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Biomedical subjects

R J Morgan

Publications and source records attributed to R J Morgan.

At least 19 recordsLinked to original sources

Modulation of 5-fluorouracil with high-dose leucovorin calcium: activity in ovarian cancer and correlation with CA-125 levels.

The purpose of this study was to estimate the response rate, response duration, and survival of patients with advanced ovarian cancer treated with a 132-hr continuous infusion of high-dose calcium leucovorin in combination with five consecutive daily bolus doses of 5-fluorouracil (5-FU) and to correlate changes in CA-125 levels with clinical and radiologic assessment of disease progression. Forty-six heavily pretreated patients [median number of previous chemotherapy regimens, 2.5 (range 1-7)] with advanced ovarian cancer received 132-hr continuous infusions of calcium leucovorin (500 mg/m2/day) for 5 1/2 days, with daily bolus doses of 5-FU (370 mg/m2/day) for 5 days beginning 24 hr after initiation of the calcium leucovorin. Twenty-three patients had clinically measurable disease and 23 had evaluable disease; CA-125 levels were performed prior to each treatment course and after the final course of therapy. One of 42 patients had a partial response to combination chemotherapy (duration, 8.9 months); 16/42 had stable disease [median duration, 4.9 months (range, 2.4-9.0 months)]. Toxicity of combination therapy included mild myelosuppression and stomatitis, similar to previously reported toxicity profiles for the 5-FU and calcium leucovorin combinations. Sensitivity of CA-125 levels as a single indicator of disease progression was 55%. The combination of infusional high-dose calcium leucovorin and 5-FU has little activity in refractory ovarian cancer. CA-125 levels incorrectly predict clinical disease activity in about one-third of cases and should not be the sole criterion for determination of clinical response when evaluating chemotherapeutic efficacy in heavily pretreated patients.

Adenocarcinoma

Phase I study of mitomycin C and menadione in advanced solid tumors.

A phase I study of mitomycin C with menadione (2-methyl-1,4-naphthoquinone, a vitamin K analogue which lowers intracellular pools of reduced glutathione) was designed as an approach to overcoming tumor cell resistance to alkylating agent chemotherapy. Patients with refractory solid tumors (n = 51) were treated with a 48-h continuous intravenous infusion of menadione followed by a bolus intravenous dose of mitomycin C at the completion of the menadione infusion. Initial menadione doses of 8.0 and 4.0 g/m2 over 48 h were associated with hemolysis, so subsequent dose levels of menadione ranged from 1.0 to 3.0 g/m2 with mitomycin C from 5 to 20 mg/m2. All three patients treated with menadione at 8.0 g/m2 and the single patient treated at 4.0 g/m2 with mitomycin C at 5 mg/m2 developed clinically significant hemolysis despite the presence of red blood cell glucose-6-phosphate dehydrogenase. Subsequently, a revised escalation scheme for menadione was used, and all patients tolerated menadione doses of 1-2.5 g/m2 over 48 h with mitomycin C doses up to 20 mg/m2. Since the 3.0 g/m2 dose of menadione was associated with mild hemolysis in three of four patients, the maximum tolerated dose of menadione was established at 2.5 g/m2. All of the mitomycin dose levels were tolerated without unexpected toxicities attributable to the combination. Prolonged infusions of menadione at doses which have been associated with lowering of intracellular glutathione pools in short-term exposure are limited by dose-dependent hemolysis, probably due to depletion of erythrocyte glutathione by menadione-related redox cycling. There was no detectable deleterious effect of pre-exposure to menadione on mitomycin C tolerance. We recommend a combination of menadione at 2.5 g/m2 as a continuous intravenous infusion and mitomycin C at 15 mg/m2 for further study in solid tumors, for which treatment with single-agent mitomycin C is appropriate.

Adult

Mitomycin C and menadione for the treatment of advanced gastrointestinal cancers: a phase II trial.

A phase II trial of menadione (2.5 g/m2 as a continuous intravenous infusion over 48 h) followed by mitomycin C (10-20 mg/m2 i.v. bolus) administered every 4-6 weeks was performed in 43 patients with advanced gastrointestinal cancer. Menadione, a vitamin K analog that lowers intracellular pools of reduced glutathione, was combined with mitomycin C in an attempt to overcome thiol-mediated resistance to alkylating-agent chemotherapy. The median age of patients entered on this trial was 58 years; performance status ranged from 60%-100%. None of the 43 evaluable patients obtained an objective response to this combination regimen. Median survival was 6.6 months. Treatment with menadione and mitomycin C was reasonably well tolerated except for hematological toxicity. A total of 27% of treatment courses were complicated by grade 3 or 4 hematological toxicity including one episode of hemolytic anemia and one episode of hemolytic uremic syndrome. One patient developed irreversible interstitial pneumonitis, and 1 patient had an asymptomatic decrease in the left-ventricular ejection fraction. Despite preclinical evidence indicating that menadione pretreatment enhances the cytotoxicity of mitomycin C, our study documents the resistance of advanced gastrointestinal cancers, particularly colorectal cancer, to mitomycin C modulated by menadione.

Adult

Prediction of infusion rates of vecuronium using the bolus test dose technique.

Fifty neurosurgical patients were given loading doses of vecuronium 0.1 mg kg-1 followed by boluses of 1, 2 or 4 mg after return of T1 of the train-of-four. Neuromuscular function was assessed simultaneously by palpation of the great toe after peripheral nerve stimulation of the lateral popliteal nerve using a handheld nerve stimulator and also using a Relaxograph attached to one arm. The time taken for the return of T1 after the bolus dose was recorded and an infusion of vecuronium was begun and subsequently adjusted to maintain steady state neuromuscular block. It was possible to predict the infusion rate of vecuronium from the duration of action of a 2-mg or 4-mg but not a 1-mg bolus dose using the handheld stimulator. The infusion rate could also be predicted from the duration of action of the initial loading dose.

Anesthesia, General

The density and distribution of endothelin 1 and endothelin receptor subtypes in normal and diabetic rat corpus cavernosum.

OBJECTIVE: To investigate the density and distribution of endothelin 1(ET-1) and endothelin receptor subtypes in rat cavernosal tissue, and to assess any changes brought about by the onset of diabetes mellitus (DM). MATERIALS AND METHODS: Hyperglycaemic non-ketotic diabetes mellitus was induced in five rats using streptozotocin (STZ). Two months later the penises were excised and stored at -70 degrees C. Longitudinal serial sections (6 microns) were cut using a cryostat and thaw- mounted onto gelatinized microscope slides. Low and high resolution autoradiographs were taken using radioligands for ET-1 and endothelin A (ETA) and endothelin B (ETB) receptors and the autoradiographs analysed densitometrically. These results were compared with those from five age-matched control rats. RESULTS: ET-1 and ETA receptor binding was primarily localized to the endothelium lining the cavernosal lacunar spaces: trabecular corporeal smooth muscle was much less intensely stained. No ETB receptor binding could be demonstrated, but increased binding of ET-1 and ETA receptors was seen in the diabetic cavernosal tissue. CONCLUSION: ET-1 and ETA receptor binding is increased in diabetic rat cavernosal tissue. A reduction in receptor linked nitric oxide (NO) release has previously been reported in diabetic rats. This finding may provide an explanation for the upregulation of ET-1 and ETA receptor binding in the diabetic rat.

Animals

Abdominal pain.

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Abdominal Pain

Effect of low-dose prophylactic dopamine on high-dose cisplatin-induced electrolyte wasting, ototoxicity, and epidermal growth factor excretion: a randomized, placebo-controlled, double-blind trial.

PURPOSE: To evaluate the protective effect of low-dose dopamine given as continuous infusion in patients who undergo chemotherapy with the nephrotoxin cisplatin. PATIENTS AND METHODS: Forty-two patients who received high-dose cisplatin-containing chemotherapy entered a prospective, randomized, double-blind, placebo-controlled trial. Twenty-one patients received dopamine, and 21 received placebo. Patients were to receive either infusional dopamine 2 micrograms/kg/min over 48 hours or placebo. Cisplatin 125 mg/m2 was administered 12 hours after initiating dopamine (group D) or placebo (group P). This schedule was repeated twice, 1 week apart. Measurements of serum creatinine, urinary electrolytes and creatinine, urinary excretion of epidermal growth factor (EGF), ototoxicity, parameters of hematopoietic recovery, and duration of hospitalization were analyzed. RESULTS: We observed an increase in serum creatinine level to a peak of 1.9 mg/dL (range, 0.8 to 7.8) in the dopamine group, in comparison to 1.4 mg/dL (range, 0.9 to 3.3) in the placebo group (P = .04). Urinary magnesium excretion increased and EGF excretion decreased in both groups. Urinary sodium, chloride, and potassium excretion were increased in both groups, but more so in the placebo group. Dopamine had no measurable effect on hearing loss, duration of hospitalization, or hematopoietic recovery. CONCLUSION: The use of prophylactic dopamine increased peak serum creatinine levels relative to placebo and failed to prevent cisplatin-induced renal toxicity or ototoxicity. Determination of whether dopamine could reverse chemotherapy-induced renal damage would require a randomized prospective trial.

Adult

Phase I trial of carboplatin and infusional cyclosporin in advanced malignancy.

PURPOSE: To determine the maximal-tolerated dose (MTD) of infusional cyclosporine (CSA) with fixed-dose carboplatin (CBDCA). PATIENTS AND METHODS: Clonogenic cytotoxicity assays were performed to assess the effect of CSA on reversal of resistance to CBDCA. The phase I study was performed in three phases. In phases 1 and 2, escalating-dose CSA (5, 7.5, 8.8, or 9.5 mg/kg/d) with fixed-dose CBDCA 300 or 250 mg/m2 were administered. Phase 3 required an initial cycle of CBDCA 250 mg/m2 alone, followed by combination therapy with CBDCA 250 mg/m2 and CSA (8.8, 9.5, or 10.0 mg/kg/d). RESULTS: Preincubation of platinum-resistant A2780 human ovarian cancer cells with CSA 2 micrograms/mL significantly enhanced CBDCA cytotoxicity in clonogenic assays. Fifty-one patients received 130 courses of therapy. The phase 1 MTD was thrombocytopenia (CSA 7.5 mg/kg/d and CBDCA 300 mg/m2) attributable to the effects of CBDCA alone. The phase 2 MTD was reversible nephrotoxicity (serum creatinine elevations to 3.6 and 4.4 mg/dL) and neutropenia (CSA 9.5 mg/kg/d and CBDCA 250 mg/m2). In phase 3, headache was observed in five patients and hypertension in one patient at CSA 10 mg/kg/d. The expected change in platelet count predicted for CBDCA alone was compared with the actual change; no excessive thrombocytopenia was observed with addition of CSA. Steady-state CSA levels of 2 micrograms/mL capable of reversing platinum resistance in vitro were observed. Four objective responses were observed. CONCLUSION: CSA is effective in reversing CBDCA resistance in A2780 ovarian cancer cells. Short-term infusions of CSA < or = 8.8 mg/kg/d in combination with CBDCA are well-tolerated for heavily pretreated patients and result in CSA levels known to reverse CBDCA resistance in vitro.

Adult

5-Fluorouracil and high-dose calcium leucovorin for hepatocellular carcinoma: a phase II trial.

A phase II trial of 5-fluorouracil (5-FU) [250-450 mg/m2/day x 5 days as an intravenous (IV) bolus] combined with calcium leucovorin (500 mg/m2/day x 5 1/2 days by continuous IV infusion) administered on a 28-day schedule was performed in 15 patients with advanced hepatocellular carcinoma. The median age was 58 years; performance status ranged from 50 to 100%. Of 15 evaluable patients, 1 (7%) had a partial response lasting 2.4 months; 8 (53%) had stable disease with a median duration of 5.7 months; and 6 (40%) had progressive disease with a median time to progression of 2.7 months. Median survival was 3.8 months. Treatment with 5-FU and calcium leucovorin was moderately well tolerated; 9% of the treatment courses were complicated by grade 3 or 4 hematological toxicity, and 10% of the courses were complicated by grade 3 or 4 gastrointestinal toxicity. Despite the efficacy of the combination of 5-FU and leucovorin in advanced colorectal cancer, our results document the general resistance of hepatocellular carcinoma to modulated 5-FU.

Adult

Effects of papaverine and vasointestinal polypeptide on penile and vascular cAMP and cGMP in control and diabetic animals: an in vitro study.

Adenosine 3'5'-cyclic monophosphate (cAMP) and guanosine 3'5'-cyclic monophosphate (cGMP) mediate penile erection. We have previously established that adenylate and guanylate cyclase activity is elevated in the diabetic rat penis and aorta. This study investigates the action of papaverine and vasoactive intestinal polypeptide (VIP) on these cyclases. The aortae and penes of Sprague Dawley rats (n = 7) were stimulated with VIP and papaverine. Diabetes mellitus (DM) was induced in Sprague Dawley rats (n = 7) with streptozotocin and the penile and aortic tissues were treated with VIP. The penes, aortae and carotid arteries of New Zealand White rabbits were similarly processed. cAMP and cGMP generation was measured by radioimmunoassay. In all tissues: VIP stimulated cAMP synthesis; VIP did not increase cGMP levels; papaverine was without effect on either cAMP or cGMP synthesis. VIP-stimulated cAMP was significantly enhanced in the diabetic rat penis and aorta; there was also a significant elevation in the basal levels of cGMP in these tissues. These data: (1) consolidate that cAMP is a mediator of penile erection, (2) indicate that papaverine and VIP elicit erection by different mechanisms, (3) suggest that an enhanced penile capacity to generate cAMP in DM may constitute an adaptive response to counteract the previously reported reduction in VIP content and VIP receptors, and (4) indicate that the penile and vascular tissues of the rabbit respond in a similar manner to VIP and papaverine.

Animals

High-dose doxorubicin, etoposide, and cyclophosphamide with stem cell reinfusion in patients with metastatic or high-risk primary breast cancer. City of Hope Bone Marrow Oncology Team.

BACKGROUND: Chemotherapy with a doxorubicin-containing regimen results in high overall response rates in the treatment of metastatic adenocarcinoma of the breast; the combination of doxorubicin, etoposide, and cyclophosphamide has produced a response rate of 84% in untreated patients with stage IV disease. Recent data suggest that selected groups of patients with metastatic disease treated with high-dose chemotherapy and stem cell support may enjoy unmaintained, long-term remission. This study was designed to establish the feasibility of administering the combination of high-dose infusional doxorubicin, etoposide, and cyclophosphamide followed by autologous stem cell rescue in patients with responsive metastatic, or high-risk primary breast cancer. METHODS: Criteria for patient enrollment included the presence of high-risk primary breast cancer (stage II with > or = 10 involved axillary nodes or stages III A or B) or stage IV disease in complete or partial response; Karnofsky performance status of 80% or more; no prior radiation therapy to the left side of the chest; exposure to a 150-mg/m2 or smaller cumulative dose of doxorubicin, and a ventricular ejection fraction of 55% or more. Chemotherapy consisted of escalating doses of doxorubicin given by a 96-hour continuous intravenous infusion, followed by 60 mg/kg of etoposide and 100 mg/kg cyclophosphamide, both given intravenously. On Day 0, autologous bone marrow with or without peripheral stem cells, or granulocyte colony-stimulating factor primed peripheral stem cells alone were reinfused. RESULTS: Thirty-five patients were treated in this study. There were no treatment-related deaths. No patient had a decrease in cardiac ejection fraction below 50% as a consequence of high-dose chemotherapy. Two patients suffered grade 3 mucositis at the highest level of doxorubicin (200 mg/m2). Of 21 patients treated for primary high-risk breast cancer, 19 are recurrence free, with a median follow-up of more than 8 months (> or = 4-36 months). Five of fourteen patients with stage IV disease remain progression free at greater than or equal to 5, 7, 9, 15, and 42 months. For patients with stage IV breast cancer, the median progression-free survival after high-dose chemotherapy was 9 months; the median overall survival had been reached at 22 months. CONCLUSIONS: The phase II dose of doxorubicin in this combination therapy has been established at 165 mg/m2, with dose-limiting toxicity defined as mucositis. Further trials to define the role of this safe and effective high-intensity regimen in the treatment of breast cancer are indicated.

Adenocarcinoma

High-dose cisplatin, etoposide, and cyclophosphamide with autologous stem cell reinfusion in patients with responsive metastatic or high-risk primary breast cancer.

BACKGROUND: This study was designed to establish the feasibility of combining high-dose cisplatin, etoposide, and cyclophosphamide followed by stem cell rescue in patients with responsive metastatic or high-risk primary breast cancer. METHODS: Eligibility criteria included the presence of high-risk primary breast cancer (Stage II with 10 or more involved axillary nodes or Stage IIIA or B) or Stage IV disease in complete or partial response; physiologic age 50 years or younger; Karnofsky performance status of 80% or greater; and creatinine clearance of 80 ml/minute or greater. Chemotherapy consisted of escalating doses of cisplatin (50-150 mg/m2 intravenously [IV]) given on days -12 and -5, etoposide (30 mg/kg IV) given on days -12 and -5, and cyclophosphamide (100 mg/kg IV) on day -3. On day 0, autologous bone marrow with or without peripheral stem cells, or granulocyte colony-stimulating factor primed peripheral stem cells alone were reinfused. RESULTS: Thirty patients were enrolled in this study. Twenty-eight patients demonstrated no evidence of persistent renal damage after treatment. Two patients suffered symptomatic peripheral neuropathy, and one patient required a hearing aid 3 months after therapy. Hematopoietic toxicities were acceptable. There were two fatalities; Streptococcus viridans bacteremia and adult respiratory distress syndrome developed in one patient; and one patient who received 262 mg/m2 of cisplatin died of renal failure. Twelve of 18 assessable patients with Stage IV disease are without evidence of progression; 3 of these patients are progression-free at 11+, 12+, and 32+ months. With a median follow-up of 16+ months (range, 4-31 months), 7 patients of the group of 11 treated with high-risk primary breast cancer are without evidence of disease. CONCLUSIONS: The Phase II dose of cisplatin when given on a day -12 and day -5 schedule in combination with etoposide and cyclophosphamide has been established at a total of 250 mg/m2. Dose-limiting toxicity has been defined as renal failure, and response rates were comparable to previously reported high-dose chemotherapeutic regimens.

Adenocarcinoma

Phase I study of 5-day continuous infusion fluorodeoxyuridine and high-dose folinic acid with oral hydroxyurea.

Fluorodeoxyuridine (FUdR), the deoxynucleoside metabolite of 5-fluorouracil (5-FU), can be converted in a single step to fluorodeoxyuridine monophosphate (FdUMP), which binds covalently to thymidylate synthase (TS). Ribonucleotide reductase, an obligatory enzyme in the synthesis of deoxynucleotides, can be inhibited by hydroxyurea. Recognizing the well-established synergism between 5-FU and folinic acid (leucovorin), we hypothesized that the simultaneous administration of FUdR, leucovorin, and hydroxyurea might afford more effective inhibition of TS. Thirty-six patients with neoplastic disease considered refractory to standard therapy were entered into this phase I protocol. Treatment was administered on days 1 through 5 of a 28-day cycle and consisted of folinic acid (500 mg m-2 day-1) and FUdR at escalating doses of 0.1, 0.15, or 0.2 mg kg-1 day-1 both administered by continuous i.v. infusion, and hydroxyurea given p.o. once per day at doses ranging from 0 to 250o mg in 500-mg increments. The hydroxyurea and FUdR levels were escalated in a sequential fashion. The majority of patients had refractory breast or lung cancer. Dose-limiting toxicities were mucositis and diarrhea at the maximally tolerated dose of 0.15 mg/kg FUdR and 2000 mg hydroxyurea per day in conjunction with high-dose folinic acid. Hematological toxicity was minor. Of the 18 patients in whom response could be evaluated, none had evidence of objective disease regression. Mucositis and diarrhea are the dose-limiting toxicities when continuous infusions of FUdR and high-dose folinic acid are combined with oral hydroxyurea, effects that are consistent with the observed toxicities for FUdR when administered alone or in combination with leucovorin.

Administration, Oral

Phase II trial of 5-fluorouracil and high-dose folinic acid as first- or second-line therapy for advanced breast cancer.

The use of leucovorin to modulate 5-fluorouracil (FUra)-mediated inhibition of thymidylate synthase has been shown both in vitro and in vivo to improve the antitumor activity of FUra. Based on the activity of this combination in previously untreated patients, we performed a study of FUra and high-dose leucovorin (HDFA) in patients with metastatic breast cancer and minimal prior chemotherapy. Patients were stratified by prior chemotherapy (or relapse within 12 months of completing adjuvant chemotherapy) versus no prior chemotherapy (or relapse at greater than 12 months since completion of adjuvant chemotherapy). FUra was given daily for 5 days at 370 mg/m2/day with HDFA, 500 mg/m2/day, beginning 24 hours before and continuing 12 hours beyond the first and last FUra doses, respectively. Two objective responses occurred among 21 patients in the pretreated group (10%; 95% confidence interval: 1-30%). Four of 36 eligible patients (11%) in the "no prior therapy group" had complete responses (95% confidence interval: 3-26%). The major toxicities were moderate leucopenia and mucositis. We conclude that FUra plus leucovorin has modest antitumor activity in metastatic breast cancer.

Antineoplastic Combined Chemotherapy Protocols