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Proceeding Paper

Algal-Derived Hydrocolloids with Potential Antiviral Activity: A Mechanistic Approach †

by
Cláudia S. G. P. Pereira
1,*,
Miguel A. Prieto
2 and
Maria Beatriz P. P. Oliveira
1
1
Network of Chemistry and Technology/Associated Laboratory for Green Chemistry (REQUIMTE/LAQV), Department of Chemical Sciences, Faculty of Pharmacy, University of Porto, 4099-002 Porto, Portugal
2
Nutrition and Bromatology Group, Department of Analytical and Food Chemistry, Faculty of Food Science and Technology, University of Vigo, Ourense Campus, 32004 Ourense, Spain
*
Author to whom correspondence should be addressed.
Presented at the 3rd International Electronic Conference on Foods: Food, Microbiome, and Health—A Celebration of the 10th Anniversary of Foods’ Impact on Our Wellbeing; Available online: https://sciforum.net/event/Foods2022.
Biol. Life Sci. Forum 2022, 18(1), 23; https://doi.org/10.3390/Foods2022-13003
Published: 30 September 2022

Abstract

From a structural point of view, hydrocolloids are characterized as hydrophilic biopolymers with high molecular weight. Hydrocolloids are widely used in the food industry, mainly as thickeners, gelling agents, stabilizers of foams and emulsions, and inhibitors of ice and sugar crystals. Additionally, hydrocolloids are being increasingly used as fat replacers, aiming to produce low-calorie foods. Besides these important functional properties in different food products, hydrocolloids are being progressively recognized for their diverse biological properties, including anticoagulant, antithrombic, hypocholesterolemic, antioxidant, antiviral, antitumor, and immunomodulatory effects. Additionally, some studies have reported that these biopolymers have beneficial effects against a significant number of dermatological problems. Regarding antiviral properties, some hydrocolloids, such as sulfated polysaccharides, exhibit unique structures that exert these effects. This study aims to describe the corresponding underlying mechanisms of this bioactivity. Special attention will be given to the way hydrocolloids may obstruct different phases of the viral life cycle (attachment, penetration, uncoating, biosynthesis, viral assembly, and release) by directly inactivating virions before infection or by inhibiting its replication inside the host cell. The presented information might represent a potential contribution to the discovery and development of new antiviral drugs.
Keywords: sulfated polysaccharides; biological properties; antiviral activity sulfated polysaccharides; biological properties; antiviral activity

Share and Cite

MDPI and ACS Style

Pereira, C.S.G.P.; Prieto, M.A.; Oliveira, M.B.P.P. Algal-Derived Hydrocolloids with Potential Antiviral Activity: A Mechanistic Approach. Biol. Life Sci. Forum 2022, 18, 23. https://doi.org/10.3390/Foods2022-13003

AMA Style

Pereira CSGP, Prieto MA, Oliveira MBPP. Algal-Derived Hydrocolloids with Potential Antiviral Activity: A Mechanistic Approach. Biology and Life Sciences Forum. 2022; 18(1):23. https://doi.org/10.3390/Foods2022-13003

Chicago/Turabian Style

Pereira, Cláudia S. G. P., Miguel A. Prieto, and Maria Beatriz P. P. Oliveira. 2022. "Algal-Derived Hydrocolloids with Potential Antiviral Activity: A Mechanistic Approach" Biology and Life Sciences Forum 18, no. 1: 23. https://doi.org/10.3390/Foods2022-13003

APA Style

Pereira, C. S. G. P., Prieto, M. A., & Oliveira, M. B. P. P. (2022). Algal-Derived Hydrocolloids with Potential Antiviral Activity: A Mechanistic Approach. Biology and Life Sciences Forum, 18(1), 23. https://doi.org/10.3390/Foods2022-13003

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