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Biomedical subjects

L C Moscinski

Publications and source records attributed to L C Moscinski.

At least 19 recordsLinked to original sources

An IkappaBalpha inhibitor causes leukemia cell death through a p38 MAP kinase-dependent, NF-kappaB-independent mechanism.

Treatment of U937 cells with an IkappaBalpha phosphorylation inhibitor, Bay 11-7085, induced a rapid phosphorylation of p38 mitogen-activated protein (MAP) kinase, significant apoptosis, extensive necrosis, and a weak phosphorylation of MAP kinase kinase. Bay 11-7085 had no effect on the basal levels of phosphorylated IkappaBalpha but completely inhibited phorbol 12-myristate 13-acetate-induced phosphorylation of IkappaBalpha. Although Bay 11-7085 prevented phorbol 12-myristate 13-acetate-induced NF-kappaB nuclear translocation, SN50, a specific inhibitor of nuclear translocation and function of NF-kappaB, did not induce any significant nuclear/DNA fragmentation, caspase 3 activation, or cell death. The p38 MAP kinase-specific inhibitor, SB203580, completely inhibited the phosphorylation of p38 MAP kinase and significantly decreased Bay 11-7085-induced apoptosis. In contrast, the MAP kinase kinase-specific inhibitor PD98059 had no effect on Bay 11-7085-induced apoptosis. Caspase-specific inhibitor, z-Val-Ala-Asp-fluoromethyl ketone prevented Bay 11-7085-induced activation of caspase 3 but was not able to block Bay 11-7085-induced phosphorylation of p38 MAP kinase. These data suggest that Bay 11-7085 induces apoptosis through a p38 MAP kinase-dependent, NF-kappaB-independent mechanism.

Activating Transcription Factor 2↗

Prolonged activation of the mitogen-activated protein kinase pathway is required for macrophage-like differentiation of a human myeloid leukemic cell line.

The role of the mitogen-activated protein kinase (MAPK) signal transduction pathway in the proliferation of mammalian cells has been well established. However, there are relatively few reports concerning cell differentiation being mediated by MAPK. The effect of phorbol 12-myristate 13-acetate (PMA) on cell differentiation and signal transduction in a human myeloid leukemia cell line, TF-1a, was investigated. When TF-1a cells were treated with 10(-6), 10(-7), 10(-8), and 10(-9) M PMA for 24 h, they underwent 98, 93, 91, and 51% macrophage-like differentiation, respectively. PMA treatment rapidly (10 min) induced phosphorylation of MAPK kinase (MEK and p44/42 MAPK), which persisted for at least 24 h. p44/42 MAPK immunoprecipitates from lysates of PMA-treated cells had increased ability to phosphorylate the transcription factor Elk-1. This is important because phosphorylated Elk-1 can be considered an "end-product" of the MAPK pathway. In contrast, treatment of TF-1a cells with granulocyte/macrophage-colony stimulating factor induced only transient activation of MEK and p44/42 MAPK (10-20 min) and an increase (approximately 50%) in cell proliferation, without any change in cellular differentiation. These results suggest that macrophage-like differentiation may be dependent on prolonged activation of the MAPK pathway. Additional support for this conclusion was obtained from experiments showing that treatment of TF-1a cells with antisense oligonucleotides for MEK1 coding sequences prior to adding PMA inhibited macrophage-like differentiation. Furthermore, transient transfection with an inactive, dominant-negative MEK mutant also inhibited PMA-induced differentiation, whereas transient transfection with a plasmid coding for constitutively activated MEK led to macrophage-like differentiation in the absence of PMA.

Blotting, Western↗

Transforming growth factor beta inhibits growth of more differentiated myeloid leukemia cells and retinoblastoma protein phosphorylation at serine 795.

Transforming growth factor beta (TGF-beta) has been shown to be a specific inhibitor of early human myeloid progenitors. We show here that TGF-beta1 potentially inhibited not only the growth of primitive but also more mature myeloid leukemic cells. Surprisingly, those apparently more mature progenitor cells, such as MV4-11 and Mo7e cells, are very sensitive to the action of TGF-beta. The addition of TGF-beta1 to liquid cultures of these cells significantly inhibited their proliferation, with as much as 72% inhibition of growth of MV4-11 cells. The suppressive effect by TGF-beta1 was not reversed or prevented by granulocyte-macrophage colony-stimulating factor or interleukin 3 used to promote cell growth in TF-1a and MV4-11 cells. TGF-beta1 completely abolished the clonal growth of MV4-11 cells in soft agar and inhibited Mo7e, KG-1, K562, TF-1, and TF-1a colony growth by 99%, 90%, 63%, 53%, and 43%, respectively. The cells treated with TGF-beta1 showed progressive accumulation in the G1 phase of cell cycle. Maximal G1 arrest (93%) was observed in MV4-11 cells. Using anti-retinoblastoma protein (pRb) and anti-specific phosphorylated-pRb antibodies, we demonstrated that TGF-beta1 greatly inhibited pRb phosphorylation at serine 795 in MV4-11 and Mo7e cells. Taken together, our data suggest that the sensitivity of myeloid leukemic progenitor cells to growth inhibition by TGF-beta may not be inversely correlated with their maturation stage, and the inhibition of the cells appeared to be linked to the suppression of pRb phosphorylation at serine 795.

Cell Differentiation↗

Characterization of a unique factor-independent variant derived from human factor-dependent TF-1 cells: a transformed event.

A factor-independent variant (TF-1a) has been isolated from the factor-dependent TF-1 cell line. The subline has been grown continuously in culture for > 1.5 years without added cytokines. The cells retain the ability to respond to multicytokines, with a different response pattern from its parental cell line. The TF-1 cells appeared singly in liquid culture. In contrast. TF-1a cells formed aggregates which increased markedly in size and in number upon TGFbeta1 treatment and showed a diminished TGFbeta-mediated growth inhibition. TF-1a, but not TF-1 cells, formed colonies in soft agar culture in the absence of any added growth factors, and developed the capacity to generate an invasive tumor(s) in nude mice. There was a constitutive activation of MAPK and MEK in TF-1a but not in TF-1 cells, which may be one of the mechanisms leading to factor-independent growth of TF-1a cells. Phenotypically, TF-1 cells were CD34+ /CD38+, whereas TF-1a cells were CD34+ /CD38-. This suggests that TF-1a may represent a less mature hematopoietic cell than TF-1. In conclusion, TF-1a is different from TF-1 in many important aspects which are associated with neoplastic transformation. The variant appears to be an excellent model for studying the process of progressive malignant transformation of myeloid cells and for studying signal pathways involved in the spontaneous and factor-induced growth of the cells.

Animals↗

Assessment of intracellular TAP-1 and TAP-2 in conjunction with surface MHC class I in plasma cells from patients with multiple myeloma.

Immunotherapy involving cytotoxic T lymphocytes (CTLs) is an attractive alternative for treatment of various malignancies, including multiple myeloma. For tumour cells to be recognized and killed by CTLs they must express cell surface major histocompatibility complex (MHC) class I molecules and the transporter associated with antigen processing (TAP). However, loss of MHC class I and the TAP protein are common among several types of solid tumours. This study assessed the expression of TAP protein (by intracellular flow cytometry) and cell surface MHC class I molecules in three human myeloma cell lines as well as the plasma cell population (CD38+ bright) in bone marrow specimens from 13 multiple myeloma patients. In all of the patients, 100% of the plasma cell population expressed both the TAP subunits and cell surface MHC class I molecules, but at varying intensities. Both TAP and MHC class I were also expressed in the three myeloma lines. Additionally, the function of the antigen transport machinery was evaluated by a peptide transporter assay in the three myeloma lines. TAP transporter activity was readily detectable in two out of three myeloma lines, whereas the diminished activity in the third cell line was completely restored by co-culturing with recombinant interferon-gamma (rIFN-gamma).

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Dexamethasone, cyclophosphamide, idarubicin and etoposide (DC-IE): a novel, intensive induction chemotherapy regimen for patients with high-risk multiple myeloma.

We evaluated toxicities and responses to a novel, dose intensive and time sequenced, chemotherapy programme (DC-IE) in 45 patients with high-risk myeloma. DC-IE consisted of: dexamethasone (days 1-4); cyclophosphamide (day 5); idarubicin and etoposide (days 8-10). Complete response (CR) was achieved in four patients, six patients achieved near complete responses (nCR) and 21 patients achieved a partial remission (PR). Overall response rate was 76% (CI 56-94%) for newly diagnosed patients (n = 21) and 62% (CI 36-81%) for relapsed/refractory patients (n = 24). Toxicities were limited to myelosuppression; two patients died of sepsis during neutropenia (4%). DC-IE is active and tolerable for high-risk multiple myeloma, including patients with relapsed or refractory disease to anthracycline containing regimens.

Adult↗

High-sensitivity detection of minimal residual breast carcinoma using the polymerase chain reaction and primers for cytokeratin 19.

We have developed a reverse transcriptase-polymerase chain reaction (RT-PCR) assay to identify breast carcinoma cells in bone marrow aspirates with high sensitivity and specificity. This assay relies on the detection of cytokeratin 19 (K19) RNA by nested primer PCR followed by annealing to a (32P)-labeled internal sequence probe and autoradiography. In reconstitution experiments, this assay is capable of detecting 10 fg of admixed mammary tumor RNA in 1 microgram of normal marrow RNA (a dilution of 1:10(7)). Thirty of 30 primary breast tumor specimens, 19 of 19 cytologically positive bone marrow aspirate specimens, and three of 11 aspirate negative/biopsy positive specimens showed detectable K19 transcript. This assay shows high specificity, with 50 of 52 negative control aspirates showing no detectable amplification product. False-positive amplification was noted in two of 18 aspirates obtained from patients with active chronic myelogenous leukemia. Of stage II and III postsurgical breast carcinoma patients with histologically negative bone marrows and no radiographic bone disease, 14 of 30 were K19 positive by PCR. RT-PCR analysis of K19 transcript is a highly sensitive and specific method of detecting and monitoring low-level metastatic disease in patients with primary carcinoma of the breast. The presence of K19 RNA in histologically negative bone marrows suggests that this assay may prove a powerful monitor for patients undergoing curative therapy as well as a novel prognostic indicator.

Breast Neoplasms↗

Recommendations for the use of routine bone marrow aspiration and lumbar punctures in the follow-up of patients with retinoblastoma.

PURPOSE: Patients with metastatic retinoblastoma have a poor outcome. Hope that early detection of extraocular spread will improve survival has led to routine monitoring with bone marrow and cerebrospinal fluid (CSF) examinations. In light of cost and patient morbidity, the clinical utility of this practice is questioned. PATIENTS AND METHODS: We have performed 254 serial bone marrow aspirations and 164 lumbar punctures in 60 children with retinoblastoma. RESULTS: Two patients with extensive intraocular disease at diagnosis developed positive bone marrow aspirations, although no patient died of distant metastasis. Three patients developed positive CSF examinations. All had neurologic symptoms at the time of CSF positivity. CONCLUSIONS: We recommend performing staging bone marrow and CSF evaluations only in patients with clinical, histologic, or radiologic evidence of local or systemic extension (Pratt stage III-IV), or in patients presenting with one Reese-Ellsworth group V eye and retrolaminar or extrascleral extension of their tumor. We recommend limiting follow-up bone marrow and CSF evaluations to patients who develop objective signs and symptoms of metastatic or regionally recurrent disease.

Biopsy, Needle↗

Clinical significance of bone marrow metastases as detected using the polymerase chain reaction in patients with breast cancer undergoing high-dose chemotherapy and autologous bone marrow transplantation.

PURPOSE: The present study evaluates the clinical significance of detection of cytokeratin 19 (K19) in the bone marrow of patients with breast cancer undergoing high-dose chemotherapy (HDCT) and autologous bone marrow transplantation (ABMT). PATIENTS AND METHODS: We studied retrospectively cryopreserved bone marrow aspirates from 83 patients with high-risk stage II, III, and IV breast cancer obtained before bone marrow harvest but after induction chemotherapy. All samples were histologically negative for metastases. Polymerase chain reaction (PCR) for K19 was performed according to methods described previously and results were correlated with the probability of relapse following HDCT and ABMT. RESULTS: The incidence of occult metastases as defined by PCR for K19 message was 52% for 19 stage II, 57% for 14 stage III, and 82% for 50 stage IV patients (two-tailed P = .0075, chi 2 test). The probability of relapse at 3 years after ABMT was 32% and 94% for K19-positive stage II/III and stage IV patients, respectively, versus 10% and 14% for K19-negative stage II/III and stage IV patients, respectively. The difference was significant for stage IV patients (two-tailed P = .0002). CONCLUSION: It has been shown that PCR is a highly sensitive method to detect K19 message in the bone marrow. The incidence of K19 positivity in bone marrow increases significantly with advancing stage. In patients with breast cancer, especially metastatic breast cancer, undergoing HDCT and ABMT, the presence of K19 is associated with a poor prognosis.

Adult↗

Urokinase plasminogen activator in ovarian cancer.

Invasion and metastasis require the destruction of the extracellular matrix and basement membranes to facilitate growth or migration of tumor cells into vascular and lymphatic spaces. These processes are mediated by proteolytic enzymes. Malignant cells produce urokinase which is a protease known to enhance the invasiveness of many tumor cells. The relationship between urokinase and various prognostic factors was investigated in 16 patients with epithelial ovarian cancer. Tissue concentrations of urokinase were measured in tumor cytosols using enzyme-linked immunoassays. Urokinase levels were lower in ovarian tumors of low malignant potential (median 9.5, range 3.5-18.3 pg/mg protein, n = 4) than invasive cancers (median 44.6, range 16.1-210.6 pg/mg protein, n = 12), p < 0.01. In the invasive carcinomas urokinase levels did not vary significantly with tumor stage or cell type. Grade 3 tumors had higher levels of urokinase (median 120.4, range 21.4-397.1 pg/mg protein, n = 6) than grade 1 and 2 tumors (median 29.2, range 16.1-51.8 pg/mg protein, n = 6), p < 0.05. Urokinase levels were higher in recurrent (median 120.4, range 51.8-210.6 pg/mg protein, n = 4) than in primary (median 29.2, range 16.1-97.1 pg/mg protein, n = 8) tumors, p < 0.05. These results support the hypothesis that urokinase plays a role in invasion and metastasis of ovarian epithelial cancers and suggest that tissue levels of urokinase may have prognostic value.

Epithelium↗

Molecular cloning of a novel myeloid granule protein.

Granulocytes are recognized by the presence of granules, including primary (azurophilic) and secondary types. Each granule type contains distinct and characteristic families of enzymes. We have screened a murine bone marrow cDNA library to obtain a series of sequences corresponding to mRNAs which are both myeloid-specific and appear to be expressed only in immature bone marrow cells. A 1,160 bp sequence (B9) has been isolated, which shows restricted expression in murine bone marrow, with the highest levels in cultures enriched for promyelocytes. Translation yields a single open reading frame of 167 amino acids and a calculated MW of 19.33 kd. A single potential N-glycosylation site is present. Evaluation of the amino terminal sequence shows 2 polar amino acids flanking a hydrophobic region, suggesting a signal sequence and the possibility of post-translational modification. An extensive search of the protein data base reveals 30% identity over 90 amino acids with porcine cathelin, a cystatin-like cysteine proteinase inhibitor. This sequence identity includes conservation of the 4 cysteine residues noted in all members of the cystatin superfamily. In an attempt to further characterize this novel sequence, a polyclonal antiserum was prepared by immunization with a 20 amino acid synthetic peptide corresponding to a unique portion of the carboxy terminus. Immunoelectron microscopy localized B9 to neutrophilic granules. We have identified a novel myeloid-specific granule protein related to porcine cathelin, but showing important structural differences. This may represent the first isolated member of a new cystatin family. More importantly, the small size of the B9 gene and its tight pattern of early expression make B9 an excellent reporter molecule for the study of new factors important in myeloid differentiation.

Amino Acid Sequence↗

Case report of spontaneous remission of cytogenetic relapse of chronic myelogenous leukemia suggestive of progression to blast crisis after allogeneic bone marrow transplantation.

Detection of the chronic myelogenous leukemia (CML)-related marker, the bcr/abl m-RNA transcript, in blood or bone marrow of patients with CML in hematologic remission after allogeneic bone marrow transplantation (allo-BMT) may be associated with the presence of minimal residual disease but does not uniformly predict hematologic relapse. In contrast, when there is cytogenetic reappearance of the Philadelphia (Ph1) translocation [t(9;22)(q34;q11)] along with additional cytogenetic abnormalities, especially more than 2 years after BMT, progression to hematologic relapse and acceleration of CML usually occur. An exception to this rule may be our patient, who was a 29-year old white woman diagnosed with Ph1-positive CML by cytogenetics. She was initially treated with hydroxyurea. An allo-BMT was performed 4 months after the diagnosis, while the patient was still in the first chronic phase of her disease, her HLA-identical brother serving as bone marrow (BM) donor. The conditioning regimen for BMT consisted of cytosine arabinoside, cyclophosphamide, total body irradiation, splenic irradiation, and intrathecal methotrexate. Graft-versus-host disease (GVHD) prophylaxis consisted of cyclosporin A and methotrexate. Her hospital course was unremarkable and without evidence of acute GVHD. Six months after transplantation, the patient had mild chronic GVHD and was treated with azathioprine and prednisone for 6 months. A year later, she recurred with mild chronic GVHD. She was treated with azathioprine alone for 5 months. Subsequently, she received cyclosporin A and prednisone for 8 months, with resolution of her symptoms. Serial BM cytogenetic studies showed normal male donor karyotypes 12 and 24 months after BMT. At 36, 42, and 50 months after BMT, reappearance of the Ph1 was noted along with some cells with additional cytogenetic abnormalities, including t(6;14)(p21;q32). The breakpoint involvement of 14q32, the heavy chain Ig locus, in the new clone may be indicative of B-lymphoid lineage-based evolution. The abnormal clones disappeared 56 months from BMT and remained absent through 69 months after BMT. The patient has remained in hematologic remission during her entire post-BMT course. Clinically, she continues to do well without immunosuppressants at presently 69 months after BMT. The reappearance of the Ph1 chromosome could be associated with the immunosuppressive therapy given for chronic GVHD. This case supports the concept that immunologic mechanisms may be important in the eradication of CML after allo-BMT, and even cytogenetic evidence of blast crisis CML may spontaneously remit after allo-BMT.

Adult↗

Cyclin D1 protein expression in mantle cell lymphoma.

BACKGROUND: The t(11;14)(q13;q32) is a chromosomal abnormality usually associated with mantle cell (centrocytic) lymphomas, although it has occasionally been reported in other chronic lymphoproliferative disorders such as chronic lymphocytic leukemia, prolymphocytic leukemia, splenic lymphoma with villous lymphocytes, and multiple myeloma. This abnormality results in the translocation of the bcl-1 oncogene from chromosome 11 to the immunoglobulin heavy chain locus on chromosome 14. The bcl-1 oncogene is a member of the cyclin gene family, and high levels of cyclin D1 mRNA are consistently found in malignant B cell proliferations with t(11;14). PATIENTS AND METHODS: We examined cyclin D1 protein expression in 33 patients with low grade lymphoproliferative disorders and 2 patients with reactive hyperplasias by Western blot analysis using a polyclonal antibody. RESULTS: 8/11 mantle cell lymphomas, 0/11 chronic lymphocytic leukemias, 0/4 hairy cell leukemias, 0/2 Sezary syndrome, 0/2 monocytoid B-cell lymphomas, 0/3 follicular lymphomas, and 0/2 reactive hyperplasias had overexpression of cyclin D1. Cytogenetic analysis was performed in four cases of mantle cell lymphoma; three of these cases had the t(11;14), one of which was hypotetraploid with two copies of t(11;14). Immunophenotypically, all cases of mantle cell lymphoma and chronic lymphocytic leukemia had coexpression of CD5 and CD20. CONCLUSION: Mantle cell lymphoma may be difficult to discriminate from chronic lymphocytic leukemia, a more indolent disease, on morphologic and immunophenotypic grounds. Our findings suggest that analysis of cyclin D1 protein expression may be helpful in differentiating mantle cell lymphomas from other low grade lymphoproliferative disorders.

Antigens, Neoplasm↗