IL-10 provides cardioprotection in diabetic myocardial infarction via upregulation of Heme clearance pathways

Diabetes is a risk factor for myocardial infarction, and outcomes after myocardial infarction are worse among diabetics compared with nondiabetics. Diabetes is associated with impaired Heme clearance. Here, we determined whether heme toxicity and impaired heme clearance contribute to diabetic myocar...

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Main Authors: Rajesh Gupta, Lijun Liu, Xiaolu Zhang, Xiaoming Fan, Prasanna Krishnamurthy, Suresh Verma, Jörn Tongers, Sol Misener, Nikita Ashcherkin, Hongliu Sun, Jiang Tian, Raj Kishore
Format: Article
Language:English
Published: American Society for Clinical investigation 2020-09-01
Series:JCI Insight
Subjects:
Online Access:https://doi.org/10.1172/jci.insight.133050
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spelling doaj-7b37eb7321e9490b9d8a744d14d4dfbc2021-08-02T15:55:56ZengAmerican Society for Clinical investigationJCI Insight2379-37082020-09-01517IL-10 provides cardioprotection in diabetic myocardial infarction via upregulation of Heme clearance pathwaysRajesh GuptaLijun LiuXiaolu ZhangXiaoming FanPrasanna KrishnamurthySuresh VermaJörn TongersSol MisenerNikita AshcherkinHongliu SunJiang TianRaj KishoreDiabetes is a risk factor for myocardial infarction, and outcomes after myocardial infarction are worse among diabetics compared with nondiabetics. Diabetes is associated with impaired Heme clearance. Here, we determined whether heme toxicity and impaired heme clearance contribute to diabetic myocardial infarction injury and assessed IL-10 as a therapeutic agent for diabetic myocardial infarction. Plasma-free hemoglobin was significantly elevated in diabetic mice compared with nondiabetic mice after myocardial infarction. Infarct size had strong correlation to the level of plasma-free hemoglobin. Hemoglobin and reactive iron deposition within the infarct zone were also demonstrated in diabetic MI. IL-10 significantly reduced infarct size and improved cardiac function in diabetic mice. Moreover, IL-10 improved capillary density, reduced apoptosis, and decreased inflammation in the border zone of the infarcted hearts, findings that were partially inhibited by Tin protoporphyrin (a heme oxygenase-1 inhibitor). IL-10 upregulated CD163, the hemoglobin:haptoglobin scavenger receptor, and heme oxygenase-1 in THP-1–derived and primary human CD14+ macrophages. IL-10 significantly protected against ischemic injury when HL-1 cardiomyocytes were cotreated with hemoglobin. Together, our findings indicate that IL-10 is cardioprotective in diabetic myocardial infarction via upregulation of heme clearance pathways. These findings implicate heme clearance as a potentially novel therapeutic direction for diabetic myocardial infarction.https://doi.org/10.1172/jci.insight.133050CardiologyTherapeutics
collection DOAJ
language English
format Article
sources DOAJ
author Rajesh Gupta
Lijun Liu
Xiaolu Zhang
Xiaoming Fan
Prasanna Krishnamurthy
Suresh Verma
Jörn Tongers
Sol Misener
Nikita Ashcherkin
Hongliu Sun
Jiang Tian
Raj Kishore
spellingShingle Rajesh Gupta
Lijun Liu
Xiaolu Zhang
Xiaoming Fan
Prasanna Krishnamurthy
Suresh Verma
Jörn Tongers
Sol Misener
Nikita Ashcherkin
Hongliu Sun
Jiang Tian
Raj Kishore
IL-10 provides cardioprotection in diabetic myocardial infarction via upregulation of Heme clearance pathways
JCI Insight
Cardiology
Therapeutics
author_facet Rajesh Gupta
Lijun Liu
Xiaolu Zhang
Xiaoming Fan
Prasanna Krishnamurthy
Suresh Verma
Jörn Tongers
Sol Misener
Nikita Ashcherkin
Hongliu Sun
Jiang Tian
Raj Kishore
author_sort Rajesh Gupta
title IL-10 provides cardioprotection in diabetic myocardial infarction via upregulation of Heme clearance pathways
title_short IL-10 provides cardioprotection in diabetic myocardial infarction via upregulation of Heme clearance pathways
title_full IL-10 provides cardioprotection in diabetic myocardial infarction via upregulation of Heme clearance pathways
title_fullStr IL-10 provides cardioprotection in diabetic myocardial infarction via upregulation of Heme clearance pathways
title_full_unstemmed IL-10 provides cardioprotection in diabetic myocardial infarction via upregulation of Heme clearance pathways
title_sort il-10 provides cardioprotection in diabetic myocardial infarction via upregulation of heme clearance pathways
publisher American Society for Clinical investigation
series JCI Insight
issn 2379-3708
publishDate 2020-09-01
description Diabetes is a risk factor for myocardial infarction, and outcomes after myocardial infarction are worse among diabetics compared with nondiabetics. Diabetes is associated with impaired Heme clearance. Here, we determined whether heme toxicity and impaired heme clearance contribute to diabetic myocardial infarction injury and assessed IL-10 as a therapeutic agent for diabetic myocardial infarction. Plasma-free hemoglobin was significantly elevated in diabetic mice compared with nondiabetic mice after myocardial infarction. Infarct size had strong correlation to the level of plasma-free hemoglobin. Hemoglobin and reactive iron deposition within the infarct zone were also demonstrated in diabetic MI. IL-10 significantly reduced infarct size and improved cardiac function in diabetic mice. Moreover, IL-10 improved capillary density, reduced apoptosis, and decreased inflammation in the border zone of the infarcted hearts, findings that were partially inhibited by Tin protoporphyrin (a heme oxygenase-1 inhibitor). IL-10 upregulated CD163, the hemoglobin:haptoglobin scavenger receptor, and heme oxygenase-1 in THP-1–derived and primary human CD14+ macrophages. IL-10 significantly protected against ischemic injury when HL-1 cardiomyocytes were cotreated with hemoglobin. Together, our findings indicate that IL-10 is cardioprotective in diabetic myocardial infarction via upregulation of heme clearance pathways. These findings implicate heme clearance as a potentially novel therapeutic direction for diabetic myocardial infarction.
topic Cardiology
Therapeutics
url https://doi.org/10.1172/jci.insight.133050
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