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硫酸乙酰肝素和鞘氨醇-1-磷酸对糖萼的再生可恢复内皮细胞间通讯。

Regeneration of glycocalyx by heparan sulfate and sphingosine 1-phosphate restores inter-endothelial communication.

作者信息

Mensah Solomon A, Cheng Ming J, Homayoni Homa, Plouffe Brian D, Coury Arthur J, Ebong Eno E

机构信息

Department of Bioengineering, Northeastern University, Boston, Massachusetts, United States of America.

Department of Chemical Engineering, Northeastern University, Boston, Massachusetts, United States of America.

出版信息

PLoS One. 2017 Oct 12;12(10):e0186116. doi: 10.1371/journal.pone.0186116. eCollection 2017.

Abstract

Vasculoprotective endothelium glycocalyx (GCX) shedding plays a critical role in vascular disease. Previous work demonstrated that GCX degradation disrupts endothelial cell (EC) gap junction connexin (Cx) proteins, likely blocking interendothelial molecular transport that maintains EC and vascular tissue homeostasis to resist disease. Here, we focused on GCX regeneration and tested the hypothesis that vasculoprotective EC function can be stimulated via replacement of GCX when it is shed. We used EC with [i] intact heparan sulfate (HS), the most abundant GCX component; [ii] degraded HS; or [iii] HS that was restored after enzyme degradation, by cellular self-recovery or artificially. Artificial HS restoration was achieved via treatment with exogenous HS, with or without the GCX regenerator and protector sphingosine 1- phosphate (S1P). In these cells we immunocytochemically examined expression of Cx isotype 43 (Cx43) at EC borders and characterized Cx-containing gap junction activity by measuring interendothelial spread of gap junction permeable Lucifer Yellow dye. With intact HS, 60% of EC borders expressed Cx43 and dye spread to 2.88 ± 0.09 neighboring cells. HS degradation decreased Cx43 expression to 30% and reduced dye spread to 1.87± 0.06 cells. Cellular self-recovery of HS restored baseline levels of Cx43 and dye transfer. Artificial HS recovery with exogenous HS partially restored Cx43 expression to 46% and yielded dye spread to only 1.03 ± 0.07 cells. Treatment with both HS and S1P, recovered HS and restored Cx43 to 56% with significant dye transfer to 3.96 ± 0.23 cells. This is the first evidence of GCX regeneration in a manner that effectively restores vasculoprotective EC communication.

摘要

血管保护内皮糖萼(GCX)脱落在血管疾病中起关键作用。先前的研究表明,GCX降解会破坏内皮细胞(EC)间隙连接连接蛋白(Cx),可能会阻断维持EC和血管组织稳态以抵抗疾病的内皮间分子转运。在此,我们聚焦于GCX再生,并测试了如下假设:当GCX脱落时,通过其替代可刺激血管保护EC功能。我们使用了以下几种EC:[i]具有完整硫酸乙酰肝素(HS)的,HS是GCX最丰富的成分;[ii]降解的HS;或[iii]经酶降解后通过细胞自我恢复或人工方式恢复的HS。通过用外源性HS处理实现人工HS恢复,添加或不添加GCX再生剂及保护剂1-磷酸鞘氨醇(S1P)。在这些细胞中,我们通过免疫细胞化学检测EC边界处Cx亚型43(Cx43)的表达,并通过测量间隙连接可渗透的荧光黄染料在内皮间的扩散来表征含Cx的间隙连接活性。对于具有完整HS的细胞,60%的EC边界表达Cx43,染料扩散至2.88±0.09个相邻细胞。HS降解使Cx43表达降至30%,并将染料扩散减少至1. .87±0.06个细胞。HS的细胞自我恢复使Cx43和染料转移恢复至基线水平。用外源性HS进行人工HS恢复可使Cx43表达部分恢复至46%,染料扩散至仅1.03±0.07个细胞。同时用HS和S1P处理可恢复HS,并将Cx43恢复至56%,染料显著转移至3.96±0.23个细胞。这是以有效恢复血管保护EC通讯的方式实现GCX再生的首个证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac08/5638341/6f468c5caa4e/pone.0186116.g001.jpg

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