Multiple aspects of lymphatic dysfunction in an ApoE-/- mouse model of hypercholesterolemia

被引:6
作者
Davis, Michael J. [1 ]
Scallan, Joshua P. [2 ]
Castorena-Gonzalez, Jorge A. [3 ]
Kim, Hae Jin [1 ]
Ying, Lim Hwee [4 ]
Pin, Yeo Kim [4 ,5 ]
Angeli, Veronique [4 ,5 ]
机构
[1] Univ Missouri, Dept Med Pharmacol & Physiol, Columbia, MO 65211 USA
[2] Univ S Florida, Dept Mol Pharmacol, Tampa, FL USA
[3] Tulane Univ, Dept Pharmacol, Sch Med, New Orleans, LA USA
[4] Natl Univ Singapore, Yong Loo Lin Sch Med, Dept Microbiol & Immunol, Immunol Translat Res Programme, Singapore, Singapore
[5] Natl Univ Singapore, Life Sci Inst, Immunol Programme, Singapore, Singapore
关键词
lymphatic valve; permeability; contractile dysfunction; high fat diet; back-leak; pump limit; lymphatic muscle; lymphatic endothelium; DIET-INDUCED OBESITY; CHOLESTEROL; VESSELS; MICE; INCREASES; CONTRACTILITY; CONSTRICTION; VASCULATURE; MECHANISMS; INFECTION;
D O I
10.3389/fphys.2022.1098408
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Introduction: Rodent models of cardiovascular disease have uncovered various types of lymphatic vessel dysfunction that occur in association with atherosclerosis, type II diabetes and obesity. Previously, we presented in vivo evidence for impaired lymphatic drainage in apolipoprotein E null (ApoE ( -/- )) mice fed a high fat diet (HFD). Whether this impairment relates to the dysfunction of collecting lymphatics remains an open question. The ApoE ( -/- ) mouse is a well-established model of cardiovascular disease, in which a diet rich in fat and cholesterol on an ApoE deficient background accelerates the development of hypercholesteremia, atherosclerotic plaques and inflammation of the skin and other tissues. Here, we investigated various aspects of lymphatic function using ex vivo tests of collecting lymphatic vessels from ApoE ( +/+ ) or ApoE ( -/- ) mice fed a HFD.Methods: Popliteal collectors were excised from either strain and studied under defined conditions in which we could quantify changes in lymphatic contractile strength, lymph pump output, secondary valve function, and collecting vessel permeability.Results: Our results show that all these aspects of lymphatic vessel function are altered in deleterious ways in this model of hypercholesterolemia.Discussion: These findings extend previous in vivo observations suggesting significant dysfunction of lymphatic endothelial cells and smooth muscle cells from collecting vessels in association with a HFD on an ApoE-deficient background. An implication of our study is that collecting vessel dysfunction in this context may negatively impact the removal of cholesterol by the lymphatic system from the skin and the arterial wall and thereby exacerbate the progression and/or severity of atherosclerosis and associated inflammation.
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页数:13
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共 80 条
[1]   Modulation of Vascular Reactivity by Perivascular Adipose Tissue (PVAT) [J].
Agabiti-Rosei, Claudia ;
Paini, Anna ;
De Ciuceis, Carolina ;
Withers, Sarah ;
Greenstein, Adam ;
Heagerty, Anthony M. ;
Rizzoni, Damiano .
CURRENT HYPERTENSION REPORTS, 2018, 20 (05)
[2]   The Unresolved Pathophysiology of Lymphedema [J].
Azhar, Syaza Hazwany ;
Lim, Hwee Ying ;
Tan, Bien-Keem ;
Angeli, Veronique .
FRONTIERS IN PHYSIOLOGY, 2020, 11
[3]   Small artery remodeling depends on tissue-type transglutaminase [J].
Bakker, ENTP ;
Buus, CL ;
Spaan, JAE ;
Perree, J ;
Ganga, A ;
Rolf, TM ;
Sorop, O ;
Bramsen, LH ;
Mulvany, MJ ;
VanBavel, E .
CIRCULATION RESEARCH, 2005, 96 (01) :119-126
[4]   Comparative Transcriptomic Analysis Identifies a Range of Immunologically Related Functional Elaborations of Lymph Node Associated Lymphatic and Blood Endothelial Cells [J].
Berendam, Stella J. ;
Koeppel, Alexander F. ;
Godfrey, Nicole R. ;
Rouhani, Sherin J. ;
Woods, Amber N. ;
Rodriguez, Anthony B. ;
Peske, J. David ;
Cummings, Kara L. ;
Turner, Stephen D. ;
Engelhard, Victor H. .
FRONTIERS IN IMMUNOLOGY, 2019, 10
[5]   Modelling secondary lymphatic valves with a flexible vessel wall: how geometry and material properties combine to provide function [J].
Bertram, C. D. .
BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, 2020, 19 (06) :2081-2098
[6]   Valve-related modes of pump failure in collecting lymphatics: numerical and experimental investigation [J].
Bertram, C. D. ;
Macaskill, C. ;
Davis, M. J. ;
Moore, J. E., Jr. .
BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, 2017, 16 (06) :1987-2003
[7]   Chronic High-Fat Diet Impairs Collecting Lymphatic Vessel Function in Mice [J].
Blum, Katrin S. ;
Karaman, Sinem ;
Proulx, Steven T. ;
Ochsenbein, Alexandra M. ;
Luciani, Paola ;
Leroux, Jean-Christophe ;
Wolfrum, Christian ;
Detmar, Michael .
PLOS ONE, 2014, 9 (04)
[8]   Mesenteric lymphatic dysfunction promotes insulin resistance and represents a potential treatment target in obesity [J].
Cao, Enyuan ;
Watt, Matthew J. ;
Nowell, Cameron J. ;
Quach, Tim ;
Simpson, Jamie S. ;
Ferreira, Vilena De Melo ;
Agarwal, Sonya ;
Chu, Hannah ;
Srivastava, Anubhav ;
Anderson, Dovile ;
Gracia, Gracia ;
Lam, Alina ;
Segal, Gabriela ;
Hong, Jiwon ;
Hu, Luojuan ;
Phang, Kian Liun ;
Escott, Alistair B. J. ;
Windsor, John A. ;
Phillips, Anthony R. J. ;
Creek, Darren J. ;
Harvey, Natasha L. ;
Porter, Christopher J. H. ;
Trevaskis, Natalie L. .
NATURE METABOLISM, 2021, 3 (09) :1175-+
[9]   Lymphatic Valve Dysfunction in Western Diet-Fed Mice: New Insights Into Obesity-Induced Lymphedema [J].
Castorena-Gonzalez, Jorge A. .
FRONTIERS IN PHARMACOLOGY, 2022, 13
[10]   Simplified method to quantify valve back-leak uncovers severe mesenteric lymphatic valve dysfunction in mice deficient in connexins 43 and 37 [J].
Castorena-Gonzalez, Jorge A. ;
Srinivasan, R. Sathish ;
King, Philip D. ;
Simon, Alexander M. ;
Davis, Michael J. .
JOURNAL OF PHYSIOLOGY-LONDON, 2020, 598 (12) :2297-2310