Search PubMed⌕ Search

Biomedical subjects

D L Longo

Publications and source records attributed to D L Longo.

At least 145 records · Page 8Linked to original sources

Reversal of multidrug resistance in human colon cancer cells expressing the human MDR1 gene by liposomes in combination with monoclonal antibody or verapamil.

BACKGROUND: Colorectal cancer is a major cause of cancer-related mortality in the world and the second leading cause of neoplastic death in the United States. A major obstacle in the chemotherapy of this neoplasm is the emergence of multidrug resistance that is frequently associated with the expression of P-glycoprotein (p170) encoded by MDR1 (also known as PGY1) genes. Previously, we demonstrated that liposome-encapsulated doxorubicin is more cytotoxic than free doxorubicin in human promyelocytic leukemia and human breast cancer cells with the multidrug-resistant phenotype. PURPOSE: Our purpose was to investigate modulation of multidrug resistance by liposome-encapsulated vincristine (VCR) in a drug-resistant human colon cancer cell line HT-29mdr1 and the potentiation of this modulation in combination with monoclonal antibody MRK-16 or verapamil. METHODS: HT-29 parental cells and HT-29mdr1 cells were exposed to free VCR or liposome-encapsulated VCR alone or in combination with MRK-16 or verapamil. Cytotoxicity of cells after various treatments was determined by neutral red staining, and cellular content of VCR was measured by using radiolabeled VCR; p170 expression of cells was assessed by azidopine. RESULTS: HT-29mdr1 cells express a high amount of p170, thus conferring sixfold to sevenfold resistance to VCR compared with the parent cell line. Liposome-encapsulated VCR lowers drug resistance in HT-29mdr1 cells fourfold; IC50 values (concentration that causes 50% reduction in cell number) were 12.5 +/- 2.5 ng/mL compared with 42.5 +/- 5.0 ng/mL with free VCR. IC50 values for free VCR with empty liposomes were 25 +/- 1.25 ng/mL. The combination of MRK-16 and free VCR produced a twofold increase in cytotoxicity over free VCR in p170-expressing cells; the combination of MRK-16 and liposome-encapsulated VCR produced a 10-fold potentiation of cytotoxicity. toxicity. Nonspecific monoclonal antibody NR-LU-10 had no effect on cytotoxicity of HT-29mdr1 cells with free VCR or liposome-encapsulated VCR. The combination of 1.5 microM verapamil potentiated the cytotoxicity of free VCR ninefold to 10-fold, IC50 values reduced to 5.0 +/- 1.5 ng/mL, and in combination with liposome-encapsulated VCR, IC50 values reduced to 2.5 +/- 1.0 ng/mL, demonstrating a 15- to 17-fold potentiation of cytotoxicity. There were no significant differences in drug accumulation in HT-29mdr1 cells when treated with liposome-encapsulated VCR or free VCR. Liposomes inhibited the photoaffinity labeling of azidopine to p170 HT-29mdr1 cells. CONCLUSIONS: Liposome encapsulation of VCR effectively modulates multidrug resistance in human colon cancer cells and may become an important modality in treatment for colon cancers.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Enhancement by recombinant human interferon alfa of the reversal of multidrug resistance by MRK-16 monoclonal antibody.

BACKGROUND: The anti-P-glycoprotein monoclonal antibody MRK-16 mediates the reversal of multidrug resistance. Recombinant human interferon alfa (rHuIFN alpha) enhances the cytotoxic activity of diverse chemotherapeutics and may modulate multidrug resistance. PURPOSE: Our purpose was to determine the outcome of combination treatment with MRK-16, rHuIFN alpha-2a, and cytotoxic agents on tumor cells that express P-glycoprotein (Pgp). METHODS: Three Pgp-expressing, multidrug-resistant human tumor cell lines were used: the MDR1 retrovirus-infected HT-29 colon adenocarcinoma (HT-29mdr1), the doxorubicin (Adriamycin)-resistant MCF-7 (AdrR MCF-7) breast carcinoma, and the de novo Pgp-acquired, HCT-15 colon carcinoma. The parental cell lines HT-29par and MCF-7 were used as controls. The in vitro effects of MRK-16 and rHuIFN alpha-2a were studied on: (a) chemosensitivity of parental and multidrug-resistant cell lines to vincristine, doxorubicin, or paclitaxel (Taxol); (b) intracellular drug concentrations; and (c) Pgp expression. The efficacy of vincristine alone or in combination with MRK-16 and/or rHuIFN alpha-2a was assessed against HT-29mdr1 cells in female, athymic NCr-nu/nu mice. RESULTS: For vincristine, the IC50 (i.e., the concentration that causes 50% inhibition of cell growth) was 7.0 ng/mL in HT-29mdr1 cells. Pretreatment of HT-29mdr1 cells with MRK-16 partially restored vincristine sensitivity (IC50 = 4.8 ng/mL), which was enhanced by noncytotoxic concentrations of rHuIFN alpha-2a (IC50 = 2.9 ng/mL) via a mechanism independent of Pgp modulation or [3H]vincristine efflux. rHuIFN alpha-2a potentiated MRK-16 reversal of multidrug resistance with both doxorubicin and paclitaxel on HT-29mdr1 cells and with vincristine on AdrR MCF-7 and HCT-15 tumor cells. Treatment of mice with 1 mg/kg vincristine weekly for 3 weeks, beginning 10 days after tumor injection, significantly increased the median survival times of the HT-29par tumor-bearing mice (60 days versus 35 days; P < .0001) but was only marginally therapeutic for HT-29mdr1 tumor-bearing mice (52 days versus 46 days). Pretreatment with MRK-16 (500 micrograms) and rHuIFN alpha-2a (5 x 10(4) U), alone or in combination, 24 hours before vincristine therapy did not affect the survival of HT-29par tumor-bearing mice. In contrast, the survival of mice bearing HT-29mdr1 tumors was significantly increased following treatment with MRK-16 before vincristine (80 days; P < .0001). Administration of a nontherapeutic dose of rHuIFN alpha-2a (5 x 10(4) U) with MRK-16 before vincristine treatment further increased the median survival times of HT-29mdr1 tumor-bearing mice (116 days; P < .0001). CONCLUSIONS: MRK-16 used in combination with rHuIFN alpha-2a was significantly more effective than MRK-16 in overcoming multidrug resistance.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Sequential analysis of 43 patients with non-Hodgkin's lymphoma: clinical correlations with cytogenetic, histologic, immunophenotyping, and molecular studies.

Few reports correlating specific cytogenetic abnormalities with distinct subtypes of lymphoma have performed serial studies at diagnosis and at tumor recurrence or progression. In our file of 325 cytogenetically analyzed non-Hodgkin's lymphoma (NHL) patients studied over the past decade, 43 had serial biopsies, 39 of whom had at least two successful preparations; of the 43, nine had one and 32 had two or more cytogenetically abnormal specimens. In this study, we correlated cytogenetic, histopathologic, molecular, and clinical parameters. Patients with low-grade lymphomas were as likely as patients with intermediate- or high-grade lymphomas to acquire new chromosomal abnormalities with time (16 of 23 patients as compared with 7 of 16; P2 = .11, chi 2 test). In four patients, originally diagnosed indolent disease progressed to aggressive disease; all had t(14;18), all gained additional chromosomal abnormalities with disease progression, and three of the four expressed abnormalities associated with disease progression and/or short survival: der(18), +7, and/or +12. Cytogenetic results from early disease were compared with those obtained later in disease: in the t(14;18) group, the most common abnormalities were +7 (eight patients) and der(18) (five patients), both seen later in disease. The most common abnormalities in patients without t(14;18) were 6q deletions; they were seen in both early and late disease and were associated with significantly shorter survivals (P2 = .0014) compared with all patients without 6q deletions. Secondary chromosomal abnormalities, observed after at least one previous abnormal study, were seen in 19 of 22 t(14;18) patients and in 11 of 21 patients without t(14;18) and were associated with a poor survival (P2 = .13) compared with patients without any secondary chromosomal abnormalities. Chromosome 1 abnormalities were seen in almost half of the patients and were observed in initial specimens and early in disease as well as late in disease and as secondary abnormalities; 1q involvement was more frequent than 1p (15 versus eight patients) and was significantly associated with poor survival only in patients with intermediate-/high-grade disease; the most common breakpoints were 1q21-q22 (nine patients) and 1p36 (six patients). Breakpoints at 2q21 and 3q27-q29 were limited to patients with t(14;18) and were almost exclusively secondary in nature. Molecular studies in 24 of our patients showed discrepancies with the cytogenetic results in only three patients: two had t(14;18) but no molecular rearrangements while two patients had no visible t(14;18) but were positive for major breakpoint region (MBR) rearrangement. The presence of MBR or minor breakpoint cluster (MCR) rearrangement had no apparent effect on survival.(ABSTRACT TRUNCATED AT 400 WORDS)

Adolescent↗

Interleukin-2 and human monocyte activation.

The recognition of the monocyte/macrophage-activating properties of IL-2 has broadened our image of the biological effects of this lymphokine from those of a T cell growth factor to those of a molecule with pleiotropic effects. The detailed analysis of the mechanisms of action of IL-2 including its biological effects on different cell types and the regulation of its receptors has increased dramatically the spectrum of the biological responses that can be modified by IL-2. The regulation of the expression of the IL-2 receptor subunits differs in terms of response to extracellular stimuli and intracellular control, suggesting that the response to IL-2 will vary depending on the nature and extent of environmental stimulation. Furthermore, the fact that the IL-2R gamma chain can be part of the receptor for IL-4, IL-7, and perhaps other cytokines indicates that IL-2 may modulate the response of monocytes simply by binding or releasing the IL-2R gamma chain and thus modulating the responsiveness to IL-4 or IL-7. Conversely, the extent of utilization of IL-2R gamma chain by various cytokines may dictate the monocytic response to IL-2. In fact, the availability of IL-2R gamma chain seems to be the limiting factor in the response of monocytes to IL-2. Modulation of cytokine receptors is an integral part of the control of the IL-2 response. The induction of CSF-1 receptor by IL-2 and the positive effect of CSF-1 on the duration of the cytotoxic response in IL-2-stimulated monocytes are an interesting example of a synergistic interaction of potential physiological relevance. The response of monocytes to IL-2 can also be modulated by inhibitory circuits, such as those involving TGF-beta 1, IFN-gamma, and IL-4. However, IFN-gamma and IL-4 can also activate monocytes and the timing and relative concentrations of the various cytokines may be critical variables in determining the ultimate monocyte phenotype. These studies have given us a glimpse of a very complex picture composed of multiple backgrounds and several players. However, the present information is not sufficient to make meaningful predictions of the resulting monocyte phenotype in an inflammatory reaction in which multiple cytokines are involved.(ABSTRACT TRUNCATED AT 400 WORDS)

Humans↗

Effects of growth hormone and prolactin immune development and function.

Growth hormone and prolactin are neuroendocrine hormones that exert numerous effects on immune system function and development. Several fundamental questions are addressed in this review. Do neuroendocrine hormones affect specific immune cell types? What is the physiological significance of these effects? Can these effects be exploited clinically? While it is clear that there are indeed significant interactions between the neuroendocrine and immune systems, there are relatively few examples with demonstrated physiological significance. Present studies indicate that growth hormone and prolactin may exert markedly different effects on immune cell types depending on their stage in differentiation. Recent emphasis has also been focussed on the use of these hormones or their antagonists clinically in the treatment of AIDS, cancer, and autoimmune disease states due to their pleiotropic effects and low toxicity after systemic administration. However, we do not yet have a clear picture of how the influence of neuroendocrine hormones may be used to favorably alter pathophysiologic processes affecting immune function and development.

Animals↗

A phase I trial of B7-transfected or parental lethally irradiated allogeneic melanoma cell lines to induce cell-mediated immunity against tumor-associated antigen presented by HLA-A2 or HLA-A1 in patients with stage IV melanoma. NCI protocol T93-0161. BRMP protocol 9401.

T cell lines generated by primary in vitro stimulation with B7-expressing HLA-A2+ melanoma cells lyse HLA-A2+ melanomas, but not non-melanomas that are HLA-A2+. Other data have demonstrated lack of response of these T cell lines against non-HLA-A2 melanomas. These concepts are verified by data from MALME MEL, which is killed, and MALME FIB, which is not. In no case was lysis directed at targets expressing potential allo-antigens (except for HLA-A2+ melanomas). A19 and Aw33 have not been excluded as possible allo-targets (but no data suggests they are). In total, it appears that much of the lytic activity observed in the two T cell lines is directed against HLA-A2-restricted, melanoma-specific antigens.

Adult↗

Epstein-Barr virus-induced human B-cell lymphoma arising in HuPBL-SCID chimeric mice: characterization and the role of CD40 stimulation in their treatment and prevention.

The transfer of human peripheral blood lymphocytes (huPBL) from EBV-seropositive donors into mice with severe combined immune deficiency (SCID) has been shown previously to result in the generation of human EBV-induced B-cell lymphomas. These lymphomas are similar to the aggressive lymphomas that arise clinically in immunocompromised individuals. We have assessed the p53 status of these human B-lymphomas and the clonality of cell lines established from tumors growing in the huPBL-SCID mice. While the lymphoma cell lines were demonstrated to be pauciclonal by Southern analysis, none of the lines demonstrated mutated p53 as determined by immunoprecipitation studies using antibodies specific for mutant p53. The cell lines were all positive for CD40, a marker present on normal and neoplastic B cells. Antibodies to CD40 significantly inhibited the growth of these EBV-transformed B-cell lymphomas both in vitro and in vivo. When partially purified human B cells were incubated with either anti-CD40 or anti-IgM in the presence of EBV-containing supernatants in vitro, only anti-CD40 prevented transformation by EBV. Treatment of huPBL-SCID mice with anti-CD40 also prevented the occurrence of the EBV lymphomas. However, long-term human B-cell engraftment was not inhibited as determined by the presence of serum human immunoglobulin in the chimeric mice. Overnight incubation of the huPBL with anti-CD40 did not prevent the incidence of lymphomas in huPBL-SCID chimeras suggesting that continuous exposure to anti-CD40 is required. These studies suggest that anti-CD40 may be of significant clinical use in the treatment or prevention of EBV-induced B-cell lymphomas.

Animals↗

Monocyte chemotactic protein-1 (MCP-1), -2, and -3 are chemotactic for human T lymphocytes.

Monocyte chemotactic protein (MCP)-1, -2, and -3 all have been shown to induce monocyte/macrophage migration in vitro and MCP-1, also known as MCAF, chemoattracts basophils and mast cells. We report here that natural MCP-1 as well as synthetic preparations of MCP-2 and MCP-3 stimulate significant in vitro chemotaxis of human peripheral blood T lymphocytes. This MCP-induced migration was dose-dependent and directional, but not chemokinetic. Phenotypic analysis of the T cell population responsive to MCP-1, MCP-2, and MCP-3 demonstrates that both CD4+ and CD8+ T cells migrated in response to these chemokines. Similar results were observed using human CD4+ and CD8+ T cell clones. Neutralizing antisera to MCAF or MCP-2 abrogated T cell migration in response to MCP-1 and MCP-2, respectively, but not to RANTES. Subcutaneous administration of purified MCP-1 into the hind flanks of SCID mice engrafted with human peripheral blood lymphocytes (PBL) induced significant human CD3+ T cell infiltration into the site of injection at 4 h. These results demonstrate that MCP-1, MCP-2, and MCP-3 are inflammatory mediators that specifically stimulate the directional migration of T cells as well as monocytes and may play an important role in immune cell recruitment into sites of antigenic challenge.

Animals↗

Stem cell factor induces phosphorylation of a 200 kDa protein which associates with c-kit.

Stem cell factor (SCF) promotes limited proliferation and differentiation of hematopoietic progenitor cells and is potently synergistic in combination with growth factors such as granulocyte-macrophage colony stimulating factor (GM-CSF), interleukin 3 (IL-3) or erythropoietin (Epo). We have examined tyrosine phosphorylation induced by SCF in the megakaryoblastic cell line Mo7e and found phosphorylation of proteins of 200, 145, 120, 58 and 55 kDa. The dominant phosphotyrosylproteins in SCF treated cells were 200 and 145 kDa. Our studies indicated that the 145 kDa protein was c-kit, the receptor for SCF. Subsequent work was directed towards further characterizing the 200 kDa protein. Surface labeling of Mo7e cells suggested that p200 had an extracellular domain and could be induced to associate with c-kit after stimulation with SCF. The rapid phosphorylation of p200 and its immediate association with c-kit suggest that p200 is potentially a component of the SCF signal transduction pathway.

Antibodies, Monoclonal↗

Engraftment of SCID mice by human bone marrow hematopoietic cells cultured in vitro: an in vivo model for human gene transfer.

Demonstration of the ability of fresh human hematopoietic cells to engraft severe combined immuno-deficient (scid) mice has provided an in vivo assay for expansion and maturation of early human progenitor cells. However, engraftment of cultured hematopoietic cells has been difficult to achieve. We wished to further develop this model as an in vivo assay for efficiency of retroviral gene transfer and expression in the differentiated progeny of adult human bone marrow progenitor cells. Human bone marrow cells were cultured in vitro for six days under conditions suitable for infection by retroviral vectors prior to transfer to irradiated scid mice. Cultured human bone marrow cells introduced by both intravenous (i.v.) and intraperitoneal (i.p.) injection persisted in the bone marrow, spleen and peritoneum of recipient animals up to four weeks after transfer. Following irradiation scid mice receiving cultured human bone marrow cells by either i.v. or i.p. routes demonstrated engraftment of the bone marrow and spleen as determined by the growth of human hematopoietic progenitors in soft agar. By flow cytometric analysis human cells were also detected in the peritoneum of mice receiving cultured human bone marrow cells i.p. These results suggest that the transfer of cultured human bone marrow cells to scid mice with the subsequent engraftment of these cells in the bone marrow, spleen and peritoneum of recipients can routinely occur. This provides an in vivo model for retroviral gene transfer to human cells.

Adult↗

Induction of a CD8+ cytotoxic T lymphocyte response to soluble antigen given together with a novel muramyl dipeptide adjuvant, N-acetyl-D-glucosaminyl-(beta 1-4)-N-acetylmuramyl-L-alanyl-D-isoglutamine (GMDP).

We have investigated the ability of the novel muramyl dipeptide, GMDP, to act as an adjuvant for the induction of ovalbumin (OVA)-specific, CD8+ cytotoxic T lymphocyte (CTL) responses. C57Bl/6 mice were twice immunized s.c. with 50 micrograms OVA emulsified with a squalane, L121 pluronic containing Tween-80 vehicle either with (STP-GMDP) or without (STP) GMDP. Splenic precursor CD8+ CTL activity against E.G7-OVA, but not against EL-4 parental targets was detected in STP-GMDP immunized mice after 5 days of in vitro re-stimulation with irradiated E.G7-OVA cells, while mice immunized with OVA in STP alone or OVA alone failed to demonstrate CTL activity. OVA emulsified in a microfluidized STP vehicle formulation without GMDP also elicited the E.G7-OVA precursor CTL. The ability of GMDP to induce a class I-restricted, CD8+ CTL response to a soluble protein antigen may have implications for the development of useful vaccines against viral pathogens or tumours against which CTL responses are desirable.

Acetylmuramyl-Alanyl-Isoglutamine↗

Growth inhibition and apoptosis of RL human B lymphoma cells by vitamin E succinate and retinoic acid: role for transforming growth factor beta.

Vitamin E succinate (VES) and all-trans-retinoic acid (RA) were determined to be growth inhibitory for B lymphoma cells in vitro. RL, an Epstein-Barr virus-negative human cell line, was growth suppressed 87% with VES (5 micrograms/ml) and 58% with RA (10(-6) M); both agents blocked the cells in G1 of the cell cycle. The antiproliferative effect of VES seems to be independent of its potential antioxidant property because both fat- and water-soluble antioxidants were found to have no effect on RL cell proliferation. VES and RA increased IgM antibody concentrations in cell supernatants 5.8- and 9.9-fold, respectively. DNA fragmentation and flow cytometry studies showed VES- and RA-induced apoptosis in RL cells. VES- and RA-treated RL cells gradually underwent apoptosis over time with maximal induction occurring at days 6 and 5 of culture, respectively. A role for transforming growth factor beta in VES- and RA-mediated RL growth suppression is indicated by increased ligand and type II receptor protein expression. Furthermore, neutralizing antibodies to transforming growth factor beta 1 partially blocked the growth suppressive action of both VES and RA, thus suggesting that a TGF-beta autocrine negative loop was involved in VES and RA suppression of RL cell growth.

Antibodies, Neoplasm↗

Alteration of signal transduction in T cells from cancer patients.

The progressive growth of tumor induces a major alteration in the immune response which could have significant deleterious consequences on the outcome of immunotherapeutic strategies. A more complete understanding of the mechanisms involved and the clinical consequences of these alterations is necessary to determine the importance of such changes. It is possible however, that the analysis of the TCR sigma chain or other signal transduction elements can be a more informative way to monitor the therapeutic effects of a particular treatment than the functional immunologic assays on peripheral blood lymphocytes used presently. Ultimately understanding this phenomenon could help determine the treatment approaches that would prevent or reverse the state of altered immune response, allowing for the development of more effective cancer treatments. It is clear that there are a number of barriers to successful immunotherapy (Table 4-1). Each difficulty has a number of potential solutions. It seem likely that as each of these known barriers is overcome, a larger number of patients will benefit than do now from the current generation of treatment approaches. Of course, it is also likely that there are additional barriers to success yet to be uncovered. It is only through careful observation and monitoring of the clinical effects of our interventions that the remaining obstacles will be defined. And it is only through the close interaction of the laboratory and the clinic that novel solutions will be devised.

Animals↗

Detection of p53 mutations in B cell non-Hodgkin's lymphoma cell lines.

The p53 tumor suppressor gene is frequently mutated within its evolutionarily conserved regions in a number of human cancers. Previous reports demonstrated mutations of this gene in both Burkitt's lymphoma and B cell chronic lymphocytic leukemia. However, dissimilar results were obtained in non-Hodgkin's lymphoma (NHL). In one study, no mutation was detected in 43 NHL tissues. A second study reported p53 mutations in eight (all with advanced stage disease) out of 48 tissues obtained from Japanese NHL patients. Using both immunoblotting and radio-immunoprecipitation, we detected mutant p53 proteins in nine out of 10 B cell lines established from NHL tissues. The mutations were confirmed by reverse transcription polymerase chain reaction-mediated single-strand conformational polymorphism (RT-PCR-SSCP) analysis in eight cell lines. The high frequency of p53 mutation in NHL B cell lines and the relatively low frequency of p53 mutations in fresh lymphoma tissue suggests that p53 gene alteration may play a role in lymphomagenesis and/or disease progression in a subset of B cell lymphomas and that the p53 mutation conveys a proliferative advantage on lymphoma cells that permits their in vitro growth.

B-Lymphocytes↗

Cellular and molecular studies in the treatment of murine renal cancer.

Antigen-nonspecific approaches to the use of BRMs for cancer treatment have resulted in only limited success to date. In particular, the use of large numbers of adoptively transferred, broadly cytotoxic LAK cells in combination with IL-2 has been effective for only small subsets of cancer patients. Recent demonstrations of T-lymphocyte-mediated antigen-specific responses against some human tumors, and the more potent effects of these cells in preclinical models, have refocused much of the dialogue for biological therapy to potentiation of T-lymphocyte-mediated antitumor effects. Our studies are using the well-characterized Renca murine renal cancer model to study the induction of antitumor T-lymphocyte-mediated responses, the mechanisms by which positive effects are achieved, and the reasons why T lymphocytes in tumor-bearing mice may not respond as predicted. One possible reason why T-lymphocyte responses may not be triggered easily by tumors could be an impairment of critical nuclear transcription factors. We also are studying two approaches for stimulating T-cells in tumor-conditioned hosts. (1) We have shown that IL-7 has potent costimulatory effects on T cells as well as some antitumor effects. (2) We are developing a comprehensive vaccine-type gene therapy approach whereby T cells and antigen-presenting dendritic cells are recruited through the use of antigen, chemokines and GM-CSF. Studies are in progress to determine whether the activity of these recruited cells can then be potentiated by Renca or fibroblast transfectants that express T-cell costimulatory cytokines (IL-2, IL-4, IL-7, or IL-12). This approach should optimize both MHC class I- and class II-dependent pathways for induction of T-lymphocyte-mediated responses to cancer, and perhaps overcome tumor-induced impairments in the T lymphocyte function.

Animals↗

Alterations in T cell receptor and signal transduction molecules in melanoma patients.

We have recently described molecular changes in T cells from tumor-bearing patients that are associated with depressed immune function. The present work investigates changes in T-cell signal transduction proteins including the T-cell receptor-zeta (TCR-zeta) chain and receptor-associated tyrosine kinases in patients with metastatic malignant melanoma. A marked decrease in the expression of the TCR-zeta chain was observed in the peripheral blood T cells of 19 (43%) of 44 patients. Decreases in several tyrosine kinases were found in 12 (57%) of 21 patients tested. T cells from patients with diminished TCR-zeta chain expression also showed statistically significant differences in cytokine production pattern, with lower interleukin 2 and IFN-zeta production compared with normal subjects and melanoma patients with normal TCR-zeta chain status. The overall survival of melanoma patients with low TCR-zeta chain expression was significantly shorter than that of patients with normal TCR-zeta chain expression (P = 0.0013). TCR-zeta-deficient patients showed a trend toward having faster growing tumors. There was no correlation between the pretreatment TCR-zeta chain status and albumin or performance status. These findings suggest that alterations in T-cell function occur commonly in melanoma patients and may be independent predictors of clinical outcome.

Adult↗