Evidence map›Paper›PMID 39531193›Full record

ArticleMolecular neurobiology2025

Upregulation of C1QC as a Mediator of Blood-Brain Barrier Damage in Type 2 Diabetes Mellitus.

Cheng Huang, Jiaxing Lin, Lan Chen, Wenzhe Sun, Jinjun Xia, Min Wu

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Article in Molecular neurobiology, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 2 papers.

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2citing papers in PubMed
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3 · Its place in the literature

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2 citing papers in PubMed.

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5 · Who and what money

Authors and funding

6 authors.

Cheng HuangDepartment of Neurology, The Second Affiliated Hospital (Xinqiao Hospital), Army Medical University (Third Military Medical University), Chongqing, China.
Jiaxing LinDepartment of Neurology, The Second Affiliated Hospital, Guangzhou Medical University, Guangzhou, China.
Lan ChenTaylor's University, Subang Jaya, Malaysia.
Wenzhe SunDepartment of Neurology, The Second Affiliated Hospital (Xinqiao Hospital), Army Medical University (Third Military Medical University), Chongqing, China.
Jinjun XiaDepartment of Clinical Laboratory, Wuxi 9th People's Hospital Affiliated to Soochow University, Wuxi, China.
Min WuDepartment of Neurosurgery, Guizhou Provincial People's Hospital, Guiyang, China. wumin@gz5055.com.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

The blood-brain barrier (BBB) is a neurovascular structure that safeguards the brain by inhibiting the passage of harmful substances. In individuals with type 2 diabetes mellitus (T2DM), the heightened blood glucose may cause damage to endothelial cells and neurons, increase collagen protein content, and elevate BBB permeability. Although the impact of blood glucose regulation on the structure and function of BBB has been documented, the exact mechanism remains incompletely elucidated. The primary aim of this investigation was to uncover the pivotal dysregulation of specific genes observed within the cerebral microvascular endothelial cells of diabetic patients, with a particular focus on understanding its biological implications in the disruption of the BBB. By integrating bioinformatics analysis, we identified C1QC as a potential upregulated marker. The expression level of C1QC was subsequently verified in both in vivo and in vitro models. Our experiments have discovered that, under diabetic conditions, suppressing C1QC leads to the mitigation of BBB damage. The presence of a high level of C1QC, through its binding to discoidin domain receptor 2 (DDR2), may trigger the activation of its downstream MMP9, a calcium-dependent enzyme that is capable of degrading protein components in the extracellular matrix, consequently leading to the structural and functional disruption of BBB. In summary, the findings of this study indicate that the aberrantly upregulated expression of C1QC may exert deleterious effects on the BBB under diabetes. To alleviate neurological impairments in individuals with T2DM, C1QC may emerge as a promising therapeutic target worthy of further investigation.

Indexed as

Blood-Brain BarrierDiabetes Mellitus, Type 2Up-RegulationAnimalsEndothelial CellsHumansMaleMatrix Metalloproteinase 9Matrix Metalloproteinase 9Bioinformatics analysisBlood–brain barrierC1QCType 2 diabetes mellitus

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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.