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Biomedical subjects

E Riedel

Publications and source records attributed to E Riedel.

At least 37 records · Page 2Linked to original sources

Sequential dose-dense doxorubicin, paclitaxel, and cyclophosphamide for resectable high-risk breast cancer: feasibility and efficacy.

PURPOSE: Dose-dense chemotherapy is predicted to be a superior treatment plan. Therefore, we studied dose-dense doxorubicin, paclitaxel, and cyclophosphamide (A-->T-->C) as adjuvant therapy. METHODS: Patients with resected breast cancer involving four or more ipsilateral axillary lymph nodes were treated with nine cycles of chemotherapy, using 14-day intertreatment intervals. Doses were as follows: doxorubicin 90 mg/m2 x 3, then paclitaxel 250 mg/m2/24 hours x 3, and then cyclophosphamide 3.0 g/m2 x 3; all doses were given with subcutaneous injections of 5 microg/kg granulocyte colony-stimulating factor on days 3 through 10. Amenorrheic patients with hormone receptor-positive tumors received tamoxifen 20 mg/day for 5 years. Patients treated with breast conservation, those with 10 or more positive nodes, and those with tumors larger than 5 cm received radiotherapy. RESULTS: Between March 1993 and June 1994, we enrolled 42 patients. The median age was 46 years (range, 29 to 63 years), the median number of positive lymph nodes was eight (range, four to 25), and the median tumor size was 3.0 cm (range, 0 to 11.0 cm). The median intertreatment interval was 14 days (range, 13 to 36 days), and the median delivered dose-intensity exceeded 92% of the planned dose-intensity for all three drugs. Hospital admission was required for 29 patients (69%), and 28 patients (67%) required blood product transfusion. No treatment-related deaths or cardiac toxicities occurred. Doxorubicin was dose-reduced in four patients (10%) and paclitaxel was reduced in eight (20%). At a median follow-up from surgery of 48 months (range, 3 to 57 months), nine patients (19%) had relapsed, the actuarial disease-free survival rate was 78% (95% confidence interval, 66% to 92%), and four patients (10%) had died of metastatic disease. CONCLUSION: Dose-dense sequential adjuvant chemotherapy with doxorubicin, paclitaxel, and cyclophosphamide (A-->T-->C) is feasible and promising. Several ongoing phase III trials are evaluating this approach.

Adult↗

Hypothermia enhances the biological activity of lipopolysaccharide by altering its fluidity state.

Lipopolysaccharides (LPS, endotoxin) of gram-negative bacteria are among the main causes of sepsis and septic shock. In the present study, the influence of temperature on the biological activity of LPS was investigated. Lowering the temperature from 37 degrees C to 34.5 degrees C or to 30 degrees C significantly enhances in vitro tumor necrosis factor-alpha (TNF-alpha), interleukin (IL)-1beta and IL-6 release induced by different LPS chemotypes and heat-inactivated Escherichia coli. This cytokine-increasing effect of lowering the temperature is highly mediated by serum proteins, particularly by LPS-binding protein (LBP) and low-density lipoproteins (LDL). In contrast, cytokine production induced by the superantigen toxic shock syndrome toxin-1 (TSST-1) from Gram-positive Staphyloccoccus aureus decreases by around 70% at 30 degrees C as compared with 37 degrees C, corresponding to the expected effect of change in temperature and regardless of the presence of serum proteins. In order to explain the unexpected biological hypothermia effect with regard to LPS, the fluidity state of the lipid A portion of LPS as one important physico-chemical property possibly involved was investigated. The fluidity, determined by fluorescence polarization measurements, was found to decrease with decreasing temperature. These data suggest that a low fluid LPS chemotype is biologically more active than a more fluid one (and vice versa). Statistical analysis of the results shows a strong correlation between cytokine secretion and fluidity state of a given LPS chemotype (0.71 < r < 0.89, all P<0.01). As a clinical consequence, these data may be one possible explanation for the higher mortality rate of hypothermic Gram-negative sepsis.

Bacterial Toxins↗

Does long-term treatment of renal anaemia with recombinant erythropoietin influence oxidative stress in haemodialysed patients?

BACKGROUND: Patients with end-stage renal failure undergoing haemodialysis (HD) are exposed to oxidative stress. Increased levels of malondialdehyde (MDA) were demonstrated in plasma of uraemic patients, indicating accelerated lipid peroxidation (LPO) as a consequence of multiple pathogenetic factors. The aim of our investigation was to examine the role of renal anaemia in oxidative stress in HD patients. METHODS: MDA and 4-hydroxynonenal (HNE) were measured in three groups of patients undergoing HD: group I comprised eight patients with a blood haemoglobin (Hb) < 10 g/dl (mean Hb = 8.1+/-1.3 g/dl), and group II were eight patients with a Hb > 10 g/dl (mean Hb=12.4+/-1.9g/dl); none of these 16 patients had been treated with human recombinant erythropoietin (rHuEpo). Group III comprised 27 patients with a mean Hb of 10.5+/-1.6 g/dl after long-term rHuEpo treatment. RESULTS: Mean plasma concentrations of both MDA and HNE were significantly higher (P<0.0001) in all 43 HD patients than in 20 healthy controls (MDA 2.85+/-0.25 vs 0.37+/-0.03 microM, HNE 0.32+/-0.03 vs 0.10+/-0.01 microM). Comparing the three groups, it was shown that HD patients with a Hb <10 g/dl had significantly higher plasma levels of LPO products (MDA 3.81+/-0.86 microM, HNE 0.45+/-0.07 microM) than HD patients with a Hb >10g/dl (MDA 2.77+/-0.58 UM, HNE 0.25+/-0.05 microM), and than HD patients treated with rHuEpo (MDA 2.50+/-0.12 microM, HNE 0.29+/-0.03 microM). Furthermore, an inverse correlation between plasma concentration of LPO products and haemoglobin levels was seen (r=0.62, P<0.0001). CONCLUSION: Radical generation in HD patients might be caused in part by renal anemia itself. Treatment with rHuEpo may decrease radical generation effectively in HD patients due to the increase in the number of red blood cells and blood haemoglobin concentration.

Adult↗

Rapid and specific targeting of monoclonal antibody A33 to a colon cancer xenograft in nude mice.

Monoclonal antibody (mAb) A33 detects a glycoprotein homogeneously expressed by > 95% of human colon cancers and by normal colon cells. The A33 antigen is not secreted or shed and after mAb A33 binds to antigen on the cell membrane, a fraction of membrane-bound mAb A33 is internalized into endosomes. Phase I 131I-mAb A33 biodistribution studies have shown consistent, specific tumor-targeting, and phase I radioimmunotherapy trials with 131I- or 125I-mAb A33 have demonstrated antitumor effects. Here we describe a nude mouse model that was established using a human colon cancer cell line, SW1222, which grows as a relatively hypovascular, invasive heterotransplant when injected i.m. Peak uptake of 131I-labeled or 111In-chelated mAb A33 was observed at 48-96 h, with a mean of 34% (SE +/- 5.0) and 46.7% (SE +/- 1.7) injected dose per gram of tumor tissue, respectively. 111In-mAb A33 was retained in tumor tissue longer than halide radioimmunoconjugates. The specificity of antibody localization was assessed using a control antibody (tumor uptake and pharmacokinetics), a control tumor, corrections for vascular antibody blood-pooling in tumor tissue, and blocking of radiolabeled mAb A33 localization by pretreating mice with excess unlabeled mAb A33. These experiments demonstrate that mAb A33 localization in tumor was specific, and they emphasize the unexpected rapidity with which the antibody localizes. Our conclusions were confirmed by immunohistochemical techniques which allowed direct visualization of localization and distribution of the humanized version of mAb A33 in tumor tissue. Furthermore, antibody doses approximating tumor-saturating doses demonstrated that a homogeneous distribution of antibody in tumor is possible. This model will be valuable for studies focusing on general physiologic aspects of antibody-to-tumor cell localization and critical as a guide to the evaluation of various A33 antibody constructs and combinations with other therapies for the treatment of colon cancer.

Animals↗

Low density lipoproteins as drug carriers in the therapy of macrophage-associated diseases.

Low density lipoproteins (LDL) are internalised by the LDL receptor, which is expressed on the surface of eucaryotic cells. Metabolisation and chemical modification of LDLs lead to a shift in receptor affinity: modified LDLs are internalised through scavenger receptors, which are expressed on cells of the monocyte/ macrophage lineage. Coupling of substances with pharmacological activity, such as azidothymidine, to LDL results in a cell specific uptake of these drugs into macrophages by the scavenger receptor. Thus, drug-LDL derivatives might work as tools for macrophage specific drug targeting. In this context, it is essential to know the drug binding capacity, the optimal derivatization conditions, and the amount of drug molecules covalently bound to the LDL particle. In this study, we compared methods for optimal derivatisation and estimation of coupling efficiency, such as semi-quantitative lipoprotein gel electrophoresis, ultraviolet (UV) spectrophotometry, radiometric quantification, and specific protein hydrolysis.

Amino Acids↗

Selective endocytosis of fluorothymidine and azidothymidine coupled to LDL into HIV infected mononuclear cells.

Drug targeting via lipoproteins may be of benefit for use of cytotoxic drugs like fluorothymidine (FLT) or azidothymidine (AZT). Both drugs are potent inhibitors of the human immunodeficiency virus (HIV) reverse transcriptase and are used in the therapy of HIV infection. With regard to this project, the selective endocytosis in HIV infected human macrophages was studied after covalent coupling of AZT and LDL to low density lipoproteins (LDL). Cultured human macrophages and the lymphocytic Molt 4/8 cell line were infected with HIV-1 in vitro and subsequently treated with FLT-LDL or AZT-LDL. Viral replication was followed by determination of cell-released capsid antigen p24. Internalisation into HIV-1 infected human macrophages by the scavenger receptor pathway leads to a dose dependent inhibition of HIV replication. Otherwise, in HIV infected, but scavenger receptor missing lymphocytes (Molt 4/8 cells), neither endocytosis nor inhibition of HIV replication results. Thus, covalent coupling of drugs to LDL leads to a macrophage specific transport. This strategy could possibly avoid toxic side effects in the therapeutic use of antiretroviral drugs and thus may open a way for an earlier chemotherapy in HIV infection.

Cells, Cultured↗

Is a clinical application of hybrid liver support systems limited by an initial disorder in cellular amino acid and alpha-keto acid metabolism, rather than by later gradual loss of primary hepatocyte function?

The in-vitro amino acid (AA) and alpha-keto acid (KA) metabolism of bioreactors initially seeded with 2.5 x 10(9) pig hepatocytes was investigated with a perfusion technique. Considerable changes in the culture medium concentrations of AA and KA were measured during the first days in culture. This is indicative of dynamic cellular metabolism in the initial phase. While the concentration of pyruvate decreased starting on the first day, alpha-ketoglutarate, alpha-ketoisocaproate, alpha-ketoisovalerate, and alpha-keto-beta-methyl-n-valerate were synthesized. The long term use of hepatocyte cultures in bioreactors and thus a desirable clinical hybrid liver support therapy appears to be possible since the hepatocytes switched, after 15 days in culture, to steady-state conditions with a stable amino acid turnover featuring general AA uptake accompanied by KA release. The release of branched chain KA, in particular that of alpha-ketoisocaproate, reflects an effective transamination activity in the bioreactor system. Primary pig hepatocytes cultivated in hybrid liver support systems for therapy of acute liver failure or as devices for bridging to liver transplantation can sustain amino acid metabolism for at least 30 days in vitro. However, an initial disorder following the cell isolation that is demonstrated may limit immediate utilization of the systems prior to the reorganisation of the cells to tissue-like structures in bioreactors.

Amino Acids↗

alpha-Ketoglutarate application in hemodialysis patients improves amino acid metabolism.

In hemodialysis patients, free amino acids and alpha-ketoacids in plasma were determined by fluorescence HPLC to assess the effect of alpha-ketoglutarate administration in combination with the phosphate binder calcium carbonate on the amino acid metabolism. During 1 year of therapy in parallel to inorganic phosphate, urea in plasma decreased significantly, histidine, arginine and proline as well as branched chain alpha-ketoacids, in particular alpha-ketoisocaproate, a regulator of protein metabolism, increased. Thus, administration of alpha-ketoglutarate with calcium carbonate effectively improves amino acid metabolism in hemodialysis patients as it decreases hyperphosphatemia.

Adult↗

Calcium alpha-ketoglutarate administration to malnourished hemodialysis patients improves plasma arginine concentrations.

Calcium alpha-ketoglutarate administration to 24 malnourished hemodialysis patients for 1 year leads to a significant increase in plasma concentrations of L-arginine from 53.6 +/- 18.3 (compared to a healthy control group: 87.5 +/- 27.3) to 71.1 +/- 15.9 mumol/l (p < 0.05). Furthermore, concentrations in plasma of proline and histidine, precursors of glutamate biosynthesis, are increased; inorganic phosphate and urea are significantly decreased in hemodialysis patients after 1 year of calcium alpha-ketoglutarate administration.

Adult↗

A phase I study of anti-GD3 ganglioside monoclonal antibody R24 and recombinant human macrophage-colony stimulating factor in patients with metastatic melanoma.

BACKGROUND: Macrophages activated by macrophage-colony stimulating factor (M-CSF) are potent immune effector cells and can mediate both in vitro cytotoxicity and antitumor effects in vivo. A Phase I trial combining M-CSF with R24, a mouse monoclonal antibody against GD3 ganglioside that has been shown to localize to melanoma tumors, induce inflammation at tumor sites, and result in major tumor responses in some patients with melanoma was performed. METHODS: Nineteen patients with metastatic melanoma received a 14-day continuous intravenous infusion of 80 micrograms/kg/day of recombinant human M-CSF. R24 was administered daily by intravenous infusion on days 6-10 at doses of 1, 3, 10, 30, and 50 micrograms/m2/day. RESULTS: All patients developed pruritus and urticaria; 13 patients developed transient thrombocytopenia less than 100,000/mm3. The maximum tolerated dose was not reached. All patients developed a monocytosis characterized by increased expression of the antigen HLA-DR and decreased expression of CD14, a phenotype reported to represent a subpopulation of monocytes active in mediating antibody-directed cellular cytotoxicity. Other biologic effects of treatment included marked but transient decreases in total cholesterol, low density lipoprotein, and high density lipoprotein. Three patients experienced tumor regression in breast, liver, and lymph node metastases and received a second course of therapy. Six of the 19 patients, one of whom received no further therapy, survived more than 2 years and 4 of these patients remain alive 24 to 37 months after treatment. Of the six patients with liver metastases, three (50%) survived more than 2.5 years and one remains alive at 37+ months. CONCLUSIONS: Combination therapy with R24 and M-CSF resulted in both clinical and biologic effects that warrant further investigation of this combination.

Adult↗

Cell specific uptake of antiretroviral drugs: AZT coupled to LDL inhibits HIV replication in human macrophages.

Macrophages, besides helper T-lymphocytes, are target cells for the human immunodeficiency virus (HIV). We report on a mechanism to deliver selectively antiretroviral drugs to cells of the monocyte/macrophage lineage. These cells and cells of the endothelium express scavenger receptors which mediate the transport of modified low density lipoprotein (LDL). LDL modified by covalently bound azidothymidine (AZT), a potent inhibitor of HIV replication, is internalized via this pathway into human macrophages. Treatment of HIV-1 infected human macrophages with AZT-LDL showed in vitro efficient inhibition of viral replication. In contrast, HIV replication in T-lymphocytes (Molt 4/8), which do not express scavenger receptors, is not inhibited by AZT-LDL but by free AZT.

Antiviral Agents↗

Amino acid metabolism by hepatocytes in a hybrid liver support bioreactor.

The amino acid patterns of medium perfusate in a liver cell bioreactor developed for a hybrid liver support system have been measured. There were considerable changes in the concentrations of glutamic acid, glutamine, alanine, arginine, ornithine and branched chain amino acids during the first 10 days which is indicative of dynamic cellular metabolism. From day 15, steady state conditions of nitrogen metabolism are reflected by stable amino acid turnover. Monitoring of urea, K+, and P-450 activity suggests that hepatocytes have switched to a stable protein synthesis with a general amino acid uptake and keto acid release following cell volume increase.

Amino Acids↗

Alpha-keto acid metabolism by hepatocytes cultured in a hybrid liver support bioreactor.

Isolated pig liver cells cultured using a perfusion technique were analyzed over 39 days to test their ability to change the perfusate alpha-keto acid profile. While the pyruvate concentration in the culture medium decreased as of the first day, the alpha-ketoglutarate (KG), alpha-ketoisocaproate (KIC), alpha-ketoisovalerate (KIV) and alpha-keto-beta-methyl-n-valerate (KMV) were synthesized immediately and released by the liver cells. The metabolic capacity of the cell culture system increased up to day 10, decreased during the following 5 days and reached a steady state beyond day 15, which was maintained for at least 30 days. The branched chain alpha-keto acid release, in particular alpha-ketoisocaproate, reflects an effective transamination capacity of the newly developed culture system and shows an intact protein biosynthesis for at least 30 days in vitro.

Animals↗

Covalent coupling of nucleosides to low density lipoprotein (LDL) generates macrophage specific (drug)-carriers.

Covalent coupling of thymidine and azidothymidine (ZIDOVUDINE) to epsilon-amino groups of lysine side chains of LDL-Apo B is described. This procedure generates LDL-nucleoside particles that exhibits affinity solely for the scavenger receptor pathway on macrophages which is demonstrated by cell culture experiments. Autoradiography shows that 3H-thymidine, as representative of nucleosides, is delivered to the cell nucleus. Hence internalization, lysosomal cleavage and triphosphorylation of thymidine evidently had occurred. The application of this new method of drug targeting is macrophage selective inhibition of HIV-reverse transcriptase in AIDS.

Animals↗

Cellular kinetics of prednimustine versus chlorambucil plus prednisolone in vitro.

Intracellular concentrations of prednimustine (PM), chlorambucil (CLB), phenylacetic acid mustard (PAAM) and prednisolone (P) were measured in different experimental tumor cell lines that had been incubated with either PM or CLB + P. For intracellular analytical determination, we modified a high-pressure liquid chromatographic method for the detection of these substances in plasma. Intact PM could be detected in the intracellular compartment of the incubated tumor cells. PM-incubated cells from PM-injected rats exhibited a higher intracellular concentration-time integral (PAAM) and longer concentration-time profiles for drugs with alkylating capacity than did cells exposed to the CLB + P mixture or to CLB. PAAM was not detectable after incubation of cells with PM, whereas in CLB-incubated cells the AUC of PAAM exceeded that of the parent drug CLB. Our in vitro results therefore favour the concept of a facilitated intracellular uptake and an increased antiproliferative effect for PM versus CLB and CLB + P.

Animals↗

Essential branched-chain amino acids and alpha-ketoanalogues in haemodialysis patients.

Homeostasis of essential amino acids and their transamination derivatives (ketoacids) is disturbed in haemodialysis (HD) patients. In long-term HD patients a hypercatabolic state is often paired with severe anaemia. To understand metabolic regulation mechanisms we measured with an improved fluorescence-HPLC method plasma concentrations of valine (Val), isoleucine (Ile), and leucine (Leu) and their corresponding ketoacids ketoisovaleric acid (KIV), ketomethylvaleric acid (KMV), and ketoisocaproic acid (KIC). The values of 18 modestly anaemic HD patients (group A: Hb greater than 11 g/dl) and of 16 severely anaemic HD patients (group B: Hb less than 8 g/dl) were compared with 19 healthy control persons (100%; significance of patient values vs controls P less than 0.05) and with each other (significantly different at P less than 0.05). Both branched chain amino acids and ketoacids are diminished in HD patients. This disturbance of protein metabolism is intensified with severe anaemia. The decrease of transamination products KIV and KMV parallels that of their corresponding Val and Ile, whereas KIC is reduced out of proportion to Leu. Leu has anabolic function and KIC antiproteolytic effects. Decreased Leu and KIC indicate catabolism. Reduced transamination of Leu and KIC suggests an endogenous protective mechanism against catabolism independent of anaemia. These differences should be considered with supplementation therapy of branched-chain compounds in HD patients.

Adult↗