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B Storer

Publications and source records attributed to B Storer.

At least 55 records · Page 3Linked to original sources

Endotoxin-mediated changes in plasma endothelin concentrations, renal endothelin receptor and renal function.

The purpose of these studies was to examine the changes in renal endothelin (ET) receptor, renal function and plasma ET (ET-1) concentration in male Sprague-Dawley rats injected with nonlethal doses of Escherichia coli endotoxin (LPS). Prior to the injection of LPS, kidney ET receptor density was 59 +/- 5 fmol/mg protein (n = 20). At 24 h after the injection of 1 or 3 mg/kg LPS, [125I]ET-1 binding to kidney membranes was increased by 70% in both LPS groups (p < 0.001). Scatchard analysis of the saturation binding experiments confirmed that the increase in [125I]ET-1 binding was due to an increase in receptor density with no change in affinity (202 pmol/l at baseline and 168 pmol/l and 246 pmol/l at 24 h after the injection of 1 and 3 mg/kg LPS, respectively). At 7 days after the injection of LPS, kidney ET-1 receptor density was still increased by 30 +/- 5% and 58 +/- 16%, respectively (p < 0.05, compared to the baseline value). Baseline values for Na+ and K+ excretion were approximately 115 muEq/h and 214 +/- mu/Eq/h respectively, and were decreased with LPS. Maximal decreases in Na+ and K+ excretion occurred at 48 h (-85%) and 30 h (-82%), respectively, following the injection of 3 mg/kg LPS and returned to baseline levels in 7 days. Following the injection of 3 mg/kg LPS, plasma immunoreactive ET-1, as measured by radioimmunoassay, increased in a time-dependent manner: the maximal increase of 60% occurred within 1 h after the injection of LPS (p < 0.05), and thereafter returned to baseline levels. Kidney tissue levels of ET-1 increased from baseline values of 2.6 fmol/mg protein to a peak of 4.6 fmol/mg protein 1 h after the injection of LPS. Tissue ET-1 levels were still significantly elevated at 6 h but not 24 h after LPS injection. These studies suggest that ET-1, either by increases in plasma concentration and/or altered receptor density, may be involved in the LPS-induced impairment of renal function.

Animals↗

Phase I trial of 3-hour infusion of paclitaxel with or without granulocyte colony-stimulating factor in patients with advanced cancer.

PURPOSE: We conducted a phase I trial of a 3-hour infusion of Taxol (paclitaxel; Bristol-Myers Squibb Co, Princeton, NJ) to identify the maximum-tolerated dose of Taxol as a 3-hour infusion with and without granulocyte colony-stimulating factor (G-CSF) support. MATERIALS AND METHODS: Thirty-five patients with advanced, untreatable malignancies were treated with a 3-hour infusion of Taxol once every 3 weeks. Groups of three patients were entered at escalating dose levels of Taxol in a traditional phase I design in each of two parallel arms: arm A, without G-CSF, and arm B, with G-CSF. Patients assigned to the G-CSF arm received G-CSF 5 micrograms/kg/d subcutaneously starting on day 2 for 9 to 14 days. All patients were pretreated with dexamethasone, diphenhydramine, and ranitidine, and were monitored continuously for cardiac arrhythmias during the first treatment. RESULTS: Dose-limiting myelosuppression with Taxol without G-CSF was observed at the 250-mg/m2 dose level. The dose-limiting toxicity for Taxol with G-CSF was peripheral neuropathy at the 300-mg/m2 dose level. One of 35 patients (2.8%) had a grade 3 anaphylactic reaction at 250 mg/m2. No clinically significant cardiac arrhythmias were documented. Twenty-seven of 111 courses (24%) were associated with grade 3 arthralgias or myalgias requiring narcotics for pain control. Taxol plasma concentrations declined in a triexponential fashion, with a final elimination half-life of 10 to 12 hours. The peak Taxol plasma concentrations and total area under the curve (AUC) increased with increasing doses of Taxol, although this increase appeared to be somewhat nonlinear. CONCLUSION: The maximum dose of Taxol recommended for phase II and III studies, when administered as a 3-hour infusion alone and with G-CSF support, is 210 mg/m2 and 250 mg/m2, respectively. No increased incidence of hypersensitivity reactions or other side effects were observed, with the possible exception of arthralgias and myalgias. If ongoing trials demonstrate that a 3-hour infusion is as efficacious as a 24-hour infusion, we conclude that with proper monitoring and premedication, high-dose Taxol can be safely administered in the outpatient setting.

Aged↗

A phase I trial of 3-hour infusions of paclitaxel (Taxol) with or without granulocyte colony-stimulating factor.

Paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ), a novel antitubulin agent derived from the bark of the Pacific yew tree, may be one of the most active single agents in our chemotherapy armamentarium. Concern over acute hypersensitivity reactions has resulted in an administration schedule consisting of a 24-hour infusion. We conducted a phase I trial of a 3-hour infusion of paclitaxel to determine whether a 3-hour infusion could be administered with relative safety, and to identify the maximal tolerated dose with and without granulocyte colony-stimulating factor (G-CSF) support. Thirty-five patients with advanced, untreatable malignancies received a 3-hour infusion of paclitaxel once every 3 weeks. Groups of three patients were entered at escalating dose levels in a traditional phase I design consisting of two parallel arms: arm A (without G-CSF) and arm B (with G-CSF). Dose levels of paclitaxel ranged from 210 mg/m2 to 300 mg/m2. Patients assigned to the G-CSF arm received 5 micrograms/kg/d subcutaneously starting on day 2. All patients were pretreated with dexamethasone, diphenhydramine, and ranitidine, and were monitored continuously for cardiac arrhythmias during the first treatment. The dose-limiting toxicity for paclitaxel without G-CSF was myelosuppression at the 250 mg/m2 dose level and with G-CSF was peripheral neuropathy at the 300 mg/m2 dose level. The mean absolute neutrophil count at the 250 mg/m2 dose level when administered with and without G-CSF support was 4,500/microL and 840/microL, respectively. Neuropathy appeared to be dose related and somewhat cumulative. One patient who previously received cisplatin developed a severe grade III peripheral neuropathy at the 300 mg/m2 dose level, which left her unable to use her hands and wheelchair bound; the peripheral neuropathy slowly resolved to a grade I level. Twenty-seven of III courses (24%) were associated with grade III arthralgias or myalgias, requiring narcotics for pain control. Prednisone was empirically started in 10 patients and found to be helpful in the control of these symptoms. One of 35 (2.9%) patients had a grade III anaphylactic reaction. No clinically significant cardiac arrhythmias were observed. Two previously treated patients (one with breast cancer and one with ovarian cancer) had a partial response. The maximum tolerated dose of paclitaxel administered as a 3-hour infusion was 210 mg/m2 without G-CSF and 250 mg/m2 with G-CSF.(ABSTRACT TRUNCATED AT 400 WORDS)

Drug Hypersensitivity↗

A direct comparison of immunological and clinical effects of interleukin 2 with and without interferon-alpha in humans.

Interleukin 2 (IL-2) and interferon-alpha (IFN-alpha) are cytokines with synergistic antitumor effects in mouse models. The biological effects of this combination, however, have not been directly compared to each agent alone in humans. We conducted a Phase 1B trial of IL-2 plus or minus IFN-alpha in 38 cancer patients. The objectives of this trial were to determine which doses of IFN-alpha and IL-2 maximally enhanced biological responses, and to determine whether the combined administration of IFN-alpha and IL-2 would result in a potentiation of biological responses over IL-2 alone. Patients received 4 days of IL-2 (1.5 x 10(6) units/m2/day or 3.0 x 10(6) units/m2/day) as a continuous infusion followed by a 3-day rest period, weekly for 3 weeks, with a 3-week rest period between 2 treatment courses. IFN-alpha (0.5 x 10(6) or 5 x 10(6) units/m2/day) was administered s.c. on days 1-4 weekly for 3 weeks with one of the 3-week courses. Patients were randomized to receive either IL-2 alone for course 1, followed by IL-2/IFN-alpha for course 2, or IL-2/IFN-alpha in course 1, followed by IL-2 alone. Immunological parameters were evaluated before treatment, and 24 h after completion of the third week of IL-2. A statistically significant increase in the percentage of circulating natural killer cells (CD56), natural killer cells bearing the Fc receptor (CD16), and activated T cells (CD25) was observed following IL-2 alone, and following IL-2 plus IFN-alpha. Significant increases in lymphocyte-activated killer cell cytotoxicity, antibody cellular cytotoxicity, and serum IL-2 receptor were also observed following both IL-2 and IL-2 plus IFN-alpha. However, no significant differences were observed in the magnitude of the increase in the IL-2-alone group when compared to the IL-2 plus IFN-alpha group. The mean fluorescent intensity of monocytes positive for HLA-DR and Fc receptor expression also increased significantly in both groups, as did serum beta 2-microglobulin expression and indoleamine 2,3-dioxygenase activity. However, increases were not significantly different between patients receiving IL-2 alone and IL-2 plus IFN-alpha. No dose response effect for IFN-alpha was observed for any of the parameters assessed. Toxicities consisted primarily of constitutional toxicities, including fever, rigors, malaise, headache, anorexia, and a decrease in performance status. No clinically significant differences in toxicities were observed between courses consisting of IL-2 and those consisting of IFN-alpha and IL-2.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗

Phase I trial of mitoxantrone and granulocyte-macrophage colony-stimulating factor (GM-CSF) in patients with advanced solid malignancies.

PURPOSE: To determine the maximally tolerated dose (MTD) and pharmacokinetics of high-dose mitoxantrone and document the toxicities and side effects of mitoxantrone when administered with GM-CSF. PATIENTS AND METHODS: Twenty-three patients with advanced solid tumors were entered into a phase I and pharmacokinetic study. Mitoxantrone was administered at doses of 12, 21, 28, 32, 37, and 48 mg/m2 on day 1; GM-CSF (5 micrograms/kg once or twice daily) was administered on days 2 to 14. Therapy was repeated every 3 weeks. Dose escalation continued in sets of three patients until the dose limiting toxicity (DLT) was observed. The DLT was based on hematologic, non-hematologic, and cardiac toxicity, and delay of therapy by more than 1 week due to toxicity. Plasma samples were assayed for mitoxantrone concentrations using high performance liquid chromatography (HPLC). RESULTS: Twelve patients required either mitoxantrone dose reductions or delays. DLT of neutropenia was observed at a mitoxantrone dose of 48 mg/m2/day. Therefore, we conclude the MTD was 37 mg/m2/day. Myelosuppression appeared to be cumulative. Two patients were withdrawn from the study due to a drop in left ventricular ejection fraction (LVEF). Two of 23 patients experienced a partial response. The mean area under the curve (AUC) and peak mitoxantrone levels increased linearly with dose; triexponential elimination of mitoxantrone was observed. No statistically significant correlation was observed between either peak mitoxantrone level or AUC and duration of absolute neutrophil count (ANC) < 500/mm3. CONCLUSION: The use of GM-CSF allows administration of mitoxantrone at a dose greater than three times that given in standard therapy; treatment is well tolerated. Further studies are needed to determine whether mitoxantrone has cumulative cardiac or hematologic toxicity.

Adult↗

Antiproliferative effects of interferons -alpha and -beta in combination with 5-fluorouracil, cisplatin, and cis- and trans-retinoic acid in three human lung carcinoma cell lines.

We assessed the antiproliferative effect of human recombinant interferon -alpha (IFN-alpha) or -beta in combination with 5-fluorouracil (5-FU), cisplatin, or cis- or trans-retinoic acid on two human nonsmall cell lung carcinoma cell lines (SK-LU-1 and SK-MES-1) and on one human small cell lung carcinoma cell line (NCI-H69). Results were obtained by direct cell count and/or by the clonigenic assay. The three cell lines differed in their sensitivities to the antiproliferative effects of the different agents. However, both NSCLC cell lines were more responsive to IFN-beta than to IFN-alpha. The SK-MES cell line was more resistant to both IFNs than the SK-LU-1. The NCI-H69 cells were resistant to all the drugs tested, except trans-retinoic acid. The dose and time of exposure were found to be important factors in the case of IFNs and cytotoxic agents, with lower surviving fractions obtained with the higher doses and longer exposures. This finding, however, did not hold true for the retinoic acids, which showed no antiproliferative effect. Within the sensitivity of our system, we did not identify any synergistic interaction in any of the cell lines with IFN-alpha or IFN-beta and 5-FU or cisplatin. A slight synergistic interaction was observed with IFN and cis- or trans-retinoic acid in the SK-LU-1 cell line which was not thought to be clinically significant.(ABSTRACT TRUNCATED AT 250 WORDS)

Antineoplastic Combined Chemotherapy Protocols↗

A pilot phase II trial of continuous-infusion interleukin-2 followed by lymphokine-activated killer cell therapy and bolus-infusion interleukin-2 in renal cancer.

Nine patients with metastatic renal cell carcinoma were entered into a pilot protocol including a 4-week regimen utilizing human recombinant interleukin-2 (IL-2) and in vitro lymphokine-activated killer (LAK) cells. The regimen included 2 weeks (4 days of treatment and 3 days of rest/week) of continuous-infusion (c.i.) IL-2 at 3 x 10(6) U/m2/day, followed by two leukaphereses. LAK cells were cultured in vitro for 48 to 72 h and administered as a single infusion, followed by 9 days of bolus i.v. injections of 10(6) U IL-2/m2/dose, given every 8 hours (t.i.d.). The average (+/- SD) number of LAK cells infused per patient was 7.2 x 10(10) (+/- 3.5 x 10(10)). One patient showed > 50% shrinkage of tumor (lung + renal bed recurrence). Toxicity was similar to that encountered in other studies using similar IL-2 doses and LAK cells and consisted of fever, hypotension, fluid retention, and reversible renal insufficiency. These results indicate that the 2 weeks of IL-2 c.i. provided conditions enabling the harvest of large quantities of mononuclear cells from the peripheral blood of patients; this could be useful for future trials requiring the use of in vitro activated lymphocytes. Nevertheless, these pilot data suggest that this regimen of prolonged t.i.d. IL-2 administration after the LAK infusion does not seem to generate any improvement in antitumor effects from those obtained using other LAK + IL-2 regimens.

Adult↗

Clinical and biologic effects of combination therapy with gamma-interferon and tumor necrosis factor.

Tumor necrosis factor (TNF) and gamma-interferon (gamma-IFN) are cytokines with synergistic biologic and antiproliferative effects in vitro and in mouse models. The biologic effects of the combination of TNF and gamma-IFN, however, have not been studied well in humans. A Phase I trial was conducted of TNF and gamma-IFN therapy in 24 patients with advanced malignancies to determine the tolerability of the combination and the biologic effects of TNF and gamma-IFN in vivo. Both TNF and gamma-IFN were administered as 30-minute intravenous infusions three times per week. Doses of TNF ranged from 25 to 100 micrograms/m2; all patients received 100 micrograms/m2 of gamma-IFN. Dose-limiting toxicity consisted primarily of orthostatic hypotension and constitutional symptoms. The maximum tolerated dose level (MTDL) of 50 micrograms/m2 of TNF and 100 micrograms/m2 of IFN-gamma was less than the maximum tolerated dose (MTD) observed in previous Phase I trials of gamma-IFN and TNF alone. Biologic responses were studied in seven patients treated at the MTDL. Serum interleukin-2 receptor levels and neopterin secretion were enhanced significantly 24 hours after therapy (P = 0.002); enhancement of monocyte Fc receptor levels had borderline statistical significance (P = 0.07). With the exception of the mean fluorescent intensity on monocytes positive for histocompatibility antigen HLA-DR (P = 0.03), HLA Class I and II cell surface protein expression was not increased. The combination significantly enhanced indoleamine dioxygenase activity and serum beta 2-microglobulin expression (P less than 0.04) but not 2',5'-oligoadenylate synthetase activity, bactericidal function, or chemiluminescence. These results were compared retrospectively with those observed in previous Phase I trials of gamma-IFN and TNF alone. The combination of TNF and gamma-IFN significantly increased urinary kynurenine levels more than either TNF alone or gamma-IFN alone. Given the limitations inherent in any retrospective analysis, however, the enhancement in the other biologic parameters measured at the MTDL during this trial did not differ significantly from the changes observed at the MTD of either TNF or gamma-IFN alone. It was concluded that the combination of TNF and gamma-IFN, when administered at the MTDL of the combination, does not offer any enhancement in biologic responses over either agent alone.

2',5'-Oligoadenylate Synthetase↗

Effect of nifedipine on cyclosporine A-induced nephrotoxicity, urinary endothelin excretion and renal endothelin receptor number.

The aim of the present study was to determine the effect of a calcium channel blocker on renal function, urinary endothelin excretion and endothelin receptor number in rats. Administration of cyclosporine resulted in a significant impairment of renal function when measured by either [14C]inulin or 24 h creatinine clearances. This nephrotoxicity was associated with statistically significant (P less than 0.05) increases in urinary endothelin excretion and renal endothelin receptor number. Treatment with nifedipine attenuated cyclosporine A-induced renal dysfunction and reduced urinary endothelin excretion. The data provide further evidence of a role for endothelin in cyclosporine A-induced nephrotoxicity.

Animals↗

Modulation of U937 cell adhesion to vascular endothelial cells by cyclic AMP.

Adhesion of leukocytes to the endothelium is an essential event in inflammatory cell emigration from intravascular to extravascular compartment. While many mediators (e.g. cytokines) enhance cell adhesion through expression of adhesion molecules on endothelial cells the mechanism of this phenomenon is not known. In this study we examined the role of cAMP in mediation of the adhesion of monocytic cell line, U937 to human umbilical vein endothelial cells (HUVEC). Incubation of HUVEC with cholera toxin (10-500 ng/ml) for 4 hrs greatly enhanced the adhesiveness of HUVEC for U937 cells. The magnitude of adhesion stimulation produced by cholera toxin was comparable to that produced by the cytokines TNF alpha or IL-1 (2-3 folds). Upregulation of U937 cells adhesion to HUVEC was also achieved by short incubation (less than 1 hr) of HUVEC with cAMP elevating agents such as forskolin (10 microM), isoproterenol (0.3-30 microM), epinephrine (10-100 microM), norepinephrine (100 microM) as well as by endogenously added dibutyryl cAMP (0.05-2.0 mM). Dibutyryl cyclic GMP (0.05-2.0 mM) was ineffective in promoting adhesion. These data suggest that cAMP might be an important intracellular modulator of leukocyte adhesion to endothelium and therefore promoter of pro-inflammatory processes.

Adrenergic beta-Agonists↗

Development of a small RGD peptide fibrinogen receptor antagonist with potent antiaggregatory activity in vitro.

The development of potent antithrombotic agents from the fibrinogen platelet receptor binding sequences Fg-alpha 572-575 -Arg-Gly-Asp-Ser- and Fg-gamma 400-411 -HHLGGAKQAGDV, believed to be a cryptic RGD-type sequence, is described. The tetrapeptide Ac-RGDS-NH2 itself is capable of inhibiting platelet aggregation in vitro at high concentrations, IC50 91.3 +/- 0.1 microM [in vitro antiaggregatory activity employing dog platelet rich plasma (PRP)/ADP], due to low platelet fibrinogen receptor affinity, Ki 2.9 +/- 1.9 microM (purified, reconstituted human platelet GPIIb/IIIa), relative to fibrinogen, Ki 38.0 +/- 6.0 nM. The peptide is also unstable to plasma, suffering total loss of in vitro activity upon incubation in PRP for 3 h (T1/2 90 min). Only modest improvements in potency were achieved with linear analogues of Ac-RGDS-NH2, while dramatic results were achieved with cyclic analogues, culminating in the cyclic disulfide Ac-cyclo-S,S-[Cys-(N alpha-Me)Arg-Gly-Asp-Pen]-NH2 (SK&F 106760) with improved plasma stability (100% activity after 3 h), affinity (Ki 58 +/- 20 nM purified human receptor), and potency (IC50 0.36 +/- 0.4 microM dog PRP/ADP). The affinity of this peptide is 2 orders of magnitude greater than that of Ac-RGDS-NH2. The affinity of the analogue is also comparable to fibrinogen. This peptide constitutes a first potent small peptide entry into the class of novel antithrombotic agents called fibrinogen receptor antagonists.

Amino Acid Sequence↗

Increased endothelin excretion in rats with renal failure induced by partial nephrectomy.

1. Six weeks following partial nephrectomy in rats, significant increases in serum urea nitrogen and serum creatinine concentration and a significant decrease in creatinine clearance were observed. 2. Measurement of systolic blood pressure by tail plethysmography indicated that animals that had undergone partial nephrectomy were hypertensive. 3. Compared to sham-operated animals, there were 4 fold increases in both urinary protein excretion and urinary endothelin excretion. 4. There was a significant correlation between urinary protein and urinary endothelin excretion (r = 0.77). There was also a correlation (r = 0.65) between urinary endothelin excretion and systolic blood pressure. 5. Plasma endothelin concentrations were not different in sham-operated and partially nephrectomized rats. 6. The data indicate that there is an increased renal endothelin production in rats with chronic renal failure.

Animals↗

Prolonged interleukin-2 (IL-2) treatment can augment immune activation without enhancing antitumor activity in renal cell carcinoma.

Preliminary studies involving small numbers of patients have suggested that interleukin-2 (IL-2) administered by continuous infusion in repetitive weekly cycles using doses of 3 x 10(6) U/M2/day is immunologically active and can induce tumor responses in patients with renal cell carcinoma. This study was designed to examine both the immunological and clinical effects of prolonged infusion IL-2 given by repetitive weekly cycles; first at moderate doses for 4 weeks as an impatient followed by lower doses of IL-2 for up to 5 months. Prolonged IL-2 treatment was investigated because previous studies revealed that patients had a return to their baseline immune status within 4 weeks after completing IL-2 treatment. Twenty-five patients (including 18 with renal cell carcinoma) were treated with one of two regimens utilizing IL-2 as sole therapy. These regimens were designed to induce augmented and prolonged immune activation based upon in vitro and in vivo data. Though patients on both arms of the study demonstrated sustained lymphocytosis, increase in numbers of natural killer cells, and induction of lymphokine-activated killer activity with prolonged IL-2 administration, only 1 out of the 18 patients with renal cell carcinoma demonstrated a sustained partial antitumor response to therapy. Furthermore, several patients demonstrated profound immune activation, without any evidence of tumor regression. The lack of clinical responses in these patients showing marked activation of LAK cytotoxicity suggests that other variables must also influence the likelihood of antitumor effects for patients receiving IL-2 therapy.

Adult↗

The influence of autologous lymphokine-activated killer cell infusions on the toxicity and antitumor effect of repetitive cycles of interleukin-2.

Twenty patients with refractory malignancies were treated with a protocol evaluating the addition of ex vivo-activated autologous lymphokine-activated killer (LAK) cells to a clinically tolerable interleukin-2 (IL-2) regimen (four weekly cycles of human recombinant IL-2 at 3 x 10(6) U/m2/day by continuous infusion for 4 days/week). Sixteen patients completed their induction month of therapy, two had a partial response, six had stable disease, and eight had progressive disease. Four patients had clinical toxicity preventing completion of the induction month of therapy, and one of these patients died during therapy. Significant clinical toxicities included decreased performance status, weight gain, catheter-related thromboses, infectious complications, fever, hypotension, and dyspnea or hypoxemia requiring oxygen. Thus, the addition of LAK cell infusions to this IL-2 regimen did not cause a noticeable change in antitumor response rate but did not cause more severe toxicity.

Adult↗

Biological and clinical effects of the combination of beta- and gamma-interferons administered as a 5-day continuous infusion.

A phase I trial involving continuous infusion of both beta- and gamma-interferon (IFN-beta and IFN-gamma) was conducted in 20 patients in order to determine whether combinations of high doses of IFN-beta and IFN-gamma were tolerable when administered under conditions which mimic conditions of in vitro antiproliferative studies. Patients received a 5-day continuous infusion of IFN-beta/IFN-gamma, followed by a 9-day rest period. Two cycles were administered. Doses of IFN-beta/IFN-gamma were escalated between 4 dose levels, with 5 patients per dose level. Dose-dependent side effects, consisting primarily of constitutional symptoms typical of those experienced with IFN, were observed. The maximally tolerated dose of continuous IFN-beta/IFN-gamma infusion was 3 x 10(6) units of IFN-beta and 200 micrograms of IFN-gamma. Dose-limiting side effects consisted of severe headache, fatigue, fever, and hepatic toxicity. No clinical responses were observed. Serum IFN was measurable only at the highest 3 dose levels. Only 5 patients (4 at the highest dose level) had total serum levels which exceeded 50 laboratory units/ml (55, 63, 800, 800, and 550 laboratory units/ml, respectively). In order to confirm the biological effectiveness of this schedule, we measured IFN-inducible proteins prior to therapy, 24 h after the initiation of the infusion, and at the completion of the 5-day infusion. 2'-5'-Oligoadenylate synthetase, serum beta 2-microglobulin, neopterin, and p78 levels all increased significantly, and serum tryptophan decreased significantly within 24 h after the initiation of treatment (P less than 0.0001). A dose-response effect was observed for serum beta 2-microglobulin, neopterin, and p78 (P less than 0.02). We retrospectively compared the results of this trial with those of another IFN-beta/IFN-gamma trial in which IFN-beta and IFN-gamma were administered by i.v. bolus. Within the limitations of a retrospective comparison, continuous infusion was less well tolerated than our previous schedule of bolus administration 3 times/week. However, the continuous infusion schedule appeared to be more effective in enhancing 2'-5'-oligoadenylate synthetase levels in mononuclear cells. We conclude that tolerable doses of IFN-beta and IFN-gamma do not result in serum IFN levels which produce significant synergistic antiproliferative responses in vitro. This study and other findings suggest that, unless higher doses can be achieved, combinations of IFN-beta and IFN-gamma are unlikely to have significant therapeutic activity.

2',5'-Oligoadenylate Synthetase↗

Endothelin and platelet function.

The effects of newly discovered vasoconstrictor peptide endothelin was studied on human, rabbit and canine platelet function. Endothelin (0.01 nM-1 microM) did not promote platelet aggregation. In human platelets, endothelin (0.1 microM) did not significantly affect aggregation responses to ADP, collagen, epinephrine, arachidonic acid, PGH2 or thrombin. Endothelin did not promote the mobilization of intracellular calcium in Fura2 loaded human platelets. In rabbit and canine platelets endothelin produced significant potentiation of platelet aggregation mediated by low concentrations of ADP. Aggregation responses to higher concentration of ADP (5 microM) were unaffected by endothelin. These data reveal that under certain circumstances endothelin may potentiate rabbit and canine platelet aggregation responses to ADP, however endothelin does not produce direct effects on human platelet function.

Adenosine Diphosphate↗

Characterization of the synergistic antiproliferative effects of interferon-gamma and tumor necrosis factor on human colon carcinoma cell lines.

We employed a tumor-type-specific tissue culture model utilizing three human colon carcinoma cell lines to (i) assess the effects of schedule, sequence, dose, and duration of exposure on the antiproliferative activity of combinations of tumor necrosis factor (TNF) and interferon-gamma (IFN-gamma) and to (ii) determine the effects of this combination on the production of a TNF-inducible protein, IFN-beta 2, and an IFN-inducible protein, p78. A statistical model was developed to ascertain the effects of each of three of the variables (sequence, dose, and duration) on the other two. With minor exceptions, the maximal antiproliferative effect in all three cell lines was observed when IFN-gamma and TNF were administered simultaneously, regardless of the doses of each agent and duration of exposure. Exposing the cells to TNF before IFN-gamma resulted in the least inhibition in cell growth. In all three cell lines, the antiproliferative effects of each treatment group were related directly to the duration of exposure. In two of the three cell lines, an intermittent schedule was as effective as a 24-h exposure. No p78 induction was observed in the HCT 116 cell line with IFN-gamma alone, TNF alone, or the combination; p78 was slightly induced in the SKC01 and VACO 9P cell lines with IFN-gamma alone, and was synergistically induced by the combination of TNF and IFN-gamma. Treatment with a neutralizing antibody to IFN-beta did not reverse the antiproliferative effect of any of the three treatment groups in HCT 116 cells. We conclude that the maximum antiproliferative effect in human colon carcinoma can be achieved by the prolonged simultaneous administration of high concentrations of each drug. If clinical toxicity prohibits this schedule, an intermittent schedule of administration may be effective. The mechanism of the synergistic effect is not due to the induction of IFN-beta or the p78 protein.

Cell Division↗

A direct comparison of biological response modulation and clinical side effects by interferon-beta ser, interferon-gamma, or the combination of interferons beta ser and gamma in humans.

To directly compare clinical side effects and biological response modification, IFN-beta ser, IFN-gamma, or the combination of IFN-beta ser plus IFN-gamma was administered to 21 cancer patients. Each IFN or the combination was given intravenously on days 1, 8, and 15 in varied order. Each IFN and the combination resulted in significant (P less than 0.05) modulation of IFN-induced proteins. IFN-beta ser was more effective than IFN-gamma in enhancing 2-5A synthetase activity (P = 0.001). IFN-gamma was more effective than IFN-beta ser in enhancing serum beta 2 microglobulin expression (P = 0.05) and indoleamine dioxygenase activity, as assessed by decreased serum tryptophan (P = 0.03). The combination enhanced tryptophan catabolism more effectively than IFN-beta ser in a dose-dependent manner (P less than 0.03). IFN-beta ser/IFN-gamma did not potentiate natural killer cells or antibody-dependent cellular toxicity (ADCC). IFN-beta ser/IFN-gamma enhanced monocyte guanylate cyclase activity, as assessed by serum neopterin, more effectively than IFN-gamma alone (P = 0.005). Both IFNs and the combination resulted in increases in HLA class II expression on monocytes. However, no significant difference in the level of induction of HLA DQ and HLA DR expression between IFN-beta ser/IFN-gamma and either IFN-beta ser or IFN-gamma was noted. Although frequency and servity of side effects of IFN-beta ser, IFN-gamma, or the combination were dose related, induction of induced proteins (with exception of influences on tryptophan catabolism) were not a function of dose administered over the 10-fold range. Continued treatment with the combination intravenously three times a week for 4 wk sustained but did not further potentiate, most of the changes in interferon-induced proteins. Thus, IFN-beta ser and IFN-gamma each resulted in effective and essentially equivalent patterns of induction of induced proteins. When combined, however, these IFNs did not result in potentiation of biological response modification in vivo.

2',5'-Oligoadenylate Synthetase↗