# Deciphering the Potential Neuroprotective Effects of Luteolin against Aβ1–42-Induced Alzheimer’s Disease

**Authors:** Sareer Ahmad, Myeung Hoon Jo, Muhammad Ikram, Amjad Khan, Myeong Ok Kim

PMC · DOI: 10.3390/ijms22179583 · International Journal of Molecular Sciences · 2021-09-03

## TL;DR

This study shows that Luteolin, a natural compound, protects mice from Alzheimer's disease-like changes by reducing brain inflammation and amyloid buildup.

## Contribution

The study demonstrates Luteolin's novel neuroprotective effects against Aβ1–42-induced Alzheimer’s pathology in mice.

## Key findings

- Luteolin reduced activation of p-JNK and inflammatory markers in the brains of Aβ1–42-treated mice.
- Luteolin decreased apoptotic markers and increased synaptic proteins in mice with Alzheimer’s-like pathology.
- Luteolin’s protective effects were linked to inhibition of the JNK pathway.

## Abstract

The current study was undertaken to unveil the protective effects of Luteolin, a natural flavonoid, against amyloid-beta (Aβ1–42)-induced neuroinflammation, amyloidogenesis, and synaptic dysfunction in mice. For the development of an AD mouse model, amyloid-beta (Aβ1–42, 5 μL/5 min/mouse) oligomers were injected intracerebroventricularly (i.c.v.) into mice’s brain by using a stereotaxic frame. After that, the mice were treated with Luteolin for two weeks at a dose of 80 mg/kg/day. To monitor the biochemical changes, we conducted western blotting and immunofluorescence analysis. According to our findings, the infusion of amyloid-beta activated c-Jun N-terminal kinases (p-JNK), p38 mitogen-activated protein kinases, glial fibrillary acidic protein (GFAP), and ionized calcium adaptor molecule 1 (Iba-1) in the cortex and hippocampus of the experimental mice; these changes were significantly inhibited in Aβ1–42 + Luteolin-treated mice. Likewise, we also checked the expression of inflammatory markers, such as p-nuclear factor-kB p65 (p-NF-kB p65 (Ser536), tissue necrosis factor (TNF-α), and Interleukin1-β (IL-1β), in Aβ1–42-injected mice brain, which was attenuated in Aβ1–42 + Luteolin-treated mice brains. Further, we investigated the expression of pro- and anti-apoptotic cell death markers such as Bax, Bcl-2, Caspase-3, and Cox-2, which was significantly reduced in Aβ1–42 + Lut-treated mice brains compared to the brains of the Aβ-injected group. The results also indicated that with the administration of Aβ1–42, the expression levels of β-site amyloid precursor protein cleaving enzyme (BACE-1) and amyloid-beta (Aβ1–42) were significantly enhanced, while they were reduced in Aβ1–42 + Luteolin-treated mice. We also checked the expression of synaptic markers such as PSD-95 and SNAP-25, which was significantly enhanced in Aβ1–42 + Lut-treated mice. To unveil the underlying factors responsible for the protective effects of Luteolin against AD, we used a specific JNK inhibitor, which suggested that Luteolin reduced Aβ-associated neuroinflammation and neurodegeneration via inhibition of JNK. Collectively, our results indicate that Luteolin could serve as a novel therapeutic agent against AD-like pathological changes in mice.

## Linked entities

- **Genes:** bsk (basket) [NCBI Gene 44801], CRK (CRK proto-oncogene, adaptor protein) [NCBI Gene 1398], GFAP (glial fibrillary acidic protein) [NCBI Gene 2670], AIF1 (allograft inflammatory factor 1) [NCBI Gene 199], TNF (tumor necrosis factor) [NCBI Gene 7124], IL1B (interleukin 1 beta) [NCBI Gene 3553], BAX (BCL2 associated X, apoptosis regulator) [NCBI Gene 581], BCL2 (BCL2 apoptosis regulator) [NCBI Gene 596], Casp3 (caspase 3) [NCBI Gene 12367], COX2 (cytochrome c oxidase subunit II) [NCBI Gene 4513], BACE1 (beta-secretase 1) [NCBI Gene 23621], DLG4 (discs large MAGUK scaffold protein 4) [NCBI Gene 1742], SNAP25 (synaptosome associated protein 25) [NCBI Gene 6616]
- **Chemicals:** Luteolin (PubChem CID 5280445)
- **Diseases:** Alzheimer’s disease (MONDO:0004975)
- **Species:** Mus musculus (taxon 10090)

## Full-text entities

- **Genes:** Il1b (interleukin 1 beta) [NCBI Gene 16176] {aka IL-1beta, Il-1b}, Snap25 (synaptosomal-associated protein 25) [NCBI Gene 20614] {aka Bdr, GENA70, SNAP-25, SUP, sp}, Bax (BCL2-associated X protein) [NCBI Gene 12028], Casp3 (caspase 3) [NCBI Gene 12367] {aka A830040C14Rik, AC-3, CASP-3, CC3, CPP-32, CPP32}, Iba1 (induction of brown adipocytes 1) [NCBI Gene 114737], COX2 (cytochrome c oxidase subunit II) [NCBI Gene 17709], Actb (actin, beta) [NCBI Gene 11461] {aka Actx, E430023M04Rik, beta-actin}, Bcl2 (B cell leukemia/lymphoma 2) [NCBI Gene 12043] {aka Bcl-2, C430015F12Rik, D630044D05Rik, D830018M01Rik}, Mapk14 (mitogen-activated protein kinase 14) [NCBI Gene 26416] {aka CSBP2, Crk1, Csbp1, Mxi2, PRKM14, PRKM15}, Bace1 (beta-site APP cleaving enzyme 1) [NCBI Gene 23821] {aka ASP2, Bace}, Mapk8 (mitogen-activated protein kinase 8) [NCBI Gene 26419] {aka JNK, JNK1, Prkm8, SAPK1}, App (amyloid beta precursor protein) [NCBI Gene 11820] {aka Abeta, Abpp, Adap, Ag, Cvap, E030013M08Rik}, Tnf (tumor necrosis factor) [NCBI Gene 21926] {aka DIF, TNF-a, TNF-alpha, TNFSF2, TNFalpha, Tnfa}, Rela (Rela proto-oncogene, NFKB subunit) [NCBI Gene 19697] {aka p65, p65 NF-kappa B, p65 NFkB}, Gfap (glial fibrillary acidic protein) [NCBI Gene 14580], Dlg4 (discs large MAGUK scaffold protein 4) [NCBI Gene 13385] {aka Dlgh4, PSD-95, PSD95, SAP90, SAP90A}, Nfkb1 (nuclear factor of kappa light polypeptide gene enhancer in B cells 1, p105) [NCBI Gene 18033] {aka NF-KB1, NF-kappaB, NF-kappaB1, p105, p50, p50/p105}
- **Diseases:** neuronal (MESH:D009410), inflammatory cytokines (MESH:D000080424), AD (MESH:D000544), Neuroinflammation (MESH:D000090862), toxicity (MESH:D064420), deaths (MESH:D003643), cognitive and memory dysfunction (MESH:D003072), neurological diseases (MESH:D020271), Neurological Disorder (MESH:D009461), neurodegeneration (MESH:D019636), Synaptic Dysfunctions (MESH:C536122), mitochondrial dysfunction (MESH:D028361), tissue necrosis factor (MESH:D009336), PD (MESH:D010300), Inflammatory (MESH:D007249), neuronal cell loss (MESH:D002292),  (MESH:D004195)
- **Chemicals:** DMSO (MESH:D004121), Triton X-100 (MESH:D017830), DMEM (-), SP600125 (MESH:C432165), Luteolin (MESH:D047311), water (MESH:D014867), PBS (MESH:D007854), tetramethylrhodamine (MESH:C005358), saline (MESH:D012965), sucrose (MESH:D013395), flavonoid (MESH:D005419), CO2 (MESH:D002245), reactive oxygen species (MESH:D017382), SDS (MESH:D012967), PVDF (MESH:C024865), 4,6-diamidino-2-phenylindole (MESH:C007293), TRITC (MESH:C009434), LPS (MESH:D008070), xylazine (MESH:D014991),  (MESH:D018696),  (MESH:C075222),  (MESH:D016229)
- **Species:** Mus musculus (house mouse, species) [taxon 10090], Homo sapiens (human, species) [taxon 9606], Apium graveolens Dulce Group (celery, no rank) [taxon 117781]
- **Cell lines:** C57BL/6N — Mus musculus (Mouse), Embryonic stem cell (CVCL_2H81), HT-22 — Mus musculus (Mouse), Transformed cell line (CVCL_0321)

## Full text

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## Figures

6 figures with captions in the complete paper: https://tomesphere.com/paper/PMC8430819/full.md

## References

61 references — full list in the complete paper: https://tomesphere.com/paper/PMC8430819/full.md

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Source: https://tomesphere.com/paper/PMC8430819