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T L Phillips

Publications and source records attributed to T L Phillips.

At least 163 records · Page 9Linked to original sources

Phase I trial of intravenous L-phenylalanine mustard plus the sensitizer misonidazole.

Misonidazole (MISO), a hypoxic cell radiosensitizer, has been shown in vivo to enhance tumor cell killing by melphalan (LPAM) with little or no enhancement of normal tissue injury. A Phase I trial was conducted using MISO p.o. 2 hr before i.v. LPAM. The highest doses used were the single maximum tolerated doses of MISO, 4 g/sq m, and LPAM, 0.6 mg/kg. Thirty-five patients were entered; 30 were evaluable for assessment of hematological toxicity, which was predicted to be the dose-limiting toxicity. The median age was 60 years (range, 28 to 72 years). Mild to moderate nausea and vomiting occurred in 80% of patients. Five developed serious hematological toxicity defined as nadir white blood cell count less than 1000/cu mm, platelets less than 20,000/cu mm or 4-week posttreatment white blood cell count less than 2000/cu mm, platelets less than 50,000/cu mm. Four of the toxicities occurred at the LPAM dose of 0.6 mg/kg but were independent of MISO dose. One patient died of infection. Two patients whose tumor demonstrated an objective response to therapy and 10 others with disease stabilization received additional courses. Four patients developed mild MISO neuropathy. Pharmacokinetic studies demonstrated that MISO did not appear to affect the pharmacokinetics of LPAM in plasma. Both LPAM and MISO can be given safely at their individual maximum tolerated dose. This combination will proceed to Phase II trials.

Adult↗

The significance of laryngeal edema following radiotherapy of carcinoma of the vocal cord.

Laryngeal edema persisting for more than three months following radiotherapy developed in 38 of 247 (15.4%) patients irradiated for carcinoma of the vocal cord. In 17 (44.7%) of these patients, the laryngeal edema was associated with persistent or recurrent disease, although only 25.4% of the patients with uncontrolled disease had laryngeal edema. The incidence of laryngeal edema was 13.1% for T1 disease, 23.8% for T2, and 21.4% for T3 and T4 disease. It increased significantly with increase of minimum tumor dose greater than or equal to 7000 rads or with NSD greater than 1900 ret, being 46.2% with minimum tumor dose greater than or equal to 7000 rad and 13.7% with minimum tumor dose less than 7000 rad and 43% with NSD greater than 1900 ret and 17% with NSD less than or equal to 1900 ret. It also increased with increase of field size, being 13.4% with field sizes less than 6.0 x 6.0 cm2, and 24.4% with field sizes greater than or equal to 6.0 x 6.0 cm2. When laryngeal edema is progressive and unresponsive to conservative measures, multiple biopsies should be performed to establish the presence of persistent or recurrent disease before salvage surgery is attempted. However, if it is mild, stable, no visible recurrence develops, and especially if it is limited to the arytenoids, no biopsy should be attempted because of the risk of inducing laryngeal necrosis.

Adult↗

The potential for adjuvant radiotherapy in choroidal melanoma.

Controversy exists regarding the efficacy of enucleation in the management of choroidal melanoma. The effect of any form of ocular therapy on the prevalence of choroidal melanoma metastases is unknown. In a number of other systemic tumors, preoperative irradiation may lessen the occurrence of widespread disease. This type of therapeutic approach might be useful in the management of high-risk choroidal melanoma. In preliminary studies using 2,000 rad of preenucleation irradiation in patients with choroidal melanoma who have a poor prognosis, we have not observed notable morbidity. There are a number of limitations to the use of this adjunct therapy in choroidal melanoma management; however, a prospective national randomized trial of preenucleation irradiation in patients with high-risk choroidal melanoma might allow us to indirectly determine the effect of enucleation on the prevalence of choroidal melanoma metastases as well as delineate the potential role of this type of adjunct therapy in ocular melanoma.

Choroid Neoplasms↗

Therapy of liver tumors metastatic from colorectal cancer with whole-liver radiation combined with 5-FU, adriamycin, and methotrexate.

Twenty-seven patients with liver metastasis from colorectal cancer were treated with intrahepatic arterial chemotherapy and external radiotherapy consisting of 5-fluorouracil (5-FU) (10 mg/kg/day for 8 days), adriamycin (5 mg/m2/day for 7 days) and methotrexate (MTX) (240 mg/m2/X1), combined with 2,100 rads of whole liver irradiation. Twenty of these patients (74%) had previously received systemic chemotherapy. Of the 21 patients who could be fully evaluated, seven (33%) had an objective partial response and another 10 (48%) had stable disease following treatment. The median duration of survival for all patients after initiation of treatment was 6.5 months. Those patients responding to therapy survived longer (12.7 months) than those who had stable disease (5.5 months) or disease progression (2.5 months). The response rate was not affected by previous chemotherapy. Additionally, of the 14 patients with symptoms related to the disease, nine (64%) experienced substantial relief of these symptoms. Toxicity with the therapy used in this study was generally moderate. The median nadiR WBC was 3,500 cells/mm3; the median nadir platelet count, 121,000 cells/mm3. There was, however, one treatment-associated fatality from sepsis in a patient whose WBC was 900 cells/mm3.

Aged↗

Late vascular effects of whole brain X-irradiation in the mouse.

The whole brains of mice were irradiated with 250 kVp X-rays at 120 rads min-1 (1.6 mm Cu HVL, TSD 50 cm), and a histological study was carried out. The dose range of X-irradiation was from 1,300 to 2,500 rads, i.e., 1,300, 1,500, 1,750, 2,000, and 2,500 rads. Eighty-six mice were used for histological examination. For microscopic examination, the mice were killed at regular postirradiation intervals between 15 and 20, 31 and 40, 41 and 50, 51 and 60, 61 and 70, 71 and 80, 81 and 90, 139 and 177 weeks. The brains were removed immediately thereafter, fixed in Bouin's solution, and embedded in paraffin. A histological examination was performed by a morphometric estimation of vascular lesions, in which the degree of the damage to the arterial system was scored in whole serial brain sections. Necrosis (encephalomalacia), atrophy, cell infiltration, and telangiectatic vascular change of the brain, caused as a result of the fibrinoid necrosis of the large arteries, were observed. Dose-dependent incidence of the fibrinoid necrosis increased between 41 and 87 weeks after irradiation. Mean score of fibrinoid necrosis increased dose dependently approximately 60 weeks after irradiation. It is suggested that scores of large vessel damage do relate to dose at 41 to 87 weeks, and can be used to quantify the vessel injury, and that fibrinoid necrosis of the large vessels may relate to the incidence of radionecrosis.

Animals↗

Evaluation of misonidazole peripheral neurotoxicity in rats by analysis of nerve trains evoked response.

The clinical use of misonidazole and other nitroimidazole radiosensitizing agents is limited by the peripheral and central neurotoxicity that is produced in animals and humans. In a blinded study, rats treated with misonidazole at either 100 mg/kg or 300 mg/kg, 5 days/week for 3 weeks, were evaluated for peripheral neurotoxicity using nerve trains evoked responses. Only one rat treated at a dose of 100 mg/kg developed symptoms and signs of neurotoxicity, while all rats treated at 300 mg/kg developed these signs and symptoms. Nerve trains analysis made possible a diagnosis of neurotoxicity before overt clinical signs appeared. This test is non-invasive and may be useful for evaluating patients receiving nitroimidazole radiosensitizers as part of a radiation therapy regimen.

Animals↗

Evaluation of the bioavailability of misonidazole (NSC#261037) in capsule and tablet form and pharmacologic effects of daily dosage.

A total of 34 patients were studied in order to evaluate capsule vs. tablet form of misonidazole and intermittent vs. daily administration. These patients were given drug formulation of tablets for one week and capsules for one week on either an intermittent (1, 2, or 3 times per week) or daily schedule. Total doses ranged from 5-15 gm/m2. There was no significant difference seen in mean serum levels or half-lives between capsules and tablets. Daily misonidazole resulted in slight build-up of serum levels in the latter part of the week. There was no difference in toxicities seen with drug daily vs. intermittent administration.

Adult↗

Large fraction radiotherapy plus misonidazole for treatment of advanced lung cancer: report of a phase I/II trial.

From August 1978 through December 1979, 51 patients with advanced non-oat cell carcinoma of the lung were enrolled in a Phase I/II trial sponsored by the Radiation Therapy Oncology Group (RTOG) employing misonidazole (a 2-nitroimidazole) as a hypoxic cell sensitizer and radiation. The purpose of this study was to test drug and radiation tolerance and to assess the short term efficacy of this unconventional treatment. Tumor doses of 600 rad wer given twice weekly for three weeks for a total of 3600 rad, preceded four to six hours by misonidazole in a dose of 2 gm/m2 or 1.75 gm/m2, administered orally. Forty-nine patients were evaluable. Serious toxicity from this treatment was rare. Grade 2 or 3 peripheral neuro-toxicity occurred in eight of 24 patients (33%) with drug doses of 2 gm/m2 and in four of 26 patients (15%) who received 1.75 gm/m2. Grade 3 or 4 central nervous system toxicity occurred in two patients. Two patients developed serious late radiation complications: one patient had a transverse myelitis that appeared one year following delivery of 3600 rad to the spinal cord; a second patient developed a tracheoesophageal fistula and pericarditis eight months following treatment. Objective responses were reported in 67% of patients (complete in 18%); 70% of the patients died with a median survival time of nine months. Of 32 patients eligible for 12 month follow-up, 34% survived more than one year. Patterns of relapse after initial treatment and comparison with results from other RTOG trials using conventional fractionation are discussed.

Adenocarcinoma↗

In vivo radiobiology of heavy ions.

The radiobiology of heavy charged particles has been investigated with various animal systems in vivo at the Lawrence Berkeley Laboratory using the helium beam from the 184" synchrocyclotron and the carbon, neon, and argon beams from the BEVALAC. Tumor experiments were carried out using the R1 sarcoma in rats and the EMT6 mouse mammary carcinoma, comparing X rays, carbon ions, neon ions, and argon ions. In vivo normal tissue experiments have been carried out with a wide range of tissues including testis, bone marrow, intestinal crypt cells, lens of the eye, esophagus, lung, and the spinal cord. The induction of dominant lethal mutations after irradiation of the testis was assayed by in vitro embryo culture after in vivo irradiation. Experiments were also done with the Harderian gland tumor induction system.

Animals↗

Treatment of cancer with heavy charged particles.

A clinical radiotherapeutic trial using heavy charged particles in the treatment of human cancers has accrued over 400 patients since 1975, 378 of whom were treated with particles and 28 with low LET photons as control patients. Heavy charged particle radiotherapy offers the potential advantages of improved dose localization and/or enhanced biologic effect, depending on particle selected for treatment. Target sites have included selected head and neck tumors, ocular melanomata, malignant gliomata of the brain, carcinoma of the esophagus, carcinoma of the stomach, carcinoma of the pancreas, selected juxtaspinal tumors and other locally advanced, unresectable tumors. A Phase III prospective clinical trial has been started in carcinoma of the pancreas using helium ions. Phase I-II studies are underway with heavier particles such as carbon, neon and argon ions in order to prepare for prospective Phase III trials. Silicon ions are also under consideration for clinical trial. These studies are supported by the United States Department of Energy and National Institutes of Health.

Adult↗

Clinical problems in radiotherapy of carcinoma of the pancreas.

Since 1975, 94 patients with localized unresectable carcinoma of the pancreas have been irradiated using helium and heavier particles at the University of California Lawrence Berkeley Laboratory. Despite surgical exploration and an extensive diagnostic workup including radiological, nuclear medicine, and computer-assisted tomographic studies, many patients proved to have occult liver metastases manifested within 9 months post treatment. In addition, local and regional control of the primary neoplasm (approximately 20%) has been difficult to obtain even with doses of 6000 equivalent rad in 7 1/2 weeks. Gastric and biliary obstruction have required surgical bypass procedures since irradiation has not been successful in relieving obstructive symptoms. Evidence of gastrointestinal injury has been present in postradiation therapy in approximately 10% of patients, a figure which might be higher if more patients had a longer survival (average 10 months). Some patients require pancreatic enzyme supplementation because of pancreatic deficiency either secondary to tumor or treatment. Further improvement in local control and survival requires better diagnostic methods for evaluation of local and metastatic spread, improved therapy for local and regional disease, as well as therapy directed at occult liver metastases that are frequently present.

Adenocarcinoma↗

Radiation effects in the canine brain evaluated by quantitative computed tomography.

Quantitative computed tomography (QCT) and histopathology were used to assess the effects of large single doses of x irradiation on the normal canine brain. Measurable changes demonstrated by QCT included increased contrast enhancement and enlargement of the lateral ventricles, which were observed prior to any clinical signs. The results suggest that QCT methods are effective in the noninvasive evaluation of radiation-induced brain injury.

Animals↗

[Late vascular effects in irradiated mice brain: in relation to experimental radionecrosis (author's transl)].

The whole brains of mice were irradiated with 250 kVp X-ray at 120 rad min-1 (1.6 mm Cu HVL, TSD 50 cm) and a histological study was done. The dose range of X-irradiation was from 1300 to 2500 rads. i.e., 1300, 1500, 1750, 2000, and 2500 rads. In the microscopic examination, the mice were killed at the regular postirradiation intervals of between 15 and 20, 31 and 40, 41 and 50, 51 and 60, 61 and 70, 71 and 80, 81 and 90, 139 and 177 weeks. A histological examination was performed by a morphometric estimation of vascular lesion in which the degree of the damage to the arterial system was scored through whole serial brain sections. Necrosis (encephalomalacia), atrophy, cell infiltration, and telangiectatic vascular change of the brain, caused as a result of the fibrinoid necrosis of the large artery were observed. Incidence of the fibrinoid necrosis increased dose dependently between 41 and 87 weeks after irradiation. Mean score of fibrinoid necrosis increased dose dependently approximately 60 weeks after irradiation. It is suggested that scores of large vessel damage do relate to dose at 41-87 weeks and can be used to quantify the vessel injury and a fibrinoid necrosis of the large vessels may relate to the incidence of radionecrosis.

Animals↗

Primary radiation treatment of colloid carcinoma of the breast: a case report.

A case report is presented of a patient with a colloid carcinoma of the breast, stage T3 N0 M0, treated definitively with external and interstitial radiation. Three-year follow-up has shown no local recurrence, with complete regression and no development of regional or distant metastases. The prognostic significance of colloid carcinoma and the use of radiation in its treatment are discussed.

Adenocarcinoma, Mucinous↗

Final report on the United States Phase I Clinical Trial of the hypoxic cell radiosensitizer, misonidazole (Ro-07-0582; NSC #261037).

The hypoxic cell sensitizer misonidazole began phase I evaluation in the United States in July 1977. One hundred two patients received 104 individual courses of drug. Drug was administered from once to five times per week over time spans from one to six weeks. The individual doses ranged 1-5 g/m2, and 411 mean 4-6 hour serum levels were determined. The mean 4-6 hour serum level ranged from 30 micrograms/ml at 1 g/m2 to 183 micrograms/ml at 5 g/m2. The major toxicity noted was neurologic; 49% of evaluable courses showed peripheral neuropathy, and 9% of evaluable courses showed central nervous system effects and/or ototoxicity. In addition, 48 of 102 patients exhibited some degree of nausea and vomiting. The concomitant administration of dexamethasone and phenytoin sodium appeared to lower the incidence of neuropathy. Observations of efficacy were made comparatively in five patients who had multiple lesions treated with and without misonidazole. All five showed increased response in the lesions treated with misonidazole. It is concluded that misonidazole is a reasonably safe and potentially effective hypoxic cell sensitizer whose dose-limiting toxicity is neurologic.

Adolescent↗

The potential for radiation sensitizers and radiation protectors combined with radiation therapy in gynecologic cancer.

Radiation sensitizers are agents which can increase the lethal properties of ionizing radiation when administered in conjunction with radiation therapy. They increase radiosensitivity without being innately toxic and give rise to significant increase in the radiation sensitivity of neoplasm over normal tissues. Much laboratory work, mostly in vitro, has shown that many chemical compounds can act as radiation sensitizers. The practicality depends upon the exploitation of the differences between normal and malignant cells when radiation sensitizers are used. Many tumors contain hypoxic cells which are relatively resistant to the lethal effects of ionizing radiation. In human tumors, these hypoxic cells present a potential barrier to successful treatment. The application of chemical radiosensitizers active against hypoxic cells offers great potential for improvement in cancer management using radiation therapy. Data is presented to illustrate the usefulness of these agents in gynecologic cancer.

Amifostine↗

Radiation Therapy Oncology Group clinical trials with misonidazole.

This paper presents a review of the progressive clinical trials of the hypoxic cell radiosensitizer, misonidazole, in the Radiation Therapy Oncology Group (RTOG). Presentation is made of all the schemas of the recently completed and currently active RTOG Phase II and Phase III studies. Detailed information is provided on the clinical toxicity of the Phase II trials, specifically regarding neurotoxicity. With limitations in drug total dose, a variety of dose schedules have proven to be tolerable, with a moderate incidence of nausea and vomiting and mild peripheral neuropathy, and a low incidence of more severe peripheral neuropathy or central neuropathy. No other organ toxicity has been seen, specifically no liver, renal or bone marrow toxicities. The clinical pharmacologic monitoring of misonidazole blood levels has been satisfactory with good correlation between the group-wide (Phase II) UV values and the HPLC values from the Phase I study. The patient accrual of the trials has been rapidly increasing and an early analysis suggests efficacy better than previous radiation experience. A series of eight Phase III trials are currently underway or proposed in the RTOG and the results of these are pending. An additional Phase III malignant glioma trial in the Brain tumor Study Group is described.

Brain Neoplasms↗