Evidence map›Paper›PMID 41578360›Full record

ArticleCritical care (London, England)2026

Causal effects of serum testosterone on septic shock mortality: a Mendelian randomization study.

Nozomi Takahashi, Kyle R Campbell, Taka-Aki Nakada, Keith R Walley

Abstract read
In one paragraph

Article in Critical care (London, England), 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.

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1 · What the graph read from it

What it found

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2 · The registry

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3 · Its place in the literature

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4 · The record

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5 · Who and what money

Authors and funding

4 authors.

Nozomi TakahashiCentre for Heart Lung Innovation, St. Paul's Hospital, The University of British Columbia, 1081 Burrard Street, Vancouver, BC, V6Z 1Y6, Canada.
Kyle R CampbellCentre for Heart Lung Innovation, St. Paul's Hospital, The University of British Columbia, 1081 Burrard Street, Vancouver, BC, V6Z 1Y6, Canada.
Taka-Aki NakadaDepartment of Emergency and Critical Care Medicine, Chiba University Graduate School of Medicine, 1-8-1 Inohana, Chuo, 260-8677, Chiba, Japan.
Keith R WalleyCentre for Heart Lung Innovation, St. Paul's Hospital, The University of British Columbia, 1081 Burrard Street, Vancouver, BC, V6Z 1Y6, Canada. Keith.Walley@hli.ubc.ca.

Funding

No grant is acknowledged in the PubMed record.

6 · The paper itself

Abstract

backgroundSex hormones, particularly testosterone, modulate immune function during critical illness, and patients with septic shock frequently exhibit hypotestosteronemia. However, the causal relationship between testosterone and outcomes remains unclear owing to the confounding effects of illness-related changes in hormone levels during acute illness.

methodsWe investigated 469 patients with septic shock in multicenter ICUs using a testosterone polygenic score (PGS) derived from genome-wide association studies combined with two-sample Mendelian randomization to establish causal relationships independent of confounding factors. Cox proportional hazards regression was performed to assess the association with 28-day mortality. Additionally, we evaluated whether apolipoprotein C3 (ApoC3) levels modified the protective effects of testosterone using interaction models and the likelihood ratio test.

resultsHigher genetically predicted testosterone levels were significantly associated with improved 28-day survival (adjusted hazard ratio [HR] 0.72 per 1-standard deviation increase in PGS; P = 0.024). This protective effect was more pronounced in men (HR, 0.66; P = 0.020) than in women (HR, 0.78; P = 0.37). Kaplan–Meier survival analysis revealed that the high testosterone PGS group had a 54.2% reduction in mortality hazard compared with the low testosterone PGS group (log-rank P = 0.007). Two-sample Mendelian randomization confirmed causality (inverse variance-weighted: β = − 2.79; P = 0.0042), with consistent results across complementary estimation methods. Notably, the testosterone-protective effect was significantly modified by ApoC3 levels (interaction, P = 0.041), with substantially stronger protective effects at higher ApoC3 concentrations. At high ApoC3 levels, the HR was 0.51 (95% confidence interval 0.31–0.85), suggesting that testosterone exerts a disproportionate benefit in the context of lipid dysmetabolism and inflammation.

conclusionsGenetically determined higher testosterone levels are causally associated with improved survival in patients with septic shock, particularly in men and in those with lipid dysmetabolism. These findings identify testosterone as a potential therapeutic target and highlight lipid metabolism as a key modifier of the protective effects of testosterone against septic shock, warranting the investigation of testosterone-based interventions in future clinical trials.

Indexed as

Shock, SepticTestosteroneAgedFemaleGenome-Wide Association StudyHumansIntensive Care UnitsKaplan-Meier EstimateMaleMendelian Randomization AnalysisMiddle AgedProportional Hazards ModelsTestosteroneLipidsSepsisSeptic shockTestosterone

Identifiers

PMID41578360
PMCPMC12910909

What Socratic holds

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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 Socratic graph.