| Literature DB >> 28942499 |
Hirota Fujiki1, Eisaburo Sueoka2, Anchalee Rawangkan3, Masami Suganuma3.
Abstract
PURPOSE: Our previous experiments show that the main constituent of green-tea catechins, (-)-epigallocatechin gallate (EGCG), completely prevents tumor promotion on mouse skin initiated with 7,12-dimethylbenz(a)anthracene followed by okadaic acid and that EGCG and green tea extract prevent cancer development in a wide range of target organs in rodents. Therefore, we focused our attention on human cancer stem cells (CSCs) as targets of cancer prevention and treatment with EGCG.Entities:
Keywords: CSCs; EGCG; Parental cells; Self-renewal; Stemness
Mesh:
Substances:
Year: 2017 PMID: 28942499 PMCID: PMC5693978 DOI: 10.1007/s00432-017-2515-2
Source DB: PubMed Journal: J Cancer Res Clin Oncol ISSN: 0171-5216 Impact factor: 4.553
Human CSCs differentially express stemness markers
| Cancers and names of CSCs | Markers of increased expression | Markers of decreased expression | References |
|---|---|---|---|
| Colorectal cancer | |||
| HCT116-SDCSCs | mRNAs: | Toden et al. ( | |
| Proteins: CD44, Notch, Bmi-1, CD133, ALDH1 | |||
| Nasopharyngeal cancer | |||
| TW01 sphere | mRNAs: |
| Lin et al. ( |
| CNE2- & C666-1-SCs | mRNAs: |
| Li et al. ( |
| Proteins: CD44 | |||
| Neuroblastoma | |||
| BE(2)-C sphere | mRNAs: |
| Nishimura et al. ( |
| Glioblastoma | |||
| U87 GSLCs | mRNAs: |
| Zhang et al. ( |
| Proteins: CD133, ALDH1, | Cyclin D1 |
EGCG decreases or increases the expression of stemness marker mRNAs and proteins by human CSCs
| Cancers and names of CSCs | Inhibited expression of stemness markers (mRNAs and proteins) | References |
|---|---|---|
| Breast CSCs | ||
| SUM-149 & SUM-190 | mRNAs: | Mineva et al. ( |
| SUM-149 | mRNAs: | |
| MDA-MB-231 & MDA-MB-436 | Proteins: ER-α36, EGFR, p-ERK1/2, p-AKT | Pan et al. ( |
| Lung CSCs | ||
| A549 & H1299 | mRNAs: | Zhu et al. ( |
| Proteins: CD133, CD44, ALDH1A1, Nanog, Oct4, PCNA, cyclin D1, Bcl2, p-GSK3β, β-catenin, c-Myc | ||
| Increased Bax, caspase 8, cleaved caspase-3 and -9 | ||
| Prostate CSCs | ||
| PC-3 & LNCaP | Proteins: XIAP, Bcl2, survivin, vimentin, Slug, Snail, β-catenin | Tang et al. ( |
| Colorectal CSCs | ||
| HCT116-5FUR & SW480-5FUR | mRNAs: | Toden et al. ( |
| Proteins: Notch 1, cleaved-Notch 1, c-Myc, Bmi-1, Suz12, Ezh2 | ||
| HCT116-SDCSCs | mRNAs: | Wubetu et al. ( |
| Proteins: Nek2, p-Akt | ||
| Liver CSCs | ||
| HepG2-SDCSCs | mRNAs: | Wubetu et al. ( |
| Proteins: Nek2, p-Akt | ||
| Pancreatic CSCs | ||
| Pancreatic CSCs | mRNAs: | Tang et al. ( |
| MIA-PaCa2 & BxPc-3 | mRNA: | Appari et al. ( |
| Head and neck CSCs | ||
| HNSC (K3, K4, K5) | mRNAs: | Lee et al. ( |
| Proteins: Oct4, Sox2, Notch1, Hey1, Hes1, ABCC2, ABCG2 | ||
| Increased | ||
| Nasopharyngeal CSCs | ||
| TW01 & TW06 spheres | mRNAs: | Lin et al. ( |
| Glioma CSCs | ||
| U87 GSLCs | mRNAs: | Zhang et al. ( |
| Proteins: p-Akt, CD133, ALDH1, Bcl2, P-gp | ||
| Increased Bax, c-PARP | ||
Inhibitory effects of EGCG on CSCs are weaker than those on parental cells
| (A) Inhibition of cell proliferation using EGCG | |||
|
| TW01 sphere | TW01 parental | Lin et al. ( |
| ID50 μM | 150 | 60 | |
| TW06 sphere | TW06 parental | Lin et al. ( | |
| ID50 μM | 115 | 38 | |
|
| BE(2)-C sphere | BE(2)-C parental | Nishimura et al. ( |
| EGCG 50 μM | 25.2 (% of inhibition) | 93.8 (%) | |
| (B) Induction of apoptosis using EGCG | |||
|
| TW01 sphere | TW01 parental | Lin et al. ( |
| EGCG 40 μM | 12.7 (%) | 63.6 (%) | |
|
| BE(2)-C sphere | BE(2)-C parental | Nishimura et al. ( |
| EGCG 50 μM | 9.1 (%) | 91.7 (%) | |
Fig. 1EGCG inhibits the proliferation of nasopharyngeal CSCs and parental cells. MTT assays of (a) TW01 sphere-derived cells (square) and TW01 parental cells (filled square) and (b) TW06 sphere-derived cells (filled triangle) and TW06 parental cells (filled circle) (Lin et al. 2012, Reproduced with the permission of Dr. Yann-Jang Chen)
Combinations of EGCG and anticancer drugs synergistically enhance anticancer activity against human CSCs