| Literature DB >> 29234398 |
Yaohan Wang1, Li Feng2, Bingkui Piao1, Peitong Zhang1.
Abstract
Cancer stem cells (CSCs) are small subpopulations of neoplastic cells within a tumor, which have self-renewal and differentiation abilities and could generate new tumors with few cells. Researches have showed that CSCs are considered the most likely reason for cancer recurrence and metastasis. Accumulating evidences have showed that traditional Chinese medicine (TCM) has significant effect on CSCs. It could inhibit the proliferation, self-renew, and multidifferentiation of CSCs. We aimed to summarize the theories of CSCs in TCM, the inhibitory effect, and the pathway on CSCs of TCM. This review will provide potential new strategies and alternative perspectives for CSCs treatments and basic research into complementary and alternative medicine.Entities:
Year: 2017 PMID: 29234398 PMCID: PMC5646331 DOI: 10.1155/2017/4505194
Source DB: PubMed Journal: Evid Based Complement Alternat Med ISSN: 1741-427X Impact factor: 2.629
Effects and mechanisms of TCM or extracts on CSCs.
| Effects on CSCs | Mechanisms | |
|---|---|---|
| Sulforaphane [ | Inhibiting CSC self-renew | |
| Wusan granules [ | Inhibiting CSCs proliferation | |
| Xiantansanjie [ | Inhibiting CSCs proliferation | Inhibiting Notch-1 pathway |
| Bufalin [ | Inhibiting CSCs proliferation, differentiation, and sphere formation | miR-148a downregulated DNMT1 and p27 |
| Sanguinarine [ | Inhibiting CSC proliferation, invasion, and apoptosis | Inhibiting Wnt/ |
| Ethanol extract of HDW [ | Inhibiting sphere formation | Inhibiting Wnt/ |
| Resveratrol [ | Inhibiting sphere formation | |
| Honokiol [ | Inhibiting sphere formation | Inducing AMPK phosphorylation |
| Curcumin [ | Inhibiting sphere formation | Inhibiting STAT3 phosphorylation |
| Ursolic acid [ | Inhibiting proliferation and inducing apoptosis | Inhibiting EMT |
| Extract from | Inhibiting CSCs proliferation and inducing apoptosis | Inhibiting Wnt pathway |
| Pien Tze Huang [ | Inhibiting the viability and promoting the apoptosis and differentiation | suppressing the Notch-1 pathway |
| Ginsenoside Rg3 [ | Inducing CSC apoptosis | |
| Nanorealgar [ | Inducing CSC apoptosis | Activating caspase-3 |
| Fuzheng Jiedu, verticine, peiminine [ | Inducing CSC apoptosis | Inhibiting EMT, downregulating TGF- |
| Sulforaphane [ | Inducing CSC apoptosis | Activating caspase-3, inhibiting FKHR phosphorylation |
| Sijunzitang [ | Inducing CSC apoptosis | Upregulating the expression of apoptosis protein BAX and downregulating Bcl-2 |
| Rottlerin [ | Inducing CSC apoptosis | Inhibiting PI3K/Akt/mTOR pathway and activating caspase in cascade |
| Evodiamine [ | Arresting CSC cell cycle | Activating p53-p21-Rb pathway |
| Yiqijiedu [ | Arresting CSC cell cycle, inhibiting the expression of CSC marker, and inducing apoptosis | |
| Jieduxiaozhengyin, Fuzhengyiliu [ | Inhibiting the expression of CSC marker | |
| Resveratrol [ | Inhibiting the expression of Nanog and Oct4 | |
| Sulforaphane[ | Inhibiting the expression of Nanog and Oct4 | Inhibiting Shh pathway |
| Honokiol [ | Inhibiting the expression of CD133 | Inhibiting Notch-1 pathway |
| The traditional Chinese medicine for promoting blood circulation and removing blood stasis [ | Inhibiting CSCs invasion | Inducing TIMP1 mRNA and inhibiting MMP |
| Ligustrazine [ | Inhibiting CSCs invasion | Inhibiting the expression of the integrin, CD44V6, VEGF, and HIF-1 |
| Isoliquiritigenin [ | Reversing drug resistance | Inhibiting |
| Curcumin [ | Inhibiting the expression of ABCG2 |