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Biomedical subjects

Morris D Groves

Publications and source records attributed to Morris D Groves.

15 recordsLinked to original sources

A North American brain tumor consortium (NABTC 99-04) phase II trial of temozolomide plus thalidomide for recurrent glioblastoma multiforme.

BACKGROUND: Laboratory and clinical data suggest that the anti-angiogenic agent, thalidomide, if combined with cytotoxic agents, may be effective against recurrent glioblastoma multiforme (GBM). OBJECTIVES: To determine 6-month progression-free survival (6PFS) and toxicity of temozolomide plus thalidomide in adults with recurrent GBM. PATIENTS AND METHODS: Eligible patients had recurrent GBM after surgery, radiotherapy, and/or adjuvant chemotherapy. Temozolomide was given at 150-200 mg/m(2)/day on days 1-5 of each 28-day cycle. Thalidomide was given orally at 400 mg at bedtime (days 1-28) and increased to 1,200 mg as tolerated. Patients were evaluated with magnetic resonance imaging scans every 56 days. The study was designed to detect an increase of the historical 6PFS for GBM from 10 to 30%. RESULTS: Forty-four patients were enrolled, 43 were evaluable for efficacy and safety. The study population included 15 women, 29 men; median age was 53 years (range 32-84); median Karnofsky performance status was 80% (range 60-100%). Thirty-six (82%) patients were chemotherapy-naïve. There were 57 reports of toxicity of grade 3 or greater. Non-fatal grade 3-4 granulocytopenia occurred in 15 patients (34%). The objective response rate was 7%. The estimated probability of being progression-free at 6 months with this therapy is 24% [95% confidence interval (C.I.) 12-38%]. The median time to progression is 15 weeks (95% C.I. 10-20 weeks). There was no observed correlation between serum levels of vascular endothelial growth factor, basic fibroblast growth factor, and IL-8 and the 6PFS outcome. CONCLUSION: This drug combination was reasonably safe, but with little indication of improvement compared to temozolomide alone.

Adult↗

Phase I/II study of imatinib mesylate for recurrent malignant gliomas: North American Brain Tumor Consortium Study 99-08.

PURPOSE: Phase I: To determine the maximum tolerated doses, toxicities, and pharmacokinetics of imatinib mesylate (Gleevec) in patients with malignant gliomas taking enzyme-inducing antiepileptic drugs (EIAED) or not taking EIAED. Phase II: To determine the therapeutic efficacy of imatinib. EXPERIMENTAL DESIGN: Phase I component used an interpatient dose escalation scheme. End points of the phase II component were 6-month progression-free survival and response. RESULTS: Fifty patients enrolled in the phase I component (27 EIAED and 23 non-EIAED). The maximum tolerated dose for non-EIAED patients was 800 mg/d. Dose-limiting toxicities were neutropenia, rash, and elevated alanine aminotransferase. EIAED patients received up to 1,200 mg/d imatinib without developing dose-limiting toxicity. Plasma exposure of imatinib was reduced by approximately 68% in EIAED patients compared with non-EIAED patients. Fifty-five non-EIAED patients (34 glioblastoma multiforme and 21 anaplastic glioma) enrolled in the phase II component. Patients initially received 800 mg/d imatinib; 15 anaplastic glioma patients received 600 mg/d after hemorrhages were observed. There were 2 partial response and 6 stable disease among glioblastoma multiforme patients and 0 partial response and 5 stable disease among anaplastic glioma patients. Six-month progression-free survival was 3% for glioblastoma multiforme and 10% for anaplastic glioma patients. Five phase II patients developed intratumoral hemorrhages. CONCLUSIONS: Single-agent imatinib has minimal activity in malignant gliomas. CYP3A4 inducers, such as EIAEDs, substantially decreased plasma exposure of imatinib and should be avoided in patients receiving imatinib for chronic myelogenous leukemia and gastrointestinal stromal tumors. The evaluation of the activity of combination regimens incorporating imatinib is under way in phase II trials.

Adolescent↗

Phase II Radiation Therapy Oncology Group trial of conventional radiation therapy followed by treatment with recombinant interferon-beta for supratentorial glioblastoma: results of RTOG 9710.

PURPOSE: The aim of this study was to determine whether recombinant human interferon beta-1a (rhIFN-beta), when given after radiation therapy, improves survival in glioblastoma. METHODS AND MATERIALS: After surgery, 109 patients with newly diagnosed supratentorial glioblastoma were enrolled and treated with radiation therapy (60 Gy). A total of 55 patients remained stable after radiation and were treated with rhIFN-beta (6 MU/day i.m., 3 times/week). Outcomes were compared with the Radiation Therapy Oncology Group glioma historical database. RESULTS: RhIFN-beta was well tolerated, with 1 Grade 4 toxicity and 8 other patients experiencing Grade 3 toxicity. Median survival time (MST) of the 55 rhIFN-beta-treated patients was 13.4 months. MST for the 34 rhIFN-beta-treated in RPA Classes III and IV was 16.9 vs. 12.4 months for historical controls (hazard ratio [HR] = 1.27, 95% confidence interval [CI] = 0.89-1.81). There was also a trend toward improved survival across all RPA Classes comparing the 55 rhIFN-beta treated patients and 1,658 historical controls (HR = 1.24, 95% CI = 0.94-1.63). The high rate of early failures (54/109) after radiation and before initiation of rhIFN-beta was likely caused by stricter interpretation of early radiographic changes in the current study. Matched-pair and intent-to-treat analyses performed to try to address this bias showed no difference in survival between study patients and controls. CONCLUSION: RhIFN-beta given after conventional radiation therapy was well tolerated, with a trend toward survival benefit in patients who remained stable after radiation therapy. These data suggest that rhIFN-beta warrants further evaluation in additional studies, possibly in combination with current temozolomide-based regimens.

Antineoplastic Agents↗

Phase II trial of tipifarnib in patients with recurrent malignant glioma either receiving or not receiving enzyme-inducing antiepileptic drugs: a North American Brain Tumor Consortium Study.

PURPOSE: A phase II study was undertaken in patients with recurrent malignant glioma to determine the efficacy and safety of tipifarnib, a farnesyltransferase inhibitor, dosed at the respective maximum-tolerated dose (MTD) for patients receiving and not receiving enzyme-inducing antiepileptic drugs (EIAEDs). Because tipifarnib undergoes extensive hepatic metabolism, MTD is doubled in patients on EIAEDs. The population included 67 patients with glioblastoma multiforme (GBM) and an exploratory group of 22 patients with anaplastic glioma (AG). PATIENTS AND METHODS: Patients received tipifarnib (300 and 600 mg bid for 21 days every 4 weeks in non-EIAED and EIAED patients, respectively). All patients were assessable for efficacy and safety. RESULTS: Two AG patients (9.1%) and eight GBM patients (11.9%) had progression-free survival (PFS) more than 6 months. Among the latter eight GBM patients, six of 36 patients (16.7%; 95% CI, 7% to 32%) were not receiving EIAEDs and two of 31 patients (6.5%; 95% CI, 1% to 20%) were receiving EIAEDs. Four patients had partial responses in group A GBM and one patient had a partial response group B GBM. An exploratory comparison of PFS between GBM groups A and B was statistically significant (P = .01). Patients not receiving EIAEDs had a higher incidence and increased severity of hematologic events. However, the incidence and severity of rash (the previously determined dose-limiting toxicity in patients receiving EIAEDs) seemed similar in EIAED and non-EIAED subgroups. CONCLUSION: Tipifarnib (300 mg bid for 21 days every 4 weeks) shows modest evidence of activity in patients with recurrent GBM who are not receiving EIAEDs and is generally well tolerated in this population.

Adult↗

Phase II trial of temozolomide plus marimastat for recurrent anaplastic gliomas: a relationship among efficacy, joint toxicity and anticonvulsant status.

PURPOSE: Since anaplastic gliomas (AG) depend on matrix metalloproteinases for tumor cell invasion and angiogenesis, we undertook this phase II study to evaluate the matrix metalloproteinase inhibitor marimastat (MT), combined with the alkylator temozolomide (TMZ) in patients with recurrent AG, looking for improved outcomes. PATIENTS AND METHODS: Patients were treated every 28 days with TMZ at 150-200 mg/m2 once daily on days 1-5 and MT at 25 mg twice daily on days 8-28. Results were compared to our database of anaplastic glioma patients treated at recurrence. A subanalysis of the relationship between MT-induced joint-related toxicity and anticonvulsant status was carried out. RESULTS: Forty-nine patients were enrolled; all were assessable for toxicity, and 46 were included in the efficacy analysis. Joint and muscle complaints occurred in 32 patients (65%); 1 patient was removed from the study due to toxicity. The best protocol response was a complete response in 1 patient and a partial response in 2 patients (3/46=7%, 95% confidence interval (CI)=1, 18). Median time to progression was 24 weeks (95% CI=16, 56), and the progression-free survival (PFS) rate was 48% at 6 months (95% CI=35%, 65%), which surpassed the protocol objective of 40%. Sub-analysis showed a positive impact of joint-related toxicity due to MT on PFS whether or not patients were taking CYP450 enzyme-inducing anticonvulsants. CONCLUSIONS: Even though this regimen is more efficacious than our comparator of historical controls in recurrent AG, the regimen was roughly equivalent to single-agent TMZ and was associated with additional toxicity. The sub-analysis suggests pharmacokinetic and drug-drug interactions which may positively impact responses to MT.

Anticonvulsants↗

Combination celecoxib and temozolomide in C6 rat glioma orthotopic model.

The purpose of this study was to determine whether a combination treatment of temozolomide with celecoxib is effective in the rat orthotopic glioma model. After stereotactic injection of C6/LacZ rat glioma cells into the Sprague Dawley rat brain, the rats were randomly assigned to four treatment groups [group 1, control treatment; group 2, celecoxib (25 mg/kg p.o. everyday) alone; group 3, temozolomide (7.5 mg/kg i.p. for 5 days at 2nd week) alone; group 4, a combination of celecoxib and temozolomide]. Rats were sacrificed 18 days after treatment, and the body weight, tumor volume, tumor cell proliferation, microvessel densities, and apoptosis were evaluated. There was a significant reduction of tumor volume in combination group compared to control or single-agent therapy. The median tumor volume was estimated to be 111.5 mm(3) (control), 65.0 mm(3) (celecoxib), 71.8 mm(3) (temozolomide) and 18.7 mm(3) (combination). In the combination group, there was increased tumor cell apoptosis as well as decreased microvessel density and tumor cell proliferation relative to the control and single-agent therapy (P<0.05). Collectively, the data suggest that the combination celecoxib and temozolomide may provide a novel and effective approach to the treatment of glioblastoma.

Animals↗

Synergistic effect and condition of pegylated interferon alpha with paclitaxel on glioblastoma.

Glioblastomas are highly vascularized tumors and anti-angiogenic strategy is one of the most promising therapeutic approaches to treat brain tumors. Interferon alpha (IFN-alpha) as a single agent or combined with standard chemo-therapy has been shown to inhibit various tumors, but the effect of combination anti-angiogenic therapy on brain tumors has not been well studied. We determined the optimal dose and schedule of pegylated IFN-alpha (PEG-IFN-alpha) against U-87MG human glioblastoma cells growing orthotopically in nude mice, since several clinical trials reported that PEG-IFN-alpha administered at higher or lower doses was less effective. The group treated two times per week with injections of 10 KU of PEG-IFN-alpha for 4 weeks showed significant decreases in cell proliferation and angiogenesis. Moreover, the optimal dose and schedule of PEG-IFN-alpha determined in this study and combined with paclitaxel treatment potently inhibited tumor growth in vivo. The mechanisms of the significant therapeutic effects were most likely caused by directly inhibiting cell proliferation and angiogenesis, and rendering apoptosis increased. Specifically PEG-IFN-alpha/paclitaxel combination induced apoptosis of tumor-associated endothelial cells more than that of tumor cells. These results suggest that optimal biological dosage and scheduling of PEG-IFN-alpha and paclitaxel combination is a potent strategy for glioblastoma patients as a new synergistic anti-endothelial treatment.

Animals↗

Neoplastic meningitis in patients with adenocarcinoma of the gastrointestinal tract.

BACKGROUND: Neoplastic meningitis (NM) occurs in 5-10% of patients with malignant disease. Little is known about the outcomes of patients with gastrointestinal (GI) malignancies who develop NM. For this report, the authors characterized the clinical course and attempted to identify prognostic factors in patients with NM due to primary malignancies of the GI tract. METHODS: In this retrospective study, 21 patients with GI primary tumors and NM were identified: Their medical records and imaging studies were reviewed. RESULTS: The patient population was composed of patients with gastric adenocarcinoma (n = 8 patients), esophageal adenocarcinoma (n = 7 patients), colon and/or rectal adenocarcinoma (n = 5 patients), and pancreatic adenocarcinoma (n = 1 patient). The median overall survival after the initial diagnosis of adenocarcinoma was 55 weeks (range, 8-884 wks), and the median survival after the diagnosis of NM was 7 weeks (range, 0-64 wks). Four patients died during palliative radiotherapy. No factors identified had an impact on outcome, including symptoms, physical findings at diagnosis, imaging characteristics, or cerebrospinal fluid findings. Univariate analysis showed a trend toward better outcomes for patients who received any kind of treatment directed toward the NM. CONCLUSIONS: Patients with NM from GI tract adenocarcinomas universally had poor outcomes. Until NM can be diagnosed earlier and/or until more effective therapies are identified, comfort care alone may be a reasonable alternative for some of these unfortunate patients.

Adenocarcinoma↗

Phase II study of fenretinide (NSC 374551) in adults with recurrent malignant gliomas: A North American Brain Tumor Consortium study.

PURPOSE: Fenretinide induces apoptosis in malignant gliomas in vitro. This two-stage phase II trial was conducted to determine the efficacy of fenretinide in adults with recurrent malignant gliomas. PATIENTS AND METHODS: Twenty-two patients with anaplastic gliomas (AG) and 23 patients with glioblastoma (GBM) whose tumors had recurred after radiotherapy and no more than two chemotherapy regimens were enrolled. Fenretinide was given orally on days 1 to 7 and 22 to 28 in 6-week cycles in doses of 600 or 900 mg/m(2) bid. RESULTS: Six of 21 (29%) patients in the AG arm and two of 23 (9%) patients in the GBM arm had stable disease at 6 months. One patient with AG treated at 900 mg/m(2) bid dosage had a partial radiologic response. Median progression-free survival (PFS) was 6 weeks for the AG arm and 6 weeks for the GBM arm. PFS at 6 months was 10% for the AG arm and 0% for the GBM arm. Grade 1 or 2 fatigue, dryness of skin, anemia, and hypoalbuminemia were the most frequent toxicities reported. The trial was closed after the first stage because of the inadequate activity at the fenretinide doses used. The first-administration mean plasma C(max) for fenretinide was 832 +/- 360 ng/mL at the 600 mg/m(2) bid dosage and 1,213 +/- 261 ng/mL at the 900 mg/m(2) bid dosage. CONCLUSION: Fenretinide was inactive against recurrent malignant gliomas at the dosage used in this trial. However, additional studies using higher doses of the agent are warranted based on the tolerability of the agent and the potential for activity of a higher fenretinide dosage, as suggested in this trial.

Administration, Oral↗

13-cis-retinoic acid in the treatment of recurrent glioblastoma multiforme.

Basic science and clinical investigations have demonstrated that 13-cis-retinoic acid (cRA) has activity against malignant gliomas. To assess its effectiveness in the setting of recurrent glioblastoma multiforme (GBM), we performed a retrospective analysis of the medical records and neuroimaging results of patients with recurrent GBM who were treated with cRA. The toxicity profile of cRA, response, and effect on progression-free survival from initiation of treatment were end points of our analysis. Eighty-two of 85 patients with a median age of 51 years received at least 1 full cycle of cRA. At the initiation of cRA treatment, the median Karnofsky performance score was 80. All patients had failed conventional radiotherapy. Seven patients were chemonaïve, whereas 75 patients had received some form of chemotherapy. Radiographic partial responses, minor responses, and stable disease were seen in 4%, 8%, and 34% of patients, respectively. Two patients were not assessable. Progression-free survival and overall survival after initiation of cRA were 10.0 and 24.6 weeks, respectively. Six-month progression-free survival was 19% for the entire group. Grade 3 or 4 toxicity developed in 14 patients (16%), one of whom developed pancreatitis and died. The results of this study demonstrate only modest efficacy for cRA therapy in this cohort of heavily pretreated patients with recurrent GBM. This data supports the use of cRA in such patients, but its further evaluation in larger, prospective, controlled studies with or without other noncytotoxic and cytotoxic agents may be warranted.

Administration, Oral↗

The pathogenesis of neoplastic meningitis.

Neoplastic meningitis (NM) is a dreaded metastatic complication occurring in 5% to 10% of cancer patients. Survival is limited, usually ranging from 4 to 16 weeks. The pathogenesis of NM has not been extensively investigated but can be considered from the anatomic and molecular biologic standpoints. Malignant cells reach the cerebrospinal fluid (CSF) and meninges by direct invasion from tumors located near or within the central nervous system (CNS), or via the bloodstream or other pathways that contact the CNS. Symptoms of NM are caused by malignant cells invading and damaging nervous tissue, obstructing the vascular supply to nervous tissue, or obstructing CSF pathways. The molecular changes responsible for the development of NM are not well delineated, but it is likely that they involve changes in molecules responsible for tumor cell adhesion, migration, and proliferation. An understanding of the pathogenesis of NM will allow for its earliest possible diagnosis and ultimately lead to therapies targeted at the underlying molecular causes of this devastating condition.

Humans↗

Response of neoplastic meningitis from solid tumors to oral capecitabine.

Neoplastic meningitis (NM) is a major challenge for the neuro-oncologist as it constitutes a relatively common clinical problem in systemic and central nervous system cancers, and is very difficult to treat. NM portends a significant worsening in prognosis. Chemotherapeutic treatment options are limited, and not particularly effective. We report two cases of NM from breast carcinoma and a third with esophageal carcinoma, which responded to treatment with capecitabine, an oral prodrug for 5-flurouracil. We believe capecitabine warrants further investigation in patients with NM. In some patients, its use may result in clinical and radiographic tumor responses, improved quality of life, and possibly increased survival.

Administration, Oral↗

Phase II trial of temozolomide plus the matrix metalloproteinase inhibitor, marimastat, in recurrent and progressive glioblastoma multiforme.

PURPOSE: Novel therapies are needed for patients with recurrent glioblastoma multiforme (GBM). Because there is evidence that temozolomide (TMZ) has some activity in GBM and is well tolerated, and because of laboratory evidence that metalloproteinases are important in glioma cell invasion, the combination of TMZ and the matrix metalloproteinase inhibitor marimastat (MRM) in patients with recurrent GBM was studied. PATIENTS AND METHODS: Forty-four patients with recurrent GBM after standard radiotherapy were enrolled. For 19 patients, this therapy was their first chemotherapy after tumor progression after irradiation; 25 others had received chemotherapy previously. TMZ 150 to 200 mg/m(2) days 1 to 5 and MRM 50 mg days 8 to 28 was administered at 28-day intervals for two cycles; then patients were reevaluated. Treatment continued until progression of tumor or toxicity developed. RESULTS: Joint and tendon pain was the major therapy-related toxicity and was reported in 47% of patients. Five patients (11%) were removed from the study because of intolerable joint pain. For all patients, the progression-free survival (PFS) at 6 months was 39%. Median PFS was 17 weeks, median overall survival was 45 weeks, and 12-month PFS was 16%. CONCLUSION: The combination of TMZ and MRM resulted in a PFS at 6 months that exceeded the literature target by 29%. This drug combination met phase II study criteria; further study in recurrent patients with GBM might be warranted. Further study of therapy-induced joint pain is necessary.

Adult↗

Paraneoplastic chorea: case study with autopsy confirmation.

A 67-year-old man presented with a 7-month history of insidiously progressive chorea, ataxia, and vertigo. Neurologic examination revealed deficits referable to the basal nuclei, cerebellar vermis, and vestibular nuclei. Small-cell lung cancer was diagnosed by fine-needle biopsy of a parahilar mass. After chemotherapy, the patient's chorea worsened. Anti-Hu antibodies were present in serum and cerebrospinal fluid. Microscopic examination of the brain at autopsy revealed diffuse perivascular lymphocytic infiltrates, microglial activation, and neuronophagia throughout the neuraxis, including the brainstem, cerebellum, lenticular nuclei, striatum, and cerebral cortex. Prominent loss of Purkinje cells was seen in the cerebellar vermis and hemispheres to a lesser degree. Chorea is extremely rare as a paraneoplastic manifestation of cancer. The florid presentation and the positive findings contrasted with an unremarkable MRI of the brain. This case illustrates the preeminence of symptoms and signs over negative MRI findings in paraneoplastic encephalitis.

Brain↗