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Biomedical subjects

R M Bukowski

Publications and source records attributed to R M Bukowski.

At least 37 records · Page 2Linked to original sources

T-cell adoptive immunotherapy of metastatic renal cell carcinoma.

OBJECTIVES: To determine the feasibility and toxicity of the adoptive transfer of ex vivo-activated T lymphocytes that have been sensitized to autologous tumor vaccine in vivo. METHODS: Twenty patients with extensive metastatic renal cell carcinoma received systemic adoptive immunotherapy with autologous T cells in the absence of conjunctional interleukin-2 (IL-2) administration. Patients were vaccinated intradermally with irradiated autologous tumor cells and granulocyte-macrophage colony-stimulating factor as an adjuvant to stimulate an immune response. Inguinal lymph nodes draining the vaccine site were surgically removed, and the cells were stimulated with staphylococcal enterotoxin A followed by expansion in 60 IU/mL IL-2, and in some cases additionally stimulated with anti-CD3 monoclonal antibody and IL-2, to obtain a large number of cells. RESULTS: The staphylococcal enterotoxin A/IL-2 activation induced vigorous proliferation of T cells (median expansion 26-fold) that were a mixture of CD4 and CD8 T lymphocytes. Activated cells were infused intravenously at doses ranging from 2x10(9) to 9.5x10(10). There was minimal toxicity consisting of grade 1 or 2 fever and nausea, and the entire treatment was delivered as outpatient therapy. One patient had a partial response, one had a mixed response, and 8 had stable disease lasting at least 5 months. CONCLUSIONS: Adoptive transfer of ex vivo-activated, tumor vaccine-primed lymph node cells is feasible and is associated with minimal toxicity when used alone. These results warrant further study in a Phase II trial.

Adult↗

Recent advances in systemic therapy for gastrointestinal neuroendocrine tumors.

Neuroendocrine tumors of the gastrointestinal tract are rare tumors which can be classified as amine precursor uptake and decarboxylation tumors (APU-Domas). Although the majority of clinically apparent tumors are malignant, they are frequently slow growing. Despite this characteristic, they may generate disabling hormonal syndromes requiring aggressive treatment to achieve palliation. Recent advances in understanding the pathophysiology of these tumors has led to better medical therapy with chemotherapeutic agents, somatostatin analogues, and biologic therapies. This review will update the recent efforts in systemic therapies of the gastrointestinal neuroendocrine tumors.

3-Iodobenzylguanidine↗

Interferon-gamma production by T lymphocytes from renal cell carcinoma patients: evidence of impaired secretion in response to interleukin-12.

Interleukin-12 (IL-12) is a heterodimeric cytokine that enhances the cytolytic activity, proliferation, and interferon-gamma (IFN-gamma) production by T lymphocytes and natural killer cells, and has significant antitumor activity in a variety of murine tumor models. The induction of interferon (IFN)-gamma by IL-12 in tumor-bearing mice plays an important role in its antitumor activity. We therefore examined the effects of IL-12 on IFN-gamma production by T cells derived from patients with renal cell carcinoma (RCC), including freshly isolated tumor infiltrating lymphocytes (T-TIL), matched peripheral blood T cells (T-PBL), and RCC-specific TIL lines. IL-12 alone induced IFN-gamma secretion by T cells from normal individuals and appeared to act synergistically with either IL-2 or anti-CD3 antibody. In contrast, it failed to stimulate significant IFN-gamma secretion by T-PBL and T-TIL from RCC patients. This unresponsive state in T-PBL appeared selective because IFN-gamma was produced when cells were stimulated with either phytohemagglutinin or anti-CD3 antibody. Moreover, costimulation through the T-cell receptor (TCR)/CD3 complex or with IL-2 made T-PBL from RCC patients responsive to IL-12, possibly secondary to the upregulation of IL-12R (beta chain). A selective loss of IL-12-dependent production of IFN-gamma was also consistently observed in two of three established RCC-specific TIL lines. Although these cell lines did not respond to any concentration of IL-12, they did produce IFN-gamma after ligation of the TCR/CD3 or stimulation with IL-2, IL-12 also acted either syngeristically or additively with IL-2, anti-CD3 antibody, or autologous tumor cells to induce IFN-gamma production. The observed decreases in IFN-gamma production in response to IL-12 may have a negative effect on the development of T-cell immunity. The clinical importance of these findings during in vivo administration of IL-12 remains to be determined.

Carcinoma, Renal Cell↗

Altered drug interaction and regulation of topoisomerase IIbeta: potential mechanisms governing sensitivity of HL-60 cells to amsacrine and etoposide.

Topoisomerase II (topo II), an enzyme essential for cell viability, is present in mammalian cells as the alpha- and beta-isoforms. In human leukemia HL-60/S or HL-60/doxorubicin (DOX)0.05 cells, the levels of topo IIalpha- or beta-protein were similar in either asynchronous exponential or synchronized cultures. Although topo IIalpha was hypophosphorylated in HL-60/DOX0.05 compared with HL-60/S cells, both overall and site-specific hyperphosphorylation of topo IIbeta was apparent in HL-60/DOX0.05 compared with HL-60/S cells. The phosphorylation of topo IIalpha and not beta was enhanced in the S and G(2) + M phases of HL-60/S cells. In contrast, an increase in the phosphorylation of topo IIbeta compared with alpha was apparent in the G(1) and S phases of HL-60/DOX0.05 cells. The cytotoxicity and depletion of topo IIalpha or beta in cells treated with drug for 1 h revealed that mole-for-mole, amsacrine was 2-fold more effective than etoposide in killing HL-60/S or HL-60/DOX0.05 cells and in depleting the beta versus alpha topo II protein. Present results demonstrate that: 1) hyperphosphorylation of topo IIbeta in HL-60/DOX0.05 cells may be a compensatory consequence of the hypophosphorylation of topo IIalpha to maintain normal topo II function during proliferation, and 2) enhanced sensitivity of HL-60/S or HL-60/DOX0.05 cells to amsacrine may be due to the preferential interaction and depletion of topo IIbeta.

Amsacrine↗

Renal cell carcinoma-derived gangliosides suppress nuclear factor-kappaB activation in T cells.

Activation of the transcription factor nuclear factor-kappaB (NFkappaB) is impaired in T cells from patients with renal cell carcinomas (RCCs). In circulating T cells from a subset of patients with RCCs, the suppression of NFkappaB binding activity is downstream from the stimulus-induced degradation of the cytoplasmic factor IkappaBalpha. Tumor-derived soluble products from cultured RCC explants inhibit NFkappaB activity in T cells from healthy volunteers, despite a normal level of stimulus-induced IkappaBalpha degradation in these cells. The inhibitory agent has several features characteristic of a ganglioside, including sensitivity to neuraminidase but not protease treatment; hydrophobicity; and molecular weight less than 3 kDa. Indeed, we detected gangliosides in supernatants from RCC explants and not from adjacent normal kidney tissue. Gangliosides prepared from RCC supernatants, as well as the purified bovine gangliosides G(m1) and G(d1a), suppressed NFkappaB binding activity in T cells and reduced expression of the cytokines IL-2 and IFN-gamma. Taken together, our findings suggest that tumor-derived gangliosides may blunt antitumor immune responses in patients with RCCs.

Carcinoma, Renal Cell↗

Multicenter, randomized, phase III trial of CD8(+) tumor-infiltrating lymphocytes in combination with recombinant interleukin-2 in metastatic renal cell carcinoma.

PURPOSE: To prospectively evaluate in a multicenter randomized trial the antitumor activity of CD8(+) tumor-infiltrating lymphocytes (TILs) in combination with low-dose recombinant interleukin-2 (rIL-2), compared with rIL-2 alone, after radical nephrectomy in metastatic renal cell carcinoma patients. PATIENTS AND METHODS: Between December 1994 and March 1997, 178 patients with resectable primary tumors were enrolled at 29 centers in the United States and Europe. Patients underwent total nephrectomy, recovered, and were randomized to receive either CD8(+) TILs (5 x 10(7) to 3 x 10(10) cells intravenously, day 1) plus rIL-2 (one to four cycles: 5 x 10(6) IU/m(2) by continuous infusion daily for 4 days per week for 4 weeks) (TIL/rIL-2 group) or placebo cell infusion plus rIL-2 (identical regimen) (rIL-2 control group). Primary tumor specimens were cultured at a central cell-processing center in serum-free medium containing rIL-2 to generate TILs. RESULTS: Of 178 enrolled patients, 160 were randomized (TIL/rIL-2 group, n = 81; rIL-2 control group, n = 79). Twenty randomized patients received no treatment after nephrectomy because of surgical complications (four patients), operative mortality (two patients), or ineligibility for rIL-2 therapy (14 patients). Among 72 patients eligible for TIL/rIL-2 therapy, 33 (41%) received no TIL therapy because of an insufficient number of viable cells. Intent-to-treat analysis demonstrated objective response rates of 9.9% v 11.4% and 1-year survival rates of 55% v 47% in the TIL/rIL-2 and rIL-2 control groups, respectively. The study was terminated early for lack of efficacy as determined by the Data Safety Monitoring Board. CONCLUSION: Treatment with CD8(+) TILs did not improve response rate or survival in patients treated with low-dose rIL-2 after nephrectomy.

Adolescent↗

Approaches to managing carboplatin-induced thrombocytopenia: focus on the role of amifostine.

Thrombocytopenia is a significant problem for patients receiving prolonged or aggressive chemotherapy for malignancy. For carboplatin, it is the predominant dose-limiting toxicity and it is cumulative in nature. A number of agents have been evaluated for efficacy in reducing the problem of thrombocytopenia. Some have proved valueless and have been discarded. Others (eg, recombinant thrombopoietin) are under current study, and one (interleukin-11 or oprelvekin) is now commercially available. In addition, the currently available cytoprotectant, amifostine (Ethyol; Alza Pharmaceuticals, Palo Alto, CA/US Bioscience, West Conshohocken, PA), has been shown to reduce the severity and duration of thrombocytopenia caused by carboplatin. Because of the short half-life of amifostine relative to that of carboplatin, multiple doses of amifostine have been administered in conjunction with carboplatin. The optimal dosing regimen with amifostine and carboplatin needs to be further evaluated in clinical studies. Future trials will also expand these observations to carboplatin-containing combination chemotherapy regimens and will further define the role of amifostine as a multilineage bone marrow protectant. The ability of amifostine to demonstrate multilineage bone marrow protection differentiates it from currently available growth factors and fulfills a medical need, including reducing the need for platelet transfusions and maintaining the desired chemotherapy dose intensity.

Amifostine↗

Interferon-gamma and CXC chemokine induction by interleukin 12 in renal cell carcinoma.

Interleukin 12 (IL-12) is known to play an important role in the development of an antitumor response. Its activity has been shown to be dependent upon the intermediate production of IFN-gamma and the influx into the tumor of CD8 lymphocytes. In a murine model, tumor regression induced by IL-12 treatment correlated with IFN-gamma, IP-10, and Mig expression in the tumor bed and was abrogated by antibodies to both chemokines. Here we examined the effects of rHuIL-12 on IFN-gamma and CXC chemokine gene expression in patients with renal cell carcinoma (RCC) in an attempt to determine whether a similar series of molecular events leading to IL-12-mediated tumor regression in mice is also detectable in humans. As in the murine RENCA model, cultured RCC cells themselves could be induced by IFN-gamma to synthesize IP-10 and Mig mRNA. Explanted RCC produced IFN-gamma and IP-10 mRNA in response to IL-12 treatment, which was consistent with the finding that biopsied RCC tumors from IL-12-treated patients also variably expressed augmented levels of those molecules after therapy. Although Mig mRNA was present in the majority of biopsied tumors prior to treatment, both the Mig and IP-10 chemokines as well as IFN-gamma were induced in the peripheral blood mononuclear cells of IL-12-treated patients. Skin biopsies of IL-12-treated patients also all synthesized IP-10 mRNA. This study demonstrates that recombinant human IL-12 therapy of patients with RCC has the potential to induce the expression of gene products within the tumor bed that may contribute to the development of a successful antitumor response.

Animals↗

Attenuation of drug-stimulated topoisomerase II-DNA cleavable complex formation in wild-type HL-60 cells treated with an intracellular calcium buffer is correlated with decreased cytotoxicity and site-specific hypophosphorylation of topoisomerase IIalpha.

Topoisomerase II (topo II), an essential enzyme for cell viability, is also the target for clinically important anti-neoplastic agents that stimulate topo II-mediated DNA scission. The role of alterations in topo IIalpha phosphorylation and its effect on drug-induced DNA damage and cytotoxicity were investigated. Following loading of HL-60 cells with the calcium buffer 1, 2-bis-(o-aminophenoxy)ethane-N,N,N',N'-tetra-acetic acid tetra(acetoxymethyl) ester (BAPTA-AM), which abrogates intracellular Ca2+ transients, a significant decrease in etoposide (VP-16)- or amsacrine (m-AMSA)-stabilized topo II-DNA cleavable complex formation and a corresponding decrease in cytotoxicity was observed. In a cell-free system, nuclear extracts from BAPTA-AM-treated cells exhibited markedly less activity when assayed for VP-16-stabilized topo II-DNA complex formation, but not decatenation of kinetoplast DNA. In contrast, the loading of HL-60 cells with N,N,N', N'-tetrakis-(2-pyridyl)ethylenediamine (TPEN), which binds heavy metals without disturbing calcium or magnesium concentrations, did not significantly affect VP-16-stimulated topo II-DNA cleavable complex formation or cytotoxicity. In HL-60 cells the accumulation of BAPTA, but not TPEN, also led to the hypophosphorylation of topo IIalpha. Tryptic phosphopeptide mapping of topo IIalpha protein from HL-60 cells revealed: (a) eight major phosphorylation sites in untreated cells; (b) hypophosphorylation of two out of eight sites in BAPTA-AM-treated cells; and (c) hypophosphorylation of between two and four out of eight sites in topo II-poison-resistant HL-60 cells. The two hypophosphorylated sites present following BAPTA-AM treatment of wild-type cells were identical with the hypophosphorylated sites in the resistant cells, but were not the same as the sites that are substrates for casein kinase II [Wells, Addison, Fry, Ganapathi and Hickson (1994) J. Biol. Chem. 269, 29746-29751]. In summary, changes in intracellular Ca2+ transients that lead to the site-specific hypophosphorylation of topo IIalpha are possibly involved in regulating the DNA damage caused by and the cytotoxic potential of topo II poisons.

Antigens, Neoplasm↗

Altered expression and activity of topoisomerases during all-trans retinoic acid-induced differentiation of HL-60 cells.

Regulation of topoisomerase II (TOPO II) isozymes alpha and beta is influenced by the growth and transformation state of cells. Using HL-60 cells induced to differentiate by all-trans retinoic acid (RA), we have investigated the expression and regulation of TOPO II isozymes as well as the levels of topoisomerase I (TOPO I). During RA-induced differentiation of human leukemia HL-60 cells, levels of TOPO I remained unchanged, whereas the levels and phosphorylation of TOPO IIalpha and TOPO IIbeta proteins were increased twofold to fourfold and fourfold to eightfold, respectively. The elevation of TOPO II (alpha and beta) protein levels and phosphorylation was apparent at 48 hours of treatment with RA and persisted through 96 hours. The increased level of TOPO IIbeta protein was also detected in differentiated cells subsequently cultured for 96 hours in RA-free medium. Pulse chase experiments in cells labeled with 35S-methionine showed that the rate of degradation of TOPO IIbeta protein in control cells was about twofold faster than that in the differentiated RA-treated cells. The level of decatenation activity of kDNA was comparable in nuclear extracts from control or RA-treated cells. Whereas etoposide (1 to 10 micromol/L) -induced DNA cleavage was not significantly different, apoptosis was significantly lower (P = .012) in RA-treated versus control cells after exposure to 10 micromol/L etoposide. Consistent with unaltered levels of TOPO I, camptothecin (CPT) -induced DNA cleavage was similar in control or RA-treated cells. However, apoptosis after exposure to 1 to 10 micromol/L CPT was significantly lower (P = .003 to P < .001) in RA-treated versus control cells. Results suggest that TOPO IIbeta protein levels are posttranscriptionally regulated and that degradation of TOPO IIbeta is decreased during RA-induced differentiation. Furthermore, whereas the total level of TOPO II (alpha + beta) is increased with RA, the level of TOPO II catalytic activity and etoposide-stabilized DNA cleavage activity remains unaltered. Thus, TOPO IIbeta may have a specific role in transcription of genes involved in differentiation with RA treatment.

Cell Differentiation↗

The CXC chemokines IP-10 and Mig are necessary for IL-12-mediated regression of the mouse RENCA tumor.

The role of the non-ELR-containing CXC chemokines IP-10 and Mig in antitumor activity induced by systemic treatment with IL-12 was examined in mice bearing the murine renal adenocarcinoma RENCA. IL-12 treatment produces a potent antitumor effect that is associated with tumor infiltration by CD8+ T lymphocytes. The regression of tumor is associated with the elevated expression of the IFN-gamma-inducible chemokines IP-10 and Mig within the tumor tissue. IP-10 and Mig have been shown to function as chemoattractants for activated T lymphocytes. In animals treated with rabbit polyclonal Abs specific for IP-10 and for Mig, the IL-12-induced regression of RENCA tumors was partially abrogated. This effect was associated with a dramatic inhibition of T cell infiltration. Thus, it appears that IL-12-dependent, T cell-mediated antitumor activity requires the intermediate expression of IP-10 and Mig to recruit antitumor effector T cells to the tumor site.

Amino Acid Sequence↗

Efficacy of multimodality therapy in advanced renal cell carcinoma.

OBJECTIVES: The integration of systemic biologic response modifier (BRM) therapy and surgery to treat metastatic renal cell carcinoma (RCC) is an evolving approach. The purpose of this study was to evaluate the efficacy of this form of multimodality therapy in patients with metastatic RCC. METHODS: Between 1988 and 1996, 14 patients at our institution underwent initial BRM therapy followed by surgical resection of primary and metastatic RCC lesions. Patient records were reviewed to determine the response to BRM therapy, progression-free survival rate, and overall survival rate. The mean follow-up for the entire group was 43.5 months. RESULTS: After BRM therapy, 9 patients manifested an objective response and 5 patients had stable disease. All patients were then rendered disease-free by surgical excision of residual or recurrent metastatic lesions and the primary tumor. The cancer-specific survival rate at 3 years was 81.5%. Currently, 7 patients are alive and disease-free (mean follow-up 41.4 months), 3 patients are alive with recurrent disease (mean survival 48.3 months), 3 patients died of metastatic disease (mean survival 27.9 months), and 1 patient died of an unrelated cause 54.4 months after therapy. CONCLUSIONS: The results of this study suggest that adjunctive surgery after BRM therapy can extend the survival of selected patients with metastatic RCC. Aggressive surgical resection of stable or responding lesions after BRM therapy should be considered in the management of these patients.

Adult↗

Phase I/II trial of all-trans retinoic acid and tamoxifen in patients with advanced breast cancer.

Because tamoxifen and all-trans-retinoic acid (ATRA) have additive antitumor effects in preclinical systems, we performed a Phase I/II clinical trial of this combination in patients with advanced breast cancer. Patients with potentially hormone-responsive advanced breast cancer were enrolled. All received 20 mg of tamoxifen by mouth daily. Consecutive cohorts of 3-6 patients were treated on odd-numbered weeks with ATRA at doses of 70, 110, 150, 190, or 230 mg/m2/day. Twenty-six patients were entered in this trial; 25 were evaluable. A dose of 230 mg/m2 ATRA produced unacceptable headache and dermatological toxicity, but doses < or = 190 mg/m2 were tolerable. Two of 7 patients with measurable disease responded. Seven of 18 patients with evaluable, nonmeasurable disease achieved disease stability for more than 6 months. Plasma AUCs on day 1 of successive weeks of treatment were stable over time. A nonsignificant decrease in serum insulin-like growth factor I levels was noted during treatment, but this trend was similar to that observed in three "control" patients treated with tamoxifen alone. When given with daily tamoxifen, the maximum tolerated dose of ATRA that could be given on alternate weeks was 190 mg/m2/day. This schedule of ATRA resulted in repeated periods of exposure to potentially therapeutic concentrations of ATRA. Declines in the serum insulin-like growth factor I concentrations observed in patients treated with tamoxifen and ATRA were similar to those observed in patients treated with tamoxifen alone. Objective responses were observed, some in patients who had previously progressed while receiving tamoxifen, suggesting that further studies would be of interest.

Adult↗

Interleukin 6 differentially potentiates the antitumor effects of taxol and vinblastine in U266 human myeloma cells.

Newer therapeutic strategies for the treatment of multiple myeloma have focused on antagonizing the growth-promoting functions of interleukin 6 (IL-6). In this study, we examined the antitumor effects of two mechanistically different microtubule poisons, Taxol and vinblastine, in U266 human myeloma cells and determined whether IL-6 altered these effects. Taxol and vinblastine led to a dose-dependent inhibition of [3H]thymidine incorporation and altered the DNA distribution pattern of U266 cells. Both drugs led to an increase in the proportion of cells in the sub-G1 fraction (<2N DNA). However, at the IC50 concentration, vinblastine, but not Taxol, increased the percentage of cells in the G2-M phase of the cell cycle. In the presence of IL-6, the DNA distribution pattern induced by Taxol or vinblastine was altered. Whereas IL-6 augmented the sub-G1 fraction and G2-M phase for Taxol-treated cells, only the G2-M phase was increased for vinblastine-treated cells. Furthermore, IL-6 enhanced the cytotoxicity of both drugs, which became evident only during recovery in cytokine-free and drug-free medium. However, the cytotoxicity of Taxol was augmented to a significantly greater extent than that of vinblastine (P < 0.001). Immunostaining with antibodies to alpha-tubulin and mitogen-activated protein kinase revealed colocalization of these two proteins within microtubule asters. In the presence of IL-6, the number of cells containing microtubule asters increased for Taxol treatment, but not for vinblastine treatment. These data indicate that IL-6 leads to differential modulation of the cytotoxicity of Taxol and vinblastine in U266 cells. Whereas recruitment of cells in the S phase of the cell cycle represents a major mechanism by which IL-6 potentiates the cytotoxicity of vinblastine, augmentation of the cytotoxicity of Taxol involves additional mechanisms. Furthermore, our data suggest that the microtubule-associated form of mitogen-activated protein kinase may play a role in IL-6-mediated enhancement of the cytotoxicity of Taxol. The clinical implications of these findings are discussed.

Antineoplastic Agents, Phytogenic↗

Signal transduction abnormalities in T lymphocytes from patients with advanced renal carcinoma: clinical relevance and effects of cytokine therapy.

Studies have demonstrated abnormalities of the CD3/T-cell antigen receptor (TCR) and pathways of signal transduction in T lymphocytes from animals and patients with advanced malignancy. Diminished expression of TCRzeta and p56(lck) that are associated with the TCR and reduced nuclear localization of RelA containing nuclear factor kappaB (NFkappaB) complexes have been noted. These defects have been described in T cells from patients with malignant melanoma, renal cell carcinoma (RCC), ovarian cancer, and colorectal cancer. Preliminary observations also indicate possible correlation with clinical variables such as stage in selected instances. To further characterize altered expression of TCRzeta, p56(lck), and impaired activation of NFkappaB, T lymphocytes were obtained from 65 patients with RCC, the majority of whom were receiving combination cytokine therapy [interleukin (IL)-2, IFN alpha-containing regimens] and 37 control individuals. In 29 of these patients, levels of TCRzeta and p56(lck) were determined by Western blots of T-cell lysates and semiquantitated using densitometry. Relative levels were then correlated with a series of clinical variables including response to therapy, performance status, survival, disease sites, age, and others. In another group of 28 patients (three individuals from the first group), the frequency of abnormal NFkappaB activation was studied using electrophoretic mobility shift assays after activation of T cells with phorbol myristate acetate/ionomycin or anti-CD3 monoclonal antibody. Changes in these signaling molecules during cytokine treatment were also investigated. TCRzeta and p56(lck) were detected in the peripheral blood T cells in 27 of 29 patients, and overall, reduced levels were noted visually in 12 of 29 (41%) and 13 of 29 (45%) individuals, respectively. When levels were semiquantitated using densitometry, significant decreases of TCRzeta (P = 0.029) and p56(lck) (P = 0.029) but not CD3epsilon (P = 0.131), compared with control levels, were found. In patients treated with IL-2/IFN alpha-based therapy, relative levels of TCRzeta increased significantly (P = 0.002) on day 15 of cycle one compared with the baseline. Correlations of TCRzeta or p56(lck) levels with response or disease variables, except for lower TCRzeta levels (P < 0.001) in the presence of bone metastases, were not found. Abnormal NFkappaB activation after stimulation with phorbol myristate acetate/ionomycin and/or anti-CD3 monoclonal antibody was found in 59% of patients (17 of 28) and was not accounted for by the advanced age of the study cohort. Activation of NFkappaB in peripheral blood T cells was inducible during cytokine therapy in four of six individuals who displayed impaired NFkappaB activity prior to therapy. Moreover, impaired activation of NFkappaB does not appear linked to a reduction of TCRzeta expression, because in five patients, normal TCRzeta levels were present although kappaB binding was not inducible. In the majority of patients with advanced RCC, peripheral blood T cells express TCRzeta and p56(lck), and in a subset, reduced levels of these TCRzeta associated molecules are seen that may increase during cytokine-based therapy. Abnormal activation of NFkappaB is also present in >50% of patients and may also revert to normal during IL-2/IFN alpha-based treatment. This alteration in NFkappaB activation occurred in the presence of normal expression of TCRzeta-associated signaling elements. The clinical significance of these findings remains unclear.

Carcinoma, Renal Cell↗

Natural history and therapy of metastatic renal cell carcinoma: the role of interleukin-2.

BACKGROUND: Despite significant advances in understanding the biology of renal cell carcinoma (RCC) during the past decade, metastatic disease remains nearly incurable and a major medical challenge. Because RCC is known to be immunogenic, immunotherapeutic agents such as recombinant human interleukin-2 (rIL-2) and interferon-alpha (IFN-alpha) have represented encouraging treatment modalities. METHODS: A review of the natural history of and therapeutic approaches to RCC was examined. Studies involving rIL-2 alone and in combination with other adjuvant therapies were critically evaluated. RESULTS: Overall response rates for metastatic RCC patients treated with rIL-2 were similar (i.e., in the range of 15-20%), regardless of whether rIL-2 was administered as monotherapy or in combination with IFN-alpha. Recombinant IL-2 monotherapy response rates were similar to those of IFN-alpha, but with an increased frequency of complete responses and enhanced response duration. Subcutaneous administration generally resulted in lower toxicity than intravenous administration. The roles of chemotherapy or adoptive immunotherapy in combination with rIL-2 and IFN-alpha therapy remain unclear and require further study. The importance of patient performance status as a predictor of response and survival in rIL-2 therapy was demonstrated. CONCLUSIONS: The use of rIL-2 with or without IFN-alpha may represent the most useful therapeutic approach currently available for patients with good performance status. In patients with borderline performance status or severe comorbid disease, therapeutic approaches depend on patient factors and outcome expectation and may involve cytokine therapy. However, regardless of performance status, palliative measures and/or observation are important choices, because the majority of patients with metastatic RCC are incurable.

Antineoplastic Agents↗

Randomized trial of carboplatin plus amifostine versus carboplatin alone in patients with advanced solid tumors.

BACKGROUND: To test the hypothesis that the cytoprotectant amifostine attenuates the thrombocytopenia produced by carboplatin, the authors performed a randomized trial comparing treatment with carboplatin alone versus the combination of amifostine and carboplatin. METHODS: Patients with refractory or carboplatin-sensitive malignancies were randomized to receive either carboplatin, 500 mg/m2 alone or carboplatin, 500 mg/m2 in conjunction with 2 doses of amifostine of 910 mg/m2 each. RESULTS: Fifty-five patients with a variety of malignancies were entered on this study. One patient withdrew from each arm prior to the administration of any therapy, leaving 30 evaluable patients treated with carboplatin alone and 23 treated with the combination of amifostine and carboplatin. For 82 cycles of therapy with amifostine plus carboplatin, the median platelet nadir was 127 x 10(9)/L while the median platelet nadir was 88 x 10(9)/L over the 80 courses of therapy with carboplatin alone (P = 0.023). The median platelet nadir after the first cycle of therapy was 144 x 10(9)/L for patients treated with amifostine plus carboplatin and 85 x 10(9)/L for patients treated with carboplatin alone (P = 0.24). The median survival for 9 patients with advanced nonsmall cell lung carcinoma treated with carboplatin alone was 39 weeks whereas the median survival for 12 such patients treated with amifostine plus carboplatin was 52 weeks (P = 0.116). CONCLUSIONS: These data support the hypothesis that amifostine attenuates the myelosuppression of carboplatin. Additional studies of amifostine in combination with carboplatin-containing chemotherapy regimens are warranted.

Adult↗