4.7 Article

Structural Characterization of Peripolin and Study of Antioxidant Activity of HMG Flavonoids from Bergamot Fruit

期刊

ANTIOXIDANTS
卷 11, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/antiox11101847

关键词

bergamot; citrus bergamia; high-resolution mass spectrometry; structure elucidation; HMG flavonoids; statin; peripolin; antioxidant activity

资金

  1. PSR Calabria 2014/2020-MISURA 16 INTERVENTO 16.02.01 FARMABERG grant
  2. Calabria Regional Institution through the AgrInfra Calabria POR FESR-FSE Calabria 2014/2020, Action 1.5.1 grant
  3. Italian Ministry of Foreign Affairs and International Cooperation [MAECI-CUP H28D20000370001]
  4. ESSERRE Pharma company
  5. Italian Ministry of Education, University and Research

向作者/读者索取更多资源

The structural characterization and antioxidant ability of a new flavonoid from bergamot fruit have been investigated. The new molecule, named peripolin, possesses strong antioxidant behavior and shows higher activity compared to other flavonoids present in the fruit. This study provides important insights into the antioxidant characteristics of bergamot fruit.
The structural characterization of a new flavonoid from bergamot fruit (Citrus bergamia Risso) carrying the 3-hydroxy-3-methyl glutaryl (HMG) ester moiety has been accomplished, and its antioxidant ability was tested from a chemical point of view. The peculiarity of the new molecule, named peripolin, relies on the presence of the HMG chemical group linked to the sugar portion of neoeriocitrin; the structure was elucidated using both high-resolution mass spectrometry and nuclear magnetic resonance experiments performed on the purified molecule extracted from the fruit. The antioxidant ability of the new molecule was tested by classical chemical approaches, such as DPPH, ABTS and FRAP assays, and from a theoretical point of view. H-1 and C-13 NMR experiments and HR-ESI-MS/MS experiments show unequivocally that the HMG moiety is linked to the primary position of the glucose unit of neohesperidose, while the chemical tests and the computational results show that peripolin possesses strong antioxidant behavior, similar to that of neoeriocitrin and remarkably higher respect to the other flavonoids present in the fruit. Furthermore, the quantitative assays carried out by UPLC-MS/MS showed that its amount in the fruit is similar to that of the other main flavonoids. Furthermore, molecular dynamics simulations allowed us to investigate the possible conformations adopted by the antioxidants in the presence of water molecules. In particular, the switch of open-closed conformations of HMG-containing species was evidenced. As far as the reaction with DPPH, the calculation of Delta G(rea) supported the experimental outcomes regarding the peripolin and neoeriocitrin activity. In conclusion, bergamot fruit, already known for its potential to lower the level of blood cholesterol, has been proven to contain molecules such as neoeriocitrin and the newly characterized peripolin, which could have important in-vivo antioxidant characteristics.

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