| Literature DB >> 35883623 |
Francesca La Rosa1, Chiara Paola Zoia2,3, Chiara Bazzini2,3, Alessandra Bolognini2, Marina Saresella1, Elisa Conti2,3, Carlo Ferrarese2,3,4, Federica Piancone1, Ivana Marventano1, Daniela Galimberti5,6, Chiara Fenoglio7, Elio Scarpini5,6, Mario Clerici1,7.
Abstract
BACKGROUND: Aβ42 deposition plays a pivotal role in AD pathogenesis by inducing the activation of microglial cells and neuroinflammation. This process is antagonized by microglia-mediated clearance of Aβ plaques. Activation of the NLRP3 inflammasome is involved in neuroinflammation and in the impairments of Aβ-plaque clearance. On the other hand, stavudine (D4T) downregulates the NLRP3 inflammasome and stimulates autophagy-mediated Aβ-clearing in a THP-1-derived macrophages.Entities:
Keywords: ERK; NLRP3-inflammasome; amyloid-β; caspase-3 and Bcl2; neuroinflammation; p38; p70S6K and CREB phosphorylation
Mesh:
Substances:
Year: 2022 PMID: 35883623 PMCID: PMC9322713 DOI: 10.3390/cells11142180
Source DB: PubMed Journal: Cells ISSN: 2073-4409 Impact factor: 7.666
Demographic, clinical, and genetic characteristics of the individuals enrolled in the study.
| Alzheimer’s Disease Patients (AD) | |
|---|---|
| N | 13 |
| Gender (M:F) | 5:8 |
| Age (years) | 77.20 ± 6.34 |
| MMSE | 17.07 ± 4.51 |
| Aβ (pg/mL) | 530 ± 70.50 |
| Total-τ (pg/mL) | 647.31 ± 300 |
| Phospo-τ (pg/mL) | 88.62 ± 21.89 |
| Apo ε4 | 30% |
Data are expressed as mean ± standard deviation. MMSE: Mini-Mental State Examination.
Figure 1Inflammasome production and ASC-speck formation. Representative images of Nod-like receptor protein 3 (NLRP3) expression and apoptosis-associated speck-like-protein containing CARD (ASC)-speck formation. ASC-speck (a) and ASC-diffuse (b) images were obtained by AMNIS FlowSight-merged (Ch02/03) NLRP3-FITC (Ch02) and ASC-PE (Ch03) fluorescences; analysis of ASC-speck and its co-localization with NLRP3 was performed by IDEAS software, which provides tools to evaluate image regions (masks) and perform calculations (features). The percentage of ASC-speck-positive cells is shown in panel (c). Statistical significance is shown.
Figure 2Caspase-1 and inflammasome effector cytokine production. Interleukin (IL)-1β (A), Caspase-1 (B) and IL-18 (C) production by LPS + Aβ-stimulated cells in the presence/absence of D4T were quantified by ELISA. Data are expressed as median cytokine and Caspase-1 concentrations (pg/mL) of stimulated cells with medium subtracted. Statistical significance is shown.
Figure 3ERK1/2, p38, AKT, and CREB phosphorylation. The phosphorylation status of p38 (38 KDa) (a), ERK1/2 (42–44 KDa) (b), AKT (60 KDa) (c), kinases and CREB (43 KDa) (d) were investigated by Western blot analysis (WB) and each result was expressed as the percentage of ratio between phosphorylated-kinase and actin expression versus D4T-untreated cells (100%). Statistical significance is shown as (*** p < 0.0001, ** p < 0.001, * p < 0.05). Representative blots from independent experiments are shown in the upper part of panels (a–d).
Figure 4Beclin-1- and CMA-mediated autophagy proteins. Western blot analyses of Beclin-1 ((a), 52 KDa) and its downstream targets phospho-p70S6K and phospho-p85S6K ((b) 70 and 85 KDa) and Lamp2A ((c) 100 KDa), the receptor for CMA, are shown. Each result is expressed as a percentage of the ratio between the protein expression or phosphorylated-kinase and actin expression versus D4T-untreated cells. Statistical significance is shown as (** p < 0.001, * p < 0.05). Representative blots from independent experiments are shown in the upper part of panels (a–c).
Figure 5Caspase-3/cleaved-Caspase3 and Bcl2 production. Western blot analysis of Bcl2 ((a) 26 KDa) and Caspase-3 ((b) 31 KDa) and cleaved Caspase-3 ((b) 15 KDa) were evaluated. Each result is expressed as a percentage of the ratio between each target and actin expression versus D4T-untreated cells. Statistical significance is shown as (*** p < 0.0001, ** p < 0.001, * p < 0.05). Representative blots from independent experiments are shown in the panels (a,b).