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Toshio Fujimoto

Publications and source records attributed to Toshio Fujimoto.

21 records · Page 2Linked to original sources

The CARD15 2936insC mutation and TLR4 896 A>G polymorphism in African Americans and risk of preterm premature rupture of membranes (PPROM).

Infection is believed to be a leading cause of preterm premature rupture of membranes (PPROM). The bacterial cell wall component, lipopolysaccharide (LPS), is thought to initiate tissue responses leading to PPROM in the setting of Gram negative infection. LPS is recognized by the innate immune system, including the proteins encoded by the CARD15 and TLR4 genes. A recently described mutation (2936insC) in CARD15 and a polymorphism in TLR4 896 A>G impair responses to LPS. The objective of this study was to determine if African Americans, who have a higher incidence of PPROM than Caucasians, have different frequencies of the mutant CARD15 allele and the TLR4 hyporesponsive variant, and if risk of PPROM is influenced by fetal carriage of these alleles. The allele frequencies for the CARD15 mutation and the TLR4 896G variant in African Americans were similar to those reported for Caucasians. There was no association between the TLR4 alleles examined and PPROM. However, the CARD15 mutation was only detected in controls and not in PPROM cases. We conclude that the CARD15 mutation and hyporesponsive TLR4 allele do not contribute to ethnic variation in the incidence of PPROM.

Adult↗

A phase I/II study of carboplatin and paclitaxel in patients with epithelial ovarian cancer.

BACKGROUND: This study was conducted to investigate the recommended dose of paclitaxel for use in combination with a fixed dose of carboplatin and to evaluate the toxicity and efficacy of carboplatin-paclitaxel combination chemotherapy in patients with epithelial ovarian cancer. METHODS: One hundred and ten patients were enrolled in the Phase I/II study and 97 patients were evaluated for further analysis, excluding 13 ineligible patients or patients with infringement of protocol: 15 patients for the Phase I and 82 for the Phase II study. In the Phase I trial, we studied dose escalation using a carboplatin dose of AUC 5 and paclitaxel levels of 150, 175 and 200 mg/m(2). The grades of toxicity of the regimen of all patients enrolled in the Phase II study (n = 82), the progression-free survival time (PFS) of optimal-debulked patients and complete responders (n = 62) and the response rate of suboptimal-debulked patients (n = 39) were investigated. RESULTS: After observing grade 4 neutropenia in four of six patients in the paclitaxel 200 mg/m(2) administration group, we chose 175 mg/m(2) as the recommended dose of paclitaxel in this regimen. At this dose, the median of PFS and response rate were 432 days (range, 19-907 days) and 66.7%, respectively. CONCLUSION: Combination chemotherapy using paclitaxel 175 mg/m(2) and carboplatin AUC 5 is very well tolerated and highly effective for the treatment of ovarian cancer.

Adult↗

A single nucleotide polymorphism in the matrix metalloproteinase-1 (MMP-1) promoter influences amnion cell MMP-1 expression and risk for preterm premature rupture of the fetal membranes.

Interstitial collagen gives fetal membranes tensile strength, and membrane rupture has been attributed to collagen degradation. A polymorphism at -1607 in the matrix metalloproteinase-1 (MMP-1) promoter (an insertion of a guanine (G)) creates a core Ets binding site and increases promoter activity. We investigated whether this polymorphism is functionally significant for MMP-1 expression in amnion cells and whether it is associated with preterm premature rupture of the membranes (PPROM). The 2G promoter had >2-fold greater activity than the 1G allele in amnion mesenchymal cells and WISH amnion cells. Phorbol 12-myristate 13-acetate (PMA) increased mesenchymal cell nuclear protein binding with greater affinity to the 2G allele. Induction of MMP-1 mRNA by PMA was significantly greater in cells with a 1G/2G or 2G/2G genotype compared with cells homozygous for the 1G allele. When treated with PMA, the 1G/2G and 2G/2G cells produced greater amounts of MMP-1 protein than 1G/1G cells. A significant association was found between fetal carriage of a 2G allele and PPROM. We conclude that the 2G allele has stronger promoter activity in amnion cells, that it confers increased responsiveness of amnion cells to stimuli that induce MMP-1, and that this polymorphism contributes to the risk of PPROM.

Amnion↗