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小窝蛋白-1促进烟雾病患者侧支血管形成。

Caveolin-1 Promoted Collateral Vessel Formation in Patients With Moyamoya Disease.

作者信息

Zhao Jinbing, Yu Zhiqiang, Zhang Yanping, Qiu Cheng, Zhang Guangxu, Chen Lijiu, He Shengxue, Ma Jun

机构信息

Nanjing Comprehensive Stroke Center, Affiliated Nanjing Brain Hospital, Nanjing Medical University, Nanjing, China.

出版信息

Front Neurol. 2022 Apr 26;13:796339. doi: 10.3389/fneur.2022.796339. eCollection 2022.


DOI:10.3389/fneur.2022.796339
PMID:35557625
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC9086974/
Abstract

BACKGROUND: Caveolin-1 (Cav-1) plays pivotal roles in the endothelial function and angiogenesis postischemia. Moyamoya disease (MMD) is characterized by progressive artery stenosis with unknown etiology. We aim to determine whether serum Cav-1 levels of patients with MMD were associated with collateral vessel formation after bypass surgery. METHODS: We studied serum Cav-1 levels of 130 patients with MMD (16 with p.R4810K mutation and 114 without p.R4810K mutation), 15 patients with acute stroke, and 33 healthy controls. Cerebral perfusion and collateral circulation were evaluated preoperation and at 6 months after operation using pseudocontinuous arterial spin labeling MRI (pCASL-MRI) and digital subtraction angiography (DSA), respectively. Endothelial expression of Cav-1 was verified in the superficial temporal artery (STA) wall of patients with MMD by immunofluorescence double staining. We also investigated whether overexpression of Cav-1 affects cell migration and tube formation using human microvascular endothelial cells (HMECs). RESULTS: The serum Cav-1 level of patients with MMD intermediated between the stroke group and healthy controls and it was enhanced after the bypass surgery (681.87 ± 311.63 vs. 832.91 ± 464.41 pg/ml, = 0.049). By 6 months after bypass surgery, patients with MMD with better collateral compensation manifested higher postoperative/preoperative Cav-1 ratio (rCav-1) than bad compensation patients. Consistently, cerebral blood flow (CBF) determined by pCASL-MRI (nCBF ratio) was positively in line with rCav-1 ratio ( = 0.8615, < 0.0001). Cav-1 was expressed in the endothelial cells of the STA vessels of patients with MMD. Overexpression of Cav-1 by plasmid transfection in HMECs promoted tube formation and cell migration. CONCLUSION: This study indicated that Cav-1 may be a potential driver to promote angiogenesis and collateral formation after bypass surgery in patients with MMD, providing a better understanding of MMD pathophysiology and potential non-surgical targets of MMD.

摘要

背景:小窝蛋白-1(Cav-1)在缺血后内皮功能和血管生成中起关键作用。烟雾病(MMD)的特征是进行性动脉狭窄,病因不明。我们旨在确定MMD患者的血清Cav-1水平是否与搭桥手术后的侧支血管形成有关。 方法:我们研究了130例MMD患者(16例有p.R4810K突变,114例无p.R4810K突变)、15例急性卒中患者和33例健康对照者的血清Cav-1水平。术前和术后6个月分别使用伪连续动脉自旋标记MRI(pCASL-MRI)和数字减影血管造影(DSA)评估脑灌注和侧支循环。通过免疫荧光双染色在MMD患者的颞浅动脉(STA)壁中验证Cav-1的内皮表达。我们还使用人微血管内皮细胞(HMECs)研究了Cav-1的过表达是否影响细胞迁移和管形成。 结果:MMD患者的血清Cav-1水平介于卒中组和健康对照组之间,并且在搭桥手术后升高(681.87±311.63 vs. 832.91±464.41 pg/ml,P = 0.049)。搭桥手术后6个月,侧支代偿较好的MMD患者术后/术前Cav-1比值(rCav-1)高于代偿较差的患者。同样,由pCASL-MRI测定的脑血流量(CBF)(nCBF比值)与rCav-1比值呈正相关(r = 0.8615,P < 0.0001)。Cav-1在MMD患者STA血管的内皮细胞中表达。通过质粒转染在HMECs中过表达Cav-1促进了管形成和细胞迁移。 结论:本研究表明,Cav-1可能是促进MMD患者搭桥手术后血管生成和侧支形成的潜在驱动因素,有助于更好地理解MMD的病理生理学以及MMD潜在的非手术治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/e96df6e81d64/fneur-13-796339-g0005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/9b44cd01a229/fneur-13-796339-g0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/1dda8afb29dd/fneur-13-796339-g0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/61b932bd4410/fneur-13-796339-g0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/0689d67f24d7/fneur-13-796339-g0004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/e96df6e81d64/fneur-13-796339-g0005.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/9b44cd01a229/fneur-13-796339-g0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/1dda8afb29dd/fneur-13-796339-g0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/61b932bd4410/fneur-13-796339-g0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/0689d67f24d7/fneur-13-796339-g0004.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5d2/9086974/e96df6e81d64/fneur-13-796339-g0005.jpg

相似文献

[1]
Caveolin-1 Promoted Collateral Vessel Formation in Patients With Moyamoya Disease.

Front Neurol. 2022-4-26

[2]
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[3]
Can combined high-resolution vessel wall imaging and multiple post-labeling delay 3D pseudo-continuous arterial spin labeling differentiate moyamoya disease from atherosclerotic moyamoya syndrome?

Eur J Radiol. 2023-12

[4]
LncRNA-mRNA Co-expression Profiles Relative to Vascular Remodeling in Moyamoya Patients Without RNF213 Mutation.

World Neurosurg. 2022-2

[5]
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Stroke Vasc Neurol. 2024-12-30

[6]
High-resolution combined arterial spin labeling MR for identifying cerebral arterial stenosis induced by moyamoya disease or atherosclerosis.

Ann Transl Med. 2020-2

[7]
TGFβ1 as a Predictive Biomarker for Collateral Formation Within Ischemic Moyamoya Disease.

Front Neurol. 2022-7-7

[8]
Correlation between reduction in microvascular transit time after superficial temporal artery-middle cerebral artery bypass surgery for moyamoya disease and the development of postoperative hyperperfusion syndrome.

J Neurosurg. 2017-5-12

[9]
Assessment of blood supply of the external carotid artery in moyamoya disease using super-selective pseudo-continuous arterial spin labeling technique.

Eur Radiol. 2021-12

[10]
Rare variants of RNF213 and moyamoya/non-moyamoya intracranial artery stenosis/occlusion disease risk: a meta-analysis and systematic review.

Environ Health Prev Med. 2017-11-2

引用本文的文献

[1]
The Recent Advances in the Function and Mechanism of Caveolin-1 in Retinal Neovascularization.

Curr Drug Targets. 2024

[2]
Factors Influencing Collateral Circulation Formation After Indirect Revascularization for Moyamoya Disease: a Narrative Review.

Transl Stroke Res. 2024-12

本文引用的文献

[1]
Cav-1 Protein Levels in Serum and Infarcted Brain Correlate with Hemorrhagic Volume in a Mouse Model of Thromboembolic Stroke, Independently of rt-PA Administration.

Mol Neurobiol. 2022-2

[2]
Reliability and Sensitivity to Longitudinal CBF Changes in Steno-Occlusive Diseases: ASL Versus I-IMP-SPECT.

J Magn Reson Imaging. 2022-6

[3]
Haemodynamic analysis of adult patients with moyamoya disease: CT perfusion and DSA gradings.

Stroke Vasc Neurol. 2021-3

[4]
Designing and comparing optimized pseudo-continuous Arterial Spin Labeling protocols for measurement of cerebral blood flow.

Neuroimage. 2020-12

[5]
Caveolin-1 Regulates Atherogenesis by Attenuating Low-Density Lipoprotein Transcytosis and Vascular Inflammation Independently of Endothelial Nitric Oxide Synthase Activation.

Circulation. 2019-6-3

[6]
Important roles of endothelial caveolin-1 in endothelium-dependent hyperpolarization and ischemic angiogenesis in mice.

Am J Physiol Heart Circ Physiol. 2019-2-1

[7]
Standardized MR Perfusion Scoring System for Evaluation of Sequential Perfusion Changes and Surgical Outcome of Moyamoya Disease.

AJNR Am J Neuroradiol. 2019-1-17

[8]
Apigenin Protects the Brain against Ischemia/Reperfusion Injury via Caveolin-1/VEGF In Vitro and In Vivo.

Oxid Med Cell Longev. 2018-12-3

[9]
Cav-1 (Caveolin-1) and Arterial Remodeling in Adult Moyamoya Disease.

Stroke. 2018-11

[10]
Comparative study of MR mTI-ASL and DSC-PWI in evaluating cerebral hemodynamics of patients with Moyamoya disease.

Medicine (Baltimore). 2018-10

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