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J Liebmann

Publications and source records attributed to J Liebmann.

At least 37 records · Page 2Linked to original sources

Combination intraventricular therapy with thiotepa and cytarabine in meningeal carcinomatosis due to breast cancer: in vitro evidence for supra-additive cytotoxicity.

Metastatic spread of tumors to the meninges is a frequent complication of many malignancies and is difficult to treat. We describe the case of a patient who developed carcinomatous involvement of the meninges from a breast adenocarcinoma. Despite intrathecal treatment with conventional and experimental agents, the patient's cerebrospinal fluid (CSF) was not cleared of malignant cells until thiotepa and cytarabine were given in combination. This clinical observation led us to assess the in vitro activity of the combination of thiotepa and cytarabine in clonogenic cell survival assays. The human breast adenocarcinoma cell line MCF-7WT and its doxorubicin-resistant variant MCF-7ADR were exposed to thiotepa and cytarabine either singly or in combination. We have found that the combination of the two drugs resulted in more than additive cytotoxicity than would have been predicted from the cytotoxicity of either drug given alone. We discuss the implications of these findings on the clinical management of patients with carcinomatous spread to the meninges.

Adenocarcinoma↗

Detection of human immunodeficiency virus type 1-specific memory cytotoxic T lymphocytes in freshly donated and frozen-thawed peripheral blood mononuclear cells.

Loss of anti-human immunodeficiency virus type 1 (HIV-1) memory cytotoxic T-lymphocyte (CTLm) responses is associated with disease progression in HIV-1 infection. In this study, nonspecific stimulation of peripheral blood mononuclear cells (PBMC) from HIV-1-infected homosexual men with anti-CD3 monoclonal antibody (MAb) was compared with antigen-specific stimulation with inactivated, autologous B lymphoblastoid cells (B-LCL) infected with a vaccinia virus vector encoding HIV-1 IIIb Gag, Pol, and Env (VV-GPE) for activation of HIV-1-specific CTLm responses in a bulk lysis assay and by precursor frequency analysis. The results show that VV-GPE-infected B-LCL stimulated on average 10-fold greater anti-HIV-1 CTLm activity, as detected in the bulk lysis assay, and 55-fold-greater CTLm precursor frequencies specific for the three HIV-1 structural proteins than did stimulation with anti-CD3 MAb. This effect was noted with both freshly donated and frozen-thawed PBMC. The lysis was mediated by CD8+ T cells and was restricted by the major histocompatibility class I complex. These data indicate that antigen-specific stimulation with VV-GPE-infected B-LCL is a highly efficient method for detection of anti-HIV-1 CTLm responses that is applicable to noncurrent prospective studies with frozen PBMC.

Acquired Immunodeficiency Syndrome↗

High levels of anti-human immunodeficiency virus type 1 (HIV-1) memory cytotoxic T-lymphocyte activity and low viral load are associated with lack of disease in HIV-1-infected long-term nonprogressors.

Lack of disease in long-term nonprogressors with human immunodeficiency virus type 1 (HIV-1) infection was strongly associated with very low copy numbers of HIV-1 DNA and RNA in peripheral blood mononuclear cells and plasma and the presence of high levels of anti-HIV-1 CD8+ memory cytotoxic T lymphocytes specific for Gag, Pol, and Env, compared with levels present in intermediate and advanced progressors. CD8+ memory cytotoxic T lymphocytes may have an important role in controlling HIV-1 replication and preventing disease in long-term nonprogressors.

Acquired Immunodeficiency Syndrome↗

In vivo radiation protection by nitric oxide modulation.

Drugs that affect blood flow have been shown to be whole body radiation protectors. Using NG-nitro-L-arginine, a specific inhibitor of nitric oxide synthase, and the NO-releasing agent (C2H5)2N[N(O)NO-]Na+ (DEA/NO), we have studied the ability of NO to modulate whole body radiation toxicity in C3H mice. NG-Nitro-L-arginine given to mice between 15 and 60 min prior to radiation afforded significant protection from whole body irradiation, e.g., the estimated whole body irradiation dose required to kill 50% of mice by 30 days after radiation (LD50/30) in mice treated with NG-nitro-L-arginine 60 min before irradiation was 1051 cGy compared with a whole body radiation LD50/30 of 822 cGy in control mice (P < 0.00001). Treatment of mice with DEA/NO prior to whole body irradiation also significantly reduced toxicity; the estimated whole body radiation LD50/30 was 1063 and 945 cGy in mice treated with DEA/NO 10 or 30 min before irradiation, respectively (P < 0.00001 for radiation LD50/30 of either DEA/NO-treated group compared with control). Measurement of [14C]etanidazole binding to bone marrow demonstrated that DEA/NO and NG-nitro-L-arginine exacerbated bone marrow hypoxia. Perturbations of NO levels have profound effects on in vivo radiosensitivity of normal tissues. We hypothesize that alterations in regional blood flow may underlie the changes in radiosensitivity that we have observed.

Amino Acid Oxidoreductases↗

Changes in radiation survival curve parameters in human tumor and rodent cells exposed to paclitaxel (Taxol).

PURPOSE: Late G2 and M are the most radiosensitive phases of the cell cycle. Cells exposed to paclitaxel develop a cell cycle arrest in G2/M. These studies were performed to assess the in vitro radiosensitization properties of paclitaxel in human tumor and rodent cell lines. METHODS AND MATERIALS: The effect of paclitaxel on the radiation sensitivity of human breast (MCF-7), lung (A549), ovary (OVG-1) adenocarcinoma and Chinese hamster lung fibroblast V79 cells was determined with clonogenic assays. DNA flow cytometry studies were performed to define the cell cycle characteristics of the cells during irradiation. Survival curve parameters for all cell lines were determined with the use of a computer program which represents cell survival after radiation by a linear-quadratic model. RESULTS: All cell lines developed a G2/M block after exposure to paclitaxel for 24 h. However, the degree of radiosensitization produced by paclitaxel varied among the cell lines. The maximal sensitizer enhancement ratio (SER) of paclitaxel was 1.8 in MCF-7 cells, 1.6 in OVG-1 cells, and 1.7 in V79 cells. However, no concentration of paclitaxel was able to enhance the radiation sensitivity of A549 cells. Paclitaxel increased the linear (alpha) component of the radiation survival curves in all cell lines. The quadratic (beta) component was unaffected by paclitaxel in the rodent cells. High concentrations of paclitaxel (> or = 1000 nM) increased beta slightly in the human cell lines but there was considerable variation in the effect of paclitaxel on beta. The cells which were sensitized to radiation by paclitaxel had a relatively small baseline alpha component, while A549 cells had a large alpha component. CONCLUSION: We conclude that paclitaxel is a modest radiosensitizer in some, but not all, human tumor cells. Paclitaxel appears to cause radiosensitization mainly by increasing the alpha component of radiation survival curves. Cells that normally have a relatively small alpha component should exhibit the most radiosensitization in response to paclitaxel while cells with a large alpha component should show little or no radiosensitization after paclitaxel treatment. Because the greatest effect of paclitaxel is on the linear component of radiation survival curves, these results indicate that paclitaxel may be an effective radiation sensitizer in many human tumors treated at clinically relevant radiation doses of 2 Gy or less.

Animals↗

In vitro studies of Taxol as a radiation sensitizer in human tumor cells.

BACKGROUND: Cells exposed to paclitaxel (Taxol) develop a cell cycle arrest in G2/M. It has long been recognized that late G2 and M are the most radiosensitive phases of the cell cycle. PURPOSE: These studies were performed to assess the in vitro radiosensitization properties of paclitaxel in human tumor cell lines. METHODS: The effect of paclitaxel at concentrations ranging from 0 to 10,000 nM on the radiation sensitivity (from 0 to as much as 10 Gy in certain experiments) of human breast (MCF-7), lung (A549), ovary (OVG-1), and pancreas (PC-Sh) adenocarcinoma cells was determined using clonogenic assays. DNA flow cytometry studies were performed to define the cell cycle characteristics of populations of cells that had been treated for 6-72 hours with 0, 100, 1000, or 10,000 nM paclitaxel. RESULTS: All cell lines developed a G2/M block after exposure to 100-10,000 nM paclitaxel for 24 hours. However, the degree of radiosensitization produced by paclitaxel varied among the cell lines. The sensitizer enhancement ratio (SER) of paclitaxel at 10% survival was 1.8 in MCF-7 cells and 1.6 in OVG-1 cells. However, paclitaxel at any concentration was unable to enhance the radiation sensitivity of A549 cells. PC-Sh cells demonstrated a complex and inconsistent radiosensitization response to paclitaxel. At 10% survival, an SER of 1.5 was observed in PC-Sh cells. However, at 1% survival, no radiosensitization was observed in PC-Sh cells. Maneuvers that prevented paclitaxel from producing a G2/M block, including coincident treatment with cycloheximide or treatment of cells in plateau phase of growth, completely abrogated the radiosensitization afforded by paclitaxel in MCF-7 cells. CONCLUSIONS: Paclitaxel is a modest radiosensitizer in some, but not all, human tumor cells. The degree of radiosensitization that we have observed with paclitaxel is similar to what has been found with other chemotherapeutic agents. The absence of radiosensitization by paclitaxel in MCF-7 cells grown to plateau phase or treated with cycloheximide implies that the development of a G2/M block is a necessary condition for paclitaxel radiosensitization. However, the inability of paclitaxel to radiosensitize A549 cells despite the presence of a G2/M block in those cells demonstrates that a G2/M block is not a sufficient condition for paclitaxel radiosensitization. IMPLICATIONS: Paclitaxel can radiosensitize to a modest degree some, but not all, human cell lines by a mechanism that requires the production of a G2/M cell cycle block. Additional studies are needed to define more clearly the mechanism by which paclitaxel radiosensitizes cells.

Cell Cycle↗

The influence of Cremophor EL on the cell cycle effects of paclitaxel (Taxol) in human tumor cell lines.

We have performed DNA flow analysis, mitotic index studies, time-lapse photography, and paclitaxel uptake studies of human tumor cell lines exposed to paclitaxel. DNA flow analysis demonstrated that cells began accumulating in G2/M within 6 hrs of exposure to paclitaxel; by 12 hrs over 50% of cells accumulated in G2/M at all concentrations tested. After 24 hrs of exposure to 10 nM paclitaxel, cells underwent non-uniform mitotic division resulting in multinucleated cells. Of cells treated with 30 nM to 1000 nM paclitaxel, 75% to 85% remained blocked in G2/M for up to 72 hrs. Although a large proportion of cells treated with higher concentrations of paclitaxel (10,000 nM) was blocked in G2/M, a significant proportion (10% to 40%) of these cells was also in G1. Cells exposed to lower concentrations of paclitaxel (10 nM to 1000 nM) in medium containing 0.135% (v/v) Cremophor EL also had a relatively large proportion in G1. Mitotic index studies demonstrated that the paclitaxel-induced G2/M block was initially a mitotic block and that cells remained in mitosis for up to 24 hrs. With additional time of exposure to paclitaxel, mitotic index and time-lapse studies indicated that cells attempted to complete mitosis; however, cytokinesis was inhibited and cells became multinucleated. Time-lapse photography revealed that paclitaxel markedly prolonged the time in mitosis from 0.5 hr to 15 hr. High levels of Cremophor EL (0.135% v/v) markedly reduced the number of cells in mitosis but did not alter the mitotic delay induced by paclitaxel. 3H-paclitaxel uptake studies revealed that high concentrations of Cremophor EL did reduce the rate of uptake of paclitaxel into cells but had little effect on total paclitaxel accumulation. These results confirm that paclitaxel has striking effects on the cell cycle and show that high concentrations of Cremophor EL are capable of inducing a cell cycle block distinct from the mitotic block seen with paclitaxel. These results also demonstrate that cells exposed to paclitaxel for longer than 24 hours attempt to complete mitosis but the process of cytokinesis is inhibited. Together with cytotoxicity data, these results indicate that entry into and exit out of mitosis are prerequisites for paclitaxel cytotoxicity.

Adenocarcinoma↗

Pharmacokinetic properties of nitroxide-labeled albumin in mice.

We have conjugated bovine serum albumin (BSA) with a pyrrolidinyl nitroxide and report on the in vivo pharmacokinetic properties of this conjugate in mice. In vivo EPR measurements of nitroxide were obtained after intravenous injection of 30 mg of labeled BSA by analysis of the nitroxide signal from the tails of mice. Following in vivo nitroxide measurements, the animals were sacrificed by exsanguination and organs were removed for determination of nitroxide levels. The level of nitroxide as determined by in vivo measurements declined exponentially with time and had a half-life (t1/2) of 7 hours. Blood nitroxide levels also declined exponentially with time with an initial t1/2 of 70 minutes and a terminal t1/2 of 10 hours. Nitroxide concentration varied among different organs; no nitroxide was detected within brain whereas lung had high concentrations of nitroxide. Liver and kidney both had relatively low levels of oxidized nitroxide, though total nitroxide (reduced plus oxidized) accumulated in the kidneys with time. Nitroxide-labeled BSA was well tolerated by the mice, is relatively stable, and is mainly confined to the intravascular space. Nitroxide-labeled albumin may be useful as a contrast agent for MRI or EPR imaging.

Animals↗

Ultrasound biomicroscopy in pigment dispersion syndrome.

PURPOSE: To examine the positional relations of the iris, lens, ciliary processes, and zonules in eyes with the pigment dispersion syndrome (PDS). METHODS: High-resolution, anterior segment ultrasound biomicroscopy was performed on 16 untreated eyes of 11 patients with PDS. Scanning was repeated on four eyes after miotic treatment and four eyes after laser iridotomy. RESULTS: Mid-peripheral iris concavity could be demonstrated in 56%, irido-zonular contact in 25%, and irido-ciliary process contact in 75% of untreated eyes with PDS. Repeat scanning after laser iridotomy or pilocarpine therapy showed resolution of the iris concavity and irido-zonular contact in all eyes receiving these therapies. Irido-ciliary process contact persisted in some eyes. CONCLUSION: The authors' findings demonstrate the structural relations among the iris, lens, zonules, and ciliary processes in vivo that characterize the PDS. Miotic therapy and laser iridotomy eliminate the iris concavity in all patients with this finding, supporting the hypothesis of reverse pupillary block. Irido-ciliary process contact may be another mechanism causing release of pigment. This issue merits further clinical and histologic study.

Adolescent↗

Protection from lethal irradiation by the combination of stem cell factor and tempol.

Cytokines that stimulate growth and differentiation of hematopoietic precursor cells have been used as protectors in vivo against ionizing radiation. Recently, we have shown that the nitroxide tempol is also an effective radiation protector in vivo. The purpose of the present study was to determine if the combination of tempol with stem cell factor (SCF, c-kit ligand) would provide enhanced radiation protection in C57 mice compared with the protection afforded by either agent alone. Mice were exposed to whole-body irradiation and assessed for survival at 30 days after irradiation. No control mice survived doses of more than 9 Gy. Treatment of mice before and after radiation with SCF alone (100 micrograms/kg at -20 h, -4 h and +4 h) protected mice from radiation at doses of as high as 10 Gy (76% survival). Tempol (350 mg/kg) given 10 min prior to radiation was a radioprotector at 9 Gy (55% survival). The combination of SCF and tempol increased the survival of mice exposed to radiation doses up to 11 Gy (32% survival for the combination vs 4% for SCF alone and 0% for tempol alone; P < 0.001 for the combination vs either agent alone). Lower doses of SCF alone (1 microgram/kg) or tempol alone (275 mg/kg) did not protect mice from radiation. However, the combination of these reduced doses of SCF and tempol protected mice from lethal irradiation at 10 Gy. Stem cell factor and tempol given either singly or together were well tolerated by the animals. These data show that SCF and tempol are radiation protectors and that their radioprotective effects are more than additive when the agents are given together.

Animals↗

[Methanol formation in vitro and in vivo (methanol formation after pectin administration)].

1. In the course of 34 days the detectable methanol concentration in freshly squeezed grapefruit and organ juices as well as in grapefruit and orange juice mixes increased to a maximum level of approximately 600 mg/kg. This increase could already be detected at the beginning of the examination i.e. as early as 1 or 2 days after squeezing the fruit juices. At the beginning of the experiments the methanol concentrations were between 10 and 270 mg/kg. 2. After the consumption of pectin (40 g on one day and 2 x 40 g on two days) blood or serum-methanol values respectively were observed which were clearly above the level of chronic alcohol abuse (10 mg/kg). After the ingestion of ethanol (0.5 g/kg bodyweight) the serum-methanol concentration increased even further.

Adult↗

Cycloheximide inhibits the cytotoxicity of paclitaxel (Taxol).

Treatment of human breast (MCF-7) and lung (A549) adenocarcinoma cell lines with 10 micrograms/ml cycloheximide provided substantial protection from paclitaxel-induced cytotoxicity. Addition of cycloheximide to cells at 0, 6, 12 or 18 h into a 24 h exposure to paclitaxel resulted in cytotoxicity similar to that found in cells treated with paclitaxel alone for only 0, 6, 12 or 18 h, respectively. DNA flow cytometry showed that paclitaxel blocked cells in G2/M. Mitotic index studies demonstrated that paclitaxel arrested cells in mitosis and that prolonged exposure to paclitaxel resulted in the development of multiple micronuclei. Concurrent incubation of cells in cycloheximide prevented the development of a G2/M block, mitotic arrest and micronuclei formation. The addition of cycloheximide to cells at 6 or 12 h into a 24 h exposure to paclitaxel reduced the degree of G2/M block to that produced by incubation of cells in paclitaxel alone for only 6 or 12 h. Mitotic index studies confirmed that cells treated with cycloheximide during paclitaxel exposure had a marked reduction in the percentage of cells in mitosis. However, the percentage of paclitaxel-treated cells which had multiple micronuclei was increased in cells treated with cycloheximide. These results indicate that entry into mitosis is a prerequisite for paclitaxel-induced cytotoxicity and that cycloheximide reduces cytotoxicity due to paclitaxel by preventing cells from entering mitosis. However, once cells have entered mitosis in the presence of paclitaxel, protein synthesis is not required for the development of multiple micronuclei and cytotoxicity.

Adenocarcinoma↗

Measurement of ultrasound biomicroscopy images: intraobserver and interobserver reliability.

PURPOSE: To evaluate intraobserver and interobserver reproducibility of measurement of images obtained during ultrasound biomicroscopy. METHODS: Four anterior segment images of four normal patients were obtained by a single examiner. The measurements of three independent observers were compared to assess interobserver reproducibility in quantifying the images. Thirteen different anterior segment parameters were measured by each observer on each image. Intraobserver and interobserver reproducibility of measurement were assessed by calculating the coefficient of variation for each individual observer and by using the F test to detect a difference among observers. RESULTS: Intraobserver reproducibility was high. Interobserver reproducibility for the measured parameters varied considerably and was affected by subjective interpretation of visualized anatomic landmarks. CONCLUSIONS: The optimal parameters for quantitative ultrasound biomicroscopy require refinement. Measurements of alterable parameters are best measured presently by a single observer. Ultrasound biomicroscopy has the potential to elucidate anatomic relationships underlying much anterior segment disease, but caution in interpreting quantitative differences is warranted.

Anterior Eye Segment↗