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Marine Organisms as Model Systems in Biology and Medicine

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Cover of 'Marine Organisms as Model Systems in Biology and Medicine'

Table of Contents

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    Book Overview
  2. Altmetric Badge
    Chapter 1 Marine Nemertean Worms for Studies of Oocyte Maturation and Aging
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    Chapter 2 Sperm Nuclear Basic Proteins of Marine Invertebrates
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    Chapter 3 Fertilization in Starfish and Sea Urchin: Roles of Actin
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    Chapter 4 Starfish as a Model System for Analyzing Signal Transduction During Fertilization
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    Chapter 5 Toward Multiscale Modeling of Molecular and Biochemical Events Occurring at Fertilization Time in Sea Urchins
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    Chapter 6 Monosex in Aquaculture
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    Chapter 7 Medusa: A Review of an Ancient Cnidarian Body Form
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    Chapter 8 Sea Urchin Larvae as a Model for Postembryonic Development
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    Chapter 9 The Ciona Notochord Gene Regulatory Network
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    Chapter 10 Model Systems for Exploring the Evolutionary Origins of the Nervous System
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    Chapter 11 Nonprotein-Coding RNAs as Regulators of Development in Tunicates
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    Chapter 12 Differentiation and Transdifferentiation of Sponge Cells
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    Chapter 13 Holothurians as a Model System to Study Regeneration
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    Chapter 14 Regeneration in Stellate Echinoderms: Crinoidea, Asteroidea and Ophiuroidea
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    Chapter 15 Solitary Ascidians as Model Organisms in Regenerative Biology Studies
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    Chapter 16 Whole-Body Regeneration in the Colonial Tunicate Botrylloides leachii
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    Chapter 17 Beach to Bench to Bedside: Marine Invertebrate Biochemical Adaptations and Their Applications in Biotechnology and Biomedicine
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    Chapter 18 Coral Food, Feeding, Nutrition, and Secretion: A Review
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    Chapter 19 The Suitability of Fishes as Models for Studying Appetitive Behavior in Vertebrates
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    Chapter 20 Glycans with Antiviral Activity from Marine Organisms
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    Chapter 21 Cnidarian Jellyfish: Ecological Aspects, Nematocyst Isolation, and Treatment Methods of Sting
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    Chapter 22 These Colors Don’t Run: Regulation of Pigment—Biosynthesis in Echinoderms
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    Chapter 23 Reef-Building Corals as a Tool for Climate Change Research in the Genomics Era
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    Chapter 24 The Crown-of-Thorns Starfish: From Coral Reef Plague to Model System
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    Chapter 25 Structures and Composition of the Crab Carapace: An Archetypal Material in Biomimetic Mechanical Design
  27. Altmetric Badge
    Chapter 26 Octopus vulgaris: An Alternative in Evolution
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    Chapter 27 Vision Made Easy: Cubozoans Can Advance Our Understanding of Systems-Level Visual Information Processing
Attention for Chapter 20: Glycans with Antiviral Activity from Marine Organisms
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Chapter title
Glycans with Antiviral Activity from Marine Organisms
Chapter number 20
Book title
Marine Organisms as Model Systems in Biology and Medicine
Published in
Results and problems in cell differentiation, August 2018
DOI 10.1007/978-3-319-92486-1_20
Pubmed ID
Book ISBNs
978-3-31-992485-4, 978-3-31-992486-1
Authors

I. D. Grice, G. L. Mariottini

Abstract

There remains today a critical need for new antiviral agents, particularly in view of the alarming increase in drug resistance and associated issues. The marine environment has been a prolific contributor towards the identification of novel therapeutic agents in the recent few decades. Added to this, glycans (or carbohydrate- or sugar-based compounds) have in very recent decades made outstanding contributions to the development of novel therapeutics. This review brings together these significant facets of modern drug discovery by presenting the reported literature on glycans derived from marine organisms that possess antiviral activity.The glycans have been grouped together based on the marine organism they were isolated from, namely, (1) bacteria, (2) chromists, (3) plants and (4) animals. For chromists, glycans are further subsectioned into Ochrophyta (brown algae), Miozoa (according to www.algaebase.org ; also called Myzozoa according to WoRMS, www.marinespecies.org ) (dinoflagellates) and Bacillariophyta (diatoms). For plants, glycans are further subsectioned into Chlorophyta, Rhodophyta and Tracheophyta. Glycans isolated to date are reported as alginates, chitosan, extracellular polysaccharides, fucans (e.g. fucoidans), galactans (e.g. carrageenans), glycolipids, glycosaminoglycans, glycosides, glycosylated haemocyanin, laminarans, mannans, polysaccharides (not defined), rhamnans and xylomannans. Interestingly, many of the glycans displaying antiviral properties are sulfated.Reports indicate that marine-sourced glycans have exhibited antiviral activity against African swine fever virus, cytomegalovirus, dengue virus, Epstein-Barr virus, encephalomyocarditis virus, human immunodeficiency virus, hepatitis C virus, herpes simplex virus, human cytomegalovirus, human papilloma virus, human rhino virus, influenza virus, Japanese encephalitis virus, murine leukaemia virus, murine sarcoma virus, Newcastle disease virus, parainfluenza virus, respiratory syncytial virus, Semliki Forest virus, tobacco mosaic virus, vaccinia virus, varicella zoster virus, viral haemorrhagic septicaemia virus and vesicular stomatitis virus. Selected representative glycan structures are presented in Fig. 20.1.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 56 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 56 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 12 21%
Student > Ph. D. Student 8 14%
Student > Master 7 13%
Student > Bachelor 6 11%
Student > Doctoral Student 4 7%
Other 10 18%
Unknown 9 16%
Readers by discipline Count As %
Agricultural and Biological Sciences 11 20%
Biochemistry, Genetics and Molecular Biology 7 13%
Medicine and Dentistry 6 11%
Immunology and Microbiology 4 7%
Pharmacology, Toxicology and Pharmaceutical Science 3 5%
Other 11 20%
Unknown 14 25%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 08 August 2018.
All research outputs
#18,646,262
of 23,099,576 outputs
Outputs from Results and problems in cell differentiation
#134
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Outputs of similar age
#254,363
of 330,798 outputs
Outputs of similar age from Results and problems in cell differentiation
#11
of 15 outputs
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