Mechanical features of endothelium regulate cell adhesive molecule-induced calcium response in neutrophils

Atherosclerosis is caused by chronic inflammation associated with the adhesion of neutrophils and endothelial cells (ECs) that is mediated by their respective cellular adhesive molecules to stiffened blood vessel walls. However, the stiffness dependence of calcium flux on neutrophils remains unclear...

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Main Authors: Yanhong Xu, Dandan Huang, Shouqin Lü, Yan Zhang, Mian Long
Format: Article
Language:English
Published: AIP Publishing LLC 2019-03-01
Series:APL Bioengineering
Online Access:http://dx.doi.org/10.1063/1.5045115
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spelling doaj-92641739a95f41b292d8579ede37c94c2020-11-25T02:18:28ZengAIP Publishing LLCAPL Bioengineering2473-28772019-03-0131016104016104-1210.1063/1.5045115007901APBMechanical features of endothelium regulate cell adhesive molecule-induced calcium response in neutrophilsYanhong Xu0Dandan Huang1Shouqin Lü2Yan Zhang3Mian Long4 Center of Biomechanics and Bioengineering, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China Center of Biomechanics and Bioengineering, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China Center of Biomechanics and Bioengineering, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China Center of Biomechanics and Bioengineering, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, China Center of Biomechanics and Bioengineering, Institute of Mechanics, Chinese Academy of Sciences, Beijing 100190, ChinaAtherosclerosis is caused by chronic inflammation associated with the adhesion of neutrophils and endothelial cells (ECs) that is mediated by their respective cellular adhesive molecules to stiffened blood vessel walls. However, the stiffness dependence of calcium flux on neutrophils remains unclear yet. Here, the effect of substrate stiffness by ECs on neutrophils' calcium spike was quantified when the individual neutrophils that adhered to the human umbilical vascular endothelial cell (HUVEC) monolayer were pre-placed onto a stiffness-varied polyacrylamide substrate (5 or 34.88 kPa) or glass surface. Our data indicated that E-/P-selectins and intercellular adhesion molecule 1 (ICAM-1) on HUVECs and β2-integrins, P-selectin glycoprotein ligand 1 (PSGL-1), and CD44s on neutrophils were all involved in mediating neutrophil calcium spike in a stiffness-dependent manner, in which the increase in substrate stiffness enhanced the calcium intensity and the oscillation frequency (spike number). Such stiffness-dependent calcium response is associated with the induced selectin related to β2-integrin activation through the Syk/Src signaling pathway, and F-actin/myosin II are also involved in this. Moreover, tension-activated calcium ion channels displayed critical roles in initiating stiffness-dependent calcium spike. These results provide an insight into understanding how the stiffening of vascular walls could regulate the calcium flux of adhered neutrophils, and thus the immune responses in atherosclerosis.http://dx.doi.org/10.1063/1.5045115
collection DOAJ
language English
format Article
sources DOAJ
author Yanhong Xu
Dandan Huang
Shouqin Lü
Yan Zhang
Mian Long
spellingShingle Yanhong Xu
Dandan Huang
Shouqin Lü
Yan Zhang
Mian Long
Mechanical features of endothelium regulate cell adhesive molecule-induced calcium response in neutrophils
APL Bioengineering
author_facet Yanhong Xu
Dandan Huang
Shouqin Lü
Yan Zhang
Mian Long
author_sort Yanhong Xu
title Mechanical features of endothelium regulate cell adhesive molecule-induced calcium response in neutrophils
title_short Mechanical features of endothelium regulate cell adhesive molecule-induced calcium response in neutrophils
title_full Mechanical features of endothelium regulate cell adhesive molecule-induced calcium response in neutrophils
title_fullStr Mechanical features of endothelium regulate cell adhesive molecule-induced calcium response in neutrophils
title_full_unstemmed Mechanical features of endothelium regulate cell adhesive molecule-induced calcium response in neutrophils
title_sort mechanical features of endothelium regulate cell adhesive molecule-induced calcium response in neutrophils
publisher AIP Publishing LLC
series APL Bioengineering
issn 2473-2877
publishDate 2019-03-01
description Atherosclerosis is caused by chronic inflammation associated with the adhesion of neutrophils and endothelial cells (ECs) that is mediated by their respective cellular adhesive molecules to stiffened blood vessel walls. However, the stiffness dependence of calcium flux on neutrophils remains unclear yet. Here, the effect of substrate stiffness by ECs on neutrophils' calcium spike was quantified when the individual neutrophils that adhered to the human umbilical vascular endothelial cell (HUVEC) monolayer were pre-placed onto a stiffness-varied polyacrylamide substrate (5 or 34.88 kPa) or glass surface. Our data indicated that E-/P-selectins and intercellular adhesion molecule 1 (ICAM-1) on HUVECs and β2-integrins, P-selectin glycoprotein ligand 1 (PSGL-1), and CD44s on neutrophils were all involved in mediating neutrophil calcium spike in a stiffness-dependent manner, in which the increase in substrate stiffness enhanced the calcium intensity and the oscillation frequency (spike number). Such stiffness-dependent calcium response is associated with the induced selectin related to β2-integrin activation through the Syk/Src signaling pathway, and F-actin/myosin II are also involved in this. Moreover, tension-activated calcium ion channels displayed critical roles in initiating stiffness-dependent calcium spike. These results provide an insight into understanding how the stiffening of vascular walls could regulate the calcium flux of adhered neutrophils, and thus the immune responses in atherosclerosis.
url http://dx.doi.org/10.1063/1.5045115
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AT dandanhuang mechanicalfeaturesofendotheliumregulatecelladhesivemoleculeinducedcalciumresponseinneutrophils
AT shouqinlu mechanicalfeaturesofendotheliumregulatecelladhesivemoleculeinducedcalciumresponseinneutrophils
AT yanzhang mechanicalfeaturesofendotheliumregulatecelladhesivemoleculeinducedcalciumresponseinneutrophils
AT mianlong mechanicalfeaturesofendotheliumregulatecelladhesivemoleculeinducedcalciumresponseinneutrophils
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