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Marine Compounds, Mitochondria, and Malignancy: A Therapeutic Nexus.

Sajad FakhriSadaf AbdianSeyed Zachariah MoradiBlake E DelgadilloCarmela FimognariAnupam Bishyaee
Published in: Marine drugs (2022)
The marine environment is important yet generally underexplored. It contains new sources of functional constituents that can affect various pathways in food processing, storage, and fortification. Bioactive secondary metabolites produced by marine microorganisms may have significant potential applications for humans. Various components isolated from disparate marine microorganisms, including fungi, microalgae, bacteria, and myxomycetes, showed considerable biological effects, such as anticancer, antioxidant, antiviral, antibacterial, and neuroprotective activities. Growing studies are revealing that potential anticancer effects of marine agents could be achieved through the modulation of several organelles. Mitochondria are known organelles that influence growth, differentiation, and death of cells via influencing the biosynthetic, bioenergetic, and various signaling pathways related to oxidative stress and cellular metabolism. Consequently, mitochondria play an essential role in tumorigenesis and cancer treatments by adapting to alterations in environmental and cellular conditions. The growing interest in marine-derived anticancer agents, combined with the development and progression of novel technology in the extraction and cultures of marine life, led to revelations of new compounds with meaningful pharmacological applications. This is the first critical review on marine-derived anticancer agents that have the potential for targeting mitochondrial function during tumorigenesis. This study aims to provide promising strategies in cancer prevention and treatment.
Keyphrases
  • oxidative stress
  • human health
  • cell death
  • signaling pathway
  • papillary thyroid
  • reactive oxygen species
  • ms ms
  • dna damage
  • young adults
  • anti inflammatory
  • blood brain barrier
  • drug delivery
  • lymph node metastasis