H. de Castro Abrantes, L. R. Depaauw-Holt, D. H. Ulgen, C. Di Giulio, M. Barbetti, E. Gebara, F. Hollis, J. L. Solano, L. Schlotterose, C. Menard, M. Salman, S. Astori, C. Sandi
Low testosterone is linked to anxiety in men, but its causal role and underlying brain mechanisms remain unknown. Here, using outbred male rats stratified by natural variation in anxiety-like behaviour, we establish its causal endocrine contribution and uncover an astrocytic mitochondrial mechanism at the nucleus accumbens (NAc) blood-brain barrier (BBB). High-anxiety rats showed a NAc-selective increase in BBB permeability, alongside reduced astrocytic endfoot coverage, disrupted endfoot mitochondrial organisation and mitochondria-endoplasmic reticulum contacts, and lower mitofusin 2 (Mfn2). Testosterone suppression increased anxiety in low-anxiety rats, whereas physiological testosterone restoration reduced anxiety, reconfigured astrocytic mitochondrial and BBB-related transcriptional programmes, increased astrocytic endfoot coverage and Mfn2, recovering BBB permeability, with related effects in aged low-testosterone rats. NAc androgen receptor (AR) knockdown blunted behavioural and neurovascular responses, whereas NAc astrocyte-specific Mfn2 overexpression reduced anxiety. Thus, testosterone-AR signalling engages an astrocytic mitochondrial programme at the NAc neurovascular interface linking low testosterone to anxiety vulnerability.