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Biomedical subjects

Jared A Gollob

Publications and source records attributed to Jared A Gollob.

12 recordsLinked to original sources

Phase I trial of sequential low-dose 5-aza-2'-deoxycytidine plus high-dose intravenous bolus interleukin-2 in patients with melanoma or renal cell carcinoma.

PURPOSE: The silencing of gene expression through DNA methylation contributes to defects in antigen presentation and apoptosis in melanoma and renal cell cancer. To determine how a hypomethylating agent would modulate the toxicity and antitumor activity of immunotherapy, we initiated a phase I trial of 5-aza-2'-deoxycytidine (decitabine) plus high-dose interleukin 2 (IL-2). EXPERIMENTAL DESIGN: Patients received s.c. decitabine daily x 5 days on weeks 1 and 2 of a 12-week cycle. High-dose IL-2, consisting of two cycles of IL-2 600,000 IU/kg i.v. q8 hours x 14 doses separated by a 2-week break, was administered starting on week 3. Decitabine was escalated from 0.1 to 0.25 mg/kg. The hypomethylating activity of decitabine was assessed during cycle 1 by measuring hemoglobin F levels and changes in DNA methylation in peripheral blood mononuclear cells. RESULTS: Twenty-one patients with melanoma or renal cell cancer were enrolled. Decitabine did not alter the tolerability of IL-2 but caused grade 4 neutropenia in most patients. Grade 4 neutropenia lasting more than 7 days was the only dose-limiting toxicity, with a trend toward a higher incidence with increasing decitabine doses. Infection occurred in only one patient despite the high incidence of neutropenia, and granulocyte colony-stimulating factor use in several patients expedited neutrophil recovery. Decitabine augmented hemoglobin F levels and altered DNA methylation and gene expression in peripheral blood mononuclear cells in a dose-independent manner that overlapped with the administration of IL-2. Objective responses occurred in 31% of melanoma patients. CONCLUSIONS: Decitabine can be safely administered with high-dose IL-2 and may enhance the activity of IL-2 in melanoma.

Adult↗

Role of Raf kinase in cancer: therapeutic potential of targeting the Raf/MEK/ERK signal transduction pathway.

Improvements in our understanding of the molecular basis of cancer have led to the clinical development of protein kinase inhibitors, which target pivotal molecules involved in intracellular signaling pathways implicated in tumorigenesis and progression. These novel targeted agents have demonstrated activity against a wide range of solid tumors, are generally better tolerated than standard chemotherapeutics, and may revolutionize the management of advanced refractory cancer. The ubiquitous Raf serine/threonine kinases are pivotal molecules within the Raf/mitogen extracellular kinase (MEK)/extracellular signal-related kinase (ERK) signaling pathway, which regulates cellular proliferation and survival. Raf kinase isoforms (wild-type Raf-1 or the b-raf V600E oncogene) are overactivated in a variety of solid tumor types, including renal cell carcinoma (RCC), hepatocellular carcinoma (HCC), non-small cell lung cancer (NSCLC), melanoma, and papillary thyroid carcinoma. In this review, the role of Raf in normal cells and in cancer is discussed, and an overview is given of Raf inhibitors currently in development, focusing on sorafenib tosylate (BAY 43-9006 or sorafenib). Sorafenib is the first oral multi-kinase inhibitor to be developed that targets Raf kinases (Raf-1, wild-type B-Raf, and b-raf V600E), in addition to receptor tyrosine kinases associated with angiogenesis (vascular endothelial growth factor receptor [VEGFR]-2/-3, platelet-derived growth factor receptor [PDGFR]-beta) or tumor progression (Flt-3, c-kit). Preclinical and clinical sorafenib data that led to its recent approval for the treatment of advanced RCC are summarized, along with current thinking on sorafenib's mechanism of effect on the tumor and tumor vasculature in melanoma and RCC.

Animals↗

Melanoma.

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Algorithms↗

Historic evidence and future directions in clinical trial therapy of solid tumors.

Although improved survival is the "gold standard" for proving clinical benefit of oncologic therapy, the U.S. Food and Drug Administration (FDA) has accepted significant results in clinical trials using surrogate endpoints as the basis for drug approval. One surrogate is the amount of tumor reduction, or tumor response. Although tumor shrinkage would seem to be a necessary precondition for improved survival, clinical studies of a variety of oncologic agents have not consistently demonstrated a correlation between the two in patients with renal cell carcinoma. Moreover, tumor response may not be an appropriate endpoint for evaluating the effects of the new targeted therapies, whose putative mechanisms are generally cytostatic rather than cytotoxic. Clinical trials suggest that some patients with other solid tumors, such as lung cancer, may derive clinical benefit from treatment that helps stabilize their disease. There is also controversy as to whether the Response Evaluation Criteria in Solid Tumors (RECIST) provides the most appropriate instrument for assessing tumor burden. Ultimately, use of a variety of endpoints as well as different trial designs may provide an adequate basis for investigating the benefits/risks of newer therapies.

Antineoplastic Agents↗

Gene expression changes and signaling events associated with the direct antimelanoma effect of IFN-gamma.

IFN-gamma plays a role in the response to melanoma indirectly through its effect on the immune system and directly through its antiproliferative and proapoptotic effects on melanoma cells. To understand the molecular basis for the direct antimelanoma effect of IFN-gamma, we studied IFN-induced changes in gene expression and signaling among three human melanoma cell lines (DM6, DM93, and 501mel). These were resistant to the antimelanoma effect of IFN-alpha, and only DM6 cells exhibited growth inhibition and apoptosis with IFN-gamma. Through DNA microarray analysis, we found that the antimelanoma effect of IFN-gamma in DM6 was associated with the down-regulation of multiple genes involved in G-protein signaling and phospholipase C activation (including Rap2B and calpain 3) as well as the down-regulation of genes involved in melanocyte/melanoma survival (MITF and SLUG), apoptosis inhibition (Bcl2A1 and galectin-3), and cell cycling (CDK2). The antimelanoma effect of IFN-gamma was also associated with the up-regulation of the proapoptotic dependence receptor UNC5H2 and the Wnt inhibitor Dkk-1. Whereas both IFNs were able to activate Stat1 in all cell lines, the delayed activation of the extracellular signal-regulated kinase, p38, and c-Jun NH2-terminal kinase mitogen-activated protein kinases occurred only in DM6 with IFN-gamma, and the effect of IFN-gamma on cell growth and survival as well as gene expression in DM6 was dependent on the coordinate activation of MEK1 and p38. These findings provide new insights into the signaling events and gene expression changes associated with growth inhibition and apoptosis in melanoma and may thereby assist in identifying new targets for the treatment of melanoma.

Antineoplastic Agents↗

Randomized phase III trial of high-dose interleukin-2 versus subcutaneous interleukin-2 and interferon in patients with metastatic renal cell carcinoma.

PURPOSE: The Cytokine Working Group conducted a randomized phase III trial to determine the value of outpatient interleukin-2 (IL-2) and interferon alfa-2b (IFN) relative to high-dose (HD) IL-2 in patients with metastatic renal cell carcinoma. PATIENTS AND METHODS: Patients were stratified for bone and liver metastases, primary tumor in place, and Eastern Cooperative Oncology Group performance status 0 or 1 and then randomly assigned to receive either IL-2 (5 MIU/m(2) subcutaneously every 8 hours for three doses on day 1, then daily 5 days/wk for 4 weeks) and IFN (5 MIU/m(2) subcutaneously three times per week for 4 weeks) every 6 weeks or HD IL-2 (600,000 U/kg/dose intravenously every 8 hours on days 1 through 5 and 15 to 19 [maximum 28 doses]) every 12 weeks. RESULTS: One hundred ninety-two patients were enrolled between April 1997 and July 2000. Toxicities were as anticipated for these regimens. The response rate was 23.2% (22 of 95 patients) for HD IL-2 versus 9.9% (nine of 91 patients) for IL-2/IFN (P = .018). Ten patients receiving HD IL-2 were progression-free at 3 years versus three patients receiving IL-2 and IFN (P = .082). The median response durations were 24 and 15 [corrected] months (P = .18) [corrected] and median survivals were 17.5 and 13 months (P = .24). For patients with bone or liver metastases (P = .001) or a primary tumor in place (P = .040), survival was superior with HD IL-2. CONCLUSION: This randomized phase III trial provides additional evidence that HD IL-2 should remain the preferred therapy for selected patients with metastatic renal cell carcinoma.

Adult↗

Sorafenib: scientific rationales for single-agent and combination therapy in clear-cell renal cell carcinoma.

Clear-cell renal cell carcinoma (RCC) is characterized by the loss of von Hippel-Lindau disease protein and the resultant dysregulation of the vascular endothelial growth factor (VEGF)/VEGF receptor (VEGFR), platelet-derived growth factor-beta (PDGF-beta)/PDGF receptor-beta (PDGFR-beta), and transforming growth factor-alpha (TGF-alpha)/epidermal growth factor receptor (EGFR)/Raf pathways, which contribute to angiogenesis, lymphangiogenesis, and tumor cell growth and survival. Significant advances in the treatment of clear-cell RCC have been derived from agents that target these pathways, including the multiple-kinase inhibitors (MKIs) sorafenib, sunitinib, and AG013736, which target multiple VEGFRs as well as PDGFR-beta. Sorafenib has the added advantage of inhibiting multiple different Raf isoforms, which enables it to target TGF-alpha/EGFR signaling and may also enhance its inhibition of VEGFR and PDGFR-beta. This review will examine the recent advances in our understanding of the biology of clear-cell RCC and show how those advances have helped delineate new targets of opportunity for treatment. It will also present the early clinical results of agents that target the pathways dysregulated in clear-cell RCC, with special emphasis on sorafenib and the other active MKIs, and will describe the scientific rationales for ongoing and future sorafenib-based combination therapy trials in RCC.

Antineoplastic Agents↗

Safety, pharmacokinetics, and activity of ABX-EGF, a fully human anti-epidermal growth factor receptor monoclonal antibody in patients with metastatic renal cell cancer.

PURPOSE: To determine the antitumor activity of ABX-EGF, a fully human monoclonal antibody to the epidermal growth factor receptor (EGFr), in previously treated patients with metastatic renal cell carcinoma, and to characterize its toxicity, immunogenicity, pharmacokinetics, and pharmacodynamics. PATIENTS AND METHODS: The antitumor activity, as well as the toxicity, pharmacokinetics, pharmacodynamics, and immunogenicity of ABX-EGF, were assessed. RESULTS: Eighty-eight patients were treated with ABX-EGF doses of 1.0, 1.5, 2.0, or 2.5 mg/kg weekly with no loading dose. EGFr immunostaining was performed on 76 tumor biopsy specimens (86%), and 69 (91%) scored positive. Major responses occurred in three patients, and two patients had minor responses. Forty-four patients (50%) also had stable disease at their first 8-week assessment, and the median progression-free survival (PFS) was 100 days (95% CI, 58 to 140 days). Low hemoglobin and high alkaline phosphatase predicted for short PFS. The principal toxicity, an acneiform rash, occurred in 68%, 95%, 87%, and 100% of patients who received at least three doses of ABX-EGF at 1.0, 1.5, 2.0, and 2.5 mg/kg/wk, respectively. A trend indicated that the severity of the rash may relate to PFS. No human antihuman antibodies were detected. ABX-EGF pharmacokinetics fit a model that incorporated both linear and saturable EGFr-mediated clearance mechanisms, and interindividual variability was low. At 2.5 mg/kg/wk, ABX-EGF concentrations throughout treatment exceeded those estimated to saturate nonlinear clearance and inhibit xenograft growth by 90%. CONCLUSION: ABX-EGF was generally well tolerated. The objective response rate was low in previously treated patients with metastatic renal cell carcinoma. Although skin rash may be a pharmacodynamic marker of drug action, its potential as a surrogate marker of clinical benefit requires further evaluation.

Alkaline Phosphatase↗

Phase I trial of concurrent twice-weekly recombinant human interleukin-12 plus low-dose IL-2 in patients with melanoma or renal cell carcinoma.

PURPOSE: To maintain interferon gamma (IFNgamma) induction by recombinant human interleukin-12 (rhIL-12) and enhance its activity against melanoma and renal cell cancer, a regimen of twice-weekly intravenous (IV) rhIL-12 was modified to include concurrent low-dose subcutaneous (SC) IL-2 in a phase I dose escalation study. PATIENTS AND METHODS: Patients received 6-week cycles of twice-weekly IV rhIL-12 at doses of 300 to 500 ng/kg. Midway through cycle 1, low-dose SC IL-2 was added. The IL-2 was escalated from 0.5 to 6.0 MU/m2. Grade 3 elevations of hepatic ALT, AST, or alkaline phosphatase were not considered dose-limiting unless values were more than 10 times normal. During cycle 1, patients underwent immune monitoring to assess the effect of IL-2 on lymphocyte activation and cytokine production induced by rhIL-12. RESULTS: Twenty-eight patients were enrolled onto the study. The maximum-tolerated dose (MTD) was 500 ng/kg rhIL-12 plus 3 MU/m2 IL-2. Toxicities related to the addition of IL-2 at the MTD included fever or chills, anemia, fatigue, nausea or vomiting, and orthostatic hypotension. At the MTD, IL-2 significantly augmented IFNgamma and IFNgamma-inducible protein-10 production by rhIL-12 and led to a three-fold expansion of natural killer cells. There was one major clinical response (partial response) as well as two pathologic responses; all occurred in melanoma patients. Stable disease for three to six cycles was only observed at or above the MTD in melanoma and renal cell cancer patients. CONCLUSION: The addition of concurrent low-dose IL-2 to rhIL-12 is well tolerated, restores and maintains immune activation by rhIL-12, and has clinical activity. This regimen should be further investigated in phase II studies in untreated patients with melanoma or renal cell cancer and in other rhIL-12-responsive malignancies.

Adult↗

IL-12 induces monocyte IL-18 binding protein expression via IFN-gamma.

IL-18 is a Th1 cytokine that synergizes with IL-12 and IL-2 in the stimulation of lymphocyte IFN-gamma production. IL-18 binding protein (IL-18BP) is a recently discovered inhibitor of IL-18 that is distinct from the IL-1 and IL-18 receptor families. In this report we show that IL-18BPa, the IL-18BP isoform with the highest affinity for IL-18, was strongly induced by IL-12 in human PBMC. Other Th1 cytokines, including IFN-gamma, IL-2, IL-15, and IL-18, were also capable of augmenting IL-18BPa expression. In contrast, IL-1alpha, IL-1beta, TNF-alpha, IFN-gamma-inducible protein-10, and Th2 cytokines such as IL-4 and IL-10 did not induce IL-18BPa. Although monocytes were found to be the primary source of IL-18BPa, the induction of IL-18BPa by IL-12 was mediated through IFN-gamma derived predominantly from NK cells. IL-18BPa production was observed in cancer patients receiving recombinant human IL-12 and correlated with the magnitude of IFN-gamma production. The IFN-gamma/IL-18BPa negative feedback loop identified in this study may be capable of broadly controlling immune activation by cytokines that synergize with IL-18 to induce IFN-gamma and probably plays a key role in the modulation of both innate and adaptive immunity.

Antibodies↗

A phase II pilot trial of concurrent biochemotherapy with cisplatin, vinblastine, temozolomide, interleukin 2, and IFN-alpha 2B in patients with metastatic melanoma.

PURPOSE: In an effort to reduce the frequency of central nervous system (CNS) progression in patients with metastatic melanoma with ongoing systemic response to biochemotherapy, we modified our standard concurrent biochemotherapy regimen by replacing dacarbazine (DTIC) with oral temozolomide. EXPERIMENTAL DESIGN: Patients received cisplatin, vinblastine, and temozolomide (20 mg/m(2) cisplatin and 1.2 mg/m(2) vinblastine i.v., days 1-4; 150 mg/m(2) p.o. temozolomide, days 1-4) concurrent with interleukin 2 (9 MIU/m(2)/day) by continuous i.v. infusion on days 1-4 and IFN-alpha (5 MU/m(2)/day) on days 1-5, 8, 10, and 12. Prophylactic antibiotics and a maximum of four cycles were administered. Routine granulocyte-colony stimulating factor and aggressive antiemetics were also provided. Tumor staging included torso computed tomography scans and brain magnetic resonance imaging pretreatment, after cycle 4 and then every 3 months for 2 years. Torso computed tomography scans were also performed after cycle 2. RESULTS: A total of 147 treatment cycles were administered to 48 patients. No patients had received prior chemotherapy or interleukin 2; however, 19 (40%) had received prior adjuvant IFN-alpha. Significant toxicities included 2 deaths from cardiac events (pericarditis al tamponade and posttreatment myocardial infarction with associated ventricular arrhythmia) and 3 gastrointestinal serious adverse events (pancreatitis, appendicitis, and upper GI bleed). No other nonhematological grade 4 toxicities were observed. Tumor responses were seen in 22 of 47 evaluable patients (relative risk, 47%) with 7 complete responses (15%). Response durations ranged from 1 to 29+ months with 1 currently ongoing. Median survival was 7.5 months. The CNS was the initial site of progression in 2 responding patients. An additional 6 responding patients developed CNS progression within 3 months of systemic progression. Initial CNS progression was significantly less frequent what was seen with the prior DTIC-based biochemotherapy regimen (2 of 22 versus 12 of 19; P = 0.001). CONCLUSION: This regimen appears to be active and reasonably well tolerated in patients with metastatic melanoma. Although the substitution of temozolomide for DTIC reduced the incidence of initial CNS progression, this effect did not appear to result in an improved overall outcome.

Adult↗

Induction of myasthenia gravis, myositis, and insulin-dependent diabetes mellitus by high-dose interleukin-2 in a patient with renal cell cancer.

Interleukin-2 is an effective agent against renal cell carcinoma and melanoma, but it has been associated with autoimmune sequelae such as hypothyroidism and vitiligo. A 64-year-old man with non-insulin-dependent diabetes and metastatic renal cell carcinoma developed insulin-dependent diabetes after his first cycle of therapy with high-dose (HD) interleukin-2. After additional therapy with interleukin-2, the patient developed generalized myasthenia gravis (MG) and polymyositis, both of which responded to treatment with corticosteroids and plasmapheresis. To investigate the role of IL-2 in the development of these autoimmune complications, autoantibody titers were assayed from serum obtained before and after IL-2 treatment and after treatment with corticosteroids plus plasmapheresis. Before IL-2 treatment, the patient had antibodies directed against insulin, islet cell antigens, and striated muscle. Acetylcholine receptor antibody levels were normal before starting IL-2. After treatment with IL-2, the patient developed acetylcholine receptor binding antibodies and exhibited an increase in the striated muscle antibody titer from 1:40 to 1:160. Recovery from the MG and polymyositis was associated with substantial decreases in the acetylcholine receptor and striated muscle antibody titers. These findings suggest that HD IL-2 accelerated the progression of latent autoimmune diabetes and myositis in this patient whose tolerance to islet cell antigens and striated muscle had already been broken and precipitated a break in tolerance to the acetylcholine receptor resulting in the development of MG. This case demonstrates the importance of prompt recognition of IL-2-induced MG and shows how this complication can be successfully managed with aggressive therapy.

Carcinoma, Renal Cell↗