Title : Synergy between plant phenols and carotenoids in stabilizing lipid-bilayer membranes of giant unilamellar vesicles against oxidative destruction.

Pub. Date : 2020 Feb 21

PMID : 31970380






2 Functional Relationships(s)
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1 The dependence of LP on the reducing power of phenols coincided with the Marcus theory plot for the rate of electron transfer from phenols to the radical cation beta-CAR + as a primary oxidative product, suggesting that the plant phenol regeneration of beta-CAR plays an important role in stabilizing the GUV membranes, as further supported by the involvement of CAR + and the distinct shortening of its lifetime as shown by transient absorption spectroscopy. Phenols CXADR pseudogene 1 Homo sapiens
2 The dependence of LP on the reducing power of phenols coincided with the Marcus theory plot for the rate of electron transfer from phenols to the radical cation beta-CAR + as a primary oxidative product, suggesting that the plant phenol regeneration of beta-CAR plays an important role in stabilizing the GUV membranes, as further supported by the involvement of CAR + and the distinct shortening of its lifetime as shown by transient absorption spectroscopy. Phenols CXADR pseudogene 1 Homo sapiens