Exploring Marine as a Rich Source of Bioactive Peptides: Challenges and Opportunities from Marine Pharmacology

Mar Drugs. 2022 Mar 13;20(3):208. doi: 10.3390/md20030208.

Abstract

This review highlights the underexplored potential and promises of marine bioactive peptides (MBPs) with unique structural, physicochemical, and biological activities to fight against the current and future human pathologies. A particular focus is given to the marine environment as a significant source to obtain or extract high-value MBPs from touched/untouched sources. For instance, marine microorganisms, including microalgae, bacteria, fungi, and marine polysaccharides, are considered prolific sources of amino acids at large, and peptides/polypeptides in particular, with fundamental structural sequence and functional entities of a carboxyl group, amine, hydrogen, and a variety of R groups. Thus, MBPs with tunable features, both structural and functional entities, along with bioactive traits of clinical and therapeutic value, are of ultimate interest to reinforce biomedical settings in the 21st century. On the other front, as the largest biome globally, the marine biome is the so-called "epitome of untouched or underexploited natural resources" and a considerable source with significant potentialities. Therefore, considering their biological and biomedical importance, researchers around the globe are redirecting and/or regaining their interests in valorizing the marine biome-based MBPs. This review focuses on the widespread bioactivities of MBPs, FDA-approved MBPs in the market, sustainable development goals (SDGs), and legislation to valorize marine biome to underlying the impact role of bioactive elements with the related pathways. Finally, a detailed overview of current challenges, conclusions, and future perspectives is also given to satisfy the stimulating demands of the pharmaceutical sector of the modern world.

Keywords: bioactivities; biomedical; marine bioactive peptides; marine biome; natural resources; pharmacology; therapeutic attributes.

Publication types

  • Review

MeSH terms

  • Animals
  • Aquatic Organisms*
  • Biological Products* / pharmacology
  • Biological Products* / therapeutic use
  • Drug Approval
  • Ecosystem
  • Humans
  • Peptides* / pharmacology
  • Peptides* / therapeutic use
  • Sustainable Development
  • United States
  • United States Food and Drug Administration

Substances

  • Biological Products
  • Peptides