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Triphenylphosphonium (TPP)-Based Antioxidants: A New Perspective on Antioxidant Design.

Jiayao Y WangJiaqi Q LiYumei M XiaoBin FuZhaohai H Qin
Published in: ChemMedChem (2020)
Mitochondrial oxidative damage and dysfunction contribute to a wide range of human diseases. Considering the limitation of conventional antioxidants and that mitochondria are the main source of reactive oxygen species (ROS) which induce oxidative damage, mitochondria-targeted antioxidants which can selectively block mitochondrial oxidative damage and prevent various types of cell death have been widely developed. As a lipophilic cation, triphenylphosphonium (TPP) has been commonly used in designing mitochondria-targeted antioxidants. Conjugated with the TPP moiety, antioxidants can achieve more than 1000-fold higher mitochondrial concentration depending on cell membrane potentials and mitochondrial membrane potentials. Herein we discuss the deficiencies of conventional antioxidants and the advantages of mitochondrial targeting, and review various types of TPP-based mitochondria-targeted antioxidants. These provide theoretical and background support for the design of new anti-oxidant.
Keyphrases
  • cell death
  • reactive oxygen species
  • oxidative stress
  • cancer therapy
  • endoplasmic reticulum
  • dna damage
  • cell cycle arrest
  • photodynamic therapy
  • cell proliferation
  • signaling pathway
  • pi k akt