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Dietmar Schmidt

Publications and source records attributed to Dietmar Schmidt.

12 recordsLinked to original sources

Synthesis of the bis-potassium salts of 5-hydroxy-3-oxopent-4-enoic acids and their use for the efficient preparation of 4-hydroxy-2H-pyran-2-ones and other heterocycles.

5-Hydroxy-3-oxopent-4-enoic acid esters can be efficiently transformed into the stable bis-potassium salts of the corresponding 5-hydroxy-3-oxopent-4-enoic acids, from which the sensitive acids are released in situ, the latter being converted into substituted 4-hydroxy-2H-pyran-2-ones, pyrazoles and isoxazoles under mild conditions; the efficiency of this method is demonstrated by the first synthesis of two naturally occurring pyrones.

Acids↗

Chemotherapy may be more effective in highly proliferative ovarian carcinomas--a translational research subprotocol of a prospective randomized phase III study (AGO-OVAR 3 protocol).

OBJECTIVE: Proliferative activity (PA) may be an indicator of a neoplasm's malignant potential, and it has been described as a prognostic factor in different malignant tumors. It was our aim to study the prognostic significance of PA defined by Ki-S5 and Ki-S2 immunohistochemical staining in a large homogeneously treated cohort with primary advanced-stage ovarian carcinomas. METHODS: Immunohistochemical detection of PA was performed using monoclonal Ki-S5 and Ki-S2 antibodies and standard immunostaining protocols. Kaplan-Meier survival analysis and Cox regression multivariate analysis were performed. RESULTS: High Ki-S5 PA was associated with a better prognosis. This finding was statistically significant after univariate and multivariate analysis. A similar trend was found in the subgroup of completely debulked patients. No prognostic effect of Ki-S2 PA could be detected in the present study. CONCLUSION: High Ki-S5 PA is an indicator of a more favourable prognosis in patients with advanced ovarian carcinomas. Antiproliferative chemotherapy may be more effective in tumors which are highly proliferative, possibly due to an increased chemosensitivity.

Aged↗

Smad4 deficiency in cervical carcinoma cells.

Squamous cell carcinoma of the uterine cervix is one of the most frequent cancers affecting women worldwide. Carcinomas arise from cervical intraepithelial lesions, in which infection with high-risk human papillomavirus types has led to deregulated growth control through the actions of the viral E6 and E7 oncoproteins. The molecular mechanisms underlying progression to invasive tumor growth are poorly understood. One important feature, however, is the escape from growth inhibition by transforming growth factor beta (TGF-beta). Loss of chromosomal arm 18q is among the most frequent cytogenetic alterations in cervical cancers and has been associated with poor prognosis. Since the TGF-beta response is mediated by Smad proteins and the tumor suppressor gene Smad4 resides at 18q21, we have analysed the Smad4 gene for cervical cancer-associated alterations in cell lines and primary carcinomas. Here, we report Smad4 deficiency in four out of 13 cervical cancer cell lines which is due to an intronic rearrangement or deletions of 3' exons. All cell lines, however, showed either absent or moderate responsiveness to TGF-beta irrespective of their Smad4 status. In 41 primary squamous cervical carcinomas analysed, 10 samples showed loss of Smad4 protein expression and 26 samples a reduced expression. Altogether, our results strongly suggest that Smad4 gene alterations are involved in cervical carcinogenesis.

Base Sequence↗

Survival benefit for patients with advanced-stage transitional cell carcinomas vs. other subtypes of ovarian carcinoma after chemotherapy with platinum and paclitaxel.

OBJECTIVE: Transitional cell carcinoma (TCC) of the ovary is a less well recognized histological type of ovarian carcinoma resembling TCC of the urinary bladder. A better prognosis due to a better chemosensitivity of ovarian TCC has been suggested. It was the aim of the present retrospective study to compare incidence and outcome of patients with TCCs and other subtypes of ovarian carcinoma from a large homogeneous collective of patients with primary advanced-stage ovarian carcinoma. METHODS: H and E-stained sections from a total of 302 cases from a prospective randomized, multi-center, phase III study of patients with ovarian cancer, FIGO-stages IIB-IV, comparing cisplatin plus paclitaxel (PT) with paclitaxel plus carboplatin (TC) were available for histological retyping of ovarian carcinomas applying current WHO criteria. Kaplan-Meier survival analysis was performed. RESULTS: 16 of 302 tumors (5.3%) were diagnosed as TCC. Only 1 of the 16 TCCs had been previously diagnosed as such by referring pathologists. TCCs were associated with smaller preoperative extraovarian tumor and with smaller postoperative residual tumor. 5-year survival of patients with TCC was 57% as compared to 31% for patients with ovarian carcinomas of other types (P = 0.03). CONCLUSION: TCC of the ovary seems to be a less well recognized entity. In the current series, TCCs had a significantly better prognosis as compared to all other types of ovarian carcinomas after standardized chemotherapy. A propensity for micronodular rather than macronodular extraovarian spread and better surgical resectability of TCC might contribute to the survival benefit.

Aged↗

In vivo electrophysiological effects of a selective slow delayed-rectifier potassium channel blocker in anesthetized dogs: potential insights into class III actions.

OBJECTIVES: This study evaluated the in vivo electrophysiological effects of a highly selective slow delayed-rectifier K+-current blocker, HMR 1556, to gain insights into the consequences of selectively inhibiting the slow delayed-rectifier current in vivo. METHODS: Atrial and ventricular effective refractory periods, sinus node recovery time, Wenckebach cycle-length, atrial fibrillation duration and electrocardiographic intervals were measured before and after intravenous HMR 1556. RESULTS: HMR 1556 increased atrial and ventricular refractory periods (e.g. by 6 +/- 4% and 27 +/- 6% at cycle lengths of 360 and 400 ms, respectively), QT intervals and sinus-node recovery times. Beta-adrenoceptor blockade with nadolol abolished all effects except those on ventricular refractoriness and changed positive use-dependent effects on refractoriness to reverse use-dependent ones. In the presence of dofetilide to block rapid delayed-rectifier current, HMR 1556 effects were potentiated (e.g. atrial and ventricular refractory periods increased by 26 +/- 3% and 34 +/- 3% at cycle lengths of 360 and 400 ms, respectively). HMR 1556 reduced vagal atrial fibrillation duration from 1077 +/- 81 to 471 +/- 38 s, an effect abolished by nadolol and greatly potentiated by dofetilide (duration 77 +/- 30 s). HMR 1556 increased Wenckebach cycle length only in the presence of dofetilide. CONCLUSIONS: Slowed delayed-rectifier current inhibition affects atrial repolarization, sinus node function and atrial fibrillation in vivo, but only in the presence of intact beta-adrenergic tone, and delays ventricular repolarization even when beta-adrenoceptors are blocked. The slow delayed-rectifier current is particularly important when rapid delayed-rectifier current is suppressed, illustrating the importance of repolarization reserve.

Adrenergic beta-Antagonists↗

Molecular analysis of endometrial hyperplasia in HNPCC-suspicious patients may predict progression to endometrial carcinoma.

Women predisposed to hereditary nonpolyposis colorectal cancer are at high risk of developing endometrial carcinoma at a young age. Hereditary nonpolyposis colorectal cancer-associated endometrial carcinomas are of the endometrioid type, usually arise from complex atypical hyperplasia, and often show microsatellite instability. To identify occult hereditary nonpolyposis colorectal cancer individuals among endometrial carcinoma patients, we examined complex atypical hyperplasias and endometrial carcinomas of 60 women < or =50 years of age (mean age: 35.7 years) using microsatellite instability, immunohistochemistry, and DNA sequence analysis. Three patient groups were recruited: group 1, patients with complex atypical hyperplasia exclusively (n = 27); group 2, patients with complex atypical hyperplasia and synchronous or metachronous endometrial carcinoma (n = 15); group 3, patients with endometrial carcinoma only (n = 18). Overall, 13 of 33 endometrial carcinomas (39%) displayed high-level microsatellite instability. None of the complex atypical hyperplasias in group 1 had high-level microsatellite instability or loss of hMLH1/hMSH2 protein expression. In group 2 patients, 33% of complex atypical hyperplasias and 53% of endometrial carcinomas had high-level microsatellite instability. Loss of hMSH2 protein expression was found in six endometrial carcinoma patients, five of them with verified hMSH2 germline mutations, including four patients with high-level microsatellite instability in complex atypical hyperplasia. Among group 3 patients, 28% of endometrial carcinomas displayed high-level microsatellite instability; three of those five endometrial carcinomas were from patients with multiple extrauterine hereditary nonpolyposis colorectal cancer-associated tumors. We conclude that young women (< or =50 years of age) with concurrent complex atypical hyperplasia and multiple hereditary nonpolyposis colorectal cancer-associated carcinomas are at risk of developing high-level microsatellite instability endometrial carcinoma. Combined microsatellite instability and immunohistochemistry analysis allows the identification of a high proportion of hereditary nonpolyposis colorectal cancer patients among young women with endometrial carcinoma and complex atypical hyperplasia. All complex atypical hyperplasias with high-level microsatellite instability progressed to endometrial carcinoma. Only one third of the complex atypical hyperplasias with microsatellite stability progressed to high-level microsatellite instability endometrial carcinoma, while seven complex atypical hyperplasias progressed to microsatellite stability endometrial carcinoma. Microsatellite analysis of complex atypical hyperplasia in young patients may therefore be a useful prognostic marker for predicting possible progression to high-level microsatellite instability endometrial carcinomas.

Adenocarcinoma↗

Combined array comparative genomic hybridization and tissue microarray analysis suggest PAK1 at 11q13.5-q14 as a critical oncogene target in ovarian carcinoma.

Amplification of chromosomal regions leads to an increase of DNA copy numbers and expression of oncogenes in many human tumors. The identification of tumor-specific oncogene targets has potential diagnostic and therapeutic implications. To identify distinct spectra of oncogenic alterations in ovarian carcinoma, metaphase comparative genomic hybridization (mCGH), array CGH (aCGH), and ovarian tumor tissue microarrays were used in this study. Twenty-six primary ovarian carcinomas and three ovarian carcinoma cell lines were analyzed by mCGH. Frequent chromosomal overrepresentation was observed on 2q (31%), 3q (38%), 5p (38%), 8q (52%), 11q (21%), 12p (21%), 17q (21%), and 20q (52%). The role of oncogenes residing in gained chromosomal loci was determined by aCGH with 59 genetic loci commonly amplified in human tumors. DNA copy number gains were most frequently observed for PIK3CA on 3q (66%), PAK1 on 11q (59%), KRAS2 on 12p (55%), and STK15 on 20q (55%). The 11q13-q14 amplicon, represented by six oncogenes (CCND1, FGF4, FGF3, EMS1, GARP, and PAK1) revealed preferential gene copy number gains of PAK1, which is located at 11q13.5-q14. Amplification and protein expression status of both PAK1 and CCND1 were further examined by fluorescence in situ hybridization and immunohistochemistry using a tissue microarray consisting of 268 primary ovarian tumors. PAK1 copy number gains were observed in 30% of the ovarian carcinomas and PAK1 protein was expressed in 85% of the tumors. PAK1 gains were associated with high grade (P < 0.05). In contrast, CCND1 gene alterations and protein expression were less frequent (10.6% and 25%, respectively), suggesting that the critical oncogene target of amplicon 11q13-14 lies distal to CCND1. This study demonstrates that aCGH facilitates further characterization of oncogene candidates residing in amplicons defined by mCGH.

Carcinoma↗

Prolonged blood glucose reduction in mrp-2 deficient rats (GY/TR(-)) by the glucose-6-phosphate translocase inhibitor S 3025.

Chlorogenic acid derivatives are potent inhibitors of hepatic glucose production by inhibition of the glucose-6-phosphate translocase component of the hepatic glucose-6-phosphatase system. The pharmacological proof of concept was clearly demonstrated during i.v. infusion of potent derivatives (S 4048, S 3483) in rats. However, the blood glucose lowering effect of S 4048 after bolus i.v. injection lasted only 60-90 min. Plasma clearance of S 4048 was very high, and the parent compound was rapidly and efficiently excreted into the bile of Wistar and GY/TR(-) rats, indicating that mrp-2 was not involved in this hepatobiliary elimination process. About 72% of the total administered radioactivity appeared in the bile within 20 min after i.v. bolus injection of the radiolabeled analogue [(3)H]S 1743 in a Wistar rat. However, in GY/TR(-) rats the dicarboxylic analogue of S 4048, S 3025, was cleared from the plasma less rapidly than its parent compound and its biliary elimination was comparatively low. In contrast, S 3025 exhibited comparable pharmacokinetics and biliary elimination profile as S 4048 in Wistar rats, suggesting that biliary elimination of S 3025 is facilitated by mrp-2, functionally absent in GY/TR(-) rats. Targeting to mrp-2 resulted in a significantly prolonged reduction of blood glucose levels in GY/TR(-) rats after i.v. bolus administration of S 3025.

Animals↗

p16INK4a immunohistochemistry improves interobserver agreement in the diagnosis of cervical intraepithelial neoplasia.

It has been repeatedly shown that there is a substantial lack of interobserver reproducibility in the histologic diagnosis of cervical intraepithelial neoplasia (CIN), which might be improved by a more specific diagnostic biomarker. Cervical cancer and CIN, but not other cervical epithelia, express high levels of the cyclin-dependent kinase inhibitor p16, suggesting that staining for this marker could help to more precisely identify CIN in tissue sections and therefore reduce variation in interpretation of cervical lesions. To test this hypothesis, 194 cervical cone biopsy samples were selected from a routine histopathology laboratory. Two consecutive sections from each biopsy were stained with hematoxylin and eosin and with a p16 -specific monoclonal antibody, respectively. Five experienced cervical pathologists examined the slides. The agreement in the diagnosis between pairs or groups of observers was calculated by kappa statistics. Significant discrepancies were observed in the diagnostic interpretation of hematoxylin and eosin-stained slides, particularly for low-grade lesions (kappa value 0.60 [95% confidence interval 0.58-0.63]). There was significantly better agreement in the interpretation of p16 expression (kappa value 0.91 [95% confidence interval 0.84-0.99]). Expression of p16 was restricted to CIN 2/CIN 3, CIN 1 associated with high-risk human papillomavirus, or cervical cancer. p16 immunostaining allowed precise identification of even small CIN or cervical cancer lesions in biopsy sections and helped to reduce interobserver variation in the histopathologic interpretation of cervical biopsy specimens. Thus, p16 immunohistochemistry can reduce false-negative and false-positive biopsy interpretation and thereby significantly improve cervical (pre)-cancer diagnosis.

Biomarkers, Tumor↗