PubMed HealthSearch

Biomedical subjects

J Finke

Publications and source records attributed to J Finke.

At least 19 recordsLinked to original sources

Expression of bcl-2 in Burkitt's lymphoma cell lines: induction by latent Epstein-Barr virus genes.

The bcl-2 oncogene blocks programmed cell death (apoptosis). Epstein-Barr virus (EBV) can immortalize B lymphocytes into continuously growing lymphoblastoid cell lines (LCL) by the coordinate expression of at least 9 latent genes (EBV nuclear antigen [EBNA] 1-6, latent membrane protein [LMP], and terminal proteins [TP] 1 and 2). We analyzed transcription and expression of bcl-2 and latent EBV genes in Burkitt's lymphoma (BL) cell lines with a germinal center phenotype (group I) as well as activated BL cell lines (group III) and LCLs. We found high expression of bcl-2 as well as the full spectrum of latent EBV genes in LCLs and activated group III BL cell lines. Group I BL cells expressed little or no bcl-2, EBNA-2, and LMP. Superinfection with nondefective EBV or an EBNA-2-defective virus as well as transfection with EBNA-2- or LMP-carrying vectors into the EBV-negative cell lines RAMOS, DG75, U698, or BJAB induced upregulation of bcl-2 expression. The strongest effect on bcl-2 was obtained by transfection with LMP, or infection with the nondefective virus. No change of bcl-2 expression was observed with EBNA-1. Our data indicate that the immortalization capacity of EBV and the growth advantage of EBV-positive compared with EBV-negative BL cells in vitro may predominantly be mediated via induction of bcl-2 and the main effectors are EBNA-2 and LMP.

Antigens, Viral

Distribution and localization of Epstein-Barr virus subtypes A and B in AIDS-related lymphomas and lymphatic tissue of HIV-positive patients.

Tissue samples of 21 HIV-positive patients have been studied for the presence and distribution of Epstein-Barr virus (EBV) subtypes A and B. This was done by PCR, EBER in situ hybridization, and immunohistochemical detection of EBV latent membrane protein (LMP) in AIDS-associated malignant lymphomas (16 cases) and lymphatic organs of patients without lymphoma (5 cases). Eleven cases were considered to be EBV-positive, with type A in four, and type B virus in four other cases. In patients with malignant lymphoma, EBV was localized in tumour tissue exclusively. One patient without lymphoma presented with multiple EBV genome type B-positive cells in all the lymphoid tissue samples examined. In HIV-positive patients, both subtypes of EBV, A and B, may play a role in the pathogenesis of lymphoproliferative lesions.

Adult

Phase I trial of high-dose bolus interleukin-2 and interferon alfa-2a in patients with metastatic malignancy.

PURPOSE: Based on preclinical evidence that the antitumor effects of the combination of interleukin-2 (IL-2) and interferon alfa (IFN alpha) are greater than those of either cytokine alone, we have performed a phase I trial of recombinant IL-2 (rIL-2) and recombinant human IFN alpha 2a (rHuIFN alpha 2a) in patients with refractory malignancies. This study was an extension of an earlier trial that identified reversible myelosuppression as the dose-limiting toxicity of this combination. The present trial used modified definitions of unacceptable toxicity to allow exploration of higher doses of rIL-2. PATIENTS AND METHODS: Both rHuIFN alpha 2a 10.0 x 10(6) U/m2 intramuscularly (IM) and rIL-2 were administered three times weekly for 4 consecutive weeks. IL-2 was given by intravenous (IV) bolus injection at doses that were escalated in successive cohorts of four to six patients, provided that toxicity at the preceding dose level was acceptable. Unacceptable toxicity was defined as an elevation of the serum creatinine level to greater than 5 mg/dL, an elevation of the serum bilirubin level to greater than 5 mg/dL, dyspnea at rest, hypotension refractory to pressors, altered mental status, or other toxicities of grade 3 to 4, using the National Cancer Institute (NCI) Common Toxicity Criteria. The doses of rIL-2 administered were 4.0 x 10(6), 6.0 x 10(6), 8.0 x 10(6), 10.0 x 10(6), 12.0 x 10(6), 14.0 x 10(6), 18.0 x 10(6), 22.0 x 10(6), and 26.0 x 10(6) BRMP (Hoffman-LaRoche) U/m2. At a dose of rIL-2 10.0 x 10(6) BRMP U/m2, patients were also treated with doses of rHuIFN alpha 2a of 1.0 x 10(6) and 0.1 x 10(6) U/m2. RESULTS: A total of 57 patients were treated. Intolerable side effects (hypotension, pulmonary, and CNS toxicity) were produced by rIL-2 26.0 x 10(6) BRMP U/m2 and rHuIFN alpha 2a 10.0 x 10(6) U/m2. Two of 21 patients with renal cell carcinoma showed objective responses, and five of 17 patients with malignant melanoma responded. Two of these responses in melanoma were complete and continue to be longlasting. CONCLUSIONS: When given with rHuIFN alpha 2a 10.0 x 10(6) U/m2 as described above, the maximum-tolerated dose of rIL-2 is 22.0 x 10(6) BRMP U/m2. This dose of rIL-2 is equivalent to 50 to 60 MIU/m2, depending on the conversion factor used. Based on this experience and other trials, we favor phase II trials in renal cell carcinoma using an alternative dose schedule of this cytokine combination, in which rIL-2 is administered by continuous infusion. We suggest that phase II trials of this combination in patients with melanoma use an rIL-2 dose of 8.0 x 10(6) BRMP U/m2 by IV bolus injection three times weekly in combination with rHuIFN alpha 2a 10.0 x 10(6) U/m2 IM three times weekly.

Adult

Apparent decrease and elimination of BCR/ABL mRNA-expressing residual cells in patients with chronic myelogenous leukemia after allogeneic bone marrow transplantation.

A modified two-step polymerase chain reaction (PCR) was used for the amplification of BCR/ABL mRNA in 16 patients with Philadelphia chromosome-positive (Ph+) chronic myelogenous leukemia (CML) following allogeneic bone marrow transplantation (BMT). At different intervals after BMT, patient cells were assessed for the presence of BCR/ABL mRNA by two subsequent rounds of PCR amplification; this procedure increased the sensitivity for the detection of one Ph+ cell in 10(4-5) to one cell in 10(5-6). Eight of 16 patients were negative by two-step PCR 1-39 months after BMT, suggesting an elimination of Ph-positive cells or a decrease below the threshold of detection. Although five patients showed negative results by the one-step PCR only, they were tested positive when nested primers were used, indicating a substantial decrease in the amount of BCR/ABL target mRNA compared with earlier pre- or post-transplant analyses. One patient who was still PCR positive 27 months after BMT became negative 12 months later. Persistence of BCR/ABL mRNA-expressing cells correlated with subsequent clinical relapse only when the transplantation was performed during blast crisis. All patients who underwent transplantation in chronic phase, including those with BCR rearrangement by PCR, are in clinical and hematological remission between 24 and 95 months after BMT. We conclude that aggressive chemotherapy combined with total body irradiation is unable to completely eradicate the malignant clone in all CML patients, and it might be speculated that other mechanisms (e.g., graft versus host reaction [GVHD] or graft versus leukemia effect [GVL]) may effectively eliminate residual leukemic cells.

Adolescent

Phase I trial of continuous infusion interleukin-2 and doxorubicin in patients with refractory malignancies.

A phase I trial was performed to assess the immunomodulatory activities, maximum tolerated doses, and the toxicity of recombinant interleukin-2 (rIL-2) administered in combination with doxorubicin to patients with refractory malignancies. Therapy was administered to successive cohorts of four to six patients who were treated at three different dose levels (1A, 1B, 2A). Levels 1-2 refer to doxorubicin (40 or 60 mg/m2) given as an intravenous (i.v.) bolus on day 1, and levels A-B refer to rIL-2 (1.0 or 3.0 x 10(6) U/m2) given as a continuous i.v. infusion on days 2-5, 9-12, and 16-19. Cycles were repeated every 28 days. Seventeen patients were entered in the trial. Dose limiting toxicity consisted of neutropenia, and the maximum tolerated dose (MTD) of the combination was doxorubicin 40 mg/m2 and rIL-2 3.0 x 10(6) U/m2. No objective responses were observed. Lymphocytosis related to rIL-2 occurred and flow cytometry demonstrated significant increases in the following subsets: CD3+CD25+HLADr+ and CD11b-CD16c+CD8-. Natural killer cell activity and lymphokine-activated killer (LAK) cell precursors were increased in patients treated at dose levels 1A and 1B (40 mg/m2 doxorubicin), but no consistent changes in LAK activity were noted. No clinical responses were seen and the overall toxicity of this combination was moderate to severe. Administration of doxorubicin prior to rIL-2 does not enhance the immunologic effects of rIL-2.

Adult

Effect of the EBNA-2 gene on the surface antigen phenotype of transfected EBV-negative B-lymphoma lines.

Two EBV-negative B-lymphoma cell lines with different phenotypes were transfected with the Epstein-Barr virus EBNA-2 gene. The effects on the expression of 8 B-cell surface markers were analyzed by immunofluorescence methods. In one of the EBNA-2 transfected cell lines, the expression of the CR2 receptor CD21 was induced and the expression of CD23 was enhanced. The results suggest that the EBNA-2 gene is involved in the regulation of CD21 and CD23 in EBV-carrying cells.

Antibodies, Monoclonal

TIL from renal-cell carcinoma: restimulation with tumor influences proliferation and cytolytic activity.

TIL were cultured from human renal-cell carcinoma (RCC) in 1,000 U/ml rIL2 and restimulated with autologous tumor in efforts to establish which conditions would best expand the number of lymphocytes cytotoxic for autologous tumor. Greater cell yields resulted from multiple restimulations of TIL with autologous tumor. In most instances, these TIL lysed autologous tumor better than TIL grown in rIL2 alone. Enhanced proliferation was seen also after restimulation of TIL with allogeneic RCC as well as with tumor cells of non-renal origin. Although in some instances lysis of autologous tumor appeared to be specific, restimulation with autologous tumor did not consistently result in the generation of specific cytolytic T cells. Attempts to culture more specific cytolytic T cells by using 50 U/ml rIL2 were successful in expanding TIL with enhanced lytic activity; however, this activity was not specific for autologous tumor. The phenotype of the tumor-restimulated TIL generally did not change. In most of the TIL cultures, CD3+CD4+ cells were predominant with low numbers of CD3+Leu19+ cells and minimal numbers of CD3-Leu19+ cells. Thus, the cytotoxic response to tumor was mediated by T cells and not NK cells. Overall, our data indicate that restimulation of TIL with autologous tumor may be beneficial for growing larger numbers of cells which have increased lytic activity and for prolonging the presence of lytic activity among the expanded TIL.

Adult

Chromosome abnormalities in multiple meningiomas of a child.

We report the cytogenetic findings in two meningiomas from a child presenting with multiple meningiomas. In contrast to the chromosomal profile of adult meningiomas, both tumors studied revealed excess of chromosomes in addition to monosomy 22. This difference is remarkable considering several reports indicating that childhood meningiomas behave differently and have a worse prognosis than those in adults.

Aneuploidy

Neurofibromatosis 2: a clinically and genetically heterogeneous disease? Report on 10 sporadic cases.

Clinical and genetic data of 10 patients with neurofibromatosis 2 (NF-2) are presented. Interestingly, no family history of neurofibromatosis was detectable in any of them, which indicates that these are sporadic cases of NF-2, most likely due to a new mutational event. According to our own results and the data in the literature, sporadic cases of NF-2 are clinically characterized by a high incidence of multiple meningiomas and spinal tumors in addition to the bilateral occurrence of acoustic neurinomas. The clinical heterogeneity of NF-2 is pointed out and the possible existence of different forms of this disease is discussed.

Adolescent

Can psychotherapeutic competence be taught?

This paper is presented in defense of an educational concept for psychotherapists, which is based on the proposition that attitudes as well as behavioral components can be shaped by training. The training program contains the process of observing, reflecting and practicing individual segments of constructive therapeutic behavior as a part of education in client-centered therapy.

Clinical Competence

Phase I trial of continuous infusion recombinant interleukin-2 and intermittent recombinant interferon-alpha 2a: clinical effects.

A phase I trial of high-dose continuous infusion rIL-2 over 5 days and i.m. recombinant human interferon-alpha (rHuIFN-alpha 2a) three times weekly in 23 patients with advanced malignancy has been completed. Cohorts of patients were treated at three different dose levels: rIL-2 3.0 x 10(6) u/m2 plus rHuIFN-alpha 2a either 5.0 or 10.0 x 10(6) u/m2, and rIL-2 4.5 x 10(6) u/m2 plus rHuIFN-alpha 2a 5.0 x 10(6) u/m2 over 4 weeks. Dose-limiting toxicity consisted of pulmonary and neurologic side effects, and the maximal tolerated dose was 3.0 x 10(6) u/m2 on days 1-5 or rIL-2, and 10.0 x 10(6) u/m2 three times weekly of rHuIFN-alpha 2a. Four partial responses (renal carcinoma, three; endometrial carcinoma, one) were seen. In conclusion, toxicity of this schedule of rIL-2 and rHuIFN-alpha 2a was significant, but manageable. Further investigation is needed to define the antitumor activity of this combination.

Adult

Phase I clinical trial of interleukin 2 and alpha-interferon: toxicity and immunologic effects.

Because recombinant interleukin 2 (rIL-2) and recombinant alpha-interferon (rIFN-alpha) exhibit synergistic antitumor activity in C3HMT1820 T-cell lymphoma and B16 melanoma tumor systems, we have performed a Phase I study of this combination in 55 patients with advanced malignancies for whom no standard therapy exists. Successive groups of greater than or equal to 4 patients have been entered into 12 dose levels (1A-3D), with dose levels 1-3 referring to doses of rIL-2 of 0.1, 0.5, and 2.0 x 10(6) units/m2, respectively, and dose levels A-D referring to doses of recombinant human alpha 2a-interferon (rHuIFN-alpha 2a) of 0, 0.1, 1.0, and 10.0 x 10(6) units/m2. Both agents were given on Mondays, Wednesdays, and Fridays, with rIL-2 being given as i.v. bolus injections and rHuIFN-alpha 2a being given intramuscularly. Myelosuppression was dose-limiting and was related primarily to the dose of rHuIFN-alpha 2a. The maximum-tolerated dose level was reached at a dose of rIL-2 of 2.0 x 10(6) units/m2 and of rHuIFN-alpha 2a of 10.0 x 10(6) units/m2 (dose level 3D). At this dose level, 3/6 patients developed grade 3 neutropenia (absolute granulocyte count less than 1 x 10(9)/liter). Myelosuppression was transient, with no documented infections being associated with neutropenia. Hypotension was mild; a single patient was treated with a vasopressor, but all other cases of hypotension responded to fluid administration. No significant pulmonary toxicity was produced. Fever, chills, and malaise were universal but not dose-limiting. Three partial responses and one minor response were observed in patients with malignant melanoma, renal cell carcinoma, and breast cancer. Immunological studies suggested that natural killer activity was related to both the dose of rIL-2 and the dose of rHuIFN-alpha 2a, with natural killer activity being positively related to the dose of rIL-2 and maximal at the lowest dose of rHuIFN-alpha 2a of 0.1 x 10(6) units/m2.

Adult

Expression of Epstein-Barr virus-encoded proteins in nasopharyngeal carcinoma.

Expression of the Epstein-Barr virus (EBV) encoded nuclear antigens (EBNA 1 to 6) and membrane-associated protein (LMP) was investigated by immunoblotting in 83 nasopharyngeal carcinoma (NPC) biopsies and 25 other tumor and normal tissue specimens from the head and neck region. Fifty-eight of the 83 NPC biopsies were large enough to yield parallel data on virus DNA and viral expression. All 16 cases of clinically diagnosed and histologically confirmed NPCs from North Africa contained EBV DNA and expressed EBNA-1. Of 31 clinically diagnosed NPCs from China, 29 contained EBV DNA and 25 of these expressed EBNA-1. One control tissue biopsy from the oropharynx of NPC patients contained EBV DNA, but none expressed EBNA-1. The latent membrane protein (LMP) was detected in 22/31 of the Chinese and in 10/16 of the North African NPC biopsies. None of the NPC biopsies or control tissues expressed detectable amounts of EBNA 2 or any of the other 4 nuclear antigens which are invariably expressed in EBV-transformed B cells. A smaller number of tumors from Malaysia and East Africa exhibited a similar pattern of expression. EBV was rescued from a nude-mouse-passaged North African NPC tumor by co-cultivation of the tumor cells with umbilical cord blood lymphocytes. The tumor expressed EBNA 1 and LMP, but not EBNA 2 or the other 4 EBNAs. The resulting LCLs expressed all 6 nuclear antigens, EBNA 1 to 6 and LMP. Our data suggest that expression of the EBV genome is regulated in a tissue-specific fashion.

Animals

Characterization of the serological response in man to the latent membrane protein and the six nuclear antigens encoded by Epstein-Barr virus.

A total of 116 sera from healthy individuals and from patients with Burkitt's lymphoma (BL), nasopharyngeal carcinoma (NPC) or rheumatoid arthritis (RA) were studied with respect to antibody responses to each of the seven known transformation-associated Epstein-Barr virus (EBV)-encoded antigens [latent membrane protein (LMP) and six nuclear proteins (EBNAs 1 to 6)]. The antibodies were detected using modified standard immunoblotting techniques. Antibodies to LMP were detected for the first time in sera from 6/27 (22%) healthy, EBV-immune individuals (seropositive for the viral capsid antigens). An increased incidence of anti-LMP antibodies was found in EBV-immune sera from patients with BL (17/24 positive; 71%), NPC (21/33; 64%), and RA (16/21; 76%). Antibodies to EBNA 1 were detected in all EBV-immune sera at a standard 1:20 dilution. Antibodies to the other EBNAs were detected in only a proportion of these sera (20 to 95%) at the same dilution. Only minor disease-associated differences in the incidence of these antibodies were observed, the most consistent being that RA sera had a higher incidence of antibodies to EBNAs 2 to 6 compared with healthy controls. Testing of the sera at a 1:100 dilution suggested that there were some disease-related differences in the titres of anti-EBNA antibodies. At this serum dilution, a reduced incidence of antibodies to EBNA 2 was seen in NPC (6/31) compared with RA (18/19) and healthy EBV-seropositives (16/26); antibodies to EBNA 3 were detected at an increased incidence in BL (8/15) and NPC (16/31) compared with control sera (7/26); antibodies to EBNA 4 were detected at increased incidence in BL (5/15) and RA (6/19) compared with control sera (1/26); and antibodies to EBNA 6 were detected at increased incidence in NPC (19/31) and RA (7/19) compared with control sera (3/26).

AIDS-Related Complex

Monoclonal and polyclonal antibodies against Epstein-Barr virus nuclear antigen 5 (EBNA-5) detect multiple protein species in Burkitt's lymphoma and lymphoblastoid cell lines.

The Epstein-Barr virus nuclear antigen 5 (EBNA-5) is encoded by highly spliced mRNA from the major IR1 (BamHI-W) repeat region of the virus genome. A mouse monoclonal antibody, JF186, has been raised against a synthetic 18-amino-acid peptide deduced from the EBNA-5 message of B95-8 and Raji cells. The antibody showed characteristic coarse nuclear granules by indirect immunofluorescence and revealed multiple EBNA-5 species by immunoblotting and immunoprecipitation. The B95-8 line itself and all B95-8 virus-carrying cells, whether lymphoblastoid cell lines or in vitro-converted sublines of Epstein-Barr virus (EBV)-negative Burkitt's lymphoma (BL) lines, were EBNA-5 positive. Among 36 cell lines carrying different EBV strains, only 10 expressed the B95-8-Raji-prototype EBNA-5 recognized by JF186; this was probably due to genetic variation in the epitope recognized by JF186, as shown for P3HR-1. Human antibodies, affinity purified against EBNA-5-JF186 immunoprecipitates, detected EBNA-5 in the majority of EBV-positive BL lines and in all lymphoblastoid cell lines containing the BL-derived viruses. Thus, EBNA-5 can be expressed by all virus isolates examined, but is down-regulated, together with other latent gene products, in a minority of BL lines which have a particular cellular phenotype. EBNA-5 was detected as a ladder of protein species of 20 to 130 kilodaltons (kDa), with a regular spacing of 6 to 8 kDa, consistent with the coding capacity of the combined BamHI-W 66- and 132-base-pair exons, together with shifts of 2 to 4 kDa, consistent with the size of the separate 66- and 132-base-pair exons. Multiple EBNA-5 proteins can be expressed by the single cell as shown by cloning of newly infected cells.

Animals