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Biomedical subjects

E Frei

Publications and source records attributed to E Frei.

At least 55 records · Page 3Linked to original sources

Complications of laparoscopic cholecystectomy in Switzerland. A prospective 3-year study of 10,174 patients. Swiss Association of Laparoscopic and Thoracoscopic Surgery.

BACKGROUND: We set out to analyze the technical aspects, intraoperative complications, morbidity, and mortality of laparoscopic cholecystectomy in a multi-institutional study representative of Switzerland. METHODS: Data were collected from 10,174 patients from 82 surgical services. A total of 353 different parameters per patient were included. RESULTS: We found intraoperative complications in 34.4% of patients and had a conversion rate of 8.2%. This rate was significantly increased in patients with complicated cholelithiasis and in those with previous upper-but not lower-abdominal surgery. In most cases, conversions to open procedures were required because of technical difficulties due to inflammatory changes and/or unclear anatomical findings at the time of operation. Bleeding was a common intraoperative complication, that significantly increased the risk of conversion. Patients with loss of gallstones in the peritoneal cavity had increased rates of abscesses. The rate of common bile duct injuries was 0.31%, but it decreased significantly as the laparoscopic experience of the surgeon increased. The rate of common bile duct injuries was not increased in patients with acute cholecystitis or in the 1.32% of patients undergoing laparoscopic common bile duct exploration. Intraoperative cholangiography did not reduce the risk of common bile duct injuries, but it allowed them to be diagnosed intraoperatively in 75% of patients. Local complications were recorded in 4.79% of patients, and systemic complications were seen in 5.59%. The mortality rate was 0.2%. CONCLUSIONS: Although laparoscopic cholecystectomy is a safe procedure, the rate of conversion to open cholecystectomy is still substantial. The conversion rate depends both on the indication and intraoperative complications. There is still a 10.38% morbidity associated with the procedure; however, the incidence of common bile duct injuries, which decreases with growing laparoscopic experience, was relatively low.

Cholangiography↗

High-dose multimodality therapy with autologous stem-cell support for stage IIIB breast carcinoma.

PURPOSE: Women with locally unresectable and inflammatory breast carcinoma (IBC) have an approximately 30% 5-year disease-free survival (DFS) rate with conventional multimodality therapy. A short but dose-intensive multimodality phase II trial was designed in an attempt to improve outcome in stage IIIB disease. Mastectomy was performed after high-dose therapy to evaluate pathologic response to treatment. METHODS: Women with newly diagnosed disease received four 2-week cycles of doxorubicin 90 mg/m2 with granulocyte colony-stimulating factor (G-CSF), followed by cyclophosphamide 6,000 mg/m2, thiotepa 500 mg/m2, and carboplatin 800 mg/m2 (CTCb) with marrow and peripheral-blood progenitor cell (PBPC) support. Local therapy consisted of mastectomy and radiotherapy. Tamoxifen (5 years) was begun if the patient was estrogen receptor-positive (ER+). RESULTS: Fifty women (46 stage IIIB [91% IBC], four stage IIIA) entered the study and 47 are assessable. Ten had mastectomy before any systemic therapy (seven with pathologic IBC, three with residual tumor after mastectomy). Eighty percent received full-dose doxorubicin with 60% on schedule. Clinical response rates to induction were 15% complete response (CR), 5% very good partial response (VGPR), 59% partial response (PR), and 21% minor response (MR)/stable disease (SD). Mastectomy after CTCb in 37 patients showed a 14% pathologic CR rate, 29% microscopic foci in breast and/or axilla, and 57% gross tumor. Fifteen (32%) patients have relapsed (median, 17 months post-CTCb). The 30-month DFS is estimated at 64%. For those in pathologic CR, with microscopic, or with gross disease remaining after CTCb, the 30-month DFS is estimated at 100%, 70%, and 38%, respectively. Those with zero, one to three, or > or = four positive nodes at axillary dissection had a median DFS of 31, 18, and 13 months, respectively. CONCLUSION: This short but dose-intensive multimodality approach for stage IIIB breast carcinoma is feasible with encouraging results to date.

Adult↗

A single scale for comparing dose-intensity of all chemotherapy regimens in breast cancer: summation dose-intensity.

PURPOSE: To construct a single scale for comparing the dose-intensity of all chemotherapy regimens in breast cancer. MATERIALS AND METHODS: First-line single-agent trials in metastatic disease were reviewed. The unit dose-intensity (UDI) that was required to produce a 30% complete response plus partial response (CR + PR) rate was determined for each drug. Randomized trials were then analyzed that prospectively tested dose-intensity. The dose-intensities of the drugs in each arm were expressed as fractions of their UDIs and added together. This yielded each arm's summation dose-intensity (SDI), which was then correlated with treatment outcomes. RESULTS: In the single-agent trials, dose-response relationships were linear when the studies covered a range of dose-intensities. In the randomized trials that tested dose-intensity in metastatic disease, response rates and median survival correlated linearly with the SDIs of the treatment arms. An increment of one SDI unit increased CR + PR rate by approximately 30%, CR rate by 10%, and median survival by 3.75 months. Metastatic disease trials were negative if the difference between the arms was less than 0.54 SDI units. Adjuvant trials that tested a dose-intensity difference of less than 0.65 SDI units were also negative. CONCLUSION: A single-agent dose-response database can be derived from historic literature that enables comparison of the dose-intensity of all combination regimens on one scale. The dose-intensity increase required to improve outcome can then be identified in earlier trials that tested that variable. SDI methodology should be tested prospectively in contemporary patients, and may be useful in guiding dosage increases beyond the conventional range.

Antineoplastic Agents↗

shaven and sparkling are mutations in separate enhancers of the Drosophila Pax2 homolog.

We have previously shown that the sparkling gene, which like mammalian Pax2 plays an important role in eye development, is encoded by the Drosophila homolog of Pax2. Here we demonstrate that D-Pax2 also encodes the shaven function, which is crucial during bristle development. Both sv and spa alleles, previously thought to represent different genes, are mutations in two widely separated enhancers of D-Pax2. The sv function of D-Pax2 acts in at least two distinct steps of mechanosensory bristle development: the specification of the alternative fate of shaft as opposed to socket cell, and later the differentiation of the shaft cell.

Alleles↗

Acute in vivo resistance in high-dose therapy.

In the design of sequential high-dose chemotherapy regimens, the selection of antitumor alkylating agents to be included in each intensification and the interval between the intensifications are critical to the design of the therapy. The tumor cell survival assay and tumor growth delay assay using the murine EMT-6 mammary carcinoma were used as a solid tumor model in which to address these issues. Tumor-bearing mice were treated with high-dose melphalan or cyclophosphamide followed 7 or 12 days later by melphalan, cyclophosphamide, thiotepa, or carboplatin. After treatment with melphalan both 7 and 12 days later, the tumor was resistant to each of the four drugs studied. After treatment with cyclophosphamide both 7 and 12 days later, the tumor was resistant to melphalan and thiotepa but was not resistant to cyclophosphamide or carboplatin. To extend the interval between high-dose treatments to 14 and 21 days, after the first intensification the tumor was transferred to second hosts that were either drug-treated or not drug treated. When high-dose melphalan-treated tumors were treated with a second high dose of melphalan, the tumors were very resistant with the 14-day interval and less resistant with the 21-day interval. This small effect was evident in the bone marrow colony-forming unit, granulocyte-macrophage (CFU-GM), except in the hosts pretreated with melphalan. When high-dose cyclophosphamide-treated tumors were treated with a second high dose of cyclophosphamide, drug resistance was observed both with the 14-day and 21-day interval if the host was non-pretreated or was pretreated with melphalan, but not if the host was pretreated with cyclophosphamide. The same was true in the bone marrow CFU-GM. Tumor growth delay studies supported these findings in that treatment with high-dose cyclophosphamide, melphalan, thiotepa, and carboplatin resulted in less than additive tumor growth delay, whereas treatment with high-dose cyclophosphamide prior to treatment with high-dose melphalan, cyclophosphamide, thiotepa, or carboplatin resulted in additivity to greater-than-additive tumor growth delay. High-dose combination regimens required dose reduction of the drugs, which resulted in decreased tumor growth delays.

Animals↗

Dose escalation of the hypoxic cell sensitizer etanidazole combined with ifosfamide, carboplatin, etoposide, and autologous hematopoietic stem cell support.

Multiple mechanisms of drug resistance contribute to treatment failure. Although high-dose therapy attempts to overwhelm these defenses pharmacologically, this approach is only successful in a fraction of treated patients. Many drug resistance mechanisms are shared between malignant and normal cells, but the expression of various drug resistance mechanisms associated with hypoxia is largely confined to tumor tissue. Thus, reversal of this mechanism is likely to provide a therapeutic advantage to the host. This study was designed to define the dose-limiting toxicities and maximum tolerated dose of etanidazole when it is given concurrently with high-dose ifosfamide, carboplatin, and etoposide (ICE), with hematopoietic stem cell support. The maximum tolerated doses of high-dose ICE were administered concurrently with dose escalations of etanidazole, a hypoxic cell sensitizer. All agents were given by 96-h continuous i.v. infusion beginning on day -7. Mesna uroprotection was provided. Autologous marrow and cytokine mobilized peripheral blood progenitor cells were reinfused on day 0. Granulocyte colony-stimulating factor was administered following reinfusion until the granulocytes recovered to > 1000/microliter. Fifty-five adults with advanced malignancies were enrolled in cohorts of five to nine patients. Four dose levels of etanidazole between 3 and 5.5 g/m2/day (12, 16, 20, and 22 g/m2 total doses) and two doses of carboplatin (1600 and 1800 mg/m2 total doses) were evaluated. Seven patients died of organ toxicity (13%); two each from veno-occlusive disease of liver and sepsis; and one each from sudden death, renal failure, and refractory thrombocytopenic hemorrhage. Five deaths occurred at the top dose level. One additional patient suffered a witnessed cardiorespiratory arrest from ventricular fibrillation and was resuscitated. Dose-dependent and largely reversible peripheral neuropathy was observed consisting of two syndromes: severe cramping myalgic/neuralgic pain, predominantly in stocking glove distribution, occurring between day -3 and day 0, and a sensory peripheral neuropathy with similar distribution peaking around day +60. The maximal achievable dose of etanidazole (16 g/m2 dose level) resulted in a mean serum level of 38 micrograms/ml (25-55 micrograms/ml). Etanidazole significantly enhanced host toxicity of high-dose ICE. Effective modulatory doses of etanidazole could not be given with acceptable toxicity using this schedule.

Adult↗

The relationship between high-dose treatment and combination chemotherapy: the concept of summation dose intensity.

The most important variables for the clinical use of antitumor agents (AAs) are dose and combination chemotherapy. The objectives of this study were to analyze the relationship between these two variables and to propose a unified conceptual framework for the construct and interpretation of clinical trials. Definitions and variables with respect to dose include potency, therapeutic index, standard dose, efficacy, relative efficacy, dose-limiting toxicity (DLT), dose rate, dose density, dose intensity, and fractional dose intensity. Our overarching concept, that is, summation dose intensity (SDI), was calculated in several ways, depending upon the nature of the data, and included the relative efficacy method, the unit regimen method, and the high dose method. The SDI concept was then applied to disease categories and strategies to determine its usefulness and effectiveness in integrating dose and combinations. The tumors and settings were: mustargen-vincristine-procarbazine-prednisone in Hodgkin's disease, combination chemotherapy for acute lymphocytic leukemia in children, metastatic breast cancer including dose and combinations, selected other solid tumors, alternating chemotherapy, and high dose studies in the leukemias and lymphomas. SDI was effective in integrating and quantifying dose and combination chemotherapy. For classical AAs, the implication of SDI for the construct and analysis of clinical trials was emphasized. In addition to new drug development, emphasis should be given to reducing or eliminating DLTs, such as those of the marrow, now and, in the future, those of the gastrointestinal tract toxicity and other DLTs. The above was derived from and applies to the classical AAs. Whether they will apply to, with appropriate adjustment, agents with significantly different dose-response curves, such as biotherapeutics and hormonal agents, remains to be determined.

Antineoplastic Combined Chemotherapy Protocols↗

Biochemical characterization of in vivo alkylating agent resistance of a murine EMT-6 mammary carcinoma. Implication for systemic involvement in the resistance phenotype.

While cancer drug resistance has been extensively studied in cell culture, little is known about more clinically relevant in vivo resistance. The in vivo resistance of a murine mammary carcinoma EMT-6 to alkylating agents was demonstrated in the present study to be associated with multiple biochemical changes. These included an up to 1.5-fold increase in activity of phase II drug metabolizing enzymes (DMEs), such as glutathione (GSH), glutathione reductase (GR), glutathione S-transferase (GST), glutathione peroxidase (GPX) and aldehyde dehydrogenase (ALDH), and an up to 88% decrease of phase I DME activity [7-ethoxycumarin O-deethylase (ECOD), P450 reductase (PR)] in the resistant tumors compared with the parental tumor. Transplant of either parental or resistant tumors to mice was accompanied by a decrease of both phase I and phase II DME activity in the livers of female Balb/C mice compared with the non-tumor mice. Moreover, at the protein level, while cytochrome P450 (CYP) IIB1/2 in the liver of mouse bearing both the sensitive and the resistant tumor was significantly diminished compared to that in the liver of non-tumor control mouse in Western analysis, there was actually an increase of this protein in the liver of the host bearing either of the two resistant tumors compared to that of the sensitive tumor-bearing animal. Although this in vivo resistance phenotype is not expressed in cell culture, the profile of most of the enzyme changes in the resistant tumors remained similar in in vitro culture of the isolated tumor cells. Collectively, these results demonstrate that this in vivo alkylating agent resistance is associated with multiple changes of both phase I and phase II DMEs in the resistant tumors, and some of these, such as CYP IIB1/2 protein are further altered in the resistant tumor-bearing mouse liver, suggesting a potential role of systemic factors in this resistance phenotype.

7-Alkoxycoumarin O-Dealkylase↗

Multichannel EEG fields during and without visual input: frequency domain model source locations and dimensional complexities.

27-Channel EEG potential map series were recorded from 12 normals with closed and open eyes. Intracerebral dipole model source locations in the frequency domain were computed. Eye opening (visual input) caused centralization (convergence and elevation) of the source locations of the seven frequency bands, indicative of generalized activity; especially, there was clear anteriorization of alpha-2 (10.5-12 Hz) and beta-2 (18.5-21 Hz) sources (alpha-2 also to the left). Complexity of the map series' trajectories in state space (assessed by Global Dimensional Complexity and Global OMEGA Complexity) increased significantly with eye opening, indicative of more independent, parallel, active processes. Contrary to PET and fMRI, these results suggest that brain activity is more distributed and independent during visual input than after eye closing (when it is more localized and more posterior).

Adult↗

Characterization of lidocaine-specific T cells.

To investigate the cellular immune response to the drug lidocaine, we generated T cell lines and clones from the peripheral blood of four patients with proven allergy to lidocaine. The patients had contact dermatitis after topical application of lidocaine, and local swelling or generalized erythema exudativum multiforme after submucosal/subcutaneous injection of lidocaine. Two of three lidocaine-specific T cell lines were oligoclonal and one even became monoclonal, while the simultaneously analyzed immune response to tetanus toxoid was polyclonal. The lidocaine-specific T cell lines cross-reacted to mepivacaine, but not to other local anesthetics (bupivacaine, procaine, oxybuprocaine, and tetracaine). The majority of reactive T cells belonged to the CD4 cell lineage and were MHC class II restricted, but cloning also revealed some MHC class I-restricted CD8+ clones. A total of 2 of 56 lidocaine-specific T cell clones were CD4-CD8- and expressed TCR-gammadelta. The majority of 13 analyzed CD4 clones produced a rather polarized cytokine pattern, with a dominance of Th2-like cytokines showing a high IL-5 production. In addition, three CD4+ and all CD8+ (n = 7) clones secreted high IFN-gamma and low levels of IL-5/IL-4 (Th1-like). The data illustrate that a drug that sensitizes via the skin elicits a heterogeneous T cell response. The high IL-5 production and the participation of specific CD4+CD8+ and even gammadelta+ T cells appear to be distinguishing features of this hapten-specific immune response.

Adult↗

Neoadjuvant therapy for surgically staged IIIA N2 non-small cell lung cancer (NSCLC).

INTRODUCTION: Neoadjuvant therapy in patients with Stage IIIA NSCLC is associated with a 50-70% resection rate and a 3-5 year survival of 20-32%, but few trials have required meticulous staging of the mediastinum to ensure homogeneity of the study population. Continuous infusion cisplatin 25 mg/m2/day 1-5, 5-fluorouracil 800 mg/m2/day 2-5, and high-dose leukovorin 500 mg/m2/day 1-5 (PFL) given every 4 weeks achieved a 41% response rate in metastatic NSCLC (Lynch TJ, Kalish LA, Kass F, Strauss G, Elias A, Skarin A, Shulman L, Sugarbaker D, Frei E. Continuous infusion cisplatin, 5-fluorouracil, and leukovorin for advanced non-small cell lung cancer. Cancer 1994; 73: 1171-1176). The regimen was therefore evaluated in 34 patients with pathologic Stage IIIA N2 disease between 3/91 and 10/92. METHODS: Staging consisted of chest, liver, brain computerized tomography and bone scan, bronchoscopy and surgical mediastinal node mapping. Patients received PFL for 3 cycles, followed by thoracotomy and thoracic radiotherapy (TRT) to 54-60 Gy. RESULTS: Median age was 57 (42-68) years. Demographic factors included: male 56%; adenocarcinoma 59%, squamous cell carcinoma 24%; Stage T3N2 26%, T2N2 56%, and T1N2 18%. No treatment related deaths occurred. Radiographically defined response to PFL was 65% (6% complete). Thoracotomy was performed in 28 patients (82%) (6 had no attempt due to disease progression). Complete resection was achieved in 21 (75%) and seven were unresectable. Pathologic complete response was observed in five patients (15%) and an additional unresectable patient had fibrosis-only documented at thoracotomy for an overall clinicopathologic response rate of 76% (18% pathologic CR). Another ten patients had residual primary with or without hilar disease with resolution of previously documented mediastinal involvement. Six (18%) patients remain alive and disease-free with a median follow-up of 46 (33-50) months, four of whom had achieved pathologic complete response at time of surgery. CONCLUSIONS: Long-term event-free survival was associated with complete surgical resection which in turn was associated with clinical response to chemotherapy. There was a possible trend associating pathologic downstaging (absent residual disease in mediastinal nodes), particularly pathologic complete response observed in patients with non-bulky mediastinal disease, with improved event-free survival. Pathologic downstaging might therefore be a useful surrogate endpoint in trials evaluating the preoperative activity of new chemotherapy regimens. While radiographic response generally correlated with findings at surgery, response as determined by histologic examination of resected tissue was generally more extensive and may more accurately reflect the systemic impact of the chemotherapy regimen.

Adult↗

Comparison of DNA adduct formation by aristolochic acids in various in vitro activation systems by 32P-post-labelling: evidence for reductive activation by peroxidases.

Aristolochic acid I (AAI) and aristolochic acid II (AAII), the two major components of the carcinogenic plant extract aristolochic acid (AA), are known to be mutagenic and to form DNA adducts in vivo. According to the structures of the major DNA adducts identified in animals and humans, nitroreduction is the crucial pathway in the metabolic activation of these naturally occurring nitroarenes to their ultimate carcinogenic species. Using the nuclease P1-enhanced version of the 32P-post-labelling assay we investigated the formation of DNA adducts by AAI and AAII in different in vitro activation systems in order to determine the most suitable in vitro system mimicking target tissue activation. Although DNA adducts resulting from oxidative activation of AAs have not yet been identified both reductive and oxidative in vitro systems were employed. In vitro incubations were conducted under standardized conditions (0.3 mM AAs; 4 mM dNp as calf thymus DNA) using rat liver microsomes, xanthine oxidase (a mammalian nitroreductase), horseradish peroxidase, lactoperoxidase and chemical reduction by zinc. Enzymatic incubations were performed under aerobic and anaerobic conditions. A combination of two independent chromatographic systems (ion-exchange chromatography and reversed-phase HPLC) with reference compounds was used for the identification of DNA adducts detected by the 32P-post-labelling assay. The two known major adducts of AAI or AAII found in vivo were generated by all in vitro systems except for incubations with AAII and horseradish peroxidase where two unknown adducts predominated. Irrespective of the in vitro activation system used, the majority of adduct spots obtained were identified as the previously characterized four AA-DNA adducts: dA-AAI, dA-AAII, dG-AAI and dG-AAII. This indicates that both reductive and peroxidative activation of AAI or AAII resulted in chromatographically indistinguishable DNA adducts. Thus, peroxidase mediated activation of AAs led to the formation of the same adducts that had been observed in vivo and upon reductive activation in several in vitro systems. Quantitative analyses of individual adducts formed in the various in vitro systems revealed relative adduct labelling (RAL) values over a 100,000-fold range from 4 in 10(3) for activation of AAII to deoxyadenosine adducts by zinc to only 3 in 10(8) for activation of AAII by lactoperoxidase. The extent of DNA modification by AAI was higher than by AAII in all enzymatic in vitro systems. Only activation by zinc resulted in higher total binding to exogenous DNA by AAII than by AAI. Aerobic incubations with rat liver microsomes generated AAI- and AAII-DNA adduct profiles reproducing profiles in target tissue (forestomach) of rats, thus providing the most appropriate activation among the in vitro systems tested.

Animals↗

Pharmacokinetics of methotrexate-albumin conjugates in tumor-bearing rats.

Linking chemotherapeutic drugs to a macromolecular carrier system may enhance tumor targeting, reduce toxicity and overcome drug resistance mechanisms. As an elementary model to evaluate the pharmacological properties of macromolecular drug carrier systems we chose rat serum albumin (RSA) for carrier and methotrexate (MTX) as antineoplastic drug. The conjugation procedure yielded conjugates with an approximate 1:1 molar loading rate (MTX(1)-RSA). In the first part of the study a residualizing [111In]DTPA protein label was used for mapping in vivo the catabolic sites of the native carrier protein and of the MTX(1)-RSA drug conjugate in Walker 256 carcinosarcoma bearing rats. The tumor accumulation was about 14% of the injected dose for the RSA and MTX(1)-RSA tracers after 24 h. Tracer entrapment by organs with an active mononuclear phagocyte system was low (liver below 7% and spleen below 1.5% of the injected dose after 24 h). The 1:1 conjugation of MTX to RSA did not decisively alter the pharmacokinetic properties nor the tumor or tissue distribution of the native carrier protein RSA. In the second part of the study the different properties of the MTX(1)-RSA conjugate were compared with MTX in vivo. About 2 mg MTX/kg body weight either of the drug conjugate or of the original drug were injected after being additionally spiked with radiolabeled tracers. Plasma concentrations were simultaneously determined by immunological and radioactive means. After 24 h about 12% MTX(1)-RSA was found in circulation compared to 0.03% MTX. Favorable tumor accumulation rates of about 14% were achieved for MTX(1)-RSA versus 0.04% for MTX. About 45-fold more of the injected dose of [3H]MTX accumulated in the liver as compared to the tumor (1.5 versus 0.03%) after 24 h. Conjugation of MTX to RSA reversed this ratio in favor of the tumor to 1:1.4 (13.6 versus 9.6%). In conclusion, the potential therapeutic benefit of the MTX(1)-RSA conjugate lies in its very long tumor exposure time and its improved tumor accumulation rate compared to conventional MTX. In addition the conjugation to albumin might enhance the therapeutic effects over those achieved by long-term continuous infusion of MTX, as MTX(1)-RSA enters the cells by a different uptake mechanism. This might also help to circumvent MTX resistance mechanisms, such as a reduction in folate receptor numbers or impaired MTX polyglutamylation.

Animals↗

Non-small cell lung cancer: novel treatment strategies.

Prevention of cigarette smoking and early lung cancer detection remain important in our approach to the control of non-small cell lung cancer (NSCLC). In recent years, chemotherapy has emerged as a viable option in the treatment of NSCLC. The most impressive and widely confirmed evidence for this is the fact that chemotherapy can eradicate NSCLC micrometastases. Indeed, in some studies employing neoadjuvant chemotherapy followed by local surgery, pathology-confirmed complete remission rates as high as 20% have been reported. New agents showing preliminary activity in NSCLC include paclitaxel, vinorelbine, gemcitabine, and irinotecan (CPT-11). Certainly, however, there remains a need for novel, effective single-agent and combination chemotherapies. The seed/soil tumor concept, in which the seed consists of the tumor cells per se and the soil is the stroma containing the seeds, has proven helpful in devising new treatment strategies. Such strategies may include the use of antisoil agents, including antiangiogenesis, anti-invasion, and antimetastasis agents, both separately and particularly in conjunction with established antitumor agents. New therapeutic targets and methods of antitumor agent development based on modern molecular biology and pharmacology will provide a greater opportunity to improve the treatment of NSCLC.

Antineoplastic Combined Chemotherapy Protocols↗

High-dose cyclophosphamide, carmustine, and etoposide with autologous transplantation in Hodgkin's disease: a prognostic model for treatment outcomes.

PURPOSE: To identify clinical factors predictive of treatment outcome after high-dose chemotherapy (HDC) for Hodgkin's disease and to develop a prognostic model for progression-free and overall survival. PATIENTS AND METHODS: 102 patients with relapsed or refractory Hodgkin's disease were treated with high-dose cyclophosphamide, carmustine, and etoposide and autologous marrow and/or peripheral blood progenitor cell support. Median follow-up of survivors is 4.1 years (1.8-7.5 years). Factors potentially important for treatment outcome were examined in univariate analysis, and Cox regression with forward selection was performed. A prognostic model was developed. RESULTS: Poorer progression-free and overall survival were associated with nodular sclerosis histology, abnormal performance status, progressive disease at HDC, more than one extranodal site of disease, and shorter time from initial diagnosis to HDC. These factors and the presence of B symptoms at relapse also predicted for decreased overall survival. Progressive disease immediately prior to HDC, more than one extranodal disease site, and abnormal performance status retained significance for both progression-free and overall survival in multivariate analysis. Progression-free and overall survival are 42% (95% confidence interval, CI, 34 to 53) and 65% (95% CI 54 to 73) at three years. A model based on number of risk factors present divides patients into low, intermediate, and high risk groups with three-year actuarial survival of 82%, 56%, and 19% respectively. Treatment outcome for patients treated with HDC at first chemotherapy relapse was not significantly different from that of the group overall (p > 0.3). CONCLUSIONS: Asymptomatic patients with Hodgkin's disease involving at most one extranodal site whose disease is controlled by conventional dose chemotherapy or radiation therapy at the time of HDC have good outcomes after this therapy. Presence of increasing numbers of risk factors are associated with poorer outcomes. Results of HDC compare favorably to those of standard dose salvage therapy. These data can be used to estimate likely outcomes in patients undergoing HDC for Hodgkin's disease, to identify potential candidates for innovative therapies, and to evaluate strategies for the optimal use of HDC in Hodgkin's disease.

Adult↗

Preoperative Nyhus classification of inguinal hernias and type-related individual hernia repair. A case for diagnostic laparoscopy.

The goal of this prospective study was to determine the clinical value (sensitivity and specificity) of preoperative hernia classification (Nyhus classification) using three distinct methods: clinical examination, Doppler ultrasonography, and diagnostic laparoscopy. Thirty patients with 35 suspected groin hernias were included. Definitive hernia classification was achieved by laparoscopic peritoneal incision and dissection of the inguinal floor. Twenty-eight laparoscopic hernia repairs followed. Sensitivity and specificity were calculated for each preoperative evaluation method. Clinical examination was found to be more accurate than Doppler ultrasonography. The highest scores for sensitivity (0.93) and specificity (1.00) were achieved, however, by diagnostic laparoscopy. Therefore, the authors consider diagnostic laparoscopy to be a valuable preoperative tool for assessing hernia type. An accurate preoperative hernia classification will allow an individualized type-related hernia repair (open: anterior, posterior approach, or laparoscopic: transabdominal preperitoneal, total preperitoneal, inner-ring closure, mesh insertion).

Adult↗

An investigation of the metabolism of N-nitrosodimethylamine and N-nitrosomethylaniline by horseradish peroxidase in vitro.

The demethylation of carcinogenic N-nitrosodimethylamine (NDMA) and N-nitrosomethylaniline (NMA) is catalyzed by horseradish peroxidase in the presence of hydrogen peroxide. NMA is a better substrate for peroxidase than NDMA. The Km values are 0.74 and 3.12 mmol/l for NMA and NDMA, respectively. The oxidation of NDMA and NMA is inhibited by radical trapping agents (nitrosobenzene, glutathione, ascorbate, NADH). This indicates the radical mechanism for the peroxidase-mediated oxidation of both N-nitrosamines. The in vitro metabolism of NMA using peroxidase was investigated in detail. Beside formaldehyde, the metabolites formed from NMA by peroxidase include aniline, p-aminophenol and phenol. Phenol formation presumably arose from N-demethylation of NMA via a benzenediazonium ion (BDI) intermediate while aniline and p-aminophenol from denitrosation of this carcinogen. The results are discussed from the point of view of the role of peroxidases in the metabolism of N-nitrosamines.

Dimethylnitrosamine↗