| Literature DB >> 35630576 |
Xing-Hua Li1, Feng-Ting Yin1, Xiao-Hang Zhou1, Ai-Hua Zhang1, Hui Sun1, Guang-Li Yan1, Xi-Jun Wang1,2.
Abstract
Ischemic stroke (IS) is a common neurological disorder associated with high disability rates and mortality rates. At present, recombinant tissue plasminogen activator (r-tPA) is the only US(FDA)-approved drug for IS. However, due to the narrow therapeutic window and risk of intracerebral hemorrhage, r-tPA is currently used in less than 5% of stroke patients. Natural compounds have been widely used in the treatment of IS in China and have a wide range of therapeutic effects on IS by regulating multiple targets and signaling pathways. The keywords "ischemia stroke, traditional Chinese Medicine, Chinese herbal medicine, natural compounds" were used to search the relevant literature in PubMed and other databases over the past five years. The results showed that JAK/STAT, NF-κB, MAPK, Notch, Nrf2, and PI3K/Akt are the key pathways, and SIRT1, MMP9, TLR4, HIF-α are the key targets for the natural compounds from traditional Chinese medicine in treating IS. This study aims to update and summarize the signaling pathways and targets of natural compounds in the treatment of IS, and provide a base of information for the future development of effective treatments for IS.Entities:
Keywords: ischemic stroke; natural compounds; signaling pathways; targets; traditional Chinese medicine
Mesh:
Substances:
Year: 2022 PMID: 35630576 PMCID: PMC9148018 DOI: 10.3390/molecules27103099
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.927
Figure 1JAK/STAT signaling pathway and the chemical structure of natural compounds.
Figure 2NF-κB signaling pathway and the chemical structure of natural compounds.
Figure 3MAPK signaling pathway and the chemical structure of natural compounds.
Figure 4Notch signaling pathway and the chemical structure of natural compounds.
Figure 5Nrf2 signaling pathway and the chemical structure of natural compounds.
Figure 6PI3K/Akt signaling pathway and the chemical structure of natural compounds.
Regulation effect of natural compounds from TCM on IS-related signaling pathways.
| Natural Compounds | Categories | Plants | Experiments Model | Mechanisms | Signaling Pathways | Ref. | |
|---|---|---|---|---|---|---|---|
| In Vivo | In Vitro | ||||||
|
| Alkaloid | MCAO rats | -- | ↑: SOD, | JAK2/STAT3 | [ | |
| Hydroxy saffron yellow A | Flavonoid | MCAO rats | -- | ↑: SOCS3 | JAK2/STAT3 | [ | |
| Catalpol | Terpenoid | MCAO rats | -- | ↑: VEGF, EPO, EPOR | JAK2/STAT3 | [ | |
| Nicotiflorin | Flavonoid | MCAO rats | -- | ↑: Bcl-2 | JAK2/STAT3 | [ | |
| Atractylenolide III | Terpenoid | MCAO rats | OGD/R cells | ↓: IL-1β, TNF-α, IL-6, Drp1, p-JAK2, p-STAT3 | JAK2/STAT3 | [ | |
| Stachydrine | Alkaloid | MCAO rats | OGD/R cells | ↑: SOD | JAK2/STAT3 | [ | |
| Artesunate | Terpenoid | MCAO mice | -- | ↑: IκB | NF-κB | [ | |
| Skullcapflavone II | Flavonoid | MCAO rats | -- | ↑: SOD, GSH, VEGF, Ang-1,Tie-2, | NF-κB | [ | |
| Syringin | Saponin | MCAO rats | -- | ↑: p-FOXO3a | NF-κB | [ | |
| Schisandrin B | Lignan | MCAO rats | -- | ↓: NF-κB, TLR4, IL-1β, IL-6, TNF-α | NF-κB | [ | |
| Ephedrine | Alkaloid | MCAO rats | -- | ↑: Bcl-2 | NF-κB | [ | |
| Berberine | Alkaloid | MCAO rats | -- | ↑: SOD, GSH-Px, CD4+, CD8 | NF-κB | [ | |
| Salvianolic acid D | Polyphenol | MCAO rats | OGD/R cells | ↑: Bcl-2 | NF-κB | [ | |
| Triptolide | Terpenoid | MCAO rats | -- | ↓: NF-κBp65, PUMA, caspase-3 | NF-κB | [ | |
| β-patchoulene | Terpenoid | MCAO rats | -- | ↑: IκBα,SOD, GSH-Px, Bcl-2 | NF-κB | [ | |
| Ginkgetin | Flavonoid |
| MCAO rats | -- | ↑: Bcl-2 | NF-κB | [ |
| Tanshinone IIA | Terpenoid | MCAO rats | OGD/R cells | ↑: SOD | NF-κB | [ | |
| Breviscapine | Flavonoid | MCAO rats | -- | ↑: SOD, GSH-Px | NF-κB | [ | |
| Diosgenin |
| MCAO rats | OGD/R cells | ↑: HIKESHI, HSP70, IκBα | NF-κB | [ | |
| Icariin | Flavonoid | MCAO rats | -- | ↑: PPARα,PPARγ, IκBα | NF-κB | [ | |
| Berberine | Alkaloid | MCAO rats | -- | ↑: SOD, GSH-Px, CD4+, CD8 | NF-κB | [ | |
| Nobiletin | Flavonoid | MCAO rats | -- | ↑: Bcl-2, IL-10, | MAPK | [ | |
| Coriolus versicolor polysaccharides | Polysaccharide | MCAO rats | -- | ↑: Bcl-2, IL-10, | MAPK | [ | |
| Scrophularia ningpoensis polysaccharides | Polysaccharide | MCAO rats | -- | ↑: p-ERK, SOD | MAPK | [ | |
| Emodin |
| -- | OGD/R cells | ↑: p-ERK-1/2, GLT-1, Bcl-2 | MAPK | [ | |
| Ginsenoside Rg1 | Terpenoid | MCAO rats | -- | ↑: Bcl-2 | MAPK | [ | |
| Baicalin | Flavonoid | -- | OGD/R cells | ↑: MAPK, ERK, MAP2, Bcl | MAPK | [ | |
| Curcumin | Polyphenol | MCAO rats | -- | ↓: LC3-II/LC3-I, IL-1, TLR4, p-38, p-p38 | MAPK | [ | |
| Astragaloside IV |
| MCAO rats | -- | ↑: HIF-1α, VEGF, Notch, DLL4 | Notch | [ | |
| Osthole | Coumarin | MCAO rats | -- | ↑: Bcl-2, Notch, NICD, Hes 1 | Notch | [ | |
| Biochanin A | Flavonoid | MCAO rats | -- | ↑: SOD, GSH-Px, HO-1, Nrf2 | Nrf2 | [ | |
| Rosmarinic acid | Polyphenol | MCAO rats | -- | ↑: Bcl-2, HO-1, Nrf2, SOD | Nrf2 | [ | |
| Palmatine | Alkaloid | MCAO rats | OGD/R cells | ↑: Bcl-2, HO-1, Nrf2, SOD, CAT, p-AMPK | Nrf2 | [ | |
| Taraxasterol | Terpenoid | OGD/R cells | ↑: HO-1, NQO-1, GPx-3, Nrf2, Bcl-2 | Nrf2 | [ | ||
| Senkyunolide I | Terpenoid | MCAO rats | -- | ↑: SOD, Erk1/2, Nrf2, NQO1, Bcl-2 | Nrf2 | [ | |
| Ginkgolide B | Terpenoid | MCAO rats | OGD/R cells | ↑: SOD, p-Akt, HO-1, Nqo1p-Nrf2 | Nrf2 | [ | |
| Resveratrol | Polyphenol | MCAO rats | -- | ↑: p-AKT | PI3K/Akt | [ | |
| Ligustrazine | Alkaloid | MCAO rats | OGD/R cells | ↑: p-eNOS, p-AKT | PI3K/Akt | [ | |
| Polygalasaponin F | Terpenoid | OGD/R cells | ↑: p-AKT, Nrf2, HO-1 | PI3K/Akt | [ | ||
| Puerarin | Flavonoid | 4-vessel occlusion | -- | ↑: p-GSK-3β, MCL-1, p-AKT | PI3K/Akt | [ | |
| Panax notoginseng Saponins | Saponin | -- | OGD/R cells | ↑: p-AKT, Nrf2, HO-1 | PI3K/Akt | [ | |
| Salidroside | Polyphenol | MCAO rats | -- | ↑: p-Akt | PI3K/Akt | [ | |
↑: up regulation; ↓: down regulation.