PubMed HealthSearch

Biomedical subjects

T L Whiteside

Publications and source records attributed to T L Whiteside.

At least 19 recordsLinked to original sources

The T-cell receptor V beta gene usage in tumor-infiltrating lymphocytes and blood of patients with hepatocellular carcinoma.

To determine a possibly restricted T-cell receptor (TCR) repertoire in tumor-infiltrating lymphocytes (TIL) in response to tumor-associated antigens in patients with hepatocellular carcinoma (HCC), freshly isolated TIL (n = 5) and peripheral blood lymphocytes (PBL; n = 6; 3 paired with TIL) were studied for expression of TCR variable (V) beta regions. RNA purified from TIL or PBL was reverse-transcribed into complementary DNA. This complementary DNA was amplified by quantitative polymerase chain reaction with 22 primers specific for 20 TCR V beta gene families and a 3' constant (C) beta primer. As a reference for later quantitation, a fragment of TCR C alpha was coamplified with each V beta region. Using 32P-labeled 3' primers, the percentage of total V beta expression was calculated by measuring the cpm of each of the amplified products. In contrast to PBL of 6 control, healthy individuals, whose range of expression of each TCR V beta gene varied from 0 to 13%, the expression of some V beta genes in HCC TIL was as high as 33%, indicating a restricted TCR V beta usage in HCC TIL. When polymerase chain reaction-amplified complementary DNAs of the V beta 1 or V beta 3 genes obtained from two TIL preparations were cloned and sequenced, the same rearrangements were found in the majority of DNA clones. The particular V beta genes that were over- or underrepresented in TIL varied among the patients. In 3 of 6 PBL and 3 of 5 TIL, the V beta 3 gene was expressed with a relatively high frequency. The V beta 4 gene expression was consistently low in patients' TIL or PBL. In 3 paired PBL and TIL, V beta expression was similar. In 5 of 6 cases, HCC PBL had different TCR V beta frequencies from those seen in normal PBL. This analysis of TCR V beta usage in freshly isolated TIL and in PBL indicated that T-lymphocytes in patients with HCC might have restricted immunological reactivity and that V beta 3-restricted TIL might represent antitumor effector cells.

Amino Acid Sequence

Receptors for interleukin 2 on human squamous cell carcinoma cell lines and tumor in situ.

Several human head and neck squamous carcinoma cell lines were found to bind 125I-labeled or fluorescein-labeled interleukin 2 (IL-2). This binding was inhibited by an excess of cold ligand, IL-2, and by anti-p55 and anti-p70 monoclonal antibodies to the alpha and beta chains, respectively, of the IL-2 receptor (IL-2R). A small number (300/cell) of high-affinity IL-2R (2 x 10(-12) M) and a larger number (> 13,000/cells) of intermediate-affinity IL-2R (3 x 10(-10) M) were present on these tumor cells. By affinity cross-linking, tumor cells were shown to bind 125I-IL-2 to a M(r) 66,000 and 55,000 doublet peptide. The alpha and beta chains of the IL-2R also were detected on the surface of cultured tumor cells using the relevant monoclonal antibodies and flow cytometry. Immunoperoxidase staining with anti-p70 monoclonal antibody confirmed the expression of IL-2R on squamous cell carcinomas of the head and neck in situ. The presence of transcripts for p55/IL-2R-alpha and p70/IL-2R-beta in PCI-1 cells was confirmed by the polymerase chain reaction followed by hybridization to the IL-2R-alpha complementary DNA probe or IL-2R-beta complementary DNA probe, respectively. Our observations demonstrate that intermediate-affinity and high-affinity IL-2Rs are expressed on some human squamous cell carcinomas of the head and neck and that the receptors are functional, because growth of these tumor cell lines can be directly inhibited by exogenously supplied IL-2. The presence of IL-2R on human solid tumors could be important to consider, in addition to immunomodulatory effects of IL-2, in developing optimal therapeutic strategies for the administration of IL-2 to patients with cancer.

Antibodies, Monoclonal

Two new human cholangiocarcinoma cell lines and their cytogenetics and responses to growth factors, hormones, cytokines or immunologic effector cells.

Two new human cholangiocarcinoma (CC) cell lines (CC-SW-I and CC-LP-I) were established and maintained in culture for 2 years. Histologically, both original liver tumors were adenocarcinomas, and the cell lines exhibited morphologic features of moderately differentiated adenocarcinoma. Immunohistochemistry showed that both cell lines were strongly positive for cytokeratin AEI but negative for carbohydrate tumor-associated antigen, CA19-9. Ultrastructural analysis of both cell lines showed the presence of tight junctional complexes and focally formed microvilli. Both CC cell lines were tumorigenic in nude mice. Cytogenetic analysis showed that both cell lines expressed highly aneuploid karyotypes with numerous structural and numerical deviations. CC-SW-I was hypodiploid with numerous chromosome losses and structural rearrangements, while CC-LP-I was hyperdiploid and displayed multiple additional chromosomes. Doubling times for the CC-SW-I and CC-LP-I cell lines in the presence of 15% fetal bovine serum were 72 hr and 180 hr, respectively. Growth of the CC-SW-I cell line was significantly stimulated in the presence of insulin, while that of the CC-LP-I cell line was significantly augmented by epidermal growth factor (EGF). In contrast, dexamethasone strongly inhibited proliferation of both cell lines in a dose-dependent manner. Among various recombinant cytokines examined for effects on growth or surface antigen expression on CC cell lines, only interleukin I-beta (ILI-beta) strongly inhibited growth of the CC-LP-I cell line, while interferons (IFNs) or tumor necrosis factor-alpha (TNF-alpha) were mildly inhibitory. Both tumor cell lines were resistant to natural killer (NK) cells but sensitive to lymphokine-activated killer (LAK) cells. Preincubation of tumor cells with IFN-gamma, IFN-alpha or TNF-alpha significantly decreased the susceptibility of each tumor cell line to lysis by LAK cells, and the change in sensitivity did not correlate with the expression of HLA antigens or intercellular adhesion molecule-I (ICAM-I) on the surface of tumor cells. These 2 CC cell lines are expected to provide valuable information about cell biology of human CC.

Adenocarcinoma

Role of cytokines in the adoptive immunotherapy of an experimental model of human head and neck cancer by human IL-2-activated natural killer cells.

Peritumoral injection of human IL-2-activated natural killer cells into nude mice consistently induced regression of xenografts of human squamous cell carcinoma of the head and neck (SCCHN). To determine the mechanisms responsible for the tumor regression, the lymphoid cells infiltrating the tumor stroma at 24 to 48 h after adoptive immunotherapy were examined by in situ hybridization for the presence of mRNA for cytokines or IL-2R. Numerous lymphoid cells expressing cytokine or IL-2R genes were observed in these tumors, whereas the cultured IL-2-activated NK cells used for therapy were negative. Thus, it appeared that the transferred NK cells became activated in situ after coming into proximity with the tumor cells. To analyze this phenomenon, fresh or cultured human NK cells were coincubated in vitro with irradiated human SCCHN cell line, PCI-1, with or without the presence of IL-2. Expression of mRNA for IL-2R, perforin, and various cytokines was observed within 5 h. Contact with the tumor cells stimulated NK cells to proliferate, secrete IFN-gamma, TNF-alpha, and soluble IL-2R, up-regulate cell surface expression of IL2R p55 and p75 as well as CD16 Ag, and mediate higher levels of antitumor activity in 51Cr-release assays. In addition, supernatants of in vitro-activated NK cells significantly inhibited proliferation of SCCHN cell lines. By examining the effects of neutralizing mAb to various cytokines, this inhibitory activity was shown to be partially attributable to IFN-gamma. To determine the possible in vivo role of soluble factors produced by activated human NK cells, the supernatants (0.2 ml) or rIFN-gamma (10(5) U) were injected perilesionally each day for 2 wk into 3-day SCCHN established in immunosuppressed nude mice. These treatments caused significant (p less than 0.02) inhibition of tumor growth. The results of our studies indicate that human NK cells are strongly activated by SCCHN cells and that the consequent release of cytokines contribute to the regression of SCCHN growing in nude mice.

Animals

Expression of mRNA for cytokines in tumor-infiltrating mononuclear cells in ovarian adenocarcinoma and invasive breast cancer.

Cytokine gene expression in tumor-infiltrating lymphocytes (TIL) in frozen-tissue sections of 2 types of human solid tumor--ovarian adenocarcinoma and invasive breast cancer--was examined by in situ hybridization with 35S-labeled cDNA probes for human cytokines. The proportion of cells containing mRNA able to hybridize to the antisense c-DNA probes for interleukin 2 (IL-2), tumor necrosis factor alpha (TNF alpha), interferon gamma (IFN gamma) or receptors for IL-2 (either p55 or p70) was also determined in human normal peripheral lymphoid tissues and inflammatory tissues. Few cells were positive for IL2 and TNF alpha mRNA in reactive human lymph nodes and tonsils. Inflammatory lesions, such as salpingitis or chronic active hepatitis, contained 10-20 times more cells positive for cytokine mRNA than reactive lymphoid tissue. In contrast, tumor-infiltrating lymphocytes (TIL) in the stroma of ovarian carcinomas or most ductal breast tumors only rarely expressed mRNA for TNF alpha, IL2 or IFN gamma. The intensity of mononuclear cell infiltration in these tumors correlated positively with the percentage of cells which expressed mRNA for IL-2, TNF alpha and IL-2R. In those ductal breast carcinomas which contained intracellular or intraductal mucins, up to 30% of lymphoid cells in the tumor stroma were positive for IL-2, TNF alpha, IFN gamma and IL-2R. Thus, strong evidence for local activation of mononuclear cells in situ, exemplified by the expression of genes for cytokines, was obtained only in inflammatory lesions and in mucin-producing breast carcinomas. In most carcinomas studied, few TIL expressed genes for cytokines as measured by in situ hybridization. Thus, human solid tumors appear to differ in their ability to induce gene expression for cytokines in TIL.

Adenocarcinoma

Improved short- and long-term XTT-based colorimetric cellular cytotoxicity assay for melanoma and other tumor cells.

A tetrazolium compound, XTT, bioreducible to a water-soluble formazan was used to develop a simplified cellular cytotoxicity assay. Most (13/15 melanoma and 2/3 colon carcinoma cell lines tested metabolized XTT greater than 50 times more efficiently than the lymphoid effector cells, and thus the test could be performed without separation of the effector from the target cells. The XTT assay (XTT-A) was compared to the standard 51chromium-release assay (51CrA) in terms of sensitivity as well as intra- and interassay variability using low effector to target cell (E:T) ratios and both short and long incubation periods. The correlation coefficient (r) for percent specific lysis (%SL: 35.0 +/- 15.0 versus 30.2 +/- 15.8) or lytic units (LU20/10(7) effector cells: 405 +/- 208 versus 357 +/- 227) between XTT-A and 51CrA was 0.86 for 4 h XTT-A and 51CrA (n = 37). Due to a poor performance of the 51CrA after 24 h incubation of effector and target cells, the correlation coefficient for 24 h assays was reduced to 0.79 (n = 44,%SL = 63.3 +/- 23.9 versus 55.5 +/- 26.6, and LU = 1267 +/- 982 versus 1017 +/- 691). Inter- and intra-assay variability of XTT-A were significantly lower than those for 51CrA. The total background values for XTT-A and 51CrA were similar in 4 h cytotoxicity assay and lower for XTT-A in assays with 24 h incubation. The sensitivity, in terms of discrimination between effector cells with different lytic capacity and targets with different susceptibility, was identical. The XTT-A was simpler, cheaper, and safer to perform than the 51CrA. Furthermore, the XTT-A was suitable for long-term assays and allowed experiments without requiring trypsinization of tumor cells grown in 96-well plates prior to testing.

Adenocarcinoma

Calculation of lytic units for the expression of cell-mediated cytotoxicity.

Over the past 10 years, the lytic unit has become the most common means by which activity is expressed in cell-mediated cytotoxicity assays. The strengths and weaknesses of the lytic unit as a summary of cytotoxicity are discussed, and computational methods reviewed. The fundamental "assumption of proportional effect" which is implicit in the interpretation of lytic units is described and empirically tested. Based on extensive data from the assay of human natural killer (NK) activity against K562 targets, simplified computational methods are recommended. The proposed methods are easily explained, may be made robust to occasional erratic data, and permit a reasonable interpretation of lytic units even when the assumption of proportional effect breaks down.

Cytotoxicity Tests, Immunologic

Lymphokine-activated killer cell and natural killer cell activities in patients with systemic sclerosis.

OBJECTIVE: To determine the ability of T lymphocytes and natural killer (NK) cells from patients with systemic sclerosis (SSc) to respond to cytokines and to generate immune effector cells. METHODS: The numbers and percentages of peripheral blood T and NK cells were examined by 2-color flow cytometry, and NK and lymphokine-activated killer (LAK) cell function were measured in 4-hour 51Cr-release assays, in 34 patients with SSc. The patients were categorized into 3 subgroups: 10 had diffuse cutaneous disease of less than or equal to 3 years disease duration, 11 had diffuse cutaneous SSc of greater than 3 years duration, and 13 had limited cutaneous disease. RESULTS: Baseline and activated NK and T cell numbers and NK activity were normal in SSc patients. However, mean LAK activity was significantly depressed in all SSc subgroups. CONCLUSION: Decreased LAK cell function, despite normal numbers of circulating T and NK cells, indicates that SSc patients have poor ability to produce effector cells in response to interleukin-2.

Adult

Phenotypic and functional characteristics of lymphocytes isolated from liver biopsy specimens from patients with active liver disease.

Liver-derived lymphocytes were isolated from 73 liver biopsy specimens obtained from patients with chronic active liver disease and from six samples of normal liver. Mean absolute numbers (+/- S.E.M) of liver-derived lymphocytes recovered from needle biopsy specimens by mild enzymatic digestion of the liver tissue varied from 0.7 +/- 0.3 x 10(3)/mm3 in allografts being rejected to 8.9 +/- 0.9 X 10(3)/mm3 in chronic non-A, non-B hepatitis. By two-color flow cytometry, T lymphocytes (CD3+) were the major liver-derived lymphocyte population in all biopsy specimens. The mean CD4/CD8 ratio (0.6 +/- 0.2) was similar for liver-derived lymphocytes obtained from samples of normal or diseased liver. However, activated (human leukocyte antigen DR+) T cells were significantly (p less than 0.05) increased in liver-derived lymphocytes obtained from liver disease specimens than they were in samples from normal livers. Natural killer cells were less numerous than T cells in specimens obtained from diseased livers, with the mean natural killer/T cell ratio ranging from a low of 0.1 in allograft rejection to a high of 0.8 +/- 0.3 in primary sclerosing cholangitis. Liver-derived lymphocytes isolated from diseased liver contained significantly fewer (p less than 0.05) CD3-CD56+ or CD56+CD16-natural killer cells than did those obtained from normal liver samples. Natural killer activity was consistently detectable in liver-derived lymphocytes obtained from specimens of normal or diseased livers. Moreover, natural killer activity in the liver did not differ significantly from that in either normal or patient peripheral blood.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Cytokine production and serum levels in systemic sclerosis.

Serum levels of various cytokines, tumor necrosis factor-alpha (TNF-alpha), interleukin 1-beta (IL1-beta), and interleukin 2 (IL2), and of soluble IL2 receptors (sIL2R) were determined in 30 patients with definite systemic sclerosis (SSc). Spontaneous and lipopolysaccharide-or mitogen-induced production of the cytokines, TNF-alpha, IL1-beta, and IFN-gamma, by peripheral blood mononuclear cells (PBMNC) of these SSc patients was measured by immunoassays. The patients were divided into three groups: 12 with limited cutaneous disease (lcSSc), 7 with diffuse cutaneous disease (dcSSc) < 3 years duration, and 11 with dcSSc > 3 years duration. None were treated with cytotoxic drugs or biologic response modifiers. Sera of patients with SSc had elevated sIL2R levels, and only low levels of IL2 (1-2 U/ml) were detected in 10/29 sera tested. Spontaneous production of TNF-alpha and IL1-beta by PBMNC of patients with SSc (829 pg/ml +/- 215 SEM and 728 pg/ml +/- 186, respectively) was significantly higher than that by normal PBMNC obtained from 30 volunteers (25 +/- 10 and 34 +/- 6 pg/ml, respectively) and tested at the same time as patients' PBMNC. The largest increases in spontaneous release of TNF-alpha or IL1-beta were seen in patients with early dcSSc. No significant difference in spontaneous IFN-gamma production by patient or control PBMNC was detected. On the other hand, the mean level of mitogen-induced IFN-gamma production by PBMNC was significantly depressed in patients with SSc (103 U/ml +/- 18 vs 255 +/- 33 U/ml in controls). In vitro-induced production of TNF-alpha or IL1-beta by patients' PBMNC was comparable to that of normal PBMNC. These data indicate that in vivo-activated PBMNC of patients with SSc spontaneously secrete excessive amounts of fibrogenic cytokines, which are involved in modulation of connective tissue synthesis.

Cytokines

Memory T-lymphocytes are the main population of tumor-infiltrating lymphocytes obtained from human primary liver tumors.

The phenotypic characteristics of freshly isolated tumor-infiltrating lymphocytes (TIL) obtained from human liver tumors were analyzed by two-color flow cytometry. TIL consisted of mainly CD3+ T-lymphocytes (70-80%). The ratio of CD4/CD8 in TIL from primary and metastatic liver tumors and autologous peripheral blood lymphocytes (A-PBL) was 1.3, 1.1 and 1.3, respectively. The majority of CD3+ T-lymphocytes (mean +/- SD; 95 +/- 11%) expressed T-cell antigen receptor (TCR) alpha/beta, and gamma/delta TCR positive T-cells were only 5 +/- 4.5% in TIL from both primary and metastatic liver tumors. TIL showed significantly higher percentages of transient activation markers, such as CD25 (Tac) and HLA-DR, than A-PBL. TIL also contained significantly more populations of CD3+ CD45RO+ T-lymphocytes, which are considered to be expressed on primed (memory) T-lymphocytes, than A-PBL. Furthermore, TIL from primary liver tumors demonstrated significantly higher percentages of CD3+ CD45RO+ T-cells than those from metastatic liver tumors. These data indicate that TIL from human liver tumors are an apparently distinct population from A-PBL, and that local immune responses against human primary and metastatic liver tumors might be different. Moreover, TIL from primary liver tumors consisted of mainly activated or primed (memory) T-cells, suggesting that they were sensitized and activated by autologous tumor cells in vivo. These observations may imply the possibility of adoptive immunotherapy using TIL against human primary liver tumors.

Flow Cytometry

Generation of adherent lymphokine activated killer (A-LAK) cells from patients with acute myelogenous leukaemia.

Successful generation of adherent lymphokine-activated killer (A-LAK) cells, highly-enriched in CD3-CD56+ antitumour effector cells, from the peripheral blood of ten patients with acute myelogenous leukaemia (AML) is described. The AML patients were either untreated or in remission. In vitro proliferation of A-LAK cells in patients with AML was generally poor, unless the cells were cocultured with irradiated concanavalin A (ConA)--prestimulated allogeneic PBL or selected lymphoblastoid cell lines (LCL) as feeder cells. Using this method, the median fold proliferation was 290 for A-LAK cells cultured with ConA-activated feeders and 291 for those grown with LCL, both significantly higher (both P less than 0.001) than the median of 2-fold expansion observed in cultures without feeders. A-LAK cultures generated in the presence of feeders consistently showed good enrichment (up to 90%) in CD3-CD56+ NK cells. Although NK activity was not significantly increased on a per cell basis in A-LAK cells grown with feeder cells, total lytic activities against both NK-sensitive target, K562, and NK-resistant target, Daudi, were significantly greater (P less than 0.02 for ConA-PBL feeders and P less than 0.005 for LCL feeders) as compared to those in paired cultures without feeders. In the presence of irradiated allogeneic feeder cells, 7/10 AML patients generated A-LAK cultures characterised by good proliferation and increased purity as well as cytotoxic activity.

Cell Adhesion

Interleukin 2 receptors on squamous cell carcinomas of the head and neck. Characterization and functional role.

IL2Rs, in the presence of IL2, mediate activation and proliferation of human normal lymphocytes and modulate functional changes of some human leukocytic malignancies. IL2Rs have been demonstrated also on human neoplastic and fetal non-hematologic cells in vitro, although their functional role has not been described. We describe the presence of high affinity IL2Rs on squamous cell carcinoma of the head and neck (SCCHN) lines in vitro. Expression of 200 binding sites for IL2 with an affinity of 17 x 10(-12) was demonstrated by radiobinding experiments. When cytocentrifuged SCCHN cells were studied by immunoperoxidase staining, strong positive staining was repeatedly obtained using a monoclonal antibody to the p70 subunit of the IL2Rs. Experiments in vitro and in vivo, in a nude mouse model, showed a functional role for these receptors. In fact, low doses (8-500 U/ml) of IL2 were able to inhibit growth of 11 of the 16 SCCHN lines tested. Our observations may have broad implications for the immunotherapy of cancer in general, showing the complementary immunomodulatory and direct effects of IL2.

Carcinoma, Squamous Cell

Use of T-cell growth factors (interleukins 2, 4, 7, 10, and 12) in the evaluation of T-cell reactivity to melanoma.

Melanoma represents the single best example of a human tumor that has been shown to elicit specific T-cell reactivity. The responsiveness of some patients with metastatic melanoma to treatment with the prototypic T-cell growth factor (TCGF), interleukin-2 (IL-2), indicates that T cells play a role in antitumor immunity. Interleukin-4 (IL-4), another TCGF that has been administered clinically to humans, was not associated with tumor response in our trials conducted at the Surgery Branch of the National Cancer Institute. Combination trials of IL-2 with IL-4 have shown no increase in responsiveness of melanoma or other tumors when compared to IL-2 alone. However, enhanced expansion of tumor-infiltrating lymphocytes (TILs) in vitro has been observed with combinations of low-dose IL-2 and IL-4. We have begun a study evaluating the trafficking of such expanded lymphocytes following their adoptive transfer in association with systemic administration of IL-2 and IL-4. We have established several TIL cultures from fresh tumor samples, maintained them in long-term culture, and marked them with the neomycin phosphotransferase gene using the LNL6 retroviral vector. Such TILs appear to demonstrate no notable alterations in phenotype or cytolytic activity when compared to their nontransduced counterparts. In addition to IL-2 and IL-4, there are a variety of other novel TCGFs that are now available for evaluation in preclinical and clinical trials. IL-7 induces proliferation and lymphokine-activated killer (LAK) cell activity from human peripheral blood mononuclear cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Cell Division

Tumor necrosis factor-alpha production by alveolar macrophages in heart-lung transplant recipients.

Tumor necrosis factor-alpha (TNF alpha) is a cytokine produced by mononuclear cells that amplifies inflammation and modulates expression of Class I and Class II histocompatibility antigens. Because of these properties, this cytokine may exert a central role in both the defense and the rejection of the transplanted lung. Utilizing an ELISA technique, we measured TNF alpha in vivo and in vitro in several compartments of lung transplant recipients and in normal subjects that included serum, bronchoalveolar lavage fluid (BAL), and media conditioned by alveolar macrophages (AM) and by autologous peripheral blood monocytes (PBM). Overall, stimulated production of TNF alpha by AM from lung recipients in vitro was less than that of cells from normal subjects in response to lipopolysaccharide (LPS) challenge, and stimulated production of TNF alpha by AM harvested during conditions of infection or acute and chronic rejection was less than that by cells from healthy lung recipients. AM from normal subjects and allograft recipients produced substantially more TNF alpha than autologous PBM, but release in vitro by PBM from recipients was the same as that from cells of normal subjects who were not immunosuppressed. Thus, systemic immunosuppression does not seem to affect the production of TNF alpha by PBM in vitro, but it may reduce production by AM, indicating different effects of immunosuppression on different compartments of mononuclear cells. This mediator was not detected at elevated levels in serum, and it was undetectable in BAL fluid. We conclude that AM from lung recipients are capable of producing TNF alpha, which would influence the defense and immunogenicity of the allograft.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Immunologic effector cells in head and neck cancer.

Freshly isolated tumor-infiltrating lymphocytes (TIL) and lymph node lymphocytes (LNL) in patients with head and neck cancer (HNC) often have low or undetectable functional responses. Because impaired ability of these cells to produce cytokines could be responsible for their functional incompetence, spontaneous and in vitro-induced production of interleukin-2 (IL2), interleukin-1 beta (IL-1 beta), tumor necrosis factor-alpha (TNF-alpha), and interferon gamma (IFN-gamma) by TIL, LNL from tumor-free as well as tumor-involved lymph nodes (LN), and peripheral blood lymphocytes (PBL) were measured. Although TIL or PBL of patients with HNC produced IL-1 beta and TNF-alpha spontaneously or after in vitro activation, LNL did not produce measurable levels of these cytokines. LNL also produced lower levels of IFN-gamma than PBL. In situ hybridization for cytokine mRNA performed with tumor tissues, and LN of patients with HNC showed that TIL as well as LNL localized in the immediate proximity of the tumor were activated, as evidenced by the expression of mRNA for IL2, IFN-gamma, IL-1 beta, TNF-alpha, and both alpha- and beta-chains of the IL2 receptor. In addition, many LNL located next to the tumor expressed mRNA for transforming growth factor-beta (TGF-beta). In contrast, LNL not adjacent to the tumor in involved LN, as well as those in tumor-uninvolved LN, did not express mRNA for cytokines or IL2 receptor.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged