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Alzheimer s Research & Therapy· 2026Q1

TNFR2 Agonist Tedavisi Alzheimer Fare Modelinde Cinsiyete Özgü Etkiler Gösterdi

TNFR2 agonist treatment differentially affects neuropathology and neuroimmune responses in male and female 3xTg-AD mice

Irem Bayraktaroğlu, Melanie Eschborn, Ilse Zwiers, Kylan van Vliet ve diğerleri

Kısa özet

Uzun süreli TNFR2 agonist tedavisi, dişi 3xTg-AD farelerinde hipokampal tau patolojisini azalttı ve mekansal öğrenme eğilimlerini iyileştirdi, erkek farelerde ise nöronal korunmayı artırdı ve homeostatik glial profil gösterdi.

Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.

Ana noktalar

  • TNFR2 agonist tedavisi, dişi 3xTg-AD farelerinin hipokampusunda total tau seviyelerini düşürdü.
  • Dişi farelerde mekansal öğrenmede bir iyileşme eğilimi ve mikroglial plaklara yönelik fagositer aktivitede artış gözlemlendi.
  • Erkek farelerde tedavi sonrası nöronal korunum arttı ve daha homeostatik bir glial profil saptandı.
  • Her iki cinste de amiloid plak yükü ve BACE1 ekspresyonu değişmedi.
  • Tedavi, her iki cinste de dolaşımdaki düzenleyici T hücrelerini genişletti ve periferik T hücresi yanıtlarını değiştirdi.

Yapay zekâ ile başlık ve abstract'tan üretildi; tam metin okunmaz.

Özet (abstract)

Neuroinflammation is a central contributor to Alzheimer’s disease (AD) progression, with tumor necrosis factor alpha (TNF-α) playing a key regulatory role as a master pro-inflammatory cytokine. While therapies inhibiting total TNF-α have produced inconsistent results and adverse effects, selective activation of TNF receptor 2 (TNFR2) has emerged as a promising strategy in AD due to its association with neuroprotection. Even though TNFR2 agonism has shown beneficial effects in amyloid-based AD mouse/rodent models, its impact on tau pathology and potential sex-dependent effects in AD remain unknown. In this study, we investigated whether long-term TNFR2 agonist treatment improves cognition, neuropathology, and immune responses in male and female 3xTg-AD mice, a model that develops both amyloid-β and tau pathology. Mice received systemic TNFR2 agonist treatment or PBS control for 12 weeks, followed by behavioral testing, immunohistochemistry, and flow cytometry to assess cognition, neuropathology, glial responses, neuronal integrity, and peripheral immune changes. TNFR2 agonist treatment reduced hippocampal total tau levels and showed a parallel trend toward lower phosphorylated tau in female mice, together with a trend toward improved spatial learning, but had no comparable effects at the hippocampal levels in males. Aβ plaque burden and BACE1 expression were unchanged. Moreover, TNFR2 agonism increased microglial coverage and plaque-associated phagocytic microglial activity in females, whereas males showed a more homeostatic glial profile and increased neuronal preservation following treatment. Finally, treatment expanded circulating regulatory T cells and altered peripheral T-cell responses in both sexes. Our findings demonstrate that TNFR2 activation shows distinct neuropathological, neuroinflammatory, peripheral, and cognitive effects in male and female 3xTg-AD mice, which likely reflect both differences in underlying pathology and treatment responsiveness. These results further highlight the importance of immune-based therapeutic strategies and the consideration of sex in the development of AD treatments, although additional mechanistic and longitudinal studies are needed to better define the pathways underlying the observed effects.

Yazarların özeti; kaynağından alınmıştır. Alzheimer s Research & Therapy, 2026 · DOI ↗

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NeurologyNeuroscience