IL-34 exacerbates pathogenic features of Alzheimer's disease and calvaria osteolysis in triple transgenic (3x-Tg) female mice
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HO, Anny, NGALA, Bidii, YAMADA, Chiaki, GARCIA, Christopher, DUARTE, Carolina , AKKAOUI, Juliet, CIOLAC, Dumitru, NUSBAUM, Amilia, KOCHEN, William R., EFREMOVA, Daniela, GROPPA, Stanislav, NATHANSON, Lubov, BISSEL, Stephanie J., OBLAK, Adrian L., KACENA, Melissa Ann, MOVILĂ, Alexandru. IL-34 exacerbates pathogenic features of Alzheimer's disease and calvaria osteolysis in triple transgenic (3x-Tg) female mice. In: Biomedicine and Pharmacotherapy, 2023, vol. 166, pp. 1-10. ISSN 0753-3322. DOI: https://doi.org/10.1016/j.biopha.2023.115435
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Biomedicine and Pharmacotherapy
Volumul 166 / 2023 / ISSN 0753-3322 /ISSNe 1950-6007

IL-34 exacerbates pathogenic features of Alzheimer's disease and calvaria osteolysis in triple transgenic (3x-Tg) female mice

DOI:https://doi.org/10.1016/j.biopha.2023.115435

Pag. 1-10

Ho Anny1, Ngala Bidii23, Yamada Chiaki2, Garcia Christopher13, Duarte Carolina 1, Akkaoui Juliet14, Ciolac Dumitru56, Nusbaum Amilia23, Kochen William R.1, Efremova Daniela56, Groppa Stanislav56, Nathanson Lubov1, Bissel Stephanie J.3, Oblak Adrian L.3, Kacena Melissa Ann3, Movilă Alexandru123
 
1 Nova Southeastern University, Fort Lauderdale,
2 Indiana University School of Dentistry, Indianapolis,
3 Indiana University School of Medicine, Indianapolis,
4 Florida International University,
5 ”Nicolae Testemițanu” State University of Medicine and Pharmacy,
6 Emergency Institute of Medicine
 
 
Disponibil în IBN: 9 septembrie 2023


Rezumat

 Hallmark features of Alzheimer's disease (AD) include elevated accumulation of aggregated Aβ40 and Aβ42 peptides, hyperphosphorylated Tau (p-Tau), and neuroinflammation. Emerging evidence indicated that interleukin-34 (IL-34) contributes to AD and inflammatory osteolysis via the colony-stimulating factor-1 receptor (CSF-1r). In addition, CSF-1r is also activated by macrophage colony-stimulating factor-1 (M-CSF). While the role of M-CSF in bone physiology and pathology is well addressed, it remains controversial whether IL-34-mediated signaling promotes osteolysis, neurodegeneration, and neuroinflammation in relation to AD. In this study, we injected 3x-Tg mice with mouse recombinant IL-34 protein over the calvaria bone every other day for 42 days. Then, behavioral changes, brain pathology, and calvaria osteolysis were evaluated using various behavioral maze and histological assays. We demonstrated that IL-34 administration dramatically elevated AD-like anxiety and memory loss, pathogenic amyloidogenesis, p-Tau, and RAGE expression in female 3x-Tg mice. Furthermore, IL-34 delivery promoted calvaria inflammatory osteolysis compared to the control group. In addition, we also compared the effects of IL-34 and M-CSF on macrophages, microglia, and RANKL-mediated osteoclastogenesis in relation to AD pathology in vitro. We observed that IL-34-exposed SIM-A9 microglia and 3x-Tg bone marrow-derived macrophages released significantly elevated amounts of pro-inflammatory cytokines, TNF-α, IL-1β, and IL-6, compared to M-CSF treatment in vitro. Furthermore, IL-34, but not M-CSF, elevated RANKL-primed osteoclastogenesis in the presence of Aβ40 and Aβ42 peptides in bone marrow derived macrophages isolated from female 3x-Tg mice. Collectively, our data indicated that IL-34 elevates AD-like features, including behavioral changes and neuroinflammation, as well as osteoclastogenesis in female 3x-Tg mice. 

Cuvinte-cheie
Alzheimer's Disease, Cognitive behavior, Interleukin-34, neuroinflammation, Osteolysis, RANKL-mediated osteoclastogenesis