| Literature DB >> 19755984 |
M Hauglid Flågeng1, L L Haugan Moi, J M Dixon, J Geisler, E A Lien, W R Miller, P E Lønning, G Mellgren.
Abstract
BACKGROUND: Acquired resistance to endocrine therapy in breast cancer is poorly understood. Characterisation of the molecular response to aromatase inhibitors in breast cancer tissue may provide important information regarding development of oestrogen hypersensitivity.Entities:
Mesh:
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Year: 2009 PMID: 19755984 PMCID: PMC2768454 DOI: 10.1038/sj.bjc.6605324
Source DB: PubMed Journal: Br J Cancer ISSN: 0007-0920 Impact factor: 7.640
Treatment and tumour characteristics for the patients
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| 1 | Letrozole | B | 16 | 100 | 30/40 | R | Neg. |
| 2 | Letrozole | B | 16 | >50 | >50 | R | Neg. |
| 3 | Letrozole | B | 16 | 70/80 | 10 | R | Neg. |
| 4 | Letrozole | B | 16 | 80 | <10 | R | NA |
| 5 | Letrozole | B | 16 | 100 | 100 | R | Neg. |
| 6 | Letrozole | B | 16 | 100 | 100 | R | Neg. |
| 7 | Letrozole | B | 16 | 100 | 100 | R | Neg. |
| 8 | Letrozole | B | 16 | >50 | >50 | R | Neg. |
| 9 | Letrozole | B | 16 | 100 | 100 | R | Neg. |
| 10 | Letrozole | B | 16 | 100 | 50 | R | Neg. |
| 11 | Letrozole | B | 16 | 80/100 | 0/20 | R | Neg. |
| 12 | Letrozole | B | 16 | >80 | >80 | R | Neg. |
| 13 | Letrozole | E | 13 | 5+3 | 1+2 | R | NA |
| 14 | Letrozole | E | 13 | 5+3 | 4+2 | R | NA |
| 15 | Letrozole | E | 13 | 5+3 | 3+3 | R | NA |
| 16 | Letrozole | E | 13 | 5+2 | 5+2 | R | NA |
| 17 | Anastrozole | B | 15 | 86 | 53 | R | Neg. |
| 18 | Anastrozole | B | 15 | 93 | 0 | R | Neg. |
| 19 | Anastrozole | B | 15 | 83 | 84 | R | Neg. |
| 20 | Letrozole | E | 13 | 5+3 | 5+3 | R | NA |
| 21 | Letrozole | E | 13 | 5+3 | 5+3 | R | NA |
| 22 | Anastrozole | B | 15 | 98 | 0 | R | Neg. |
| 23 | Anastrozole | B | 15 | 92 | 86 | R | Neg. |
| 24 | Anastrozole | B | 15 | 87 | 70 | R | Neg. |
| 25 | Letrozole | E | 13 | 5+3 | 5+3 | NR | NA |
| 26 | Anastrozole | B | 15 | 92 | 79 | NR | Neg. |
| 27 | Anastrozole | B | 15 | NA | NA | NR | Neg. |
| 28 | Anastrozole | B | 15 | 91 | 86 | NR | Neg. |
| 29 | Anastrozole | B | 15 | 2 | 0 | NR | Pos. |
| 30 | Anastrozole | B | 15 | 82 | 7.5 | NR | Neg. |
Abbreviations: NA=not available; Neg.=negative; Pos.=positive; R=responders; NR=non-responders.
Expressed as percentage of cells staining positively (IHC) or as an Allred score (Harvey ).
Classification of treatment response was based on change in tumour size calculated as a product of the largest diameter and its perpendicular and subjects presented as R or NR.
Patients were treated at Haukeland University Hospital, Bergen (B) or Edinburgh Breast Unit Western General Hospital (E).
Influence of anastrozole and letrozole on SRC-1, SRC-3/AIB1, PGC-1α, NCoR, LRH-1 and HER-2/neu mRNA expression
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| All patients | 0.2961 (0.2059–0.4260) | 0.4034 (0.2583–0.6301) | 1.40 (1.11–1.79) | 0.008 | 0.023 |
| Responders | 0.3576 (0.2496–0.5123) | 0.5585 (0.3888–0.8023) | 1.62 (1.29–2.04) | 0.002 | |
| Non-responders | 0.1391 (0.0419–0.4622) | 0.1098 (0.0220–0.5484) | 0.79 (0.38–1.65) | 0.463 | |
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| All patients | 0.3682 (0.3053–0.4440) | 0.4367 (0.3562–0.5354) | 1.32 (1.08–1.62) | 0.090 | 0.667 |
| Responders | 0.3482 (0.2832–0.4281) | 0.4223 (0.3344–0.5334) | 1.21 (0.97–1.52) | 0.078 | |
| Non-responders | 0.4562 (0.2606–0.7985) | 0.4969 (0.2803–0.8810) | 1.09 (0.56–2.10) | 0.753 | |
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| All patients | 0.0023 (0.0014–0.0037) | 0.0040 (0.0027–0.0058) | 1.91 (1.20–3.05) | 0.032 | 0.002 |
| Responders | 0.0017 (0.0011–0.0027) | 0.0041 (0.0028–0.0061) | 2.75 (1.74–4.34) | 0.006 | |
| Non-responders | 0.0072 (0.0021–0.0245) | 0.0037 (0.0009–0.0150) | 0.54 (0.22–1.31) | 0.116 | |
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| All patients | 0.2028 (0.1447–0.2842) | 0.2342 (0.1756–0.2842) | 1.16 (0.92–1.46) | 0.245 | 0.437 |
| Responders | 0.1897 (0.1264–0.2848) | 0.2280 (0.1609–0.3231) | 1.20 (0.93–1.56) | 0.162 | |
| Non-responders | 0.2651 (0.1398–0.5026) | 0.2607 (0.1465–0.4639) | 0.98 (0.47–2.05) | 0.753 | |
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| All patients | 0.0127 (0.0082–0.0196) | 0.0167 (0.0129–0.0216) | 1.31 (0.87–1.98) | 0.074 | 0.227 |
| Responders | 0.0117 (0.0067–0.0205) | 0.0162 (0.0120–0.0219) | 1.39 (0.81–2.38) | 0.091 | |
| Non-responders | 0.0169 (0.0093–0.0307) | 0.0184 (0.0088–0.0383) | 1.09 (0.62–1.90) | 0.753 | |
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| All patients | 0.5388 (0.3780–0.7681) | 0.8288 (0.5213–1.3180) | 1.35 (0.94–1.94) | 0.016 | 0.186 |
| Responders | 0.4777 (0.3525–0.6525) | 0.8659 (0.5721–1.3106) | 1.66 (1.27–2.18) | 0.008 | |
| Non-responders | 1.6320 (0.4482–5.9430) | 0.9298 (0.0702–12.3108) | 0.58 (0.08–4.13) | 0.893 | |
Pre-treatment levels were compared to on-treatment levels after 13–16 weeks using the Wilcoxon 2 group test.
Comparisons of mRNA-levels between responders and non-responders during treatment were performed using the Mann–Whitney U-test.
All the relative values are given as geometric means with 95% confidence intervals.
Exclusively for SRC-1, on-treatment levels are significant different between response groups P=0.009 (Mann–Whitey U-test).
Exclusively for PGC-1α, pre-treatment levels are in borderline significant different between response groups, P=0.012 (Mann–Whitey U-test).
Figure 1Individual fold changes in mRNA expression of SRC-1 (A), PGC-1α (B) and HER-2/neu (C) in patients during oestrogen deprivation. RNA was purified from the same breast tumour in the individual breast cancer patient before and after 13–16 weeks of treatment with either letrozole or anastrozole. Fold change in mRNA expression was estimated using real-time RT-PCR and presented relative to the housekeeping genes GAPDH and TBP. Calculations are based on the crossing point (Cp) for each sample and the efficiency (Eff) of each transcript, using the formula Efftarget geneΔCp/Effhousekeeping geneΔCp. Patients marked as not detected (n.d.) had Cp outside the detection limit. Patients marked by * are excluded due to insufficient tumour tissue left for analysis.
Figure 2Fold change in mRNA expression of target genes during oestrogen deprivation. RNA was purified from tumours from breast cancer patients before and after 13–16 weeks of treatment with either letrozole or anastrozole. Patients were classified as responders (R) or non-responders (NR) based on clinical tumour measurements during treatment. SRC-1 (R, n=24; NR, n=6), SRC-3/AIB1 (R, n=23; NR, n=6), PGC-1α (R, n=21; NR, n=6), NCoR (R, n=24; NR, n=6), LRH-1 (R, n=19; NR, n=6) and HER-2/neu (R, n=21; NR, n=5) mRNA expression was estimated using real-time RT-PCR. Fold change in mRNA expression during treatment was calculated using the crossing point (Cp) for each sample and the efficiency (Eff) of each transcript, using the formula Efftarget geneΔCp/Effhousekeeping geneΔCp. The fold changes are presented as geometric mean with 95% confidence interval of the fold change calculated relative to the housekeeping genes GAPDH and TBP. Differences in fold changes between R and NR were analysed by the Mann–Whitney U-test: SRC-1; P=0.023, SRC-3/AIB1; P=0.667, PGC-1α; P=0.002, NCoR; P=0.437, LRH-1; P=0.227 and HER-2/neu; P=0.186.
Change in biomarker and oestrogen levels during treatment with AIs
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| E1 | 208.6 | 12.1 |
| E2 | 311.5 | 4.9 |
| E1S | 112.3 | 15.4 |
| Ki67 | 17.0 | 34.1 |
| pS2 | 45.3 | 28.0 |
| Apoptotic cells | 1.7 | 64.7 |
On treatment levels are presented as percentage of pre-treatment levels.
Intra-tumoural levels of E1, E2 and E1S (fmol/g) measured by an HPLC-RIA method and given as geometric means.
Ki67 and pS2 measured by immunohistochemistry and percentage of apoptotic cells analysed by the TUNEL method and results given as their arithmetic means.