Search PubMed⌕ Search

Biomedical subjects

M Untch

Publications and source records attributed to M Untch.

69 records · Page 4Linked to original sources

In vitro evaluation of the novel chemotherapeutic agents U-73,975, U-77,779, and U-80,244 in gynecologic cancer cell lines.

U-73,975 (U-73), U-77,779 (U-77), and U-80,244 (U-80) are analogs of the potent antitumor compound CC-1065. This class of drugs act as alkylating agents binding to DNA preferentially. Using the ATP-chemosensitivity assay, this study was designed to compare the potencies of U-73, U-77, and U-80 with cisplatin (DDP) or adriamycin (DXR) in 10 gynecologic cancer cell lines. The mean IC50s were: U-73, 0.173 +/- 0.115 ng/ml; U-77, 0.650 +/- 0.209 ng/ml; U-80, 3.0 +/- 3.0 ng/ml; DDP, 4.40 +/- 2.83 micrograms/ml; and DXR, 0.286 +/- 0.040 micrograms/ml. U-73 appears the most potent analog, being 10(3) to 10(4) times more cytotoxic than DDP and DXR. U-77 and U-80 were somewhat comparable, demonstrating approximately 10(2) to 10(3) greater potency than DDP and DXR. All the cervical, endometrial, and ovarian cell lines were sensitive to U-73, with decreasing sensitivity to U-77, U-80, DXR, and DDP in that order. U-73 as well as the other analogs appear promising chemotherapeutic agents.

Adenosine Triphosphate↗

Chemosensitivity to the new anthracycline pirarubicin and other chemotherapeutic agents in primary and recurrent ovarian tumors in vitro.

We analysed the in vitro sensitivity of 50 fresh gynecologic cancer specimens to the new anthracycline-analogue pirarubicin (Pira). Nine endometrial and cervical tumors were excluded from the evaluation in this study. The in vitro sensitivities of 41 ovarian cancer specimens to Pira were evaluated with the adenosine triphosphate chemosensitivity assay (ATP-CSA). The results were compared to the sensitivity of drugs used in gynecologic oncology: Adriamycin, cisplatin, and the metabolite of cyclophosphamide, 4-hydroxycyclophosphamide (4-HC). Sensitivity (S) is defined as > or = 70%, partial sensitivity as 50-69% ATP decrease compared to controls at 20% of the peak plasma concentration. In vitro response is defined as S + PS. Twenty-two primary ovarian tumors were assayed, with 77% response to Pira, 12% to Adriamycin, 29% to cisplatin, and 38% to 4-HC. In 19 recurrent ovarian tumors, Pira showed 53% response; Adriamycin, 25%; cisplatin, 8%; and 4-HC, 67%. The in vitro data are partly consistent with reported data from the literature. Pira reveals a significantly higher degree of cytotoxicity compared to the three drugs listed above. The IC50 of Pira is less than 20% of the peak plasma concentration achievable in patients and is significantly lower compared with the IC50s of other drugs. We conclude from our in vitro data that Pira is more active than Adriamycin, cisplatin, and 4-HC.

Adenosine Triphosphate↗

Comparison of U-73,975 and cisplatin cytotoxicity in fresh cervical and ovarian carcinoma specimens with the ATP-chemosensitivity assay.

U-73,975 (U-73), a closely related synthetic analogue of the antitumor agent CC-1065, acts by binding tightly in the minor groove of DNA. A comparison was made between the cytotoxicity of U-73 and cisplatin (DDP) on 11 fresh cervical and 7 fresh ovarian carcinoma specimens. The ATP-chemosensitivity assay as previously described (Sevin et al. Gynecol. Oncol. 31, 191-204, 1988) was used to determine the cytotoxic effect of U-73 and DDP. IC 50s were calculated using regression analysis. The mean IC 50s for U-73 and DDP were 519 pg/ml and 2918 ng/ml, respectively, for the cervical carcinoma specimens and 324 pg/ml and 2649 ng/ml, respectively, for the ovarian carcinoma specimens. Significance comparing U-73 and DDP for cervical and ovarian tissue was demonstrated with P < 0.001. U-73 was 4000 times as cytotoxic per unit of mass as DDP on cervical carcinoma compared to over 8000 times for ovarian carcinoma. Based on these in vitro data, U-73 appears to be a very promising antitumor agent for cervical and ovarian carcinoma.

Adenosine Triphosphate↗

Comparative evaluation of pirarubicin and adriamycin in gynecologic cancer cell lines.

Pirarubicin (PIRA) has been shown to have improved potency with less cardiac toxicity in several phase I and II clinical trials in Japan and Europe. Since Adriamycin (DXR) remains one of the most potent drugs in treatment of gynecologic cancers, this derivative has the potential to become an important chemotherapeutic agent. In this study, we compared the performance of these two drugs against a panel of 10 gynecologic cancer cell lines. The ATP chemosensitivity assays were used to determine dose-response curves. Flow cytometry was used to study cell kinetic response to both drugs. Using an IC50 value of 0.2 micrograms/ml as a cutoff for drug sensitivity, 4 cell lines, ECC1, HEC1B, BG1, and SKOV3, were considered resistant to DXR. By comparing IC50s, PIRA was 3.4 +/- 0.4 times more potent than DXR (P = 0.05). The other 6 cell lines, AN3, AE7, HEC1A, CAOV3, SKUT1B, and ME180, were considered sensitive to DXR. In this group of cell lines, PIRA was 1.6 +/- 0.3 times more potent than DXR (P = 0.5). Both PIRA and DXR elicited a spectrum of cell kinetics. By comparing the magnitude of G2 blocks at 0.1 micrograms/ml, PIRA was approximately 2-5 times more potent than DXR in SKUT1B, HEC1A, and BG1 cell lines. PIRA also displayed a reverse dose-response pattern of G2 block so that at high dose, cell cycle kinetics would mirror those of untreated controls. This observation supports the presence of a resistant tumor subpopulation and the concept of tumor heterogeneity.

Antibiotics, Antineoplastic↗

Rationale of combining radiation and interferon for the treatment of cervical cancer.

The recent surge of interest in the mechanisms of action of biomodulators, also known as biological response modifiers, offers a new avenue of approach in the treatment of cancer. The in vitro antitumor activities of these agents, such as interferons, when combined with chemo- or radiotherapy, have generated enthusiasm among clinicians for developing clinical trials. In recent years many antineoplastic agents have been investigated as neoadjuvant or adjuvant therapy for patients with cervical cancer in an attempt to improve local control and to decrease incidence of metastasis. Normal tissue tolerance limits the potential combinations of standard cytotoxic chemotherapeutic agents with radiation. Interferon used as a radiomodulator has been studied mainly for the treatment of lung cancer with promising results. In this paper we report the rationale of combining interferon and radiation for the treatment of patients with cervical cancer.

Animals↗

Contrast-enhanced MRI of the breast after limited surgery and radiation therapy.

OBJECTIVE: Posttherapeutic changes in the breast after tumorectomy (TE) and radiation therapy (RT) may mimic or obscure recurrent or new malignancies and thus interfere with conventional diagnostic studies. We investigated the enhancement of tissue during variable time intervals after therapy with contrast-enhanced MRI in 62 patients. MATERIALS AND METHODS: We report the results of 77 studies in 62 patients undergoing TE and RT. We include only those studies with at least 24 months of clinical and mammographic follow-up (n = 60) or histopathologic results (n = 17). RESULTS: Up to 9 months after therapy, differentiation between posttherapeutic changes and recurrence was frequently impossible because of the strong enhancement. Ten to 18 months after therapy, this posttherapeutic enhancement subsided slowly with some interindividual variations. After 18 months posttherapy, no significant enhancement was encountered in 30 of 32 cases. Diffuse or focal enhancement was present in all recurrent tumors and all recurrences were correctly diagnosed. Furthermore, 4 of 11 recurrences and 10 of 18 single recurrent foci were detected by MR alone, based on focal enhancement. CONCLUSION: Accordingly, contrast-enhanced MR is not recommended during the first 9 months after therapy. Nine to 18 months after therapy, it may be helpful in those two-thirds of cases where the scar does not enhance. If enhancement takes place (one-third of cases), it may represent either scar or tumor, and in such circumstances, enhanced MR is of no value. After 18 months, enhanced MRI has proven a valuable additional tool. By correctly detecting or excluding recurrent tumor, it can significantly improve diagnostic accuracy.

Breast↗

Comparative chemosensitivity profiles in three human breast cancer cell lines with the ATP-cell viability assay.

In this study the dose-response curves for doxorubicin, pirarubicin, 5-fluorouracil, 4-hydroperoxy-cyclophosphamide and taxol were obtained in three breast cancer cell lines (MCF-7, T47D and BT-20). The ATP cell viability assay was chosen to evaluate the chemosensitivity profiles and was a reproducible, practicable method to assess drug response in breast cancer cell lines. The IC50 values were calculated on the median effect principle and indicated that taxol was the most active drug tested in this study with a mean IC50 value of 0.02 microM. This in vitro effect correlated well with clinical observations in metastatic breast cancer where taxol proved to be a vary active drug. Pirarubicin was the second most active drug tested with an IC50 value 10 times less compared to that of doxorubicin. The results obtained with the ATP cell viability assay are promising, therefore further testing with drug combination chemotherapy and fresh human breast cancer tumor testing are warranted and ongoing.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Tumor-biological factors uPA and PAI-1 as stratification criteria of a multicenter adjuvant chemotherapy trial in node-negative breast cancer.

In axillary node-negative primary breast cancer, 70% of the patients will be cured by locoregional treatment alone. Therefore, adjuvant systemic therapy is only needed for those 30% of node-negative patients who will relapse after primary therapy and eventually die of metastases. Traditional histomorphological and clinical factors do not provide sufficient information to allow accurate risk group assessment in order to identify node-negative patients who might benefit from adjuvant systemic therapy. In the last decade various groups have reported a strong and statistically independent prognostic impact of the serine protease uPA (urokinase-type plasminogen activator) and its inhibitor PAI-1 (plasminogen activator inhibitor type 1) in node-negative breast cancer patients. Based on these data, a prospective multicenter therapy trial in node-negative breast cancer patients was started in Germany in June 1993, supported by the German Research Association (DFG). Axillary node-negative breast cancer patients with high levels of either or both proteolytic factors in the tumor tissue were randomized to adjuvant CMF chemotherapy versus observation only. Recruitment was continued until the end of 1998, by which time 684 patients had been enrolled. Since then, patients have been followed up in order to assess the value of uPA and PAI-1 determination as an adequate selection criterion for adjuvant chemotherapy in node-negative breast cancer patients. This paper reports on the rationale and design of this prospective multicenter clinical trial, which may have an impact on future policies in prognosis-oriented treatment strategies.

Biomarkers, Tumor↗

Tumour markers CEA and CA 15-3 as Prognostic factors in breast cancer--univariate and multivariate analysis.

Tumour markers are putative prognostic indicators for patients with breast cancer, but have not been elevated independently by multivariate analysis in a large patient number. In 550 patients with breast cancer without known metastases the levels of the serum tumour markers CEA und CA 15-3 were determined preoperatively and during follow-up. The prognostic relevance of these markers for recurrence (n = 128/487) and death of disease (n = 55/550) was evaluated in relation to established prognostic factors. In univariate analysis tumour size, lymph nodes, histological grading, age, hormone receptors, preoperative value of CEA (cut-off 2 ng/mL) and CA 15-3 (cut-off 25 U/mL) and their decrease of more than 33% within seven months after operation were significant for relapse. The results for death of disease were similar except for age. In multivariate analysis tumour size, lymph nodes and decrease of CEA > 33% (p < 0.001) were independent prognostic factors for recurrence. For overall survival tumour size, lymph nodes, histological grading and preoperative levels of CEA > or = 2 ng/mL (p = 0.038) and of CA 15-3 > or = 25 U/mL (p = 0.007) were independent prognostic factors. Pre- and postoperative values of the tumour markers CEA und CA 15-3 are strong independent prognostic factors for relapse and survival in breast cancer patients.

Analysis of Variance↗

Alkaline phosphatase isoenzymes in detection and follow up of breast cancer metastases.

Alkaline phosphatase isoenzymes in bone and liver metastases of breast cancer were determined in 637 patients and during follow up in 116 patients, by agarose gel electrophoresis. The activity of total alkaline phosphatase, gamma glutamyl transferase, CEA and CA 15-3 was also determined. The sensitivity of bone alkaline phosphatase in bone metastases detection was 39%, of electrophoresis (total alkaline phosphatase and specific isoenzymes) 48% and of enzymes and tumor markers together 85% (n = 62). For liver metastases gamma glutamyl transferase had the best sensitivity (100%, n = 19). Even though positive predictive value was only 6%, the sensitivity of liver alkaline phosphatase was 58% and of electrophoresis 94%. The determination of alkaline phosphatase isoenzymes is a non-invasive, in-expensive, reproductable and rapid method to detect progressive disease in breast cancer, especially in combination with the tumor markers CA 15-3 and CEA.

Alkaline Phosphatase↗