| Literature DB >> 18797455 |
D M Kweekel1, M Koopman, N F Antonini, T Van der Straaten, J W R Nortier, H Gelderblom, C J A Punt, H-J Guchelaar.
Abstract
A Valine residue at position 105 of the GSTP1 protein results in decreased enzyme activity. As nuclear GSTP1 activity decreases irinotecan cytotoxicity, Val-allele carriers may benefit more from irinotecan chemotherapy. Our aim was to investigate the association of GSTP1 genotype with treatment outcome of irinotecan. Progression-free survival (PFS) and toxicity were determined in 267 metastatic colorectal cancer (MCRC) patients who were treated with first-line capecitabine (CAP) plus irinotecan (CAPIRI), or CAP single agent in a prospective randomised phase III trial (CAIRO). GSTP1 genotype was determined by Pyrosequencing. Patients receiving CAP showed a PFS of 6.6 (Ile/Ile), 6.0 (Ile/Val) and 6.5 months (Val/Val); compared to 7.0 (Ile/Ile), 8.8 (Ile/Val) and 9.2 months (Val/Val) with CAPIRI. Median PFS was 2.7 months longer in Val-allele carriers treated with CAPIRI compared to CAP (P=0.005). Patients with the Ile/Ile genotype showed similar PFS with CAPIRI and CAP (7.0 compared to 6.6 months, P=0.972). Toxicity did not differ significantly among genotypes. GSTP1 codon 105 polymorphism may be predictive for the response to irinotecan-based chemotherapy in patients with MCRC, with the Val-allele being associated with a better outcome. Ile/Ile genotype patients do not appear to benefit from the addition of irinotecan to CAP.Entities:
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Year: 2008 PMID: 18797455 PMCID: PMC2570506 DOI: 10.1038/sj.bjc.6604654
Source DB: PubMed Journal: Br J Cancer ISSN: 0007-0920 Impact factor: 7.640
Patient characteristics
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| Median | 60 | 62 | 64 | 61.5 |
| Range | (36–78) | (27–78) | (47–78) | (27–78) |
| >70 | 8 (19%) | 12 (19%) | 3 (17%) | 3 (17%) |
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| Male (%) | 27 (63%) | 39 (60%) | 10 (56%) | 76 (60%) |
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| 0–1 | 41 (95%) | 60 (93%) | 18 (100%) | 119 (94%) |
| 2 | 2 (5%) | 5 (8%) | 0 | 7 (6%) |
| Prior adjuvant therapy | 5 (12%) | 6 (9%) | 2 (11%) | 13 (10%) |
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| Liver | 27 (63%) | 44 (68%) | 12 (67%) | 83 (66%) |
| Extrahepatic | 15 (35%) | 18 (28%) | 6 (33%) | 39 (31%) |
| Unknown | 1 (2%) | 3 (5%) | — | 4 (3%) |
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| Colon and sigmoid | 31 (72%) | 42 (65%) | 12 (67%) | 85 (68%) |
| Rectum | 11 (26%) | 23 (35%) | 6 (33%) | 40 (32%) |
| Multiple tumours | 1 (2%) | — | — | 1 (<1%) |
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| Normal | 32 (74%) | 39 (60%) | 11 (61%) | 82 (65%) |
| ⩾ULN | 11 (26%) | 26 (40%) | 7 (39%) | 44 (35%) |
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| Median | 61.5 | 63 | 60 | 62 |
| Range | 41–81 | 37–78 | 45–72 | 37–81 |
| >70 | 12 (19%) | 13 (20%) | 1 (8%) | 26 (18%) |
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| Male (%) | 38 (59%) | 40 (63%) | 9 (69%) | 87 (62%) |
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| 0–1 | 59 (92%) | 60 (94%) | 13 (100%) | 132 (94%) |
| 2 | 5 (8%) | 4 (6%) | — | 9 (6%) |
| Prior adjuvant therapy | 10 (16%) | 7 (11%) | 1 (8%) | 18 (13%) |
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| Liver | 42 (66%) | 46 (72%) | 10 (77%) | 98 (70%) |
| Extrahepatic | 22 (34%) | 18 (28%) | 3 (23%) | 43 (30%) |
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| Colon and sigmoid | 37 (58%) | 41 (64%) | 7 (54%) | 85 (60%) |
| Rectum | 27 (42%) | 23 (36%) | 6 (46%) | 56 (40%) |
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| Normal | 44 (69%) | 39 (61%) | 10 (77%) | 93 (66%) |
| ⩾ULN | 20 (31%) | 25 (39%) | 3 (23%) | 48 (34%) |
CAP=capecitabine monotherapy; CAPIRI=capecitabine plus irinotecan combination therapy.
Progression-free survival of patients using CAP or CAPIRI, according to GSTP1 genotype
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| All genotypes ( | 6.3 (5.8;6.9) | — | 8.3 (7.6;8.8) | — |
| Ile/Ile ( | 6.6 (5.5;8.3) | Reference | 7.0 (6.2;8.3) | Reference |
| Ile/Val ( | 6.0 (4.4;7.8) | 0.697 | 8.8 (8.3;10.0) | 0.025 |
| Val/Val ( | 6.5 (6.1;8.3) | 0.661 | 9.2 (7.7;10.6) | 0.696 |
| Ile/Val+Val/Val ( | 6.2 (5.4;7.9) | 0.647 | 8.9 (8.3;9.9) | 0.037 |
| Ile/Ile vs Ile/Val | — | 0.886 | — | 0.078 |
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| Hazard ratio for PFS CAPIRI | 0.99 (0.67;1.48) | 0.63 (0.46;0.87) | 0.77 (0.56;0.93) | |
| | 0.972 | 0.005 | 0.012 |
Median PFS, and P-values resulting from Cox regression analysis with serum LDH as a covariate. PFS=progression-free survival; CAP=single-agent capecitabine; CAPIRI=irinotecan combination therapy with capecitabine.
Figure 1Kaplan–Meier plot of progression-free survival (PFS). Solid lines: Ile/Ile, dotted lines: Ile/Val+Val/Val. If we compare median PFS of Ile/Ile patients receiving CAP with those receiving CAPIRI, we see a nonsignificant difference (P=0.972), whereas median PFS of Val carriers is significantly better in the CAPIRI regimen (P<0.005). The full-colour version is available online.
Grades 3–4 toxicity with CAP and CAPIRI treatment
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| Overall grades 3–4 | 19 (44.2%) | 29 (44.6%) | 5 (27.8%) | 53 (42.1%) | |
| Diarrhoea grades 3–4 | 4 (9.3%) | 4 (6.2%) | 1 (5.6%) | 9 (7.1%) | |
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| Overall grades 3–4 | 36 (56.3%) | 37 (57.8%) | 7 (53.8%) | 80 (56.7%) | |
| Diarrhoea grades 3–4 | 14 (21.9%) | 18 (28.1%) | 2 (15.4%) | 34 (24.1%) | |
| Febrile neutropenia grades 3–4 | 5 (7.8%) | 3 (4.7%) | 0 (0.0%) | 8 (5.7%) | |
| Diarrhoea grades 3–4 or febrile neutropenia | 16 (25.0%) | 19 (29.7%) | 2 (15.4%) | 37 (26.2%) |
Values in this table describe worst grade toxicity, occurring during first-line capecitabine (single agent) or irinotecan plus capecitabine (combination) treatment. F=Fisher's exact test; C=χ2 test. In capecitabine single-agent users, no febrile neutropenia was recorded.