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Lymphatic vasculature mediates macrophage reverse cholesterol transport in mice

Identifieur interne : 003460 ( Main/Exploration ); précédent : 003459; suivant : 003461

Lymphatic vasculature mediates macrophage reverse cholesterol transport in mice

Auteurs : Catherine Martel [États-Unis] ; Wenjun Li [États-Unis] ; Brian Fulp [États-Unis] ; Andrew M. Platt [États-Unis] ; Emmanuel L. Gautier ; Marit Westerterp [États-Unis] ; Robert Bittman [États-Unis] ; Alan R. Tall [États-Unis] ; Shu-Hsia Chen [États-Unis] ; Michael J. Thomas [États-Unis] ; Daniel Kreisel [États-Unis] ; Melody A. Swartz [Suisse] ; Mary G. Sorci-Thomas [États-Unis] ; Gwendalyn J. Randolph [États-Unis]

Source :

RBID : PMC:3613904

Abstract

Reverse cholesterol transport (RCT) refers to the mobilization of cholesterol on HDL particles (HDL-C) from extravascular tissues to plasma, ultimately for fecal excretion. Little is known about how HDL-C leaves peripheral tissues to reach plasma. We first used 2 models of disrupted lymphatic drainage from skin — 1 surgical and the other genetic — to quantitatively track RCT following injection of [3H]-cholesterol–loaded macrophages upstream of blocked or absent lymphatic vessels. Macrophage RCT was markedly impaired in both models, even at sites with a leaky vasculature. Inhibited RCT was downstream of cholesterol efflux from macrophages, since macrophage efflux of a fluorescent cholesterol analog (BODIPY-cholesterol) was not altered by impaired lymphatic drainage. We next addressed whether RCT was mediated by lymphatic vessels from the aortic wall by loading the aortae of donor atherosclerotic Apoe-deficient mice with [2H]6-labeled cholesterol and surgically transplanting these aortae into recipient Apoe-deficient mice that were treated with anti-VEGFR3 antibody to block lymphatic regrowth or with control antibody to allow such regrowth. [2H]-Cholesterol was retained in aortae of anti–VEGFR3-treated mice. Thus, the lymphatic vessel route is critical for RCT from multiple tissues, including the aortic wall. These results suggest that supporting lymphatic transport function may facilitate cholesterol clearance in therapies aimed at reversing atherosclerosis.


Url:
DOI: 10.1172/JCI63685
PubMed: 23524964
PubMed Central: 3613904


Affiliations:


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Le document en format XML

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<name sortKey="Randolph, Gwendalyn J" sort="Randolph, Gwendalyn J" uniqKey="Randolph G" first="Gwendalyn J." last="Randolph">Gwendalyn J. Randolph</name>
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<title level="j">The Journal of Clinical Investigation</title>
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<idno type="eISSN">1558-8238</idno>
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<p>Reverse cholesterol transport (RCT) refers to the mobilization of cholesterol on HDL particles (HDL-C) from extravascular tissues to plasma, ultimately for fecal excretion. Little is known about how HDL-C leaves peripheral tissues to reach plasma. We first used 2 models of disrupted lymphatic drainage from skin — 1 surgical and the other genetic — to quantitatively track RCT following injection of [
<sup>3</sup>
H]-cholesterol–loaded macrophages upstream of blocked or absent lymphatic vessels. Macrophage RCT was markedly impaired in both models, even at sites with a leaky vasculature. Inhibited RCT was downstream of cholesterol efflux from macrophages, since macrophage efflux of a fluorescent cholesterol analog (BODIPY-cholesterol) was not altered by impaired lymphatic drainage. We next addressed whether RCT was mediated by lymphatic vessels from the aortic wall by loading the aortae of donor atherosclerotic
<italic>Apoe</italic>
-deficient mice with [
<sup>2</sup>
H]
<sub>6</sub>
-labeled cholesterol and surgically transplanting these aortae into recipient
<italic>Apoe</italic>
-deficient mice that were treated with anti-VEGFR3 antibody to block lymphatic regrowth or with control antibody to allow such regrowth. [
<sup>2</sup>
H]-Cholesterol was retained in aortae of anti–VEGFR3-treated mice. Thus, the lymphatic vessel route is critical for RCT from multiple tissues, including the aortic wall. These results suggest that supporting lymphatic transport function may facilitate cholesterol clearance in therapies aimed at reversing atherosclerosis. </p>
</div>
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<name sortKey="Chen, Shu Hsia" sort="Chen, Shu Hsia" uniqKey="Chen S" first="Shu-Hsia" last="Chen">Shu-Hsia Chen</name>
<name sortKey="Fulp, Brian" sort="Fulp, Brian" uniqKey="Fulp B" first="Brian" last="Fulp">Brian Fulp</name>
<name sortKey="Kreisel, Daniel" sort="Kreisel, Daniel" uniqKey="Kreisel D" first="Daniel" last="Kreisel">Daniel Kreisel</name>
<name sortKey="Li, Wenjun" sort="Li, Wenjun" uniqKey="Li W" first="Wenjun" last="Li">Wenjun Li</name>
<name sortKey="Platt, Andrew M" sort="Platt, Andrew M" uniqKey="Platt A" first="Andrew M." last="Platt">Andrew M. Platt</name>
<name sortKey="Randolph, Gwendalyn J" sort="Randolph, Gwendalyn J" uniqKey="Randolph G" first="Gwendalyn J." last="Randolph">Gwendalyn J. Randolph</name>
<name sortKey="Sorci Thomas, Mary G" sort="Sorci Thomas, Mary G" uniqKey="Sorci Thomas M" first="Mary G." last="Sorci-Thomas">Mary G. Sorci-Thomas</name>
<name sortKey="Tall, Alan R" sort="Tall, Alan R" uniqKey="Tall A" first="Alan R." last="Tall">Alan R. Tall</name>
<name sortKey="Thomas, Michael J" sort="Thomas, Michael J" uniqKey="Thomas M" first="Michael J." last="Thomas">Michael J. Thomas</name>
<name sortKey="Westerterp, Marit" sort="Westerterp, Marit" uniqKey="Westerterp M" first="Marit" last="Westerterp">Marit Westerterp</name>
</country>
<country name="Suisse">
<region name="Canton de Vaud">
<name sortKey="Swartz, Melody A" sort="Swartz, Melody A" uniqKey="Swartz M" first="Melody A." last="Swartz">Melody A. Swartz</name>
</region>
</country>
</tree>
</affiliations>
</record>

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