Search PubMed⌕ Search

Biomedical subjects

E Frei

Publications and source records attributed to E Frei.

At least 109 records · Page 6Linked to original sources

Phase II study of topotecan in metastatic non-small-cell lung cancer.

PURPOSE: Topotecan is an inhibitor of topoisomerase I that has shown preclinical activity against non-small-cell lung cancer (NSCLC). This phase II study was designed to determine the clinical activity and toxicity spectrum of topotecan in untreated patients with metastatic NSCLC. PATIENTS AND METHODS: Twenty previously untreated patients received topotecan every 21 days at the dose of 2 mg/m2/d intravenously (IV) for 5 days for two cycles, at which point response was assessed. Patients with either clinical response or stable disease (SD) received additional cycles of the drug until toxicity developed or disease progression (PRG) occurred. RESULTS: This study was designed to enter 30 patients. However, because no clinical responses were seen in the first 20 patients entered onto the study, the early-stopping rule was invoked and patient accrual was halted. Eleven patients (55%) had SD on topotecan, and nine (45%) had PRG. Toxicity included neutropenia and rash. The median survival duration for all patients was 7.6 months. CONCLUSION: We observed no objective clinical responses despite producing high-grade neutropenia. Phase II trials of topotecan using different schedules or higher doses supported by growth factors may clarify the role of topotecan in the treatment of NSCLC. The combination of topotecan with cisplatin and topoisomerase II inhibitors such as etoposide should be explored. Finally, the median survival duration of 7.6 months for 20 patients treated with an agent that failed to produce any obvious clinical responses compares favorably to the survival obtained with combinations of existing agents. This supports the further study of novel compounds in this clinical setting.

Aged↗

High-dose cyclophosphamide, thiotepa, and carboplatin with autologous marrow support in women with measurable advanced breast cancer responding to standard-dose therapy: analysis by age.

The analysis was undertaken to determine if the time to progression and survival for women with breast cancer treated with high-dose chemotherapy after a conventional-dose induction therapy differs significantly for women younger and older than 40 years of age. All patients treated in phase II or III protocols of high-dose chemotherapy for breast cancer are included in this analysis. Women were treated on one of six protocols: four sequential phase II protocols for metastatic breast cancer involving cyclophosphamide at a dose of 6000 mg/m2, thiotepa at 500 mg/m2, and carboplatin at 800 mg/m2 (CTCb) chemotherapy; one phase II study of CTCb chemotherapy for stage III or inflammatory breast cancer; and a Cancer and Leukemia Group B phase III study of cyclophosphamide, carmustine, and cisplatin for women with more than 10 involved lymph nodes after primary therapy. Eligibility criteria for the patients with metastatic disease included histologically documented breast cancer, at least a partial response to conventional dose therapy, no prior pelvic radiotherapy, cumulative doxorubicin of less than 500 mg/m2, and physiologic age of 18-55 years. Patients with inadequate renal, hepatic, pulmonary, and cardiac function or tumor involvement of marrow or central nervous system were excluded. Of 99 registered patients, three (3%) died of toxicity. There were no toxic deaths in protocols for stage II and III disease, and to date none of these patients have relapsed. Thus, there are no differences by age for these studies.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Isolation of plant cytochrome P-450 and NADPH: cytochrome P-450 reductase from tulip bulbs (Tulipa fosteriana L.) oxidizing xenobiotics.

Cytochrome P-450 and NADPH: cytochrome P-450 reductase were solubilized by detergents from microsomal fraction of tulip bulbs Tulipa fosteriana L. and purified to electrophoretic homogeneity. The purification was achieved by anion-exchange column chromatography, hydroxyapatite-column chromatography and affinity chromatography. The two enzyme showed relative molecular weights of about 54,200 and 77,600 for cytochrome P-450 and NADPH: cytochrome P-450 reductase, respectively. The purified enzymes were characterized by their absorption spectra and by kinetic characteristics. The interaction with endogeneous as well as exogenous substrates was studied by differential spectroscopy. Both enzymes in the presence of dilauroyl phosphatidylcholine and NADPH were able to oxidize xenobiotics (N-nitroso-N-methylaniline and N-nitroso-N-dimethylamine) in the reconstitution experiments.

Cytochrome P-450 Enzyme System↗

High-dose ifosfamide/carboplatin/etoposide with autologous hematopoietic stem cell support: safety and future directions.

Agents with broad cytotoxic activity, steep linear log dose-response relationships, relative non-cross-resistance, and nonoverlapping nonhematologic toxicities can be combined to create new high-dose combination regimens. We have previously reported phase I dose-escalation studies of ifosfamide, carboplatin, and the combination of the two. Etoposide has reported synergism with these alkylators and produces mucositis as its dose-limiting toxicity. The current study was designed to define the maximum tolerated doses of high-dose combination ifosfamide/carboplatin/etoposide (ICE), with stem cell support for amelioration of hematologic toxicity. Forty-eight adults with advanced malignancy received ICE chemotherapy by 96-hour continuous infusion. Initially, etoposide was added to fixed-dose ifosfamide and carboplatin, then the maximum tolerated dose of etoposide was fixed while doses of the alkylators were individually escalated. Autologous marrow, with or without peripheral blood progenitor cells, was reinfused 3 days after completing chemotherapy. The maximum tolerated doses of ifosfamide, carboplatin, and etoposide were identified as 16 g/m2, 1.8 g/m2, and 1.2 g/m2, respectively. Mortality was 4%. Patients who had prior cisplatin exposure were at increased risk for renal toxicity. If serum creatinine levels (monitored twice daily) rose sharply during chemotherapy, ifosfamide and carboplatin were immediately stopped. Severe multiorgan toxicity developed in the few patients who experienced early renal toxicity. Early stopping enhanced the safety of this regimen. Interpatient differences in chemotherapy drug metabolism or reduced renal clearance may predispose individuals to severe toxicity by increasing overall drug exposure. It was concluded that the ICE regimen is well tolerated and warrants further exploration as treatment of patients with small cell lung cancer, ovarian and germ cell carcinomas, and lymphomas in phase II trials.

Adult↗

Methotrexate and gamma-tert-butyl methotrexate transport in CEM and CEM/MTX human leukemic lymphoblasts.

In a continuing investigation of determinants of their 200-fold methotrexate resistance and their collateral sensitivity to gamma-tert-butyl methotrexate, the ability of CEM/MTX cells to transport the two drugs was analyzed and compared with that of CEM cells. The Km and Vmax values for the influx of methotrexate into CEM cells did not differ significantly from those of CEM/MTX cells, and this was the case for gamma-tert-butyl methotrexate as well. Surface binding and influx rates were proportional to cell surface area, but differences in efflux rates and methotrexate uptake were too large to be explained on this basis. Neither methotrexate nor trimetrexate competed with gamma-tert-butyl methotrexate influx in CEM cells. However, both drugs perturbed the gamma-tert-butyl methotrexate steady state in CEM cells, resulting in slightly less uptake than with gamma-tert-butyl methotrexate alone. However, the major difference between the two cell types was in the methotrexate uptake plateau, which was much greater in the case of the parental cell line. A related observation was the more rapid efflux of methotrexate from CEM/MTX cells than from CEM cells. The poor uptake, the associated meager capacity to polyglutamylate methotrexate and the enhanced methotrexate efflux appear to be responsible for its decreased activity against CEM/MTX cells. Half-lives for gamma-tert-butyl methotrexate efflux were the same in both cell lines, allowing the drug to accumulate to cytotoxic levels despite its inability to form polyglutamates.

Cell Line↗

A successful system of scientific data audits for clinical trials. A report from the Cancer and Leukemia Group B.

OBJECTIVE: To report on data collected during on-site audits of source documents in the Cancer and Leukemia Group B (CALGB). DESIGN: A retrospective review of audit reports in four audit cycles. SETTING: A cooperative group of institutions conducting clinical trials in cancer treatment. PARTICIPANTS: Patients taking part in clinical trials at collaborating CALGB institutions, members of the CALGB Data Audit Committee, and group chairmen of CALGB. MAIN OUTCOME MEASURE: The results of 691 institutional audits conducted by the CALGB in 1982 through 1992 with comparisons of main CALGB institutions vs affiliates. RESULTS: In four full reviews of all participating institutions in the CALGB, 3787 patients have had their on-site medical records compared with data submitted to the CALGB Data Management Center. Compliance with federal regulations for oversight by an institutional review board improved from a deficiency rate of 28.0% among the main institutions and 49.6% of the affiliate institutions in the first audit cycle to respective figures of 13.3% and 28.2% in the fourth cycle. Consent form deficiencies also dropped overall from 18.5% in the first cycle to 3.9% in the fourth. Patient eligibility was verified by auditors in 94.5%, and assessment of tumor changes in response to treatment was verified in 96.4% in the fourth cycle; both figures were only slightly lower in the first cycle. Two instances of scientific impropriety were discovered for a rate of only 0.28% of all audits. Both occurred prior to 1984, and none have occurred since. Major protocol deviations in drug dosing have held steady at about 11% over four audit cycles. Over the 11-year period of audits, three main institutions and 96 affiliate institutions have discontinued CALGB membership due solely, or at least partly, to unfavorable audit results. CONCLUSION: Scientific improprieties have occurred very rarely in clinical trials conducted by the CALGB. Protocol compliance in assessing patient eligibility and tumor responses has been high. Attention to administrative matters of consent forms, institutional review board approval, and ancillary data submission has measurably improved in the CALGB, which is at least partly due to the pressure from this on-site peer review of investigator performance.

Clinical Trials as Topic↗

Passover: a gene required for synaptic connectivity in the giant fiber system of Drosophila.

Passover (Pas) flies fail to jump in response to a light-off stimulus. The mutation disrupts specific synapses of the giant fibers (GFs), command neurons for this response. Pas was cloned from a P element-induced allele. The cDNA encodes a putative membrane protein of 361 amino acids. Null, hypomorphic, and dominant alleles were sequenced. In the adult central nervous system, and in the pupa during GF synapse formation, Pas is consistently expressed in the GF and in a large thoracic cell in the location of its postsynaptic targets. Pas establishes a new gene family. The Drosophila ogre protein, required for postembryonic neuroblast development, is 47% identical; the C. elegans Unc-7 protein, which when mutated alters the connectivity of a few neurons, is 33% identical.

Alleles↗

Comparison of adjuvant chemotherapy with methotrexate and fluorouracil with and without cyclophosphamide in breast cancer patients with one to three positive axillary lymph nodes.

BACKGROUND: Alkylating agents administered as single agents or in combination with antimetabolites or anthracyclines delay the appearance of metastases and prolong the survival of breast cancer patients after surgery. PURPOSE: This phase III clinical trial was designed to evaluate the therapeutic efficacy and toxicity of the alkylating agent cyclophosphamide in combination with the antimetabolites methotrexate and fluorouracil adjuvant to breast cancer surgery. METHODS: This study consisted of 255 breast cancer patients (a) with one to three histologically positive axillary lymph nodes and either no detectable primary tumor or operable primary tumors 5 cm or less (T0-T2) (95% of the patients) or (b) with tumors larger than 5 cm (T3) and with negative axillary nodes. Patients were randomly allocated to receive either methotrexate (60 mg/m2) and fluorouracil (600 mg/m2) (MF) intravenously on days 1 and 8 every 28 days for eight cycles or cyclophosphamide (100 mg/m2) orally on days 1-14 plus MF (CMF) every 28 days for the same duration. Median follow-up was 7.8 years, and maximum follow-up was 13 years. RESULTS: There were no statistically significant differences in time to treatment failure or overall survival for patients treated with MF or CMF. At 8 years after completion of treatment, time to treatment failure was 55% (95% confidence interval [CI] = 50%-60%) and 59% (95% CI = 54%-64%) and overall survival was 69% (95% CI = 65%-73%) and 67% (95% CI = 62%-72%) for MF- and CMF-treated patients, respectively. The hazard ratios (MF to CMF) for time to treatment failure and for survival, estimated with a proportional hazards model, were 1.02 (95% CI = 0.69-1.50) and 0.87 (95% CI = 0.56-1.34), respectively. Myelosuppression was significantly greater (P < .0001) in CMF-treated patients during cycles 1-6. Median white blood cell count nadirs were between 4.4 x 10(3)/microL and 3.5 x 10(3)/microL in patients receiving MF and between 3.0 x 10(3)/microL and 2.4 x 10(3)/microL in those receiving CMF. Dose reductions were more frequent in CMF-treated patients, which led to statistically significant differences (P < .0001) in amounts of methotrexate and fluorouracil administered. Primary cancers at other sites occurred in 14 patients (5.5%)--six treated with MF and eight treated with CMF. CONCLUSIONS: Our findings suggest that the addition of cyclophosphamide to adjuvant chemotherapy with MF offers no therapeutic advantage but results in increased myelosuppression. IMPLICATIONS: Future trials will define the possible advantages of antimetabolites in adjuvant therapy. Further information will also become available when results of the ongoing National Surgical Adjuvant Breast and Bowel Project trial comparing adjuvant MF to CMF in node-negative breast cancer patients are presented.

Adult↗

Cisplatin, 5-fluorouracil, and etoposide for advanced non-small cell lung cancer.

BACKGROUND: Cisplatin and etoposide combination chemotherapy is the most commonly used regimen for advanced non-small cell lung cancer (NSCLC). 5-Fluorouracil (5-FU) is an agent with little intrinsic activity against NSCLC: However, there is increasing evidence that 5-FU is synergistic with cisplatin and vice versa. In an effort to improve on the traditional chemotherapeutic approach to NSCLC, a treatment regimen consisting of cisplatin, 5-FU, and etoposide (PFE) was developed. METHODS: Thirty-five patients with advanced NSCLC were treated with the PFE regimen (cisplatin 25/mg/m2/d and 5-FU 1000 mg/m2/d by continuous infusion and etoposide 60 mg/m2/d, each for 4 days). The cycles were repeated every 28 days. RESULTS: The patients received a mean of 2.8 cycles of PFE. Ten patients had a partial response to chemotherapy for an overall response rate of 28.6%. The median survival was 7.0 months. Toxicities included myocardial infarction (2 of 35), congestive heart failure (2 of 35), fatal pulmonary embolus (1 of 35), and a cerebrovascular accident (1 of 35). The incidence of Grade 4 neutropenia (5.7%) and thrombocytopenia (8.5%) was acceptable. CONCLUSIONS: The response rate, duration of response, and survival in this group of 35 patients treated with PFE was similar to that reported for cisplatin and etoposide. The increased cardiovascular toxicity may be the result of the infused 5-FU.

Adult↗

Intensive combined modality therapy for limited-stage small-cell lung cancer.

BACKGROUND: Conventional-dose chemotherapy for small-cell lung cancer has resulted in high response rates but rarely in a cure. The addition of thoracic radiotherapy (chemoradiotherapy) has improved survival for patients having limited disease, resulting in a median survival of 14-18 months. Previous trials evaluating high-dose chemotherapy and autologous bone marrow transplantation have demonstrated enhanced complete response rates without documenting overall survival benefit. PURPOSE: The purpose of this phase II trial was to determine the disease-free and overall survival, toxic effects, and relapse patterns in patients with limited small-cell lung cancer who were in partial or complete response to first-line conventional-dose chemotherapy and then received intensive systemic combined modality therapy. METHODS: Adults with stage III small-cell lung cancer who had achieved at least a partial response to conventional-dose induction chemotherapy were treated with high-dose cyclophosphamide, cisplatin, and carmustine combined with autologous bone marrow transplantation. Cumulative doses of the three drugs were 5625, 165, and 480 mg/m2, respectively. After recovery, patients received thoracic radiotherapy (50-60 Gy in 25-30 fractions over 5-6 weeks) and cranial radiotherapy (30 Gy in 15 fractions during 3 weeks). RESULTS: Of 19 patients in the study, six had achieved complete response, eight had a greater than 90% reduction in tumor size, and five had a 50%-90% reduction in tumor size. After high-dose therapy, 15 of the 19 were in complete response. Overall, median time to treatment failure after high-dose therapy was 12 months. Overall survival was 73% (95% confidence interval [CI] = 42%-89%) at 1 year and 53% (95% CI = 22%-77%) at 2 years. Of the 14 patients in or near complete response before high-dose therapy, 10 remain disease free with no further chemotherapy a median of 15 (4-69+) months after therapy. Actuarial 2-year disease-free survival is 57% (95% CI = 20%-82%). One patient died of Candida sepsis. Morbidity was low, and most patients returned to full-time work. With the exception of herpes zoster, there were no complications more than 3 months after high-dose therapy. CONCLUSIONS: The majority of the patients in this study are experiencing prolonged and unmaintained disease-free survival. Our findings suggest that patients in or near complete response before high-dose therapy have the most favorable prognosis. IMPLICATIONS: A randomized comparison between this approach and conventional-dose therapy is planned to define the utility of dose intensification with autologous bone marrow transplantation in the treatment of patients with limited-stage small-cell lung cancer who are in or near complete response.

Actuarial Analysis↗

Detoxication products of the carcinogenic azodye Sudan I (solvent yellow 14) bind to nucleic acids after activation by peroxidase.

The C-hydroxyderivatives of the carcinogenic dye Sudan I, 1-phenylazo-2,6-dihydroxynaphthalene and 1-(4-hydroxyphenylazo)-2-hydroxynaphthalene, which are considered to be detoxication products of this dye bind to DNA or tRNA after oxidation into active metabolites by peroxidase and H2O2 in vitro. The 32P-postlabeling analysis of DNA modified by active metabolites of both Sudan I derivatives provides evidence that the covalent binding to DNA is the principal type of DNA modification. Since the urinary bladder is rich in peroxidases, the participation of these enzymes in activation of detoxicating products of Sudan I may be involved in the initiation of Sudan I-carcinogenesis in this organ.

Animals↗

Antitumor alkylating agents: in vitro cross-resistance and collateral sensitivity studies.

Cell lines resistant to five antitumor alkylating agents (CDDP, PAM, 4-HC, HN2, and BCNU) were developed from five parental human tumor lines representative of solid tumors with a range of sensitivities to antitumor alkylating agents. The parental cell lines were SCC-25 squamous carcinoma of the head and neck, MCF-7 breast carcinoma, SW2 small-cell lung cancer, SL6 non-small-cell lung carcinoma, and G3361 melanoma. Survival curves using colony formation as the endpoint were generated for each of the 25 cell lines to each of the five alkylating agents. Comparison of the drug concentrations that reduced the survival of the alkylating agent-resistant cell lines by 90% (IC90 values) with the IC90 values obtained for the corresponding parental cell lines was used as a measure of the resistance/sensitivity of the alkylating agent-resistant lines to each drug tested. Although cross-resistance among the alkylating agents was generally uncommon, several patterns of response emerged. Cross-resistance occurred in 27 of the 105 determinations and occurred most frequently in the cell lines in which resistance was developed to PAM (57%) or BCNU (38%). Cross-resistance to HN2 occurred most frequently. Collateral sensitivity was equally as common, occurring in 25 of the 105 determinations. Collateral sensitivity occurred most frequently in the cell lines made resistant to 4-HC. The 4-HC-resistant cell lines were most frequently collaterally sensitive to PAM and to BCNU. Cross-resistance developed most frequently in the MCF-7 breast carcinoma and SCC-25 squamous-cell carcinoma cell lines, whereas collateral sensitivity developed most frequently in the SW2 small-cell lung cancer line and the G3361 melanoma cell line and least frequently in the MCF-7 breast carcinoma cell line and the SL6 non-small-cell lung cancer cell line. The implication of these findings for the development of strategies for clinical treatment are discussed.

Alkylating Agents↗

The use of G-CSF or GM-CSF mobilized peripheral blood progenitor cells (PBPC) alone or to augment marrow as hematologic support of single or multiple cycle high-dose chemotherapy.

High dose chemotherapy with autologous bone marrow support (ABMT) can achieve prolonged relapse-free survival in relapsed lymphomas, leukemias, and certain solid tumors. The principal morbidity and mortality relate to the infectious complications that occur during the 3-4 week aplasia until the marrow autograft recovers. Progenitor cells can be mobilized into the peripheral blood compartment by hematopoietic growth factors, used alone or after chemotherapy. We describe four trials using cytokine-mobilized peripheral blood progenitor cells (PBPC). In the first trial, PBPC collected after GM-CSF administration were used to augment marrow. Reconstitution of trilineage marrow function occurred promptly, resulting in short hospital stays and fewer platelet transfusions. In a second study, GM-CSF/chemotherapy-mobilized PBPC were used as the sole hematopoietic support during high dose chemotherapy. Granulocyte and platelet reconstitution was rapid. Time to hematopoietic recovery, transfusion requirements, and duration of hospital stay were all significantly improved for the patients receiving PBPC compared with similar patients receiving marrow alone. While most patients experienced prompt hematopoietic recovery they showed sluggish platelet engraftment. The next two trials built on the observation that a few PBPC alone could support both granulocyte and platelet recovery and were designed to test the feasibility of sequential high-dose therapies. In one trial, PBPC given with and without marrow made it possible to deliver two sequential cycles of high-dose therapy. The second trial utilized PBPC plus cytokines to deliver four cycles of dose-intensive chemotherapy at doses that could not be given with cytokine support alone.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

High-dose chemotherapy with autologous stem cell support for breast cancer: a review of the Dana-Farber Cancer Institute/Beth Israel Hospital experience.

The overall median survival of women with advanced or high-risk primary breast cancer has not changed with conventional chemotherapy. Regimens employing high-dose chemotherapy with autologous stem cell support (ABMT) have been developed with the hope of optimizing tumor response and increasing survival. Early phase I studies in women with advanced refractory disease achieved high response rates of short duration. Second generation studies combined an induction phase followed by one high-dose intensification at time of maximum tumor response. The Dana-Farber Cancer Institute/Beth Israel Hospitals have developed the high-dose intensification regimen of cyclophosphamide, thiotepa, and carboplatin (CTCb) for use in women with metastatic and high-risk stage IIIB/inflammatory breast cancer. To date, approximately 19% of women with metastatic disease remain progression free using this approach, with median length of follow-up approaching 40 months. Although the median duration of follow-up for the stage IIIB women is much shorter (approximately 12 months), greater than 90% of these women are thus far disease free. With the advent of hematologic support, such as blood stem cells and colony-stimulating factors, the morbidity, mortality, and costs associated with this treatment have been substantially reduced, allowing for two or more cycles of high-dose intensification to be employed, to exploit the potential of dose-intensity to optimize response.

Adenocarcinoma↗

Use of peripheral-blood progenitor cells abrogates the myelotoxicity of repetitive outpatient high-dose carboplatin and cyclophosphamide chemotherapy.

PURPOSE: Attempts to increase dose-intensity in clinical practice have been limited by cumulative hematologic toxicity despite the use of hematopoietic growth factors. To address this problem, we designed a study to determine whether four cycles of dose-intensive chemotherapy with carboplatin could be administered in the outpatient setting using granulocyte-macrophage colony-stimulating factor (GM-CSF) and peripheral-blood progenitor cells (PBPCs) that had been harvested before initiation of treatment. PATIENTS AND METHODS: An initial cycle (cycle no. 0) of cyclophosphamide 4 g/m2 followed by GM-CSF was used to mobilize PBPCs harvested by leukapheresis for 6 consecutive days. Cycles no. 1 through 4 consisted of outpatient carboplatin 600 mg/m2 and cyclophosphamide 600 mg/m2 followed by GM-CSF 5 micrograms/kg subcutaneously (SC) twice per day every 28 days. In cycle no. 1, PBPC were not reinfused to assess the effects of GM-CSF alone. In cycles no. 2 through 4, PBPCs were reinfused on day 3 in an outpatient setting. RESULTS: In eight assessable patients, the addition of PBPCs in cycle no. 2 resulted in a significant reduction in the median duration of thrombocytopenia less than 20,000/microL (6.5 v 1 day; P = .016), days to platelets more than 50,000/microL (20.5 v 15 days; P = .020), number of platelet transfusions (five v 1.5; P = .016), and duration of neutropenia (absolute neutrophil count [ANC] < 1,000/microL (7 v 2.5 days; P = .008) when compared with cycle no. 1. Dose-limiting hematologic toxicity, defined as more than 7 days of platelets less than 20,000/microL or ANC less than 500/microL, was observed in four of eight patients during cycle no. 1, but not during cycles no. 2, 3, and 4 of chemotherapy supported by PBPCs (a total of 19 cycles in eight patients). Five of eight patients completed all four cycles of high-dose therapy. Three patients did not complete four cycles due to late thrombocytopenia (n = 2) or tumor progression (n = 1). CONCLUSION: These results indicate a benefit of PBPCs in addition to GM-CSF in alleviating myelosuppression of dose-intensive chemotherapy. Initial collection of PBPCs may allow administration of repetitive cycles of high-dose chemotherapy with acceptable toxicity to outpatients at disease onset.

Adult↗