| Literature DB >> 28280782 |
Lynn M Opdenaker1, Shirin R Modarai1, Bruce M Boman1.
Abstract
A significant number of discrepancies exist within the literature regarding ALDEFLUOR-positive stem cell populations in cell lines. We hypothesized that these inconsistencies resulted from differences in culture conditions, particularly cell density. We cultured several colon cancer cell lines (N=8) at high and low densities and found a significant decrease in ALDEFLUOR-positive cell populations at high density. However, we found no changes in the CD166-positive stem cell population, self-renewal, or cell cycle distribution of cells cultured at different densities. Interestingly, when we sorted both ALDEFLUOR positive and negative populations from the different density cultures, we identified a significant number of Aldehyde dehydrogenase (ALDH) isoforms whose expression was decreased in ALDEFLUOR-positive stem cells cultured at high density. This novel finding suggests that multiple ALDH isoforms contribute to ALDEFLUOR activity in colon cancer stem cells and decreases in ALDEFLUOR-positive stem cells at high cell density are due to decreased expression of multiple ALDH isoforms. Thus, designing therapeutics to target ALDEFLUOR-positive cancer stem cells may require inhibition of multiple ALDH isoforms.Entities:
Keywords: ALDEFLUOR; ALDH isoforms; Cancer stem cells; Density
Year: 2015 PMID: 28280782 PMCID: PMC5340268 DOI: 10.17140/CSMMOJ-2-113
Source DB: PubMed Journal: Cancer Stud Mol Med ISSN: 2377-1518
Figure 1Cell density affects ALDEFLUOR activity without changing other stem cell characteristics. Representative images of HT29 and SW480 cells grown ay low (30–40%) and high (70–80%) cell densities (A). It is important to note that the cells never reach full confluence before analysis. Cells from low and high density were cultured and ALDEFLUOR assay was performed. Representative histograms from one set of analysis on HT29 and SW480 cells grown at low and high density (B). Different colon cancer cell lines were cultured at low and high densities and ALDEFLUOR was performed. The average values of percent positive cells is graphed to show significant changes in ALDEFLUOR positive cells at low and high densities (C). Expression of CD166 on three different colon cancer cell lines grown at low and high densities (D). Cells were grown at low and high density and then plated for colonosphere assay. Graph represents average number of spheres formed under each culture condition (E). All experiments were N=3 except ALDEFLUOR assay was performed with multiple relicates (N=10). *=p<0.05, **= p<0.01, ***=p<0.001.
Figure 2Cell cycle does not change with density. Cells were plated at low and high densities and then fixed before propidium iodide analysis. HT29 (A), SW480 (B), and HCT116 (C) cells were analyzed for different phases of the cell cycle and there was no significant changes seen between each phase (N=3).
Figure 3Expression of several ALDH isoforms change with density in HT29 cells. Images are representative of RT-PCR data obtained from multiple experiments. All isoforms shown, except ALDH1A1, demonstrate reduced or absent expression in the high density ALDH positive samples.
Expression of ALDH isoforms in HT29 and SW480 cells. Reverse Transcriptase PCR was performed on RNA isolated from ALDH positive and negative populations sorted from high and low density cultures. Particularly in the HT29 cell line, some isoforms are absent in the high density ALDH positive fraction.
| HT29 | |||||||||||||||||||
| 1A1 | 1A2 | 1A3 | 1B1 | 1L1 | 1L2 | 2 | 3A1 | 3A2 | 3B1 | 3B2 | 4A1 | 5A1 | 6A1 | 7A1 | 8A1 | 9A1 | 16A1 | 18A1 | |
| LD− | +++ | + | +++ | +++ | +++ | +++ | +++ | +++ | + | +++ | +++ | +++ | +++ | ++ | +++ | ||||
| LD+ | +++ | +++ | +++ | +++ | +++ | ++ | +++ | ++ | ++ | +++ | +++ | +++ | ++ | +++ | |||||
| HD− | +++ | ++ | +++ | +++ | +++ | +++ | +++ | +++ | ++ | +++ | ++ | +++ | +++ | +++ | +++ | ||||
| HD+ | +++ | + | + | + | + | +++ | +++ | + | + | ++ | +++ | +++ | |||||||
| SW480 | |||||||||||||||||||
| 1A1 | 1A2 | 1A3 | 1B1 | 1L1 | 1L2 | 2 | 3A1 | 3A2 | 3B1 | 3B2 | 4A1 | 5A1 | 6A1 | 7A1 | 8A1 | 9A1 | 16A1 | 18A1 | |
| LD− | +++ | ++++ | + | +++ | ++++ | ++++ | ++++ | +++ | + | +++ | +++ | ++++ | ++ | +++ | |||||
| LD+ | + | ++++ | ++++ | + | ++++ | ++++ | ++++ | ++++ | ++++ | ++ | ++++ | ++++ | ++++ | ++ | ++++ | ||||
| HD− | ++ | +++ | +++ | +++ | ++ | ++++ | +++ | +++ | +++ | +++ | +++ | +++ | +++ | +++ | ++ | +++ | |||
| HD+ | + | + | +++ | ++++ | + | ++++ | ++++ | ++++ | ++++ | +++ | +++ | ++++ | ++++ | ++++ | ++++ | ++++ |
Plus (+) signs indicate presence of a band for each replicate. Three replicates were performed for the HT29 cell line and four replicates were performed for the SW480 cell line.