Literature DB >> 35575921

HDL and Oxidation.

Qi Zhang1, Zongzhe Jiang2, Yong Xu3.   

Abstract

In this chapter, we will focus on HDLs' activity of inhibiting LDL oxidation and neutralizing some other oxidants. ApoA-I was known as the main antioxidant component in HDLs. The regulation of antioxidant capacity of HDL is mainly exhibited in regulation of apoA-I and alterations at the level of the HDL lipidome and the modifications of the proteome, especially MPO and PON1. HDL oxidation will influence the processes of inflammation and cholesterol transport, which are important processes in atherosclerosis, metabolic diseases, and many other diseases. In a word, HDL oxidation might be an effective antioxidant target in treatment of many diseases.
© 2022. Springer Nature Singapore Pte Ltd.

Entities:  

Keywords:  ApoA-I; HDL oxidation; Myeloperoxidase; Oxidation; Paraoxonase 1

Mesh:

Substances:

Year:  2022        PMID: 35575921     DOI: 10.1007/978-981-19-1592-5_5

Source DB:  PubMed          Journal:  Adv Exp Med Biol        ISSN: 0065-2598            Impact factor:   2.622


  122 in total

1.  Oral administration of an Apo A-I mimetic Peptide synthesized from D-amino acids dramatically reduces atherosclerosis in mice independent of plasma cholesterol.

Authors:  Mohamad Navab; G M Anantharamaiah; Susan Hama; David W Garber; Manjula Chaddha; Greg Hough; Roger Lallone; Alan M Fogelman
Journal:  Circulation       Date:  2002-01-22       Impact factor: 29.690

Review 2.  Paraoxonase and atherosclerosis.

Authors:  P N Durrington; B Mackness; M I Mackness
Journal:  Arterioscler Thromb Vasc Biol       Date:  2001-04       Impact factor: 8.311

Review 3.  Functionality of HDL: antioxidation and detoxifying effects.

Authors:  Helen Karlsson; Anatol Kontush; Richard W James
Journal:  Handb Exp Pharmacol       Date:  2015

4.  Anti-inflammatory HDL becomes pro-inflammatory during the acute phase response. Loss of protective effect of HDL against LDL oxidation in aortic wall cell cocultures.

Authors:  B J Van Lenten; S Y Hama; F C de Beer; D M Stafforini; T M McIntyre; S M Prescott; B N La Du; A M Fogelman; M Navab
Journal:  J Clin Invest       Date:  1995-12       Impact factor: 14.808

5.  Ability of lipid hydroperoxides to partition into surfactant micelles and alter lipid oxidation rates in emulsions.

Authors:  Carla D Nuchi; Pilar Hernandez; D Julian McClements; Eric A Decker
Journal:  J Agric Food Chem       Date:  2002-09-11       Impact factor: 5.279

Review 6.  Dysfunctional HDL and atherosclerotic cardiovascular disease.

Authors:  Robert S Rosenson; H Bryan Brewer; Benjamin J Ansell; Philip Barter; M John Chapman; Jay W Heinecke; Anatol Kontush; Alan R Tall; Nancy R Webb
Journal:  Nat Rev Cardiol       Date:  2015-09-01       Impact factor: 32.419

7.  Paraoxonase prevents accumulation of lipoperoxides in low-density lipoprotein.

Authors:  M I Mackness; S Arrol; P N Durrington
Journal:  FEBS Lett       Date:  1991-07-29       Impact factor: 4.124

8.  Rapid reduction and removal of HDL- but not LDL-associated cholesteryl ester hydroperoxides by rat liver perfused in situ.

Authors:  J Christison; A Karjalainen; J Brauman; F Bygrave; R Stocker
Journal:  Biochem J       Date:  1996-03-15       Impact factor: 3.857

9.  Copper-induced oxidative damage on astrocytes: protective effect exerted by human high density lipoproteins.

Authors:  Gianna Ferretti; Tiziana Bacchetti; Cinzia Moroni; Arianna Vignini; Giovanna Curatola
Journal:  Biochim Biophys Acta       Date:  2003-11-30

Review 10.  Antioxidative activity of high-density lipoprotein (HDL): Mechanistic insights into potential clinical benefit.

Authors:  Fernando Brites; Maximiliano Martin; Isabelle Guillas; Anatol Kontush
Journal:  BBA Clin       Date:  2017-08-19
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  1 in total

Review 1.  Advanced Glycation End Products and Their Effect on Vascular Complications in Type 2 Diabetes Mellitus.

Authors:  Jeongmin Lee; Jae-Seung Yun; Seung-Hyun Ko
Journal:  Nutrients       Date:  2022-07-27       Impact factor: 6.706

  1 in total

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