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Yasutsuna Sasaki

Publications and source records attributed to Yasutsuna Sasaki.

17 recordsLinked to original sources

Simple combinations of 5-FU pathway genes predict the outcome of metastatic gastric cancer patients treated by S-1.

We evaluated the expression of 5-FU pathway genes in prechemotherapeutic fresh frozen samples obtained from primary tumors to predict response and survival of 59 metastatic gastric cancer patients treated with S-1 monotherapy as first line treatment. Five 5-FU pathway genes, including thymidylate synthase (TS), dihydropyrimidine dehydrogenase (DPD), orotate phosphoribosyltransferase (OPRT), thymidine phosphorylase (TP) and uridine phosphorylase (UP), were analyzed by the quantitative real-time reverse transcriptional PCR method. Median values of each gene were selected for cut-off values separating high and low gene expressions. In univariate analyses, low TS, high OPRT and low TP were significantly associated with a tumor shrinkage and a long survival, whereas DPD and UP gene expressions did not correlate with response and survival. Multivariate analyses revealed that independent variables were OPRT and TS for response and TS and TP for survival. When OPRT and TS were combined, a significantly increased accuracy rate of 91.5% was seen for response. Similarly, an increased hazard ratio of 10.29 was observed for survival in patients possessing low TS and low TP, compared with those with high TS or high TP. The simple combinations of 2 genes, OPRT and TS for response and TS and TP for survival, may allow identification of gastric cancer patients who will benefit from S-1 chemotherapy.

Adult↗

Pharmacogenetic impact of polymorphisms in the coding region of the UGT1A1 gene on SN-38 glucuronidation in Japanese patients with cancer.

Pharmacogenetic testing for UDP-glucuronosyltransferase (UGT) 1A1*28, a promoter variant of the UGT1A1 gene, is now carried out clinically to estimate the risk of irinotecan-associated toxicity. We studied the clinical significance of UGT1A1*6 and UGT1A1*27, two variants in exon 1 of the UGT1A1 gene that are found mainly in Asians. The study group comprised 46 Japanese patients who received various regimens of chemotherapy including irinotecan at doses from 50 to 180 mg/m(2). Pharmacogenetic relationships were explored between the UGT1A1 genotype and the ratio of the area under the plasma concentration-time curve (AUC) of the active metabolite of irinotecan (SN-38) to that of SN-38 glucuronide (SN-38G), used as a surrogate for UGT1A1 activity (AUC(SN-38)/AUC(SN-38G)). No patient was homozygous for UGT1A1*28, and none had UGT1A1*27. Two were heterozygous for UGT1A1*28. Two were homozygous and 15 heterozygous for UGT1A1*6, all of whom were wild type with respect to UGT1A1*28. Two patients were simultaneously heterozygous for UGT1A1*28 and UGT1A1*6, present on different chromosomes. The other 25 patients had none of the variants studied. The two patients simultaneously heterozygous for UGT1A1*28 and UGT1A1*6 and the two patients homozygous for UGT1A1*6 had significantly higher AUC(SN-38)/AUC(SN-38G) ratios than the others (P = 0.0039). Concurrence of UGT1A1*28 and UGT1A1*6, even when heterozygous, altered the disposition of irinotecan remarkably, potentially increasing susceptibility to toxicity. Patients homozygous for UGT1A1*6 should also be carefully monitored. UGT1A1 polymorphisms in the coding region of the UGT1A1 gene should be genotyped in addition to testing for UGT1A1*28 to more accurately predict irinotecan-related toxicity, at least in Asian patients.

Adult↗

Orotate phosphoribosyltransferase gene polymorphism predicts toxicity in patients treated with bolus 5-fluorouracil regimen.

PURPOSE: We investigated whether the determination of orotate phosphoribosyltransferase (OPRT) and thymidylate synthase (TYMS) polymorphisms could predict the toxicity of 5-fluorouracil (5-FU) in colorectal cancer patients. EXPERIMENTAL DESIGN: The determination of OPRT and TYMS genotypes were done in genomic DNA extracted from blood by PCR amplification in 69 patients treated with bolus 5-FU as adjuvant chemotherapy. Associations between these polymorphisms and toxicity were evaluated retrospectively. RESULTS: The Ala allele in OPRT Gly213Ala polymorphism and the two tandem repeats (2R) in TYMS promoter polymorphism were associated with grade 3 to 4 neutropenia and diarrhea. The multivariate logistic regression models revealed that only TYMS promoter polymorphism had an independent value to predict grade 3 to 4 neutropenia [odds ratio, 19.2 for patients with the 2R allele compared with patients with homozygous with the three repeat (3R) alleles], whereas both OPRT and TYMS promoter polymorphisms were independent predictive factors for grade 3 to 4 diarrhea (odds ratio, 13.3 for patients with the Ala allele compared with patients in the Gly/Gly genotype and 11.1 for patients with the 2R allele compared with patients in the 3R/3R genotype). A significant difference was observed in the time to onset of severe toxicity, defined as grade 4 neutropenia and/or grade 3 to 4 gastrointestinal toxicities according to OPRT and TYMS promoter polymorphisms. CONCLUSION: OPRT Gly213Ala polymorphism seems to be a useful marker for predicting toxicity to bolus 5-FU chemotherapy. Prospective translational treatment trials including larger number of patients are needed to confirm our results.

Adult↗

Gene expression of ferredoxin reductase predicts outcome in patients with metastatic colorectal cancer treated by 5-fluorouracil plus leucovorin.

PURPOSE: Ferredoxin reductase (FDXR) is a putative contributor to p53-mediated apoptosis from 5-fluorouracil (5-FU) through the generation of oxidative stress in the mitochondria. However, the influence of FDXR gene expression levels on the outcome of 5-FU chemotherapy has been relatively little studied. The aim of this study is to investigate the association between FDXR gene expressions and the clinical outcome when treated by 5-FU chemotherapy, as well as the correlation of FDXR gene expressions and p53 mutation. METHODS: Pre-chemotherapeutic fresh frozen samples of 33 patients with metastatic colorectal cancer, who received bolus 5-FU and leucovorin (LV) as first line chemotherapy, were studied. FDXR gene expression and p53 mutation were evaluated by real-time RT-PCR and direct sequencing, respectively. RESULTS: FDXR gene expression was significantly higher in responding tumors compared with non-responding ones (P=0.0379). Patients with FDXR values above the cutoff value of 13.52 had a statistically longer survival than those with FDXR gene expressions below the cutoff value (P=0.0148). The 9 tumors with wild-type p53 had statistically higher FDXR gene expressions than the 14 tumors with mutant-type p53 which had sequence alterations within the "hot spot" codons, the L2-L3 loops, or frameshift (P=0.0463). CONCLUSIONS: FDXR gene expression did not affect clinical outcome in patients with wild-type p53 tumors, whereas, among patients with p53 mutant-type tumors, patients with tumors with low FDXR gene expression had a worse outcome than those with a high FDXR gene expression (P=0.0200). FDXR gene expression, which is regulated at least in part by p53, is associated with both response and survival when metastatic colorectal cancer is treated with 5-FU plus LV. In addition, analysis of p53 mutation combined with FDXR gene expression might be useful in estimating the outcome in 5-FU-treated patients.

Adult↗

Pharmacokinetics and pharmacodynamics of protein-unbound docetaxel in cancer patients.

Alpha(1)-acid glycoprotein, a plasma protein that binds docetaxel, is a significant determinant of the clearance and activity of docetaxel, but its serum levels in cancer patients are variable. This emphasizes the importance of investigating the pharmacokinetics of unbound drug rather than total drug in the plasma. In the present study, the pharmacokinetics and pharmacodynamics of unbound docetaxel were investigated in cancer patients. Docetaxel was infused over a 1-h period in 69 patients. The concentration of unbound docetaxel was measured in the plasma ultrafiltrate at the end of infusion and the unbound fraction (fu) was calculated. The pharmacokinetics of total docetaxel in the plasma was investigated. The area under the concentration-time curve (AUC) of unbound docetaxel was calculated by multiplying fu by the AUC of total docetaxel. The peak concentration at the end of infusion (Cmax) and AUC of total and unbound drug were compared between patients who did or did not experience grade 4 neutropenia. The median of fu was 4.0%, ranging from 1.2 to 22.6% (5-95% percentile; 1.4-10.5%). Grade 4 neutropenia was observed in 24 patients. Although Cmax and AUC of total drug were not different in patients with or without grade 4 neutropenia, patients who experienced grade 4 neutropenia had significantly greater Cmax (92.3 vs 63.3 ng/mL, P=0.01) and AUC (0.137 vs 0.104 microgxh/mL, P=0.05) of unbound docetaxel. In a logistic regression analysis, the unbound Cmax and alpha1-acid glycoprotein were determinants of grade 4 neutropenia. Pharmacokinetics of unbound drug rather than total drug is a better predictor of neutropenia for docetaxel.

Adult↗

Novel single nucleotide polymorphism of UGT1A7 gene in Japanese.

We sequenced exon 1 of the UDP-glucuronosyltransferase (UGT) 1A7 gene from 52 Japanese cancer patients. Four single nucleotide polymorphisms (SNPs) were found. Three of them caused UGT1A7*2 and UGT1A7*3. A novel SNP (98973G>C) causing amino acid substitution (Ser141Cys) was found. The sequence is as follows: SNP, 050824FujitaK002; Gene Name, UGT1A7; Accession Number, AF297093; Length, 25 bases; 5'-TAAAGGAGAGTTG/CTTTTGATGCAGT-3'. One out of 52 cancer patients was heterozygous for the variant allele, resulting in the allele frequency of 0.96%. The patient did not possess UGT1A7*2 or UGT1A7*3.

Alleles↗

Novel single nucleotide polymorphism of UGT1A9 gene in Japanese.

We sequenced from 5'-franking region to intron 1 (to 337 bp downstream from exon 1) of the UDP-glucuronosyltransferase (UGT) 1A9 gene prepared from 55 Japanese cancer patients. Seven single nucleotide polymorphisms (SNPs) were found. Two of them were UGT1A9 -118(T)n (n=10) and UGT1A9*5, and four were reported SNPs in intron 1 of UGT1A9 gene (89540C>T, 89549G>A, 89616T>A and 89710A>C). A novel SNP (89587T>C) was found. The sequence is as follows: SNP, 050824FujitaK001; Gene Name, UGT1A9; Accession Number, AF297093; Length, 25 bases; 5'-CCTTCTTGAAGAT/CATGTATTTATAA-3'. Two patients were heterozygous for the mutant allele, resulting in the allele frequency of 1.82%.

Alleles↗

Gefitinib (Iressa) inhibits the CYP3A4-mediated formation of 7-ethyl-10-(4-amino-1-piperidino)carbonyloxycamptothecin but activates that of 7-ethyl-10-[4-N-(5-aminopentanoic acid)-1-piperidino]carbonyloxycamptothecin from irinotecan.

Gefitinib (Iressa) is an anticancer drug that selectively inhibits tyrosine kinases of epidermal growth factor receptor. Gefitinib might affect CYP3A4-mediated metabolism, since the drug is a substrate of human CYP3A. In this study, we evaluated the effects of gefitinib on drug metabolism catalyzed by human CYP3A4. The effects of gefitinib on the CYP3A4-mediated formation of NPC (7-ethyl-10-(4-amino-1-piperidino)carbonyloxycamptothecin) and that of APC (7-ethyl-10-[4-N-(5-aminopentanoic acid)-1-piperidino]carbonyloxycamptothecin) from irinotecan were examined with the use of human liver and small intestinal microsomes. Gefitinib inhibited the formation of NPC in liver and small intestinal microsomes. The apparent intrinsic metabolic clearance (CL(int)) in the presence of 40 microM gefitinib was equivalent to about 26% of control in liver microsomes and 45% of control in small intestinal microsomes. Gefitinib stimulated the formation of APC by CYP3A4. CL(int) in the presence of 20 microM gefitinib with human liver microsomes was about 1.9 times higher than control. In human small intestinal microsomes, APC formation was enhanced by the addition of gefitinib at concentrations 20 microM or higher. CL(int) in the presence of 40 microM gefitinib was 2.8 times higher than control. Thus, we discovered that gefitinib inhibited the formation of NPC but stimulated the formation of APC from irinotecan.

Camptothecin↗

Pharmacokinetic and pharmacodynamic comparison of fluoropyrimidine derivatives, capecitabine and 5'-deoxy-5-fluorouridine (5'-DFUR).

PURPOSE: Capecitabine is a three-step prodrug that was rationally designed to be a more effective and safer alternative to its intermediate metabolite, 5'-deoxy-5-fluorouridine (5'-DFUR). We compared the pharmacokinetics/pharmacodynamics of these drugs in metastatic breast cancer patients. METHODS: Six patients received oral capecitabine at 1657 mg/m2 twice daily and 17 received 5'-DFUR at 400 mg three times daily. Both drugs were administered for 21 days followed by a 7-day rest. RESULTS: Median daily 5'-DFUR AUC was significantly higher for capecitabine than for 5'-DFUR (81.1 vs 32.6 mmol h/l; P = 0.01). Following treatment with 5'-DFUR, the median AUC and Cmax of 5'-DFUR tended to be higher in patients with a partial response (3.83 microg h/ml and 4.88 microg/ml) and stable disease (6.46 microg h/ml and 4.96 microg/ml) than in those with disease progression (2.53 microg h/ml and 1.36 microg/ml). The AUC and Cmax of 5'-DFUR was significantly related to overall survival. CONCLUSIONS: These results support the superiority of capecitabine over 5'-DFUR.

Administration, Oral↗

[Recent perspectives second-line chemotherapy for breast cancer].

The recent development of chemotherapeutic agents for breast cancer will be reviewed. The paradigm shift from CMF to anthracycline containg regimens +/- taxanes in an adjuvant setting may be considered to decide the sequence of recommended chemotherapy for metastatic breast cancer. Recurrent breast cancer patients who never have undergone anthracycline-containing regimens should be treated with anthracycline regimens. Patients who have already received only an anthracycline-containing regimen in adjuvant therapy will be treated with taxane with or without capecitabine. For patients already having received both anthracycline and taxanes, capecitabine monotherapy will be indicated as a first-line treatment. Physicians will choose the best treatment option among chemotherapeutic agents for patients with distant metastasis.

Anthracyclines↗

Thymidylate synthase and dihydropyrimidine dehydrogenase gene expression in relation to differentiation of gastric cancer.

Thymidylate synthase (TS) and dihydropyrimidine dehydrogenase (DPD) are important enzymes of DNA de novo synthesis and the salvage pathway in cancer cells, respectively. Intratumoral TS and DPD gene expressions were evaluated to determine the correlation between the expression of the 2 genes in both normal stromal tissues and tissues with different degrees of malignant differentiation in primary gastric cancer. The study population consisted of 78 consecutive patients with advanced gastric cancer who underwent surgical treatment. Laser-captured microdissection of malignant or normal stromal tissues was performed in formalin-fixed, paraffin-embedded specimens. After extraction of RNA, TS and DPD gene expressions were measured by the real-time reverse transcriptional PCR method. Apart from degree of differentiation, TS and DPD in malignant tissue showed no correlation with clinicopathologic factors. TS in malignant tissue was higher in differentiated type cases than undifferentiated type cases (p < 0.01). However, DPD in malignant tissue of undifferentiated type cases was statistically higher than that of differentiated type cases (p < 0.05). In normal stromal tissue, neither TS nor DPD had any correlation with clinicopathologic factors. TS in malignant tissue was statistically higher than in normal stromal tissue in both differentiated and undifferentiated types (p < 0.0001). DPD in differentiated type malignant tissue was statistically lower than in normal stromal tissue (p < 0.001), but no difference was seen in undifferentiated type cases. TS and DPD gene expressions in primary gastric cancer differ according to degree of differentiation and between malignant and normal stromal tissue.

Adult↗

Acute gefitinib-induced pneumonitis.

A 60-year-old woman with non-small cell lung cancer was treated with gefitinib and developed acute pneumonitis on the third day. Pulmonary damage and/or interstitial lung disease (ILD) related to gefitinib was diagnosed clinically and radiographically. Despite the immediate withdrawal of gefitinib and the administration of high-dose steroid, the patient did not fully recover and finally died of respiratory failure on day 22 after gefitinib had commenced. This case cautions us that careful monitoring provides no guarantee of safeguarding patients against ILD caused by gefitinib. We should make the decision to treat patients with gefitinib very carefully until we can elucidate which patients are at high risk and which patients are likely to have a response to this drug.

Acute Disease↗

Pharmacokinetics of capecitabine (Xeloda) in Japanese and Caucasian patients with breast cancer.

BACKGROUND: Capecitabine (Xeloda) is a novel, oral fluoropyrimidine carbamate rationally designed to generate 5-fluorouracil (5-FU) preferentially in tumor tissue via a three-step enzymatic cascade. PURPOSE: The objective of this study was to compare the pharmacokinetics of capecitabine and its metabolites in Japanese and Caucasian cancer patients. METHODS: The study included 20 Japanese and 24 Caucasian patients with breast cancer. All patients received oral capecitabine 825 mg/m(2) twice daily for 14 days, except for study day 1 when only the morning dose was administered. On study days 1 and 14, blood and urine samples were collected after administration of the first dose and at steady state for the evaluation of the pharmacokinetics of capecitabine and its metabolites. The primary pharmacokinetic parameter was AUC(0-infinity ) of 5'-deoxy-5-fluorouridine (5'-DFUR) on day 14. The pharmacokinetic parameters in Japanese and Caucasian patients were compared using an ANOVA with calculation of the 90% confidence interval (CI) for the ratio of the geometric means. RESULTS: Statistical analysis showed equivalence in the AUC of 5'-DFUR on day 14 with a ratio of 1.01 (90% CI 0.85-1.21). Similarly, no relevant influence of race on the pharmacokinetics of capecitabine, 5'-deoxy-5-fluorocytidine (5'-DFCR), or 5-FU was observed. Systemic exposure to alpha-fluoro-beta-alanine (FBAL) was higher in Caucasian than in Japanese patients. On study day 14, both the AUC and the maximum plasma concentration (C(max)) of FBAL were increased by 47% and 33% in Caucasian patients and Japanese patients, respectively. CONCLUSIONS: No clinically relevant differences in the pharmacokinetics of capecitabine and its key metabolites 5'-DFUR, 5'-DFCR, and 5-FU were found between Japanese and Caucasian patients. Plasma concentrations of FBAL were higher in Caucasian than in Japanese patients but this difference is not clinically relevant as FBAL has no antiproliferative activity and systemic exposure to FBAL does not correlate with the tolerability of capecitabine.

Adult↗

Phase II study of concurrent administration of doxorubicin and docetaxel as first-line chemotherapy for metastatic breast cancer.

OBJECTIVE: To evaluate the efficacy and toxicity of concurrent administration of doxorubicin and docetaxel, without prophylactic use of granulocyte colony-stimulating factor, as first-line chemotherapy in patients with metastatic breast cancer (MBC). METHODS: This multi-institutional study enrolled 40 women; 37 were assessable for efficacy and all 40 patients were evaluated for toxicity. Treatment consisted of 50 mg/m(2) doxorubicin and 60 mg/m(2) docetaxel on day 1 every 3-4 weeks. RESULTS: Patients received a total of 251 cycles of chemotherapy (median, 5 cycles; range, 1-13 cycles). Of the 37 patients assessable for efficacy, 2 had a complete response and 24 had partial responses, which accounted for a 70% objective response rate (95% confidence interval, 53-84%). The median time to treatment failure was 30.1 weeks (range, 3.3-80.7 weeks). Grade 4 neutropenia was observed in 88% of patients and was the most frequent haematological toxicity. Febrile neutropenia was seen in 40% of patients, but no severe infections were observed. Non-haematological toxicity was generally tolerable. There were 2 grade 4 adverse events, which included 1 bleeding duodenal ulcer and 1 hypersensitivity reaction, but grade 3 episodes were infrequent. None of the patients developed congestive heart failure or asymptomatic decrease of left ventricular ejection fraction to less than 50%. Fluid retention syndrome <or= grade 2 was observed in 25% of patients at a median cumulative dose of docetaxel of 270 mg/m(2). CONCLUSION: Concurrent administration of 50 mg/m(2) doxorubicin and 60 mg/m(2) docetaxel is active with a manageable toxicity profile as first-line chemotherapy for MBC.

Adult↗

[Rationale for Herceptin in the clinical use].

The human epidermal growth factor receptor-2(HER2) is overexpressed/amplified in a number of cancers. HER2 is implicated in disease initiation and progression and associated with poor prognosis. Trastuzumab(Herceptin) is a recombinant DNA-derived humanized anti-HER2 monoclonal antibody that selectively binds with high affinity to extra-cellular domain. In vitro assay, trastuzumab has been shown to inhibit the proliferation of human tumor cells that overexpressed HER2 and to be a mediator of antibody-dependent cellular toxicity. Clinical trials have demonstrated that it is effective as both single and combination with chemotherapeutic agent in recurrent and metastatic breast cancer patients who's tumor tissue are overexpressed HER2. The incidence of severe adverse events were low but the occurrence of cardiac toxicity was unexpectedly high if trastuzumab was combined with anthracycline containing chemotherapy. The further studies are underway to assess the role of trastuzumab in combination chemotherapy, adjuvant chemotherapy and other type of tumors.

Animals↗