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Biomedical subjects

R Herbst

Publications and source records attributed to R Herbst.

At least 19 recordsLinked to original sources

Primary central nervous system lymphoma treated with high-dose methotrexate, high-dose busulfan/thiotepa, autologous stem-cell transplantation and response-adapted whole-brain radiotherapy: results of the multicenter Ostdeutsche Studiengruppe Hamato-Onkologie OSHO-53 phase II study.

BACKGROUND: We investigated the efficacy and safety of tandem high-dose methotrexate (HD-MTX) induction followed by high-dose busulfan/thiotepa (HD-BuTT) with autologous peripheral blood stem-cell transplantation (aPBSCT) and response-adapted whole-brain radiation therapy (WBRT) in patients with newly diagnosed primary central nervous system lymphoma. PATIENTS AND METHODS: Twenty-three patients were treated with HD-MTX on days 1 and 10. In case of at least a partial remission (PR), HD-BuTT followed by aPBSCT was given. Patients without response to induction or without complete remission (CR) after HD-BuTT received WBRT. RESULTS: Sixteen patients received HD-MTX and HD-BuTT achieving a CR/PR rate of 69%/13%. CR/PR rates for all patients (n = 23) were 70%/13%. There were three deaths during therapy. With longer follow-up three neurotoxic deaths occurred in irradiated patients (n = 9), while no persistent neurotoxicity was seen after HD-BuTT without subsequent WBRT. At a median follow-up of 15 months (range 1-69) median event-free survival (EFS) and overall survival (OS) for all patients were 17 and 20 months (Kaplan-Meier), after HD-BuTT 27 months and "not reached", respectively. Estimated 2-year EFS and OS were 45% and 48% for all patients versus 56% and 61% for the HD-BuTT group, respectively. CONCLUSION: MTX induction followed by HD-BuTT is an effective and very short time-on-treatment regimen. Median survival for patients treated with high-dose chemotherapy is not reached yet. The induction regimen needs optimisation. In this study WBRT was associated with a high incidence of severe neurotoxicity.

Adolescent↗

Graft clonogenicity and intensity of pre-treatment: factors affecting outcome of autologous peripheral hematopoietic cell transplantation in patients with acute myeloid leukemia in first remission.

A total of 22 patients with acute myeloid leukemia (AML) in first complete remission receiving autologous blood stem cell transplantation (ABSCT) were investigated in order to determine factors affecting outcome. All but two patients had a normal karyotype and received the same high-dose chemotherapy followed by G-CSF-mobilized peripheral blood stem cells after the second (n=5) or third (n=17) course of induction and post-remission chemotherapy, respectively. With a median follow-up of 30 months, the median disease-free survival is 24.1 months. Univariate analysis showed that three chemotherapy cycles before ABSCT were associated with a significant better disease-free survival (P=0.0018) and overall survival (P=0.0033), whereas the presence of an FLT3-mutation (n=6) showed no impact. The number of megakaryocytic progenitors (CFU-MK) infused tended to correlate with primary platelet engraftment (P=0.07) and were predictive for neutrophil (P=0.011) and platelet counts (P=0.009) 180 days after transplantation. Patients receiving a higher amount of CFU-MK had a better event-free survival (P=0.02). Our data suggest that the content of CFU-MK within the graft predicts the quality of hematological recovery and long-term disease control. Additionally, a minimum of three chemotherapy cycles before ABSCT seems to be associated with an improved outcome.

Adult↗

Activity of sirolimus in patients with myelodysplastic syndrome--results of a pilot study.

The pathophysiology of the myelodysplastic syndromes (MDS) involves disturbed regulation of angiogenesis, apoptosis, proliferation and differentiation as well as immune surveillance. Increasing data suggest that sirolimus might affect these pathways positively, thus being of possible therapeutic benefit in patients with this disease. Nineteen patients (n = 19) with a median age of 72 years (range 54-80 years) diagnosed with MDS received sirolimus orally with a target blood concentration of 3-12 ng/ml. Sirolimus was administered for a median of 3.7 months (range 0.3-11 months). Three patients [1 x refractory anaemia with excess blasts (RAEB)-2, 1 x RAEB-1, 1 x refractory cytopenia with multilineage dysplasia] showed either a major (1 x platelet, 1 x neutrophil) or a minor (1 x erythroid, 2 x platelet) haematological response according to International Working Group criteria. Major side-effects were hyperlipidaemia (n = 4), stomatitis (n = 3), thrombocytopenia (n = 2) and urinary tract infection (n = 1). These data suggest that sirolimus has activity in a subset of patients with more advanced MDS.

Administration, Oral↗

Towards the molecular elucidation of congenital myasthenic syndromes: identification of mutations in MuSK.

Congenital myasthenic syndromes (CMS) are rare genetic diseases affecting the neuromuscular junction (NMJ) and characterized by a dysfunction of the neurotransmission. They are heterogeneous at the pathophysiological level and can be classified in three categories according to their origin: presynaptic, synaptic or postsynaptic. The strategy for the diagnosis and characterization of CMS relies on the clinic, EMG, muscle biopsy, identification of mutations in genes known to be responsible for CMS and the demonstration that the gene mutations are the cause of the disease by using experimental approaches. As an example of such strategy, we report briefly here the characterization of the first case of a human neuromuscular transmission dysfunction due to mutations in the gene encoding a postsynaptic molecule, the muscle-specific receptor tyrosine kinase (MuSK). Gene analysis identified two heteroallelic mutations, a frameshift mutation (c.220insC) and a missense mutation (V790M). The muscle biopsy showed marked pre- and postsynaptic structural abnormalities of the neuromuscular junction as well as a severe decrease in acetylcholine receptor epsilon-subunit and MuSK expression. In vitro and in vivo expression experiments were performed using mutant MuSK reproducing the human mutations. The results obtained strongly suggested that the missense mutation, in the presence of a null mutation on the other allele, was responsible for the severe synaptic changes observed in the patient and, hence, is causing the disease. However the molecular origin of a large number of CMS is still unknown. There are hundreds of molecules known to be present at the NMJ and mutations in the genes coding for these synaptic molecules are likely to be responsible for a neuromuscular block.

DNA Mutational Analysis↗

The protein tyrosine phosphatase HePTP regulates nuclear translocation of ERK2 and can modulate megakaryocytic differentiation of K562 cells.

In response to PMA treatment K562 myelogenous leukemia cells undergo megakaryocytic differentiation, which is dependent on prolonged ERK activation and is characterized by growth arrest, upregulation of CD41 and IL-6, and, finally, by characteristic changes in cell morphology. The tyrosine phosphatase HePTP was recently demonstrated to regulate ERK activity and changes in HePTP expression have been associated with hematopoietic malignancies. Here, we have studied the function of HePTP during PMA-induced megakaryocytic differentiation of K562 cells. Overexpression of HePTP or inhibition of HePTP expression with antisense cDNA had no effect on PMA-induced cell cycle arrest or upregulation of cyclin D in K562 cells. The expression of megakaryocytic markers such as CD41 and IL6, however, were highly reduced in cells overexpressing HePTP, due to reduced ERK activation, and the cells were impaired in their ability to differentiate. Compared to control cells, HePTP antisense expressing cells did not show increased basal or PMA-induced ERK activity. However, antisense inhibition of HePTP enhanced nuclear translocation of ERK and the expression of the megakaryocytic markers CD41 and IL-6. Interestingly, like cells overexpressing HePTP, morphological differentiation was also impaired in HePTP antisense expressing cells. The results for the first time demonstrate that different aspects of megakaryocytic differentiation have distinct requirements for ERK activity. They further show that HePTP is involved in the regulation of nuclear translocation of ERK2 and that HePTP protein levels can modulate K562 cell differentiation.

Active Transport, Cell Nucleus↗

Randomized phase III study of chemoradiation with or without amifostine for patients with favorable performance status inoperable stage II-III non-small cell lung cancer: preliminary results.

A prospective randomized study was conducted to determine whether amifostine (Ethyol) reduces the rate of severe esophagitis and hematologic and pulmonary toxicity associated with chemoradiation or improves control of non-small cell lung cancer (NSCLC). Sixty patients with inoperable stage II or III NSCLC were treated with concurrent chemoradiotherapy. Both groups received thoracic radiation therapy (TRT) with 1.2 Gy/fraction, 2 fraction per day, 5 days per week for a total dose 69.6 Gy. All patients received oral etoposide (VP-16), 50 mg Bid, 30 minutes before TRT beginning day 1 for 10 days, repeated on day 29, and cisplatin 50 mg/m(2) intravenously on days 1, 8, 29, and 36. Patients in the study group received amifostine, 500 mg intravenously, twice weekly before chemoradiation (arm 1); patients in the control group received chemoradiation without amifostine (arm 2). Patient and tumor characteristics were distributed equally in both groups. Of the 60 patients enrolled, 53 were evaluable (27 in arm 1, 26 in arm 2) with a median follow-up of 6 months. Median survival times were 26 months for arm 1 and 15 months for arm 2, not statistically significantly different. Morphine intake to reduce severe esophagitis was significantly lower in arm 1 (2 of 27, 7.4%) than arm 2 (8 of 26, 31%; P =.03). Acute pneumonitis was significantly lower in arm 1 (1 of 27, 3.7%) than in arm 2 (6 of 26, 23%; P =.037). Hypotension (20 mm Hg decrease from baseline blood pressure) was significantly more frequent in arm 1 (19 of 27, 70%) than arm 2 (1 of 26, 3.8%; P =.0001). Only 1 patient discontinued treatment because of hypotension. These preliminary results showed that amifostine significantly reduced acute severe esophagitis and pneumonitis. Further observation is required to assess long-term efficacy.

Adult↗

Salvage chemotherapy with mitoxantrone, fludarabine, cytarabine, and cisplatin (MIFAP) in relapsing and refractory lymphoma.

PURPOSE: The aim of the study was to evaluate the feasibility and efficacy of the combination of mitoxantrone, fludarabine, cytarabine, and cisplatin (MIFAP) in patients with prognostically unfavorable recurrent and refractory Hodgkin's disease (HD) and non-Hodgkin's lymphoma (NHL). METHODS: Forty-six patients (median age 43 years, range 18-63) with relapsed (n = 15) or refractory (n = 31) malignant lymphoma were enrolled (HD, n = 13; low-grade/transformed NHL, n = 4; high-grade NHL, n = 29). A total of 39 patients (85%) showed multiply relapsed diseases with a duration of prior remission of < 12 months (n = 8) or had lymphoma being resistant to prior chemotherapy (n = 31). The MIFAP therapy consisted of fludarabine (15 mg/m2, q. 12 h, day 1-4), cytarabine (50 mg/m2 by continuous infusion (CI) over 22 h, day 1-4), cisplatin (25 or 30 mg/m2 by CI over 24 h, day 1-4), and mitoxantrone (4 mg/m2, day 2-5). RESULTS: Thirteen patients (28%) achieved complete remission (CR) and 15 patients (33%) partial remission (PR), for an overall response (OR) rate of 61%. Twenty-two patients responding to MIFAP (10 CR, 12 PR) have been consolidated by high-dose therapy (HDT) with hematopoietic stem cell transplantation (SCT). After a median follow-up of 12 months, 16 patients are in continuous CR (CCR) (n = 14) or CCRu (unconfirmed) (n = 2). The median duration of event-free survival (EFS) and overall survival (OS) were 6.5 and 19.3 months, respectively. Probabilities of EFS and OS after 3 years were 19% and 40%. Responders consolidated by subsequent HDT showed rates for 3-year EFS and OS of 40% and 66%, respectively. Unfavorable prognostic factors for EFS by univariate analysis were refractory lymphoma and the presence of B-symptoms. Significant prognostic factors for OS were NHL, refractory lymphoma, B-symptoms, and bone marrow involvement. The major toxicities were leukocytopenia and thrombocytopenia of the World Health Organization (WHO) grade IV in nearly all courses (median duration 10 and 11 days). In contrast, non-hematological side effects were moderate, predominantly of WHO grades I and II. Treatment-related mortality with MIFAP was 4% (two patients with septicemia by Aspergillus fumigatus). CONCLUSIONS: MIFAP is an effective salvage protocol for patients with poor-risk recurrent or refractory HD and NHL. The observed toxicity seems to be acceptable considering the unfavorable prognosis and intensive pretreatment. The results in patients responding to MIFAP and afterwards undergoing HDT with autologous stem cell support are even comparable to those published in patients with prognostically more favorable diseases.

Adolescent↗

Mito-flag as salvage therapy for relapsed and refractory acute myeloid leukemia.

BACKGROUND: This study was performed to examine the feasibility and toxicity of the combination of mitoxantrone, fludarabine, cytarabine as bolus (B) or continuous infusion (CI) and granulocyte- colony stimulating factor (G-CSF) in patients with recurrent and refractory acute myeloid leukemia (AML). PATIENTS AND METHODS: 29 patients with relapsed (n =17) or refractory (n =12) AML were treated with the Mito-FLAG protocol consisting of mitoxantrone (7 mg/m(2), days 1/3/5), fludarabine (15mg/m(2), every 12 h, days 1-5), cytarabine (Ara-C) as bolus infusion (1000 mg/m(2) over 1 h, every 12 h, days 1-5) (n =15) or as continuous infusion (100-150 mg/m(2) over 24 h, days 1-5) (n =14), and G-CSF (5 mgr;g/ kg/day, day 0 until a neutrophile count of 0.5 x10(9)/l). RESULTS: 17 patients (59%) and 1 patient (3%) achieved complete remission (CR) and partial remission (PR), respectively; thus the overall response rate was 62%. Following Mito-FLAG, 5 patients with CR underwent high-dose therapy (HDT) with allogeneic (n = 2) or autologous (n = 3) stem cell transplantation (SCT). With a median follow-up of 28 (range 6-54) months, 4 transplanted patients are alive in CR (n = 2) or in relapse (n = 2). The median duration of event-free survival (EFS) and overall survival (OS) was 3.2 and 6.8 months, and probabilities of EFS and OS after 1 year were 14 and 34%, respectively. The 1-year rates for EFS and OS in this group were 18 and 53%, respectively. Median duration of WHO grade 4 granulocytopenia and thrombocytopenia was 20 and 23 days, respectively. Nonhematological side effects were moderate, predominantly reaching WHO grades 1-2. Neutropenic fever was seen in 85% of courses, with a median duration of 4 (1-38) days. Four patients (14%) suffered an early death because of aplasia (n = 2), pneumonia (n =1) or progressive AML (1 nonresponding patient). CONCLUSIONS: Our data suggest that the Mito-FLAG protocol is feasible and can be safely performed with both schedules of Ara-C. In this study the regimens have shown high efficacy and acceptable toxicity in patients with relapsed or refractory AML. We currently examine the importance of bolus versus continuous infusion of Ara-C as part of the Mito-FLAG regimen in a prospective randomized multicenter trial.

Adolescent↗

Gamma S-crystallin of bovine and human eye lens: solution structure, stability and folding of the intact two-domain protein and its separate domains.

Human and bovine gammaS-crystallin (HgammaS and BgammaS) and their isolated N- and C-terminal domains were cloned and expressed as recombinant proteins in E. coli. HgammaS and BgammaS are found to be authentic according to their spectral and hydrodynamic properties. Both full-length proteins and isolated domains are monomeric and exhibit high thermal and pH stabilities. The thermodynamic characterization made use of chemically and thermally-induced equilibrium unfolding transitions at varying pH. In spite of its exemplary two-domain structure, gammaS-crystallin does not show bimodal unfolding characteristics. In the case of BgammaS, at pH 7.0, the C-terminal domain is less stable than the N-terminal one, whereas for HgammaS the opposite holds true. Differential scanning calorimetry confirms the results of chemically-induced equilibrium unfolding transitions. Over the whole pH range between 2.0 and 11.5, HgammaS-crystallin and its isolated domains (HgammaS-N and HgammaS-C) follow the two-state model. The two-state unfolding of the intact two-domain protein points to the close similarity of the stabilities of the constituent domains. Obviously, interactions between the domains do not contribute significantly to the overall stability of gammaS-crystallin. In contrast, the structurally closely related gammaB-crystallin owes much of its extreme stability to domain interactions.

Animals↗

Shift of aberrant antigen expression at relapse or at treatment failure in acute leukemia.

The flow cytometric detection of aberrant antigen expression is one method proposed for the quantification of minimal residual disease (MRD) in acute leukemias. The present study was designed to investigate the stability of the aberrant antigen expression at relapse or at treatment failure of initial chemotherapy. For this purpose, multiparameter immunophenotyping with a panel of 15 monoclonal antibodies was used at diagnosis as well as at relapse (43 patients with overall 65 aberrations) and at treatment failure (35 patients with overall 66 aberrations). There was a significant decrease in the percentage of the initially described aberrant antigen expression on leukemia blasts at relapse (P = 0.001; n = 65) as well as at treatment failure (P = 0.0001; n = 66) considering all aberrations in the whole leukemia population. Concerning only patients with acute myelogenous leukemia (AML), significant decreases in the aberrant expression could be detected at relapse (P = 0.031; n = 42) and at treatment failure (P = 0.0001; n = 52). The changes in patients with acute lymphoblastic leukemia (ALL) were significant only at relapse (P = 0.006; n = 23). Initially, the most informative aberration was not detectable in four patients at relapse and in seven patients at treatment failure. A decrease of under 50% of the initial value was observed in another 8 patients at relapse and in 10 patients at treatment failure. In further studies assessing the detection of aberrant antigen expression for MRD, quantification of the relapses should be explicitly analyzed regarding the persistence of the initially described aberrant antigen expression.

Adult↗

B cell antigen receptor-induced activation of Akt promotes B cell survival and is dependent on Syk kinase.

Signaling through the B cell Ag receptor (BCR) is a key determinant in the regulation of B cell physiology. Depending on additional factors, such as microenvironment and developmental stage, ligation of the BCR can trigger B lymphocyte activation, proliferation, or apoptosis. The regulatory mechanisms determining B cell apoptosis and survival are not known. Using the chicken B lymphoma cell line DT40 as a model system, we investigated the role of the serine/threonine kinase Akt in B cell activation. While parental DT40 cells undergo apoptosis in response to BCR cross-linking, cells overexpressing Akt show a greatly diminished apoptotic response. By contrast, limiting the activation of Akt, either by inhibiting phosphatidylinositol 3-kinase or by ectopic expression of the phospholipid phosphatase MMAC1, results in a significant increase in the percentage of apoptotic cells after BCR cross-linking. Using various DT40 knockout cell lines, we further demonstrate that the tyrosine kinase Syk is required for Akt activation and that Lyn tyrosine kinase inhibits Akt activation. Taken together, the data demonstrate that Akt plays an important role in B cell survival and that Akt is activated in a Syk-dependent pathway.

Animals↗

The MAP-kinase ERK2 is a specific substrate of the protein tyrosine phosphatase HePTP.

HePTP is a tyrosine specific protein phosphatase that is strongly expressed in activated T-cells. It was recently demonstrated that in transfected T-cells HePTP impairs TCR-mediated activation of the MAP-kinase family members ERK2 and p38 and it was suggested that both ERK and p38 MAP-kinases are substrates of HePTP. The HePTP gene has been mapped to human chromosome 1q32.1. Abnormalities in this region are frequently found in various hematopoietic malignancies. HePTP is highly expressed in acute myeloid leukemia and its expression in fibroblasts resulted in transformation. To address a possible involvement of HePTP in hematopoietic malignancies we sought to identify HePTP substrate(s) in leukemic cells. Using substrate trapping mutants we have identified the MAP-kinase ERK2 as a specific target of HePTP in the myelogenous leukemia cell line K562. Tyrosine phosphorylated ERK2, but not ERK1, p38, or JNK1, efficiently bound to catalytically inactive HePTP mutants in which the active site cysteine (HePTP-C/S) or the conserved aspartic acid residue (HePTP-D/A) had been exchanged for serine and alanine, respectively. Moreover, the interaction of ERK2 with HePTP trapping mutants was dependent on ERK2 tyrosine phosphorylation, indicating that HePTP is specifically targeted to activated ERK2. Using a deletion mutant of HePTP (HePTP-dLD), in which 14 amino acid residues within the N-terminus are missing, we show that regions outside the catalytic domain are also required for the interaction. Furthermore, overexpression of HePTP in K562 cells and fibroblasts interfered with PMA or growth factor induced MAP-kinase activation and HePTP efficiently dephosphorylated active ERK2 on the tyrosine residue in the activation loop in vitro. Together, these data identify ERK2 as a specific and direct target of HePTP and are consistent with a model in which HePTP negatively regulates ERK2 activity as part of a feedback mechanism. Oncogene (2000) 19, 858 - 869.

Catalytic Domain↗

The MMAC1 tumor suppressor phosphatase inhibits phospholipase C and integrin-linked kinase activity.

Loss of the tumor suppressor MMAC1 has been shown to be involved in breast, prostate and brain cancer. Consistent with its identification as a tumor suppressor, expression of MMAC1 has been demonstrated to reduce cell proliferation, tumorigenicity, and motility as well as affect cell-cell and cell-matrix interactions of malignant human glioma cells. Subsequently, MMAC1 was shown to have lipid phosphatase activity towards PIP3 and protein phosphatase activity against focal adhesion kinase (FAK). The lipid phosphatase activity of MMAC1 results in decreased activation of the PIP3-dependent, anti-apoptotic kinase, AKT. It is thought that this inhibition of AKT culminates with reduced glioma cell proliferation. In contrast, MMAC1's effects on cell motility, cell - cell and cell - matrix interactions are thought to be due to its protein phosphatase activity towards FAK. However, recent studies suggest that the lipid phosphatase activity of MMAC1 correlates with its ability to be a tumor suppressor. The high rate of mutation of MMAC1 in late stage metastatic tumors suggests that effects of MMAC1 on motility, cell - cell and cell - matrix interactions are due to its tumor suppressor activity. Therefore the lipid phosphatase activity of MMAC1 may affect PIP3 dependent signaling pathways and result in reduced motility and altered cell - cell and cell - matrix interactions. We demonstrate here that expression of MMAC1 in human glioma cells reduced intracellular levels of inositol trisphosphate and inhibited extracellular Ca2+ influx, suggesting that MMAC1 affects the phospholipase C signaling pathway. In addition, we show that MMAC1 expression inhibits integrin-linked kinase activity. Furthermore, we show that these effects require the catalytic activity of MMAC1. Our data thus provide a link of MMAC1 to PIP3 dependent signaling pathways that regulate cell - matrix and cell - cell interactions as well as motility. Lastly, we demonstrate that AKT3, an isoform of AKT highly expressed in the brain, is also a target for MMAC1 repression. These data suggest an important role for AKT3 in glioblastoma multiforme. We therefore propose that repression of multiple PIP3 dependent signaling pathways may be required for MMAC1 to act as a tumor suppressor.

Animals↗

The juxtamembrane region of MuSK has a critical role in agrin-mediated signaling.

MuSK is a receptor tyrosine kinase expressed selectively in skeletal muscle and localized to neuromuscular synapses. Agrin activates MuSK and stimulates phosphorylation and clustering of acetylcholine receptors (AChRs) at synaptic sites. We expressed wild-type or mutant MuSK in MuSK(-/-) myotubes and identified tyrosine residues in the MuSK cytoplasmic domain that are necessary for agrin-stimulated phosphorylation and clustering of AChRs. The activation loop tyrosines and the single juxtamembrane tyrosine were found to be essential for agrin-stimulated phosphorylation and clustering of AChRs. Further, we show that the juxtamembrane tyrosine, contained within an NPXY motif, is phosphorylated in vivo by agrin stimulation. We constructed chimeras containing extracellular and transmembrane domains from MuSK and cytoplasmic sequences from TrkA and found that inclusion of 13 amino acids from the MuSK juxtamembrane region, including the NPXY motif, is sufficient to convert a phosphorylated but inactive MuSK-TrkA chimera into a phosphorylated active chimera. These data suggest that phosphorylation of the MuSK NPXY site leads to recruitment of a phosphotyrosine-binding domain-containing protein that functions to stimulate phosphorylation and clustering of AChRs.

Agrin↗

A tissue specific IL-1 receptor antagonist homolog from the IL-1 cluster lacks IL-1, IL-1ra, IL-18 and IL-18 antagonist activities.

Interleukin (IL)-1-like protein 1 (IL-1L1) is a 155-amino acid protein that shares 27% identity with IL-1beta and 47% with IL-1 receptor antagonist (IL-1ra). A 2.7-kb IL-1L1 mRNA was cloned from human placenta and is detectable in the trophoblastic cell line JEG-3, in macrophages and in endotoxin-stimulated monocytes. Expression of IL-1L1 is much less abundant and less widespread than IL-1ra. We have determined the human and mouse IL-1L1 cDNA sequences and the complete sequence of the human gene, IL1L1. IL1L1 consists of four coding exons, has two alternative non-coding first exons, lies between IL1B and IL1RN, is orientated in the same direction as IL1RN and is separated from it by approximately 53 kb. The predicted IL-1L1 protein lacks both signal sequence and glycosylation signals. A 17-kDa protein was recovered by immunoprecipitation with IL-1L1-specific antibodies from JEG-3. IL-1L1 did not stimulate IL-6 production from primary human fibroblasts or human umbilical vein endothelial cells nor did it block the IL-1alpha or IL-1beta-dependent activation of IL-6 expression. We conclude, contrary to a recent suggestion made by others, that IL-1L1 is not a functional IL-1ra. IL-1L1 also had no detectable agonistic or antagonistic effect on IFN-gamma production in response to IL-18 in KG-1 cells.

Amino Acid Sequence↗

9:00-9:15. Antiangiogenic Treatment with Endostatin Results in Uncoupling of Blood Flow and Glucose Metabolism in Human Tumors.

Endostatin is a novel antiangiogenic agent currently in phase I trials. In the context of this trial, we are evaluating the use of non-invasive imaging with PET to determine the relationship between tumor blood flow and glucose metabolism in imaged tumors from treated patients.Ten patients have been treated with escalating daily iv Endostatin doses of 30 to 180 mg/m(2). PET images were obtained before the start of therapy and again after 28 days of treatment. Each patient was scanned with Oxygen-15 labeled water for estimation of tumor blood flow and Flourine-18 labeled FDG to estimate tumor metabolic activity. In most cases, two distinct tumor-bearing sites were analyzed in each patient. Thus, a total of 19 tumors were imaged. Regional blood flow and standard uptake values (SUV) were computed at baseline and 28 days post treatment and the percentage change in blood flow and SUV plotted as a function of Endostatin dose.Both blood flow and glucose metabolism in the imaged tumors were observed to increase in patients treated with </=60 mg/m(2)/d, but became uncoupled in the tumors imaged from patients treated at the 180 mg/m(2)/d dose level. Thus, in patients receiving Endostatin at a dose of 180 mg/m(2)/d, blood flow decreased but glucose metabolism increased. This relationship is displayed in Figure 1 below.

Journal Article↗

9:30-9:45. First Pass FDG Measured Blood Flow in Tumors: A Comparison with O-15 Labeled Water Measured Blood Flow.

The purpose of this study was to determine if the first-pass of FDG can be used to measure regional blood flow in tumors in the absence of perfusion imaging with a known blood flow tracer.PET scans were obtained in patients being evaluated for tumor perfusion and metabolism in a Phase I dose escalating protocol for Endostatin, a novel antiangiogenic agent. A two minutes perfusion scan was done with a bolus injection of 60 mCi of O-15 labeled water followed by a 10 mCi dose of FDG and four sequential scans consisting of a first pass two minutes scan and three 15 minutes scans. Regions of interest were drawn on two tumor sites for each scan. Blood flow was computed using a one-compartment model previously published by the authors. Linear regression analysis was carried out between the first pass FDG measured blood flow and O-15 measured blood flow (Figure 1).Blood flow estimated from the first pass of FDG was linearly correlated with O-15 measured blood flow with an intercept of 0.01, slope of 0.86, and r squared regression coefficient of 0.74 (R = 0.86) for blood flow values of up to 0.6 ml/min/gm of tissue. These results suggests that in the absence of a perfusion tracer, the first pass of FDG provides an estimate of perfusion in a tumor within the limitations of incomplete extraction of FDG compared to O-15 water.

Journal Article↗