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Biomedical subjects

Yoshimasa Inoue

Publications and source records attributed to Yoshimasa Inoue.

At least 19 recordsLinked to original sources

Terbinafine increases the plasma concentration of paroxetine after a single oral administration of paroxetine in healthy subjects.

OBJECTIVE: Paroxetine is believed to be a substrate of CYP2D6. However, no information was available indicating drug interaction between paroxetine and inhibitors of CYP2D6. The aim of this study was to examine the effects of terbinafine, a potent inhibitor of CYP2D6, on pharmacokinetics of paroxetine. METHODS: Two 6-day courses of either a daily 150-mg of terbinafine or a placebo, with at least a 4-week washout period, were conducted. Twelve volunteers took a single oral 20-mg dose of paroxetine on day 6 of both courses. Plasma concentrations of paroxetine were monitored up to 48 h after dosing. RESULTS: Compared with the placebo, terbinafine treatment significantly increased the peak plasma concentration (C(max)) of paroxetine, by 1.9-fold (6.4 +/- 2.4 versus 12.1 +/- 2.9 ng/ml, p < 0.001), and the area under the plasma concentration-time curve from zero to 48 h [AUC (0-48)] of paroxetine by 2.5-fold (127 +/- 67 vs 318 +/- 102 ng/ml, p < 0.001). Elimination half-life differed significantly (15.3 +/- 2.4 vs 22.7 +/- 8.8 h, p < 0.05), although the magnitude of alteration (1.4-fold) was smaller than C(max )or AUC. CONCLUSION: The present study demonstrated that the metabolism of paroxetine after a single oral dose was inhibited by terbinafine, suggesting that inhibition of CYP2D6 activity may lead to a change in the pharmacokinetics of paroxetine. However, further study is required to confirm this phenomenon at steady state.

Administration, Oral↗

Clinical evaluation of chemosensitivity testing for patients with unresectable non-small cell lung cancer (NSCLC) using collagen gel droplet embedded culture drug sensitivity test (CD-DST).

PURPOSE: In the present study, we prospectively evaluated the clinical feasibility and efficacy of collagen gel droplet embedded culture drug sensitivity test (CD-DST) in unresectable non-small cell lung cancer (NSCLC) without previous treatment. EXPERIMENTAL DESIGN: Eighty patients with unresectable NSCLC, aged less than 81 years old, PS 0-1, and with evaluable tumor lesions, entered the study. If the patient had CD-DST active drugs, more than three cycles of chemotherapy containing these drugs were administered. If the patient did not have CD-DST active drugs, the patient could choose any treatment including best supportive care. RESULTS: Of the 80 patients in this study, CD-DST yielded results successfully in 49 patients (61.3%). CD-DST active drugs were present in 22 patients, and significantly more female patients had in vitro active anticancer agents than male (P=0.0008). All of the patients with CD-DST active agents received chemotherapy including these agents. In these patients, the response rate was 72.7%, and median survival was 15.0 months. In the patients without CD-DST active agents, 11 patients received standard, empirical chemotherapy. In these patients, response rate was 0%, and median survival was 6.0 months. CONCLUSIONS: The results show that CD-DST is capable of selecting the responders and the respective optimal regimens, and also delineating the patients less likely benefit from treatment.

Adult↗

Effects of caffeine on the kinetics of fluvoxamine and its major metabolite in plasma after a single oral dose of the drug.

The effects of caffeine on the kinetics of fluvoxamine (FLV) and its major metabolite fluvoxamino acid (FLA) in plasma, after a single oral dose of the drug, were studied in 12 healthy male volunteers. The subjects received caffeine 300 mg/d or placebo for 11 days in a double-blind randomized crossover manner, and on the eighth day they received a single oral 50-mg dose of FLV. Blood sampling and pharmacodynamic evaluation were conducted up to 72 hours after FLV dosing. Plasma concentrations of FLV and FLA were measured by high-performance liquid chromatography. Caffeine significantly decreased the plasma concentrations at 6 time points (P<0.05) and total area under the plasma concentration-time curve (156.5+/-51.7 vs. 118.9+/-38.2 ng/h/mL, P<0.01) of FLV. Plasma concentration and pharmacokinetic parameters of FLA were not affected by caffeine. Caffeine induced no significant change in the pharmacodynamic effects of FLV. The present study suggests that caffeine slightly induces the metabolism of FLV, probably mediated by CYP1A2.

Adult↗

Determination of fluvoxamine and its metabolite fluvoxamino acid by liquid-liquid extraction and column-switching high-performance liquid chromatography.

This study describes a new simultaneous determination of fluvoxamine and fluvoxamino acid by automated column-switching high-performance liquid chromatography. The test compounds were extracted from 1.5 ml of plasma using chloroform-toluene (15:85, v/v), and the extract was injected into a hydrophilic metaacrylate polymer column for clean-up and a C18 analytical column for separation. The mobile phase for separation consisted of phosphate buffer (0.02 M, pH 4.6), acetonitrile and perchloric acid (60%) (62.4:37.5:0.1, v/v/v) and was delivered at a flow rate of 0.6 ml/min. The peak was detected using a UV detector set at 254 nm. The method was validated for the concentration range 0.8-153.6 ng/ml for fluvoxamine and 0.6-115.2 ng/ml for fluvoxamino acid, and their good linearity (r > 0.998) were confirmed. Intra-day coefficient variations (CVs) for fluvoxamine and fluvoxamino acid were less than 6.6 and 6.0%, respectively. Inter-day CVs for corresponding compounds were 6.3 and 6.5%, respectively. Relative errors ranged from -18 to 9% and mean recoveries were 96-100%. The limit of quantification was 1.2 and 0.9 ng/ml for fluvoxamine and fluvoxamino acid, respectively. This method shows successful application for pharmacokinetic studies and therapeutic drug monitoring.

Amino Acids↗

Interaction study between enoxacin and fluvoxamine.

Authors examined a possible interaction between enoxacin, an inhibitor of cytochrome P4501A2, and fluvoxamine (FLV), a substrate for this enzyme. Ten healthy male volunteers received enoxacin 200 mg/d or placebo for 11 days in a double-blind randomized crossover manner, and on the eighth day they received a single oral 50-mg dose of FLV. Blood samplings and pharmacodynamic evaluation were conducted up to 72 hours after FLV dosing. Plasma concentrations of FLV and its active metabolite fluvoxamino acid (FLA) were measured by high-performance liquid chromatography. Enoxacin significantly increased the plasma concentrations at 2 hours (placebo versus enoxacin, mean+/-SD: 4.4+/-2.4 vs 7.0+/-4.1 ng/mL, P<0.05) and 3 hours (7.4+/-2.7 vs 11.2+/-3.8 ng/mL, P<0.01) and the Cmax (10.2+/-2.9 vs 11.6+/-4.0 ng/mL, P<0.05) of FLV. Plasma concentration and pharmacokinetic parameters of FLA were not affected by enoxacin. Enoxacin significantly (P<0.05) increased the scores of the Stanford Sleepiness Scale from 0.5 to 4 hours, suggesting that enoxacin increased the sleepiness produced by FLV. The present study suggests that enoxacin slightly inhibits the metabolism of FLV, and enoxacin should be combined with FLV with caution.

Adult↗

Inhibition of the metabolism of brotizolam by erythromycin in humans: in vivo evidence for the involvement of CYP3A4 in brotizolam metabolism.

AIMS: To obtain in vivo evidence for the involvement of cytochrome P450 (CYP) 3A4 in the metabolism of brotizolam. METHODS: Fourteen healthy male volunteers received erythromycin 1200 mg day(-1) or placebo for 7 days in a double-blind randomized crossover manner. On the 6th day they received a single oral 0.5-mg dose of brotizolam, and blood samplings were performed for 24 h. RESULTS: Erythromycin treatment significantly increased the peak plasma concentration (P < 0.05), total area under the plasma concentration-time curve (P < 0.01), and elimination half-life (P < 0.01) of brotizolam. CONCLUSIONS: The present study provides in vivo evidence for the involvement of CYP3A4 in brotizolam metabolism.

Administration, Oral↗

Bcl-2 overexpression enhances in vitro sensitivity against docetaxel in non-small cell lung cancer.

Taxanes (docetaxel and paclitaxel) as well as cisplatin (CDDP) are key chemotherapeutic agents in the treatment of non-small cell lung cancer (NSCLC). Although some indicators of taxane resistance, such as beta-tubulin mutations, P-glycoprotein (P-gp) and Bcl-2, have been reported in malignant cells, the mechanisms of taxane resistance in NSCLCs have yet to be fully elucidated. We evaluated in vitro chemosensitivity to docetaxel (DOC) and CDDP in 87 surgically-resected specimens of NSCLC by collagen gel-droplet embedded culture drug sensitivity test (CD-DST). Bcl-2 and P-gp expression in these specimens were also investigated by immunohistochemistry. We examined the association between Bcl-2 and P-gp expression and in vitro chemosensitivity to DOC and CDDP. Out of the 87 NSCLCs that were examined, Bcl-2 and P-gp were expressed in 32 (36.8%) and 28 (32.2%) of the tumors, respectively. Positive Bcl-2 expression was significantly associated with enhanced DOC sensitivity in NSCLCs (p=0.007) while no apparent association was observed between DOC sensitivity and P-gp expression. Interestingly, although DOC, but not CDDP has been reported to be a substrate of P-gp, P-gp expression was significantly inversely correlated with CDDP sensitivity in pulmonary adenocarcinomas (p=0.03). Positive Bcl-2 expression may be a promising indicator in determining in vitro taxane sensitivity in NSCLCs. On the other hand, positive P-gp expression may be an indicator of enhanced in vitro resistance to CDDP in pulmonary adenocarcinomas.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

The modifier subunit of glutamate cysteine ligase relates to cisplatin resistance in human small cell lung cancer xenografts in vivo.

Glutamate cysteine ligase (GCL) plays an important role in the intracellular detoxification of cisplatin (CDDP). GCL is composed of a modifier or light chain subunit (GCLM) and a catalytic or heavy chain subunit (GCLC). Previously, we showed that the GCL subunits enhanced CDDP-resistance in non-small cell lung cancer (NSCLC) xenografts. In small cell lung cancer (SCLC), it is unclear whether the GCL subunits are essential to CDDP-resistance. We examined the gene expression of GCLM and GCLC in four human SCLC xenografts with the real-time polymerase chain reaction (PCR). An in vivo drug sensitivity test with CDDP was performed on the SCLC xenografts. CDDP-resistance was examined as the growth ratio of the relative volume of the treated xenografts to the controls (T/C%). The expression level of GCLM gene in SCLC was significantly lower than that in NSCLC (p=0.0026, Welch's t-test). One of four SCLC xenografts showed 62% of T/C and this was evaluated as CDDP-resistance, while the other three xenografts were sensitive to CDDP in vivo (Mann-Whitney U-test, p<0.01, one-sided). The expression level of the GCLM gene was significantly correlated to T/C% (Fisher's test, p=0.0289, correlations = 0.975), while the GCLC gene expression level was not associated with T/C%. These results suggest that the overexpression of GCLM is correlated with CDDP-resistance in SCLC xenografts in vivo.

Animals↗

Sensitive determination of midazolam and 1'-hydroxymidazolam in plasma by liquid-liquid extraction and column-switching liquid chromatography with ultraviolet absorbance detection and its application for measuring CYP3A activity.

This manuscript described a new sensitive determination of midazolam and its metabolite 1'-hydroxymidazolam by automated column-switching high-performance liquid chromatography. The test compounds were extracted from 2 ml of plasma using chloroform-hexane (30:70, v/v) and the extract was injected into a column I (TSK-PW precolumn, 10 microm, 35 mm x 4.6 mm i.d.) for clean-up and column II (C18 STR ODS-II analytical column (5 microm, 150 mm x 4.6 mm i.d.) for separation. The mobile phase for separation consisted of phosphate buffer (0.02 M, pH 4.6), perchloric acid (60%) and acetonitrile (57.9:0.1:42, v/v/v) and was delivered at a flow-rate of 0.6 ml/min. The peak was detected using a UV detector set at 254 nm. The method was validated for the concentration range 0.3-100 ng/ml, and good linearity (r > 0.998) was confirmed. Intra- and inter-day coefficient variations for midazolam and 1'-hydroxymidazolam were less than 8.5 and 6.1%, respectively, at the concentrations of 0.5, 5 and 50 ng/ml for the test compounds. Relative errors ranged from -14 to 6% and mean recoveries were 78-85%. The limit of quantification was 0.5 ng/ml for each compound. This method was sensitive enough for pharmacokinetic studies measuring CYP3A activity in human volunteers following an intravenous (1 mg) and a single-oral administration (2 mg) of a subtherapeutic midazolam dose.

Adult↗

G-protein inwardly rectifying potassium channel 1 (GIRK 1) gene expression correlates with tumor progression in non-small cell lung cancer.

BACKGROUND: G-protein inwardly rectifying potassium channel 1 (GIRK1) is thought to play a role in cell proliferation in cancer, and GIRK1 gene expression level may define a more aggressive phenotype. We detected GIRK1 expression in tissue specimens from patients with non-small cell lung cancers (NSCLCs) and assessed their clinical characteristics. METHODS: Using reverse transcription-polymerase chain reaction (RT-PCR) analyses, we quantified the expression of GIRK1 in 72 patients with NSCLCs to investigate the relationship between GIRK1 expression and clinicopathologic factors and prognosis. RESULTS: In 72 NSCLC patients, 50 (69%) samples were evaluated as having high GIRK1 gene expression, and 22 (31%) were evaluated as having low GIRK1 gene expression. GIRK1 gene expression was significantly associated with lymph node metastasis, stage (p = 0.0194 for lymph node metastasis; p = 0.0207 for stage). The overall and stage I survival rates for patients with high GIRK1 gene expressed tumors was significantly worse than for those individuals whose tumors had low GIRK1 expression (p = 0.0004 for the overall group; p = 0.0376 for stage I). CONCLUSIONS: These data indicate that GIRK1 may contribute to tumor progression and GIRK1 gene expression can serve as a useful prognostic marker in the overall and stage I NSCLCs.

Adenocarcinoma↗

Simultaneous determination of haloperidol and bromperidol and their reduced metabolites by liquid-liquid extraction and automated column-switching high-performance liquid chromatography.

This study describes a new simultaneous determination of haloperidol and bromperidol and their reduced metabolites by modification of automated column-switching high-performance liquid chromatography. The test compounds were extracted from 1ml of plasma using chloroform-hexane (30:70 (v/v)), and the extract was injected into a hydrophilic metaacrylate polymer column for clean-up and a C(18) analytical column for separation. The mobile phases consisted of phosphate buffer (0.02M, pH 4.6), perchloric acid (60%) and acetonitrile (54:1:45 (v/v)) and was delivered at a flow-rate of 0.6ml/min. The peak was detected using a UV detector set at 215nm. The method was validated for the concentration range 1-100ng/ml, and good linearity (r >0.999) was confirmed. Intra-day coefficient variations (CVs) for haloperidol, reduced haloperidol, bromperidol and reduced bromperidol were less than 2.5, 3.1, 2.4 and 2.5%, respectively. Inter-day CVs for corresponding compounds were 3.9, 5.1, 2.6 and 4.4%, respectively. Relative errors ranged from -5 to 10% and mean recoveries were 96-100%. The limit of quantification was 1.0ng/m for each compound. This method shows good specificity with respect to commonly prescribed psychotropic drugs, and it could be successfully applied for pharmacokinetic studies and therapeutic drug monitoring, particularly in patients receiving both haloperidol and bromperidol.

Antipsychotic Agents↗

Azasugar-based MMP/ADAM inhibitors as antipsoriatic agents.

As a part of synthetic studies on MMP (matrix metalloproteinase)/ADAM (a disintegrin and metalloproteinase) inhibitors, we have preliminarily communicated that azasugar-based compound 1a exhibited a potential inhibitory activity on some metalloprotease-catalyzed proteolytic reactions. To find promising candidates for the topical treatment of psoriasis, we investigated stability in aqueous solution of compound 1a and its derivative 1b and then optimized the P1' substuent (2-5). In the present study, we synthesized novel derivatives of compound 1a and evaluated their inhibitory activity toward MMP-1, -3, and -9, TACE, and HB-EGF shedding, from a viewpoint of versatility of azasugars as a functional scaffold. As a result, it was found that compound 1b demonstrated desirable inhibitory activity as an antipsoriatic agent, and some of the derivatives showed selective inhibitory activity. In addition, it was found that compound 1b exhibited a significant therapeutic effect on a mouse TPA-induced epidermal hyperplasia model. Therefore, compound 1b could become a promising candidate as a practical antipsoriatic agent.

ADAM Proteins↗

Establishment of new cloned enzyme donor immunoassays (CEDIA) for haloperidol and bromperidol.

The authors have developed and verified the precision and accuracy of new automated cloned enzyme donor immunoassays (CEDIA) for haloperidol and bromperidol, and cross-validations have been performed with conventional semiautomated EIA kits (MARKIT-M) and high-performance liquid chromatographic (HPLC) methods. The CEDIA method provides a quick (about 10 minutes) assay for haloperidol or bromperidol, requiring no serum/plasma pretreatment or predilution. The CEDIA haloperidol/bromperidol assay showed little or no cross reactivity with either their metabolites or many drugs commonly coprescribed. MARKIT-M revealed considerable cross reactivity values proportional to the spiked amounts of reduced metabolites. Precision, accuracy, recovery, and linearity testing for the CEDIA assay were all sufficient for clinical use. Significant linear correlations were found between CEDIA and HPLC in measuring haloperidol (CEDIA = 1.06 x HPLC + 0.869; n = 44, rs = 0.913, P < 0.001) and bromperidol (CEDIA = 1.06 x HPLC + 0.606; n = 56, rs = 0.914, P < 0.001) concentrations. This study has, therefore, demonstrated that the CEDIA assay has a quick run time with high precision and accuracy, and this method is a useful tool for the TDM of haloperidol or bromperidol.

Adult↗

Steady-state pharmacokinetics of a new antipsychotic agent perospirone and its active metabolite, and its relationship with prolactin response.

The authors investigated steady-state pharmacokinetics of perospirone and its active metabolite hydroxyperospirone (ID-15036) and its prolactin response in 10 schizophrenic patients receiving 16 mg twice daily. Plasma concentrations of perospirone, hydroxyperospirone, and prolactin were monitored just before and up to 12 hours after the dosing. Thereafter, the dose was decreased to 8 mg twice daily in 8 patients, and drug concentrations were determined. The geometric means of peak concentration (Css(max)), time to Css(max) (tmax), area under the plasma concentration-time curve from 0 to 12 hours [AUC (0-12)], and elimination half-life at steady state were 8.8 ng/mL, 0.8 hours, 22.0 ng x h/mL, and 1.9 hours, respectively, for perospirone, and those of Css(max), tmax, and AUC (0-12) for hydroxyperospirone were 29.4 ng/mL, 1.1 hours, and 133.7 ng x h/mL, respectively. There were no differences in dose-normalized Css(max) or AUC (0-12) perospirone and hydroxyperospirone between 16 mg/day and 32 mg/day of perospirone. Changes in prolactin concentration from 1 to 2 hours after the dosing were parallel with drug concentrations, and almost normal ranges of prolactin concentration were observed before the morning dose despite steady state. The current study indicated that perospirone is rapidly absorbed and rapidly eliminated, which influences the prolactin response. The active metabolite hydroxyperospirone may play an important role in the antipsychotic effect because the plasma concentration of this metabolite is higher than that of the parent compound.

Adult↗

Different inhibitory effect of fluvoxamine on omeprazole metabolism between CYP2C19 genotypes.

AIMS: Omeprazole is mainly metabolized by the polymorphic cytochrome P450 (CYP) 2C19. The inhibitory effect of fluvoxamine, an inhibitor of CYP2C19 as well as CYP1A2, on the metabolism of omeprazole was compared between different genotypes for CYP2C19. METHODS: Eighteen volunteers, of whom six were homozygous extensive metabolizers (EMs), six were heterozygous EMs and six were poor metabolizers (PMs) for CYP2C19, participated in the study. A randomized double-blind, placebo-controlled crossover study was performed. All subjects received two six-day courses of either daily 50 mg fluvoxamine or placebo in a randomized fashion with a single oral 40 mg dose of omeprazole on day six in both cases. Plasma concentrations of omeprazole and its metabolites, 5-hydroxyomeprazole, omeprazole sulphone, and fluvoxamine were monitored up to 8 h after the dosing. RESULTS: During placebo administration, geometric means of peak concentration (C(max)), under the plasma concentration-time curve from 0 to 8 h (AUC(0,8 h)) and elimination half-life (t(1/2)) of omeprazole were 900 ng ml(-1), 1481 ng ml(-1) h, and 0.6 h in homozygous EMs, 1648 ng ml(-1), 4225 ng ml(-1) h, and 1.1 h in heterozygous EMs, and 2991 ng ml(-1), 11537 ng ml(-1) h, and 2.8 h in PMs, respectively. Fluvoxamine treatment increased C(max) of omeprazole by 3.7-fold (95%CI, 2.4, 5.0-fold, P < 0.01) and 2.0-fold (1.4, 2.6-fold, P < 0.01), AUC(0,8 h) by 6.0-fold (3.3, 8.7-fold, P < 0.001) and 2.4-fold (1.7, 3.2-fold, P < 0.01), AUC(0, infinity ) by 6.2-fold (3.0, 9.3-fold, P < 0.01) and 2.5-fold (1.6, 3.4-fold, P < 0.001) and prolonged t((1/2)) by 2.6-fold (1.9, 3.4-fold, P < 0.001) and 1.4-fold (1.02, 1.7-fold, P < 0.05), respectively. However, no pharmacokinetic parameters were changed in PMs. The AUC(0,8 h) ratios of 5-hydroxyomeprazole to omeprazole were decreased with fluvoxamine in homozygous EMs (P < 0.05) and heterozygous EMs (P < 0.01). CONCLUSIONS: Even a low dose of fluvoxamine increased omeprazole exposure in EMs, but did not increase omeprazole exposure in PMs after a single oral dose of omeprazole. These findings confirm a potent inhibitory effect of fluvoxamine on CYP2C19 activity. The bioavailability of omeprazole might, to some extent, be increased through inhibition of P-glycoprotein during fluvoxamine treatment.

Adult↗

The subunits of glutamate cysteine ligase enhance cisplatin resistance in human non-small cell lung cancer xenografts in vivo.

Glutamate cysteine ligase (GCL) is a key enzyme in glutathione (GSH) synthesis, and is thought to play a significant role in the intracellular detoxification of anticancer drugs, especially of cisplatin (CDDP). GCL is composed of a modifier or light chain subunit (GCLM) and a catalytic or heavy chain subunit (GCLC). It was unclear whether the subunits are essential to CDDP-resistance. We examined the gene expression of GCLM and GCLC in 39 xenografts of human non-small cell lung cancer [NSCLC; 10 adenocarcinoma (Ad), 17 squamous cell carcinoma (Sq) and 12 large cell carcinoma (La)] by real-time polymerase chain reaction (PCR) with human-specific primers. Drug sensitivity to CDDP was evaluated in the 9 xenografts (4 Ad, 2 Sq and 3 La) using an in vivo drug sensitivity test. There was a significant association between the expression of GCLM and GCLC mRNA in each xenograft (Fisher's test, p<0.045). Squamous cell carcinoma xenografts significantly showed higher expression of GCLM gene than adenocarcinoma xenografts (p=0.023, t-test), while there was no significant difference in GCLC gene expression levels between each histopathological xenograft. Three of nine xenografts were sensitive to CDDP (Mann-Whitney U test, p<0.01, one-sided), while the other 6 xenografts were resistant. There was a significant relationship between drug sensitivity to CDDP and the co-overexpression of GCL subunits (chi2 test for independence, Yates' correction, p=0.014). These results suggested that the co-overexpression of GCL subunits correlated with CDDP-resistance in human NSCLC xenograft in vivo.

Animals↗

Use of 11p15 mucins as prognostic factors in small adenocarcinoma of the lung.

PURPOSE: Patients with small adenocarcinoma of the lung (SACL) generally have a good prognosis. However, some SACL cases show lymph node metastasis, with poor prognosis. The expression pattern of 11p15 mucins (clustered on the p15 arm of the chromosome 11) is known to change during carcinogenesis in lung cancer. EXPERIMENTAL DESIGN: We evaluated the expression of the 11p15 mucins (MUC2, MUC5AC, and MUC6) in 79 surgical specimens of SACL cases by immunohistochemical analysis. Lymph node metastasis was estimated by pathological staging. RESULTS: Six (7.6%) and 11 (13.9%) of the 79 SACL cases showed MUC2 and MUC6 expression, respectively. Three SACL cases showed both MUC2 and MUC6 expression, and a significant correlation was found between MUC2 and MUC6 expression (Fisher's test, P = 0.033). Six (7.6%) SACL cases showed MUC5AC expression. Five of the 6 cases with MUC2 expression and 6 of the 11 cases with MUC6 expression were had lymph node metastasis. SACL cases with MUC2 or MUC6 expression showed a significantly higher incidence of nodal metastasis than those without expression (P < 0.001 and P = 0.006, chi(2) test, respectively). There was no significant correlation between MUC5AC expression and nodal involvement in SACL, whereas three of the six cases with MUC5AC expression showed lymph node metastasis. The SACL cases with MUC2 expression had a significantly poorer prognosis than those without MUC2 expression (P = 0.011, log-rank test). CONCLUSIONS: These results suggest that 11p15 mucins MUC2 and MUC6 are related to lymph node metastasis in SACL.

Adenocarcinoma↗