydrogels loaded with nanoparticles to be obtained with a similar concentration of the aqueous solution of the nanoparticles. Microscopic analysis showed that the NPs were nonuniformly distributed in millimetre-sized CS beads, as well as membranes, but the fluorescence signal was strong. The composition of CS layers loaded with nanoparticles (CS/NPsRhB) showed water vapour barrier properties, characterised by the contact angle of 71.8°. Finally, we incorporated NPsRhBCS beads into a gelatine matrix to check their stability. The results confirmed good stability of the NPsRhBCS complex system, and no dye leakage was observed from the beads and the membranes. The proposed complex system demonstrated promising potential for further use in bioimaging and, thus, for the development of advanced diagnostic tools.
Keywords: chitosan hydrogel; polymer nanocomposites; functional membrane; chitosan beads; Rhodamine B; fluorescent nanoparticles chitosan hydrogel; polymer nanocomposites; functional membrane; chitosan beads; Rhodamine B; fluorescent nanoparticles

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MDPI and ACS Style

Szwajca, A.; Juszczyńska, S.; Jarzębski, M.; Baryła-Pankiewicz, E. Incorporation of Fluorescent Fluorinated Methacrylate Nano-Sized Particles into Chitosan Matrix Formed as a Membranes or Beads. Polymers 2022, 14, 2750. https://doi.org/10.3390/polym14132750

AMA Style

Szwajca A, Juszczyńska S, Jarzębski M, Baryła-Pankiewicz E. Incorporation of Fluorescent Fluorinated Methacrylate Nano-Sized Particles into Chitosan Matrix Formed as a Membranes or Beads. Polymers. 2022; 14(13):2750. https://doi.org/10.3390/polym14132750

Chicago/Turabian Style

Szwajca, Anna, Sandra Juszczyńska, Maciej Jarzębski, and Elżbieta Baryła-Pankiewicz. 2022. "Incorporation of Fluorescent Fluorinated Methacrylate Nano-Sized Particles into Chitosan Matrix Formed as a Membranes or Beads" Polymers 14, no. 13: 2750. https://doi.org/10.3390/polym14132750

APA Style

Szwajca, A., Juszczyńska, S., Jarzębski, M., & Baryła-Pankiewicz, E. (2022). Incorporation of Fluorescent Fluorinated Methacrylate Nano-Sized Particles into Chitosan Matrix Formed as a Membranes or Beads. Polymers, 14(13), 2750. https://doi.org/10.3390/polym14132750

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