Current pharmaceutical biotechnology2026,Vol.27Issue(5) :663-672,ⅴ.DOI:10.2174/0113892010387265250730110805

Genetic Evidence for Causal Effects of Lipid-lowering Drug Targets on Primary Sjoegren's Syndrome Risk: A Mendelian Randomization Study

Yuying Li Weiquan Liao Ying'ao Guo Lijuan Xiao Zaixing Qiu Jingjing Xie Jianyong Zhang
Current pharmaceutical biotechnology2026,Vol.27Issue(5) :663-672,ⅴ.DOI:10.2174/0113892010387265250730110805

Genetic Evidence for Causal Effects of Lipid-lowering Drug Targets on Primary Sjoegren's Syndrome Risk: A Mendelian Randomization Study

Yuying Li 1Weiquan Liao 1Ying'ao Guo 1Lijuan Xiao 1Zaixing Qiu 1Jingjing Xie 2Jianyong Zhang2
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作者信息

  • 1. The Fourth Clinical Medical College of Guangzhou University of Chinese Medicine, Shenzhen, 518033, P.R. China
  • 2. The Fourth Clinical Medical College of Guangzhou University of Chinese Medicine, Shenzhen, 518033, P.R. China||Department of Rheumatology, Shenzhen Traditional Chinese Medicine Hospital, Shenzhen, 518033, P.R. China
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Abstract

Introduction: Primary Sjoegren's Syndrome (pSS) is a chronic autoimmune condition affecting lacrimal and salivary glands. While previous studies suggest potential associations between dyslipidemia and autoimmune diseases, the causal relationship between lipid-lowering medications and pSS remains unclear. Methods: This study employed drug-targeted Mendelian randomization (MR) analysis to assess the impact of lipid-lowering drugs on pSS risk, focusing on genetic targets including HMGCR, PCSK9, NPC1L1, APOB, CETP, and LDLR. Data were sourced from the Global Lipids Genetics Consortium and UK Biobank. Significant single-nucleotide polymorphisms linked to LDL cholesterol were utilized as instrumental variables. Causal effects were estimated using Inverse Variance Weighted, Weighted Median, MR Egger, Simple Mode, and Weighted Mode methods. Robustness was ensured through heterogeneity and sensitivity analyses. Results: The inhibition of HMGCR and CETP genes was found to be significantly associated with an increased risk of developing pSS (HMGCR: OR = 3.602, 95% CI (1.051, 12.344), p = 0.041; CETP: OR = 12.251, 95% CI (2.599, 57.743), p = 0.002). Discussion: HMGCR and CETP may affect pSS risk via non-lipid pathways, suggesting distinct mechanisms among different lipid-lowering drug targets. Conclusion: This study provides compelling evidence suggesting that lipid-lowering drugs may contribute to the risk of pSS, thus offering new insights for clinical intervention strategies.

Key words

Primary Sjoegren's syndrome/lipid-lowering drugs/mendelian randomization/single nucleotide polymorphisms/dyslipidemia/causal inference

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出版年

2026
Current pharmaceutical biotechnology

Current pharmaceutical biotechnology

ISSN:1389-2010
参考文献量30
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