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
Catherine Martel, Wenjun Li, Brian Fulp, Andrew M. Platt, Emmanuel L. Gautier, Marit Westerterp, Robert Bittman, Alan R. Tall, Shu-Hsia Chen, Michael J. Thomas, Daniel Kreisel, Melody A. Swartz, Mary G. Sorci-Thomas, Gwendalyn J. Randolph
Title and authors | Publication | Year |
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Heterogeneity in the lymphatic vascular system and its origin
MH Ulvmar, T Mäkinen |
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Lymphatic pumping: mechanics, mechanisms and malfunction: Lymphatic pumping mechanisms
JP Scallan, SD Zawieja, JA Castorena-Gonzalez, MJ Davis |
The Journal of Physiology | 2016 |
CCL19-CCR7–dependent reverse transendothelial migration of myeloid cells clears Chlamydia muridarum from the arterial intima
M Roufaiel, E Gracey, A Siu, SN Zhu, A Lau, H Ibrahim, M Althagafi, K Tai, SJ Hyduk, KO Cybulsky, S Ensan, A Li, R Besla, HM Becker, H Xiao, SA Luther, RD Inman, CS Robbins, J Jongstra-Bilen, MI Cybulsky |
Nature Immunology | 2016 |
Microdomains, Inflammation, and Atherosclerosis
MG Sorci-Thomas, MJ Thomas |
Circulation research | 2016 |
The Role of Lymphatic Endothelial Cells in Liver Injury and Tumor Development
V Lukacs-Kornek |
Frontiers in immunology | 2016 |
Lipid‐Free Apolipoprotein A‐I Reduces Progression of Atherosclerosis by Mobilizing Microdomain Cholesterol and Attenuating the Number of CD131 Expressing Cells: Monitoring Cholesterol Homeostasis Using the Cellular Ester to Total Cholesterol Ratio
S Kaul, H Xu, M Zabalawi, E Maruko, BE Fulp, T Bluemn, KL BrzozaLewis, M Gerelus, R Weerasekera, R Kallinger, R James, YS Zhang, MJ Thomas, MG SorciThomas |
Journal of the American Heart Association: Cardiovascular and Cerebrovascular Disease | 2016 |
PEGylated IL-10 Activates Kupffer Cells to Control Hypercholesterolemia
IH Chan, DV Hoof, M Abramova, M Bilardello, E Mar, B Jorgensen, S McCauley, H Bal, M Oft, PV Vlasselaer, JB Mumm, L Yu |
PloS one | 2016 |
Endothelial Mitogen-Activated Protein Kinase Kinase Kinase Kinase 4 Is Critical for Lymphatic Vascular Development and Function
RJ Flach, CA Guo, LV Danai, JC Yawe, S Gujja, YJ Edwards, MP Czech |
Molecular and cellular biology | 2016 |
Mechanism and Physiologic Significance of the Suppression of Cholesterol Esterification in Human Interstitial Fluid
NE Miller, WL Olszewski, IP Miller, MN Nanjee |
Frontiers in pharmacology | 2016 |
Effects of LDL Receptor Modulation on Lymphatic Function
A Milasan, F Dallaire, G Mayer, C Martel |
Scientific Reports | 2016 |
Lymph vessels: the forgotten second circulation in health and disease
LA Adamczyk, K Gordon, I Kholová, LB Meijer-Jorna, N Telinius, PJ Gallagher, AC van der Wal, U Baandrup |
Virchows Archiv | 2016 |
Extracellular vesicles are present in mouse lymph and their level differs in atherosclerosis.
Milasan A, Tessandier N, Tan S, Brisson A, Boilard E, Martel C |
Journal of Extracellular Vesicles | 2016 |