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May 11, 20260 citations

FGF23 and Immune Cell Signatures Causally Linked to Subarachnoid Hemorrhage: Evidence From Multi-Omics and Genetic Colocalization.

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XSXingjie ShiCZCheng ZhangTYTao Yang

Key Points

  • This research investigates the causal relationships between inflammatory proteins, immune cells, and subarachnoid hemorrhage (SAH).
  • Utilized publicly available genome-wide association studies data, including protein QTL and RNA sequencing data.
  • Employed bidirectional two-sample Mendelian Randomization analysis to assess causal relationships.
  • Conducted multi-omics analysis to identify key inflammatory proteins and immune cells related to SAH.
  • Identified a causal relationship between five inflammatory proteins (CD6, FGF23, TGFB-1, LIFR, and TGF-α) and SAH.
  • Established a link between 22 immune cell types and SAH through Mendelian randomization.
  • FGF23 was recognized as a hub inflammatory protein, with a colocalization score of 0.74, suggesting its role as a risk factor for SAH.

Abstract

BACKGROUND: Inflammation and immune response significantly contribute to brain injury following subarachnoid hemorrhage (SAH), a severe neurological condition. This study employed Mendelian randomization, colocalization, and multi-omics analysis to examine potential causal connections between inflammatory proteins, immune cells, and SAH, aiming to elucidate its pathogenesis. METHODS: This study utilized publicly available data from genome-wide association studies (GWAS), including protein QTL (pQTL) and RNA sequencing data. Bidirectional two-sample Mendelian Randomization (MR) analysis was initially employed to evaluate the cause-and-effect relationships among inflammatory proteins, immune cells, and SAH. A comprehensive multi-omics approach, encompassing transcriptome, colocalization, mediation MR, was employed to identify specific inflammatory proteins, immune cells, and potential drug targets. RESULTS: A causal relationship between five inflammatory proteins and SAH was identified through MR analysis (CD6, FGF23, TGFB-1, LIFR, and TGF-α). Moreover, a causal relationship with SAH was identified in 22 types of immune cells. Subsequent multi-omics analysis showed that FGF23 was a hub inflammatory protein, and its expression level was closely linked to the amount of CD4 Treg cells. Meta-analysis and replication studies identified FGF23 as a risk factor for SAH, with a colocalization score of 0.74. CONCLUSION: This study successfully identified inflammatory proteins and immune cells associated with SAH, and revealed the complex genetic causality and drug targets of SAH.

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Cite This Study

Shi et al. (2026) studied this question.

synapsesocial.com/papers/6a0171ed3a9f334c28271f0chttps://doi.org/10.1002/brb3.71485
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