Seagrass Meadows: Prospective Candidates for Bioactive Molecules.

Hazeena M Ameen, Ayona Jayadev, Geena Prasad, Deepa Indira Nair

Journal: Molecules (Basel, Switzerland) 2024;29(19):

PMID: 39407526

Abstract

Seagrass meadows consist of angiosperms that thrive fully submerged in marine environments and form distinct ecosystems. They provide essential support for many organisms, acting as nursery grounds for species of economic importance. Beyond their ecological roles, seagrasses and their associated microbiomes are rich sources of bioactive compounds with the potential to address numerous human healthcare challenges. Seagrasses produce bioactive molecules responding to physical, chemical, and biological environmental changes. These activities can treat microbe-borne diseases, skin diseases, diabetes, muscle pain, helminthic diseases, and wounds. Seagrasses also offer potential secondary metabolites that can be used for societal benefits. Despite numerous results on their presence and bioactive derivatives, only a few studies have explored the functional and therapeutic properties of secondary metabolites from seagrass. With the increasing spread of epidemics and pandemics worldwide, the demand for alternative drug sources and drug discovery has become an indispensable area of research. Seagrasses present a reliable natural source, making this an opportune moment for further exploration of their pharmacological activities with minimal side effects. This review provides a comprehensive overview of the biochemical, phytochemical, and biomedical applications of seagrasses globally over the last two decades, highlighting the prospective areas of future research for identifying biomedical applications.

Address: Postgraduate Department of Environmental Sciences, All Saints' College (Affiliated to the University of Kerala), Thiruvananthapuram 695007, India.; Department of Mechanical Engineering, Amrita Vishwa Vidyapeetham, Amritapuri 641112, India.; Department of Engineering Technologies, Swinburne University of Technology, Melbourne 3122, Australia.
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