In vivo and in vitro studies establishing haptoglobin as a major susceptibility gene for diabetic vascular disease

Rabea Asleh, Andrew P LevyFaculty of Medicine, Technion-Israel Institute of Technology, Haifa, IsraelAbstract: Hemoglobin (Hb) released during hemolysis is a potent oxidant. Extracorpuscular Hb may enter the vessel wall and mediate low-density lipoprotein oxidation, thereby promoting the development...

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Main Authors: Rabea Asleh, Andrew P Levy
Format: Article
Language:English
Published: Dove Medical Press 2005-04-01
Series:Vascular Health and Risk Management
Online Access:https://www.dovepress.com/in-vivo-and-in-vitro-studies-establishing-haptoglobin-as-a-major-susce-peer-reviewed-article-VHRM
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spelling doaj-3dc12fa1274a4ee0aa0d7a67b8a17a0d2020-11-24T23:37:14ZengDove Medical PressVascular Health and Risk Management1178-20482005-04-01Volume 119281363In vivo and in vitro studies establishing haptoglobin as a major susceptibility gene for diabetic vascular diseaseRabea AslehAndrew P LevyRabea Asleh, Andrew P LevyFaculty of Medicine, Technion-Israel Institute of Technology, Haifa, IsraelAbstract: Hemoglobin (Hb) released during hemolysis is a potent oxidant. Extracorpuscular Hb may enter the vessel wall and mediate low-density lipoprotein oxidation, thereby promoting the development and progression of atherosclerosis. Haptoglobin (Hp) is an antioxidant protein as a result of its ability to bind Hb and block Hb-induced oxidative damage. Hp also facilitates the removal of Hb from the extravascular compartment via the CD163 macrophage scavenger receptor. In man, there are two common alleles for Hp denoted 1 and 2, and correspondingly, three different possible genotypes: Hp1-1, Hp2-1, and Hp2-2. We have recently demonstrated in several longitudinal studies that Hp genotype is an independent risk factor for diabetic vascular complications. Specifically, we have shown that diabetic individuals with Hp 2-2 are more likely to develop nephropathy, retinopathy, and cardiovascular disease as compared with those with Hp2-1 or Hp1-1. Mechanistically, we have found significant Hp type differences in the antioxidant and CD163-mediated scavenging and activation functions of the different Hp protein types. Furthermore, we have demonstrated that these functions are modified in the diabetic state. In this review, we focus on the clinical studies associating the Hp polymorphism and diabetic vascular complications, and the molecular basis behind this interaction.Keywords: diabetes, cardiovascular disease, haptoglobin polymorphism, hemoglobin, oxidative stresshttps://www.dovepress.com/in-vivo-and-in-vitro-studies-establishing-haptoglobin-as-a-major-susce-peer-reviewed-article-VHRM
collection DOAJ
language English
format Article
sources DOAJ
author Rabea Asleh
Andrew P Levy
spellingShingle Rabea Asleh
Andrew P Levy
In vivo and in vitro studies establishing haptoglobin as a major susceptibility gene for diabetic vascular disease
Vascular Health and Risk Management
author_facet Rabea Asleh
Andrew P Levy
author_sort Rabea Asleh
title In vivo and in vitro studies establishing haptoglobin as a major susceptibility gene for diabetic vascular disease
title_short In vivo and in vitro studies establishing haptoglobin as a major susceptibility gene for diabetic vascular disease
title_full In vivo and in vitro studies establishing haptoglobin as a major susceptibility gene for diabetic vascular disease
title_fullStr In vivo and in vitro studies establishing haptoglobin as a major susceptibility gene for diabetic vascular disease
title_full_unstemmed In vivo and in vitro studies establishing haptoglobin as a major susceptibility gene for diabetic vascular disease
title_sort in vivo and in vitro studies establishing haptoglobin as a major susceptibility gene for diabetic vascular disease
publisher Dove Medical Press
series Vascular Health and Risk Management
issn 1178-2048
publishDate 2005-04-01
description Rabea Asleh, Andrew P LevyFaculty of Medicine, Technion-Israel Institute of Technology, Haifa, IsraelAbstract: Hemoglobin (Hb) released during hemolysis is a potent oxidant. Extracorpuscular Hb may enter the vessel wall and mediate low-density lipoprotein oxidation, thereby promoting the development and progression of atherosclerosis. Haptoglobin (Hp) is an antioxidant protein as a result of its ability to bind Hb and block Hb-induced oxidative damage. Hp also facilitates the removal of Hb from the extravascular compartment via the CD163 macrophage scavenger receptor. In man, there are two common alleles for Hp denoted 1 and 2, and correspondingly, three different possible genotypes: Hp1-1, Hp2-1, and Hp2-2. We have recently demonstrated in several longitudinal studies that Hp genotype is an independent risk factor for diabetic vascular complications. Specifically, we have shown that diabetic individuals with Hp 2-2 are more likely to develop nephropathy, retinopathy, and cardiovascular disease as compared with those with Hp2-1 or Hp1-1. Mechanistically, we have found significant Hp type differences in the antioxidant and CD163-mediated scavenging and activation functions of the different Hp protein types. Furthermore, we have demonstrated that these functions are modified in the diabetic state. In this review, we focus on the clinical studies associating the Hp polymorphism and diabetic vascular complications, and the molecular basis behind this interaction.Keywords: diabetes, cardiovascular disease, haptoglobin polymorphism, hemoglobin, oxidative stress
url https://www.dovepress.com/in-vivo-and-in-vitro-studies-establishing-haptoglobin-as-a-major-susce-peer-reviewed-article-VHRM
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