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Structural Characterization of Mannan Cell Wall Polysaccharides in Plants Using PACE
Published on: October 16, 2017
Structural and Rheological Characterization of a Sustainable Biopolymer: Arabinogalactan-Rich Mucilage from Cereus
Aline Savam1, Mariana C de Oliveira2, Marcos L Bruschi2
1Departamento de Farmácia, Programa de Pós-Graduação em Ciências Farmacêuticas, Laboratório de Biotecnologia de Produtos Naturais e Sintéticos, Universidade Estadual de Maringá, Maringá 87020-900, PR, Brazil.
Abstract:
Natural polymers are valued for their low toxicity, biocompatibility, and biodegradability. Plant mucilage, a sustainable and cost-effective source rich in sugars and bioactive compounds, forms gel-like structures in water, enabling its applications as a viscosity enhancer, stabilizer, emulsifier, and biodegradable packaging alternative. Cacti, notably Cereus hildmannianus K. Schum., are resilient crops with traditional uses in medicine, cosmetics, nutraceuticals, and wastewater treatment. In this study, we extracted mucilage from C. hildmannianus cladodes, obtaining a 24% yield and separated it into a soluble fraction (SF, 22%) and an insoluble fraction (IF, 78%), both slightly acidic (4.75 and 5.44, respectively) and gel-forming. SF contained 32% total sugars, 9% reducing sugars, and 33% protein, whereas IF had a higher polysaccharide purity (44% total sugars, 4% reducing sugars, 7% protein). Chemical characterization (GC-MS, GC-FID, 1H/13C NMR, FTIR-ATR) identified the polysaccharide as a type I arabinogalactan with a galactose backbone and arabinose/rhamnose side chains. Rheological analysis revealed pseudoplastic behavior with concentration-dependent viscosity, comparable to guar and xanthan gums, highlighting its potential for food and pharmaceutical applications.
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