Physicochemical Features and Applicability of Newly Fabricated Phytopharmaceutical‐Loaded Hydrogel Alginate Microcarriers with Viscoelastic Polyelectrolyte Coatings

Author:

Szczęsna‐Górniak Weronika1,Weżgowiec Joanna2,Tsirigotis‐Maniecka Marta1,Szyk‐Warszyńska Lilianna3,Michna Aneta3,Warszyński Piotr3,Saczko Jolanta4,Wilk Kazimiera A.1

Affiliation:

1. Department of Engineering and Technology of Chemical Processes Wrocław University of Science and Technology Wybrzeże Wyspiańskiego 27 50-370 Wrocław Poland

2. Department of Experimental Dentistry Wroclaw Medical University 50-425 Wroclaw Poland

3. Jerzy Haber Institute of Catalysis and Surface Chemistry Polish Academy of Sciences Niezapominajek 8 PL-30239 Krakow Poland

4. Department of Molecular and Cellular Biology Wroclaw Medical University 50-556 Wroclaw Poland

Abstract

AbstractThe design of novel polymeric carrier systems with functional coatings is of great interest for delivering various bioactive molecules. Microcapsules coated with polyelectrolyte (PE) films provide additional functionality and fine‐tuning advantages essential for controlled drug release. We developed hydrogel microcarriers coated with functional PE films with encapsulated substances of natural origin, resveratrol (RES), curcumin (CUR), and epigallocatechin gallate (EGCG), which have cytotoxic and chemopreventive properties. Alginate (ALG) based microparticles were loaded with phytopharmaceuticals using the emulsification method, and then their surface was modified with PE coatings, such as chitosan (CHIT) or poly(allylamine hydrochloride) (PAH). The morphology and mean diameter of microcarriers were characterised by scanning electron microscopy, encapsulation efficiency was determined by UV‐Vis spectroscopy, whereas the physicochemical properties of functional PE layers were studied using quartz crystal microbalance with dissipation monitoring and streaming potential measurements. The release profiles of active compounds from the hydrogel microparticles were described using the Peppas‐Sahlin model. The cytotoxic effect of designed delivery systems was studied by evaluating their impact on the proliferation, mitochondrial metabolic function, and lipid peroxidation level of 5637 human bladder cancer cells. The present work demonstrates that the physicochemical and biological features of fabricated microcarriers can be controlled by the type of encapsulated anti‐cancer agent and PE coating.

Funder

Ministerstwo Edukacji i Nauki

Publisher

Wiley

Subject

Physical and Theoretical Chemistry,Atomic and Molecular Physics, and Optics

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