Skip to main content
. 2022 Aug 17;19:206. doi: 10.1186/s12974-022-02565-0

Table 2.

Therapeutic approach to combat neuroinflammation in AD

Phytochemical origin Essential components Effects Significance in AD References
Natural products
Turmeric

Curcumin

Tetrahydrocurcumin

Inhibits gliosis

Reduces oxidized protein

Disaggregates Aβ

Prevent synaptic toxicity

Modulates inflammation

Reduces Aβ aggregates

Protects synapses

Improves cognition

[137,138,139,140,141]
Morus alba Quercetin

Inhibits the NF-kB pathway

Upregulates the anti-oxidant defense system NRf2/HO-1 axis

Regulates apoptosis

Reduces neuroinflammation

Reduces oxidative stress

[142, 143]
Grapevine and other fruits Resveratrol

Inhibits gliosis

Upregulates SIRT-1 expression

Reduces oxidative stress

Reduces neuroinflammation

Decreases Aβ aggregates

Improves cognition

[144, 145]
Ginkgo biloba Ginkgolides

Increases SIRT-1 expression

Inhibits NF-kB pathway

Upregulated HO-1 expression

Upregulates anti-apoptotic protein expression

Reduces neuroinflammation

Anti-apoptotic

Protects neurons

[146149]
Sinomenine acutum Sinomenine

Inhibits gliosis

Inhibit NADPH oxidase

Prevent DNA damage

Reduces neuroinflammation

Reduces ROS production

Protects neuron

[150152]
Name Target Effects Significance in AD References
Synthetic drugs:
GC021109 P2XY Enhances phagocytosis by microglia Inhibits neuroinflammation [153]
Azeliragon Antagonist of RAGE Prevent Aβ-induced neurotoxicity Neuroprotection [154]
Pioglitazone Agonist of PPARγ

Ameliorates metabolism of neuron

Reduces neuroinflammation

Reduces oxidative stress

Improves learning and memory

Improves synaptic activity

Reduces Aβ and tau pathology

[155]
Ibuprofen COX Inhibits cytokine production Reduces neuroinflammation [159]
Cromolyn Microglia Inhibits release of inflammatory cytokines Reduces neuroinflammation [160]
Neflamapimod Intracellular enzyme p38MAPKα Inhibits inflammatory pathway

Improves cognition

Ameliorates synaptic dysfunction

[161,162,163]