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V Budach

Publications and source records attributed to V Budach.

At least 91 records · Page 5Linked to original sources

Drug- and radiation-induced resistance in a human neurogenic sarcoma xenografted in nude mice.

The in vivo development of radiation- and doxorubicin-induced resistance was studied in a chemosensitive and radiosensitive human neurogenic sarcoma (Essen neuroectodermal tumor line 2) xenografted in nude mice. Dose-response curves were generated for the parent tumor line, and growth delay (GD) and specific growth delay (SGD) were the study end points. An intravenous injection of doxorubicin at 10 mg/kg, the lethal dose for 10% of the study population (LD10) in nude mice, and a single dose of 12 Gy radiation were determined to be isoeffective and were thus maintained for all subsequent treatments. For the induction of resistance to both treatment modalities, regrowing tumors were transplanted into successive generations of nude mice and retreated. This procedure was repeated 13 and 9 times, respectively, for the doxorubicin and radiation treatments. The response was monitored in all passages. As compared with the parent tumor line, a 50% decrease in SGD was observed following 3.9 and 8.5 treatments with doxorubicin and radiation, respectively. Following four treatments with doxorubicin, SGD in tumors crossed over to radiation therapy declined by 50%. Radiation therapy, on the other hand, caused significant reductions in GD and SGD in tumors that were subsequently exposed to doxorubicin, but it did not induce a 50% decline in response. Overexpression of P-170-glycoprotein was not observed for either treatment modality. The data suggest that treatment with doxorubicin or radiation can potentially induce resistance to subsequent continued or crossover treatment and that this resistance develops gradually. The lack of P-170-glycoprotein over-expression in the resistant cell lines indicates the existence of alternative pathways that may lead to resistance.

Animals↗

Radiosensitivity, repair capacity, and stem cell fraction in human soft tissue tumors: an in vitro study using multicellular spheroids and the colony assay.

Radiation doses necessary to control 50% of spheroids (SCD50) were determined for five human soft tissue tumor lines after single dose and fractionated irradiation. Spheroids with 1000-1500 cells were used throughout. A similar number of cells per spheroid resulted in different sized spheroids for the respective cell lines. The parameters alpha, beta, and the number of regenerating cellular units per spheroid (SRU) were estimated from the spheroid control data using a direct fit according to the linear quadratic model assuming Poisson statistics. The number of spheroid regenerating cellular units was also determined from the growth delay at doses required for 10% spheroid control. In addition, alpha, beta, and the fraction of clonogenic cells of the five cell lines were obtained from a soft agar colony forming assay. The most precise parameter for radiation sensitivity was the SCD50, with a coefficient of variation smaller than 5%. SCD50 values ranged from 5.9 to 11.0 Gy for the five soft tissue tumor lines. Two of the five cell lines showed significantly higher alpha values and lower calculated survival fractions after 2 Gy (SF2) in the soft agar clonogenic assay than in the spheroid control assay. This points to a resistance-enhancing effect in the spheroid system. Whereas the fractions of SRU from the number of cells per spheroid, estimated from the spheroid control and growth delay assays, agreed well, no significant correlation existed between the fraction of SRU and the fraction of clonogenic cells in the soft agar colony forming assay. The alpha/beta ratios as a descriptive measure of the fractionation sensitivity of the tumor cell spheroids in the spheroid control assay corresponded well with those derived from the dose-cell survival data using a soft agar colony forming assay. Two of the five cell lines showed high fractionation sensitivities with alpha/beta values smaller than 5 Gy while those of the remaining three ranged from 7.8 to 10.8 Gy. Spheroids are structurally more similar to in vivo tumors than monolayer cultures. From the observed lack of correlation in the radiosensitivity parameters alpha and SF2 as well as in the fraction of SRU or clonogenic cells obtained from the spheroid control assay or the colony forming assay, one would expect even greater differences between results from colony forming assays and the radiosensitivity of in vivo tumors, at least for human soft tissue sarcomas.

Cell Aggregation↗

Radioresponsiveness, sublethal damage repair and stem cell rate in spheroids from three human tumor lines: comparison with xenograft data.

Dose-control curves after fractionated irradiation were generated for small oxic spheroids from the two human glioma cell lines, U87 and A7, as well as the squamous cell carcinoma line FaDu. These data were fitted by the linear quadratic model assuming Poisson statistics. The alpha/beta values of A7, U87, and FaDu spheroids, respectively were 10.3 (8.1-12.9) Gy, 17.8 (15.1-21.1) Gy, and 37.9 (29.1-51.5) Gy. These data were compared with those previously published by Suit et al. (31) and Zietman et al. (40) for 6 mm xenografts of U87 and FaDu after fractionated irradiation and for A7 after single dose irradiation under clamped conditions. A good agreement in the alpha/beta values was observed for U87 and Fadu xenografts and spheroids assuming an oxygen enhancement ratio (OER) of 2.7. In addition, the ranking according to the single doses needed to control 50% of the tumors agreed for xenografts and spheroids from the three cell lines. U87 was the most resistant line in both model systems, followed by A7 and FaDu. However, the absolute values of alpha and beta, obtained from the direct fit to the dose-control data were only about half as high for U87 and FaDu xenografts than for the spheroids. Monte Carlo simulations showed that this discrepancy can be explained by a greater tumor heterogeneity of the xenografts. While the number of critical stem cells or spheroid rescuing units equaled the number of cells per spheroid for the three cell lines, the percentage of tumor rescuing units for Fadu and U87 xenografts was estimated to be below 1%. In a next step, survival curves were generated for exponentially growing cells of the three lines. A7 cells were significantly more radioresistant when plated on tissue plastic than in soft agar. Using the most resistance-promoting colony assay conditions for each cell line, a good agreement was observed for the alpha and SF2Gy values calculated from the colony and spheroid control data. This study shows that the spheroid model can quantitatively predict the repair capacity of sublethal damage as well as the rank order of radiation sensitivity of in vivo tumors.

Animals↗

[Radiotherapeutic strategies for soft tissue sarcomas in adults].

Soft tissue sarcomas account for under 1% of all cancers in adults. Most soft tissue tumours are benign, only about 1% being characterized clinically and histomorphologically as malignant neoplasms. Since these tumours are often treated by excisional biopsies without any further diagnostic imaging, precise planning of postoperative irradiation therapy is often difficult to achieve. Therefore, all soft tissue tumours with a short history should be regarded as malignant until the contrary has been proven. In general, the mode of tumour resection should be postponed until CT or MR diagnosis is complete and a biopsy of the tumour has been carried out. Whereas benign lesions need only marginal tumour resection, malignant lesions require considerable safety margins. In soft tissue sarcomas of the extremities, which account for 50-60% of all sarcomas, a wide local resection followed by postoperative irradiation with about 66 Gy can guarantee local control rates above 80% and preserve the function of the limb. Radical surgery alone can achieve the same local control, but without the high level of functional integrity. In the case of marginally resectable tumours, preoperative irradiation can induce partial tumour remission and thus allow definitive limb-sparing tumour resection. Recently, multimodal and neoadjuvant therapeutic strategies have been developed. The efficacy of these experimental strategies is not yet proven.

Adult↗

Vascular patterns of tumors: scanning and transmission electron microscopic studies on human xenografts.

The tumor vascular system plays a significant role both in tumor growth and metastasis as well as in therapy. However, there are comparatively few papers dealing with the morphology and architecture of tumor vascularity. This is inconceivable insofar as structural and architectural parameters determine tumor blood flow. Therefore, the vascular system of eight human tumor lines transplanted onto 121 thymus-aplastic nude mice was studied with light, scanning and transmission electron microscopy as well as microvascular corrosion casting. All tumors show a connective tissue-like capsule with a dense plexus of vessels forming a "vascular envelope". Particularly in early stages, these vessels follow a tortuous course with glomeruloidal arrangement and numerous indications of angiogenic activity. In the tumor centre regular arteries and veins are never to be seen. Instead, all vessels show a capillary wall construction with variations in height and electron densities of the endothelial cells. Changes in vessel diameter, lack of vascular hierarchy, blind ends as well as irregular sinusoidal systems originating from and draining to veins are common features. The vascular densities vary considerably within single tumors. Based on the vascular architecture and wall construction, necroses may occur even in areas with intervascular distances of only 15 microns. No significant differences in vascular architecture of the various cell lines could be observed.

Animals↗

[Irradiation field controls by digital luminescence radiography].

Since portal images taken with conventional X-ray films suffer from poor contrast and unsharpness due to the high energy of the radiation beam, scattered radiation, patient motion, and the large dimensions of the radiation source, comparison of portal images with simulation images is often difficult and time consuming. Therefore many efforts have been made to improve such images. The use of storage phosphors and electronic image post-processing provides a remarkable improvement of image quality with better delineation of anatomical landmarks in high contrast areas such as head, neck, and mediastinum, as well as in low contrast regions, i.e. abdomen and pelvis.

Adolescent↗

[Postoperative radiotherapy of salivary gland tumors. Prognostic factors and treatment results].

A retrospective analysis of 63 patients with malignant major salivary gland tumours treated between 1972 and 1988 is presented. In 54 patients the tumour was located in the parotid gland, in the remaining nine patients the tumour was located in the submandibular gland, 31 patients were treated for stage I to II disease, 32 patients for stage III to IV disease. All patients were irradiated postoperatively using 60 Co. 137 Cs photons or electrons of adequate energies. As basic techniques ipsilateral portals, a wedge pair of portals or parallel opposed fields were used. The target doses ranged between 45 and 70 Gy with fractions of three to five times 2 to 3 Gy weekly, dependent on postoperative status and stage. In 25% of the patients a local recurrence was evident after radiotherapy with 13% developing distant metastases. The five-year survival was 95% for stage I, 83% for stage II, 30% for stage III and 7% for stage IV. Additionally, the prognosis varied according to lymph node involvement, grading and microscopic or macroscopic residual disease.

Adolescent↗

The role of fast neutrons in radiooncology--a critical appraisal.

The contribution of fast neutrons to local tumour control has been investigated worldwide since the mid-60's in more than 20 institutions. The high expectations anticipated from the promising results of experimental studies could not be adequately realized in the clinic. The late normal tissue damage was unacceptable due to poor depth dose characteristics and further technical limitations of the first generation low-energy machines. Even with sophisticated therapy planning systems and high-energy cyclotrons as well as comparable late normal tissue damage as witnessed after photons, only a few tumour entities have responded superiorly to fast neutrons. These particularly include macroscopic tumours of the salivary glands, prostate and, potentially, soft and osseous tissues. The role of fast neutrons for head and neck cancer has not yet been definitely proved. For bladder-, cervical- and rectal carcinomas, non-small cell lung-, pancreatic- and breast cancers as well as malignant gliomas, no therapeutic benefit as compared with photons was observed in the case of macroscopic residual or inoperable recurrent tumours.

Aged↗

Repair capacity and kinetics in spheroids from a lung metastasis of a human soft tissue sarcoma: a growth delay study.

Spheroids grown from the human cell line EF8 of a lung metastasis of a human malignant fibrous histiocytoma were given fractionated irradiation with 60Co gamma rays at passages 31 and 32. The mean diameter of the spheroids at the time of treatment was 250 microns. Growth delay was used as the end point in these studies. Two experiments were carried out to determine the capacity and kinetics of repair of sublethal damage. In the first experiment, one, two, and five fractions were given at three or four dose levels with fixed intervals of 360 min. In the second experiment, schedules with two and four dose fractions and intervals of 0, 20, 60, 120, and 360 min were used, each at two dose levels. Data analysis was performed by a direct method based on the alpha/beta model and first-order repair kinetics of radiation damage. In both experiments, the alpha/beta value of EF8 spheroids was estimated to be about 8 (6-10) Gy. The rate constant of repair, mu, and its 95% confidence interval were estimated to be 0.62 (0.40-0.84) 10(-2) min-1, equivalent to a half-time of repair (T1/2) of 112 (83-172) min. A more detailed analysis of the data of the second experiment revealed a significant dependence of the rate constant of repair, mu, on the total radiation effect induced by the fractionated radiation treatments with short overall times. With increasing level of effect, mu decreased. These data indicate that the half-time of recovery of a human tumor can be longer than that of the surrounding normal tissue, in this case lung, at least for a limited range of doses and for some fractionation schedules.

Cobalt Radioisotopes↗

Tumor radiosensitivity prediction by the cytokinesis-block micronucleus assay.

An in vivo to in vitro cytokinesis-block micronucleus assay technique using cytochalasin B (Cyt-B) was established in xenografted human and murine tumors, and the correlation between radiosensitivity measured by this assay and that measured by a colony-forming assay was investigated. Tumors were irradiated in situ, excised immediately, and disaggregated to single cells that were plated for the micronucleus and colony-forming assays. Some of the tumor cells were irradiated in vitro rather than in vivo. For the micronucleus assay, Cyt-B (0.5-3 micrograms/ml) was added to dishes soon after plating or in vitro irradiation and the cells were subsequently fixed and stained at intervals (12-144 h). The micronucleus frequency in binucleate cells was evaluated under conditions of maximum yield of the binucleate cells. The micronucleus frequency after irradiation was quite variable depending on the tumor type and the average number of micronuclei per single binucleate cell after 4 Gy ranged from 0.2 to 1.4. The results of in vitro irradiation were not significantly different from those of in vivo irradiation for all tumors. A good correlation was found between the radiosensitivity determined by the micronucleus assay and that found with the colony-forming assay in six human tumors (r = 0.94 approximately 0.98) but not in four murine tumors because of one exceptional tumor. When this tumor was excluded, a correlation was also found for the remaining nine tumors (r = 0.62 approximately 0.96). These results indicated that the cytokinesis-block micronucleus assay has some promise as a rapid predictive assay of radiosensitivity.

Animals↗

Changes in mitotic rate and cell cycle fractions caused by delayed fixation.

The mitosis frequency and flow cytometric data of malignant neoplasms are important, both for diagnosis and for prognosis. It is unclear to what extent these factors are affected by a delay in the fixation of tumor biopsies. We have thus studied the mitotic activity and DNA content in human soft-tissue sarcoma xenotransplants, fixed for periods of 5 minutes and 3, 6, 9 and 12 hours after biopsy. On average, the mitoses counted by two observers were 13% and 10% below initial values after 3 hours, and decreased by 46% and 39% after 12 hours. The mitosis decrease was related to the degree of mitotic activity of individual tumors, and was minimal in the sarcomas with the lowest mitotic rate. These results were reproducible. However, numerous pyknotic mitotic figures were observed, so the decrease in counts is largely due to their reduced identifiability, and only partly attributable to a completion of the cell cycle. Well-preserved mitotic figures demonstrable after 12 hours appear to indicate that the proliferation activity only gradually decreases in unfixed biopsies. The flow cytometric data did not change substantially; only a slight increase in the G2 + M-phase fraction was observed. General conclusions from the results are limited by the fact that the investigated sarcomas had a higher mitotic activity than most carcinomas. Nevertheless, early fixation of biopsies is desirable to accurately measure mitosis counts for the grading of malignancy.

Analysis of Variance↗

Radiation response in 10 high-grade human soft tissue sarcoma xenografts to photons and fast neutrons.

From a panel of 48 human soft tissue sarcomas growing as permanent xenografts, 10 tumor lines (five leiomyosarcomas, three malignant fibrous histiocytomas, two neurofibrosarcomas) have been selected to determine the radiation response to photons and fast neutrons. Using the specific growth delay (SGD) as an end-point, considerable variability of inherent radiosensitivity was observed. Isoeffective radiation doses varied by a factor of 27 for photons and of 9.4 for neutrons at a specific growth delay level of 0.5. The heterogeneity of the relative biological effectiveness (RBE) at this specific growth delay-level differed by a factor of 8. Relative biological effectiveness values for clamped tumors exceeded those of the normal tissues (RBE approximately 3) in 6 out of 10 tumor lines. Assuming a ratio of 0.5 for oxygen enhancement ratio-values of neutrons and photons, a therapeutic gain for neutrons existed in 4 out of 10 tumor lines under oxic conditions. No correlation between volume doubling times and relative biological effectiveness was seen.

Animals↗

[Adjuvant radiotherapy of rectal cancer].

Evaluation and refinement of surgical techniques in rectal carcinoma have reduced the rate of local recurrences. Nevertheless recurrence it remains high at more than 20% in patients with extensive infiltration of perirectal tissues and cures are an exception. Overview of many years of experience with adjuvant radiotherapy shows that local recurrence rate can be reduced and survival the rate improved.

Combined Modality Therapy↗

Xenografts of five human leiomyosarcomas: radiation response after 60cobalt- and d(14)+Be neutron single doses.

Five permanently established xenograft lines of human soft tissue sarcomas were irradiated with single doses of 5.8 MeV d(14)+Be neutrons and of 60Co rays, respectively, at several dose levels to generate dose response relationships. The tumors were clamped ten minutes prior to and during irradiation to induce uniform hypoxia. All tumours were previously characterized by means of histomorphology, tumour doubling times (DT's), DNA-index and enzyme pattern of the lactate dehydrogenase (LDH) and glucose-6-phosphate dehydrogenase (GPD). According to these criteria, three out of five leiomyosarcomas were identical referring to the biopsy of origin, whereas two had changed in successive passages. For the different tumour lines, specific growth delays ranged from 0 to 8.7 after 5.3 Gy neutrons and from 0 to 11.4 after 16 Gy60Co, respectively. In terms of radiosensitivity for different single doses and irradiation qualities, a highly significant overall correlation (rs = 0.82 +/- 0.06) was found for the ranking of the tumours with respect to the growth delay and specific growth delay endpoints. No correlation was found between tumour doubling times and the relative biological effectiveness (RBE). In general, calculated RBE-values decreased with increasing effect level. For the five tumour lines, RBE-values ranged from 1.6 to 12.7 and 2.0 to 4.4 at specific growth delays of 0.5 and 2.0, respectively, under acutely hypoxic conditions. These results indicate a potential advantage for neutrons in a subgroup of human soft tissue sarcomas compared with sparsely ionising irradiation.

Animals↗

Neutron boost irradiation of soft tissue and chondrosarcomas at the West German Tumour Centre in Essen.

In this retrospective study, the results of postoperative neutron boost therapy for 40 soft tissue- and 18 chondrosarcomas are presented. In 65.5% and 34.5% of all cases, microscopic to macroscopic tumour residual was left postoperatively. Locally advanced and moderate to highly malignant tumours were found at surgery in 81% and 69%, respectively. Except for seven patients with a whole series of neutrons to 16 Gy, the other cases were treated with initially 40 to 50 Gy photons and a subsequent neutron boost of 4 to 6 Gy. The median follow-up was 29.3 and 36.2 months for the soft tissue- and chondrosarcomas. The actuarial three-year local control and overall survival rates were 69.3% and 91% for soft tissue- vs. 55.6% and 62.9% for chondrosarcomas. With regard to the extension of surgery (microscopic or macroscopic residual), local control rates of 80% and 60% for soft tissue- vs. 62.5% and 40% for chondrosarcomas were observed. The overall local failure rate was 32.8% with a median disease-free interval of ten respectively eleven months for soft tissue and chondrosarcomas. 17 out of 19 local recurrences were due to inadequate irradiation portals for the neutron boost or to insufficient total doses in the initially treated photon target volume.

Actuarial Analysis↗

Methods for analysis of censored tumor growth delay data.

Growth delay times of experimental tumors after subcurative therapy may be censored because of intercurrent death of the host animals, limitations of the follow-up period, or the number of cured tumors. Under the general assumptions of log-normally distributed data and independence of the censoring event and the therapy effect, it is shown using computer simulations that the estimate of the median growth delay according to the product limit method of Kaplan and Meier, which allows inclusion of censored data, is unbiased. Omission of censored growth delay times from incomplete accrued data often leads to biased estimates. The power of statistical tests for qualitative comparison of two therapy groups with incomplete sets of data from growth assays was also studied. In the absence of censoring, the power of the different tests is about the same. At higher censoring rates of 40%, however, tests applicable to censored data (log-rank test, Gehan-Wilcoxon test) have a markedly higher power than tests applied to the reduced set of complete observed growth delays (mu test, t test). Although complete observation of tumor regrowth should be strived for, growth delay experiments with very delicate animal tumor models can easily result in censored data. The methods presented permit quantitative and qualitative analysis of growth delay data up to a censoring rate of over 30%, if growth delays and censoring events are independent.

Animals↗

[Sequential induction chemotherapy and radiation treatment of inoperable small cell bronchial cancer. Results of a prospective randomized study].

To study the potential benefit of sequential chemotherapy in inoperable small cell lung cancer (SCLC), from 1982 to 1986 ninety-one patients with histologically proven and previously untreated SCLC (median age: 53 years; median Karnofsky status: 80%) were randomly assigned to an initial therapy with adriamycin (since 1984 epirubicin), cyclophosphamide, vincristine (ACO resp. EPICO) or etoposide/cisplatin (VP16/DDP). Treatment courses were repeated every 3 weeks for a total of less than or equal to 6 courses with a crossover after a maximum of 3 cycles of either regimen. Limited disease (LD) patients with bronchoscopical, computertomographical and (re-) mediastinoscopical complete remission (CR) randomly received either a thoracic irradiation with 40 Gy or observation only. Overall, 60 out of 85 evaluable patients achieved an objective remission. A CR was observed in 24/51 patients (47%) with limited disease, and in 8/34 patients (24%) with extensive disease. Both, ACO (EPICO) and VP16/DDP were equally effective as initial and second-line therapy. Moreover, after failure to the initial therapy an objective remission could be achieved in 13% of the patients following the alternative second line combination. In 28% of LD patients with an otherwise complete remission residual tumor was detected by (re-) mediastinoscopy. Median survival times were 14 (CR: 16) months in LD patients and 10 (CR: 15) months in ED patients. At present, median survival is significantly improved in irradiated versus non-irradiated LD patients (25 vs. 13 months, p less than 0.04). The remission rates and median survival times observed in this study are comparable to those of a historical control group treated with ACO plus radiotherapy alone.

Adult↗

Intramedullary pilocytic astrocytomas--a clinical and morphological study after combined surgical and photon or neutron therapy.

Ten patients suffering from intramedullary pilocytic astrocytomas (WHO-classification: astrocytoma grade I) were investigated catamnesticly. Combined surgery and radiotherapy was performed. Seven patients received neutron irradiation postoperatively. In four cases the neurological symptoms were improved after follow-up periods ranging from 33 to 89 months. The three other patients died after 6 to 21 months. The autopsy findings of a 14 year old child are presented. Our results are compared with reports in the literature. In addition, long-term problems of the spinal column are discussed. It seems that the combined surgical and neutron therapy improves the prognosis of pencil gliomas.

Adolescent↗