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Quantum chemical design of hydroxyurea derivatives for the treatment of sickle-cell anemia.

Treatment of sickle-cell anemia by hydroxyurea has been shown to decrease patient mortality by 40%. In a rate-limiting step, hydroxyurea reacts with hemoglobin to form the nitroxide radical, which then decomposes to yield nitric oxide (NO). In this paper, we examine derivatives of hydroxyurea and their radicals by quantum chemical methods to identify derivatives that generate NO-producing radicals at a faster rate than hydroxyurea. The molecules are treated with Hartree-Fock theory, correlated wave function methods such as perturbation theory and coupled-cluster methods, and density functional theory. We observe that the inclusion of the correlation energy is important for an accurate comparison of the energy changes associated with modifications of the hydroxyurea molecule and its radical. The computational results are compared with available experimental data. All 19 derivatives of hydroxyurea, including a new medication for asthma Zileuton, manifest changes in their electronic energies that mark them as candidates for a faster formation of NO-producing radicals.

Anemia, Sickle Cell↗

Involvement of mitogen-activated protein kinases and p21Waf1 in hydroxyurea-induced G1 arrest and senescence of McA-RH7777 rat hepatoma cell line.

Hydroxyurea is commonly used to treat hematologic disorders and some type of solid tumors, but the mechanism for its therapeutic effect is not clearly known. In this study, we examined the effect of hydroxyurea on rat hepatoma McA-RH7777 cells, specifically, on the role of mitogen-activated protein (MAP) kinase signal transduction pathways and p21(Waf1), p27(Kip1) and p53. Rat hepatoma McA-RH7777 cells treated with hydroxyurea for 7 days, caused the inhibition of cell growth in a dose-dependent manner. But, this growth inhibition was not caused by necrosis or apoptosis but instead was associated with cell senescence-like change as evidenced by senescence associated-beta-galactosidase staining, and cells arrest at G1 phase of cell cycle. Phosphorylation of MAP kinases, such as ERK, JNK, and p38, was found to be decreased after treatment of cells with hydroxyurea. But, the expression of p21(Waf1) was increased, while p27(Kip1) and p53 were not detected in hydroxyurea treated rat hepatoma cells. Hydroxyurea treatment induced G1 arrest and a senescence-like changes in rat hepatoma McA-RH7777 cells may be the likely results of signal disruption of MAP kinases (ERK, JNK, and p38 MAP kinase) and p21(Waf1) over-expression.

Animals↗

Isotope-dilution analysis of the effects of deoxyguanosine and deoxyadenosine on the incorporation of thymidine and deoxycytidine by hydroxyurea-treated thymus cells.

It is presumed that the dGTP and dATP needed for replicative DNA synthesis can be formed by way of either ;salvage' pathways or biosynthesis de novo. This was examined by adding hydroxyurea to cultures of rat thymus cells to inhibit ribonucleoside diphosphate reductase, a key enzyme of the ;de novo' pathway. Most of the inhibition of the incorporation of [Me-(3)H]thymidine and deoxy[5-(3)H]cytidine by low concentrations of hydroxyurea (100-500mum) was prevented by substrates of the salvage pathway (400mum-deoxyguanosine and, to a lesser extent, 200mum-deoxyadenosine). However, isotope-dilution studies indicated that the purine deoxyribonucleosides prevented inhibition by decreasing pyrimidine deoxyribonucleotide competitor pools. Evidence was obtained that a hydroxyurea-induced increase in the thymidine-competitor pool (probably dTTP) was prevented to an equal extent by deoxyguanosine and by the inhibitor of thymidylate synthase, deoxy-5-fluorouridine. These compounds had almost identical effects on hydroxyurea dose-response curves and on thymidine isotope-dilution plots. The evidence suggests that exogenous purine deoxyribonucleosides cannot prevent the inhibition by hydroxyurea of thymus-cell DNA synthesis. This could mean that, with respect to the metabolism of purine deoxyribonucleotides, ribonucleoside diphosphate reductase is tightly coupled to DNA polymerase in a multienzyme complex. The complex would not permit entry of exogenous metabolic intermediates into the ;de novo' pathway, but would still be subject to the regulatory effects of these intermediates. Thus dGTP and dATP formed from exogenous purine deoxyribonucleosides by salvage pathways might deplete pyrimidine deoxyribonucleotide competitor pools by inhibiting relatively hydroxyurea-insensitive activities of ribonucleoside diphosphate reductase.

Animals↗

Hydroxyurea versus busulphan for chronic myeloid leukaemia: an individual patient data meta-analysis of three randomized trials. Chronic myeloid leukemia trialists' collaborative group.

Although interferon alpha (IFN) has been shown to prolong survival in chronic myeloid leukaemia (CML), it cannot be used in all patients. Reliable evidence on the relative benefits of busulphan and hydroxyurea is of value in treating those patients who will not receive interferon. Data for each individual patient was sought from trials which randomized patients with CML to hydroxyurea vs. busulphan. Intention-to-treat stratified log rank survival analyses were performed, reporting two-sided P-values. Data were collected on 812 patients in the three trials identified. In the group of 690 patients with confirmed Philadelphia chromosome (Ph)-positive CML, survival at 4 years was 45.1% with busulphan and 53.6% with hydroxyurea, an absolute benefit of 8.5% (95% confidence interval 0. 1-16.9; logrank P = 0.01 over 4 years). There seemed to be no further benefit for hydroxyurea in later years, but there was no apparent delayed adverse effect either. The difference between hydroxyurea and busulphan was not statistically significantly different from the overall result in any subgroup. Survival of patients with Ph-positive CML is better with hydroxyurea treatment than with busulphan.

Antineoplastic Agents↗

Aggressive, extensive, vasculitic leg ulceration associated with hydroxyurea therapy and a fatal outcome.

The association of lower leg ulcer development and hydroxyurea therapy in patients with myeloproliferative disorders has been reported previously. In most of these cases the ulcers healed with cessation of the hydroxyurea together with meticulous attention to wound care. We report a patient who developed painful vasculitic ulcers secondary to hydroxyurea on both lower legs whilst on long-term hydroxyurea therapy for idiopathic thrombocytosis. The ulcers extended relentlessly despite stopping hydroxyurea, maximizing topical therapies and starting intensive systemic treatment. We discuss the association of hydroxyurea therapy with the development of painful ulceration.

Aged↗

Hydroxyurea interferes with antigen-dependent T-cell activation in vitro.

BACKGROUND: Hydroxyurea is believed to inhibit human immunodeficiency virus type 1 (HIV-1) in HIV disease by decreasing the amount of intracellular deoxynucleotides needed for viral replication. A plasma concentration of 400 micromol L-1 is tolerated in oncological diseases. The present study focused on the possible interference of hydroxyurea with antigen-dependent T-cell activation as an alternative explanation for inhibiting HIV replication in vivo. METHODS: The effect of hydroxyurea on common antigen-induced cell proliferation was studied in peripheral blood mononuclear cells (PBMC) in vitro. RESULTS: Hydroxyurea inhibited Candida albicans-induced cell proliferation at a low concentration (1 micromol L-1), while at least 10 micromol L-1 was required to block HIV-1 replication in phytohaemagglutinin (PHA)-stimulated PBMC. CONCLUSION: Hydroxyurea inhibits antigen-induced lymphoproliferation in vitro at a concentration at which it does not inhibit PHA-induced HIV replication. Hydroxyurea may inhibit HIV-1 in CD4+ T cells in vivo not only by decreasing the amount of intracellular deoxynucleotides, but more specifically by interfering with antigen-dependent T-cell activation, thereby causing a reduction in the number of HIV target cells.

Candida albicans↗

A two-year pilot trial of hydroxyurea in very young children with sickle-cell anemia.

OBJECTIVE: Hydroxyurea improves hematologic values and decreases vaso-occlusive complications in adults and children with sickle cell anemia (SCA), but has not been tested in infants before the onset of chronic organ dysfunction. We conducted a collaborative pilot trial of hydroxyurea in infants with SCA to assess its (1) feasibility of administration, (2) toxicity, (3) hematologic effects, and (4) effect on spleen function. STUDY DESIGN: Patients with hemoglobin (Hb) SS or Sbeta(0) thalassemia (n = 28, median age 15 months) received hydroxyurea for 2 years at 20 mg/kg/day. Hydroxyurea was temporarily discontinued for predefined toxicity. RESULTS: Seven patients exited the study early: five for noncompliance or refusal to continue, one for mild stroke, and one for fatal splenic sequestration. The predominant toxicity was transient neutropenia, which was usually associated with a viral-like illness. After 2 years of treatment, mean Hb level = 8.8 g/dL and Hb F = 20.3%, both higher than predicted age-specific levels. Radionuclide splenic uptake was absent in 47% of patients at study completion, compared with predicted functional asplenia in 80% of the patients. CONCLUSIONS: Hydroxyurea therapy for infants with SCA is feasible and well tolerated, has hematologic efficacy, and may delay functional asplenia. The potential for hydroxyurea to preserve organ function in SCA should be further evaluated.

Age Factors↗

Hydroxyurea therapy associated with declining serum levels of magnesium in children with sickle cell anemia.

OBJECTIVE: To obtain quantitative serum levels of total and ionized magnesium (Mg(2+)) in children with homozygous sickle cell anemia (SCA) undergoing therapy with hydroxyurea. STUDY DESIGN: Five children, ages 11 to 14 years with homozygous SCA, were enrolled in a dose-escalating trial of hydroxyurea over an 18-month period. Serum levels of total and ionized magnesium together with ionized K(+), Na(+), and Ca(2+) were measured before hydroxyurea and every 6 months during hydroxyurea therapy. RESULTS: Before treatment, 4 of the 5 patients had low or below-normal serum concentrations of Mg(2+) (normal range, 0.51-0.67 mmol/L). All 5 became Mg(2+)-deficient during hydroxyurea therapy, with no indication of recovery until after 12 to 18 months of drug administration (P <.05). Similar changes were noted for total magnesium concentrations. Mean serum levels of K(+), Na(+), and Ca(2+) remained consistently within normal ranges. CONCLUSIONS: These findings warrant a controlled study of the effects of magnesium supplementation in patients with SCA receiving hydroxyurea. Potentially, such therapy could alleviate or prevent vaso-occlusive crises.

Adolescent↗

Hydroxyurea versus busulfan in the treatment of chronic myelogenous leukemia.

A retrospective analysis of 67 patients with chronic myelogenous leukemia treated with hydroxyurea (41 patients) and busulfan (26 patients) compared the effectiveness of treatment and resulting survival. After 4 days of treatment, the white blood count in the hydroxyurea group fell at a rate of 31% +/- 10% per day compared to 10% +/- 8% for the busulfan group. At 6 months, the hemoglobin was similar, but in the busulfan group, the white blood count was significantly lower (12,500 vs. 29,900) (p = greater than 0.03). The platelet count was lower (311,000 vs. 481,000) in the busulfan group; however, the difference was not significant. When treatment was discontinued because of progression of the disease, the hemoglobin and white blood counts for both groups were similar. The platelet count was higher in the hydroxyurea group (762,000 vs. 269,000) (p greater than 0.02). The duration of therapy for both groups was similar. The median survival was also similar (hydroxyurea = 51 months; busulfan = 45 months). Hydroxyurea was associated with less life-threatening toxicity. Hydroxyurea is as effective as busulfan in treating chronic myelogenous leukemia.

Actuarial Analysis↗

Time-dependent changes in HIV nucleoside analogue phosphorylation and the effect of hydroxyurea.

BACKGROUND: Nucleoside analogues are activated to their triphosphates, which compete with endogenous deoxynucleoside triphosphate (dNTP) pools to inhibit HIV reverse transcriptase. Hydroxyurea has been administered with nucleoside analogues to modulate intracellular dNTP pools and thus the ratio of drug triphosphate:endogenous triphosphate. OBJECTIVES: To examine changes in drug activation over time and investigate the effects of hydroxyurea on intracellular phosphorylation of antiretroviral nucleoside analogues. PATIENTS: A total of 229 HIV-infected individuals receiving abacavir, lamivudine and zidovudine were randomly assigned to receive or not nevirapine and hydroxyurea. Twenty-four patients were recruited to an observational substudy measuring intracellular drug triphosphate and dNTP concentrations at 0, 2, 6, 12, 24 and 48 weeks. METHODS: Drugs were extracted from isolated peripheral blood mononuclear cells before analysis of endogenous dNTP and drug triphosphates by primer extension assays. RESULTS: Twenty-two out of 24 patients were followed to completion of the substudy. Hydroxyurea had no demonstrable effect on endogenous dNTP or drug triphosphate levels at any timepoint. However, the ratio of zidovudine triphosphate to endogenous deoxythymidine triphosphate was significantly increased with hydroxyurea. A significant decrease in lamivudine triphosphate (3TCTP) and the 3TCTP:endogenous deoxycytidine triphosphate ratio was seen over 48 weeks. In five patients who failed therapy in the first 24 weeks, significantly reduced 3TCTP was seen. CONCLUSION: Hydroxyurea does not affect measurable pools of endogenous nucleosides in vivo. Decreased lamivudine phosphorylation over time may provide a novel pharmacological explanation for the mechanism of resistance to this drug.

Adult↗

The hydroxyurea-induced loss of double-minute chromosomes containing amplified epidermal growth factor receptor genes reduces the tumorigenicity and growth of human glioblastoma multiforme.

OBJECTIVE: We investigated whether the hydroxyurea-induced loss of double-minute chromosomes containing amplified epidermal growth factor receptor (EGFR) genes would lead to a loss of tumorigenicity of a glioblastoma multiforme cell line. METHODS: Glioblastoma multiforme cells were treated in vitro with 0 (HU0) or 100 micromol/L (HU100) hydroxyurea and then injected into the flanks of nude mice. Survival and tumor volumes were evaluated. Pulsed-field gel electrophoresis, Southern blot hybridization, and slot-blot analysis were used to determine EGFR amplification levels. Flow cytometry and immunofluorescent staining were used for cell-cycle analysis and EGFR protein expression. RESULTS: Prior to injection, HU100 cells lost 95% of their amplified EGFR genes and developed into tumors 6 weeks after injection versus 3 weeks for HU0 cells. Mice with HU100 tumors had a median survival of 62 days versus 43 days for control mice with HU0 tumors. Pulse-field gel electrophoresis analysis showed that HU100 tumors had reamplified the EGFR gene as double-minute chromosomes of the same size as those originally present before hydroxyurea treatment. When HU100 cells were cultured in the absence of hydroxyurea, the EGFR gene also reamplified. HU100 cells grew at less than half the rate of untreated HU0 control cells in culture and showed a decreased number of cells entering the cell cycle. Immunofluorescent staining of HU150 (150 micromol/L) cells showed decreased EGFR protein expression. CONCLUSION: The EGFR gene is important for tumorigenicity in mice and growth in culture. Hydroxyurea induces the loss of double-minute chromosome-amplified EGFR genes against a selection gradient and significantly delays the onset of tumors. These results support the potential use of low-dose hydroxyurea for the treatment of human glioblastoma multiforme.

Animals↗

Pilot study of hydroxyurea in human immunodeficiency virus-infected children receiving didanosine and/or stavudine.

OBJECTIVE: To evaluate the safety and antiviral and immunologic effects of hydroxyurea given with didanosine (ddI) and/or stavudine (d4T) to symptomatic HIV-infected children. METHODS: HIV-infected children with a history of long term nucleoside antiretroviral therapy were treated orally with hydroxyurea (initial dose, 10 to 20 mg/kg once daily; final dose, 30 mg/kg once daily), added to existing therapy that included ddI and/or d4T. RESULTS: Sixteen children were enrolled (mean age, 6.7 years; range, 1.8 to 13.4 years). Antiretroviral therapy used with hydroxyurea included d4T/ddI (12), ddI (2), d4T (1) and d4T/lamivudine (1). Children received between 24 and 48 weeks of therapy, which was well-tolerated. Hydroxyurea was held temporarily during the first month of therapy in 4 cases because of neutropenia; all patients resumed hydroxyurea at full dosage without recurrence of neutropenia. No patient discontinued therapy permanently because of intolerance or toxicity. For the 13 children who completed 48 weeks of study treatment, the mean plasma HIV RNA concentration decreased from 4.6 log10 copies/ml at baseline to 4.2 log10 copies/ml at study Week 48 (P = 0.035, paired t test). Eight of these 13 children experienced a 0.5-log10 copies/ml or greater drop in HIV RNA concentration in the 48 weeks of study treatment. Appreciable changes in CD4+ lymphocyte percentage were not noted. CONCLUSIONS: Hydroxyurea, added to existing therapy with ddI and/or d4T, was well-tolerated and safe in HIV-infected children. Evidence of antiviral activity was observed in some cases.

Adolescent↗

Hydroxyurea does not enhance the anti-HIV activity of low-dose tenofovir disoproxil fumarate.

Tenofovir disoproxil fumarate (DF) is an adenosine analogue with significant activity against HIV-1. Hydroxyurea decreases the intracellular concentrations of deoxyadenosine triphosphate, the active metabolite of adenosine. We therefore tested the hypothesis that hydroxyurea could enhance the anti-HIV activity of low-dose tenofovir in vivo. Eight patients received tenofovir DF, 75 mg, plus hydroxyurea, 500 mg bid, for 28 days. Changes in plasma HIV RNA levels were compared with a previously studied cohort of patients treated with tenofovir DF, 75 mg once daily ( n = 8), or tenofovir placebo ( n = 12). The median change in HIV RNA levels after 28 days of continuous treatment was -0.01 log(10) copies/ml for tenofovir placebo, -0.33 log(10) copies/ml for tenofovir 75 mg once daily, and -0.22 log(10) copies RNA/ml for tenofovir plus hydroxyurea. The difference between placebo and tenofovir-treated groups was significant ( p <.05); however, the difference between the tenofovir and tenofovir plus hydroxyurea groups was not significant ( p =.90). We conclude that hydroxyurea does not significantly enhance the antiviral activity of low-dose tenofovir.

Adenine↗

Changes in stem cell compartments in mice after hydroxyurea.

Hydroxyurea injection kills only approximately 10% of CFUs which are in the S phase of the cell cycle. In mice given a single injection of hydroxyurea CFUs in the femur decreased only about 50% in 2--4 days after hydroxyurea, and then started to return to normal levels with an overshoot evident after the eighth day after hydroxyurea. CFUs in spleens of mice given a single injection of hydroxyurea show an evident overshoot as early as 3 days after the drug, reaching levels which are about 300% of normal. CFUs from blood disappear rapidly, but equally rapidly return to normal values followed by a significant overshoot. The radioresistance of mice increased up to 4 days after hydroxyurea.

Animals↗

Synchronization of Aedes albopictus mosquito cells using hydroxyurea.

We have established conditions for use of hydroxyurea, a reversible inhibitor of DNA synthesis, to synchronize the division cycle of a continuous cell line from the mosquito, Aedes albopictus. In the range of 0.15-0.25 mM hydroxyurea, an 18 h treatment, followed by removal of the drug, results in effective synchronization. When combined with the partial synchronization that occurs within 10 h of dilution and plating, more than 80% of cells treated with hydroxyurea could be recovered in the synthesis (S) phase of the cell cycle during the 4 h period after removal of the drug. The degree of synchrony was enhanced when cells were exposed to two consecutive hydroxyurea treatments spaced 10 h apart. Synchronized cells expressed maximal levels of a reporter gene when transfected immediately after removal of hydroxyurea. This is the first description of effective chemical synchronization of an insect cell line using hydroxyurea.

Aedes↗

Chromosome-mediated gene transfer of hydroxyurea resistance and amplification of ribonucleotide reductase activity.

Metaphase chromosomes purified from a hydroxyurea-resistant Chinese hamster cell line were able to transform recipient wild-type cells to hydroxyurea resistance at a frequency of 10(-6). Approximately 60% of the resulting transformant clones gradually lost hydroxyurea resistance when cultivated for prolonged periods in the absence of drug. One transformant was subjected to serial selection in higher concentrations of hydroxyurea. The five cell lines generated exhibited increasing relative plating efficiency in the presence of the drug and a corresponding elevation in their cellular content of ribonucleotide reductase. The most resistant cell line had a 163-fold increase in relative plating efficiency and a 120-fold increase in enzyme activity when compared with the wild-type cell line. The highly hydroxyurea-resistant cell lines had strong electron paramagnetic resonance signals characteristic of an elevated level of the free radical present in the M2 subunit of ribonucleotide reductase. Two-dimensional electrophoresis of cell-free extracts from one of the resistant cell lines indicated that a 53,000-dalton protein was present in greatly elevated quantities when compared with the wild-type cell line. These data suggest that the hydroxyurea-resistant cell lines may contain an amplification of the gene for the M2 subunit of ribonucleotide reductase.

Animals↗

Relationships between sensitivity to hydroxyurea and 4-methyl-5-amino-1-formylisoquinoline thiosemicarbazone (MAIO) and ribonucleotide reductase RNR2 mRNA levels in strains of Saccharomyces cerevisiae.

Ribonucleotide reductase is responsible for providing the deoxyribonucleotide precursors for DNA synthesis. In most species the enzyme consists of a large and a small subunit, both of which are required for activity. In mammalian cells, the small subunit is the site of action of several antitumor agents, including hydroxyurea and 4-methyl-5-amino-1-formylisoquinoline thiosemicarbazone (MAIQ). The mRNA levels for the small subunit of ribonucleotide reductase (RNR2) and sensitivity to hydroxyurea and MAIQ were determined in four strains of the yeast, Saccharomyces cerevisiae. Two strains exhibited significantly different sensitivities to both hydroxyurea and MAIQ, which closely correlated with differences in the levels of RNR2 mRNA. These results are consistent with recent observations with mammalian cells in culture, and indicate that a common mechanism of resistance to hydroxyurea and related drugs occurs through the elevation in ribonucleotide reductase message levels. A transplason mutagenized strain with marked structural modifications in RNR2 DNA and mRNA showed an extreme hypersensitivity to hydroxyurea but not to MAIQ, providing evidence that the two drugs do not inhibit the RNR2 subunit by the same mechanism. In addition, a yeast strain isolated for low but reproducible resistance to MAIQ exhibited a sensitivity to hydroxyurea similar to the parental wild-type strain, supporting the idea that the two drugs inhibit the activity of RNR2 by unique mechanisms. These yeast strains provide a useful approach for further studies into the regulation of eucaryotic ribonucleotide reduction and drug resistance mechanism involving a key rate-limiting step in DNA synthesis.

Blotting, Northern↗

Correlation between levels of ferritin and the iron-containing component of ribonucleotide reductase in hydroxyurea-sensitive, -resistant, and -revertant cell lines.

The reduction of ribonucleotides to deoxyribonucleotides, a rate-limiting step in DNA synthesis, is catalyzed by ribonucleotide reductase. This enzyme is composed of two components, M1 and M2. Recent work has shown that inhibition of ribonucleotide reductase by the antitumor drug hydroxyurea leads to a destabilized iron centre in protein M2. We have examined the relationship between the levels of ferritin, the iron storage protein, and the iron-containing M2 component of ribonucleotide reductase. These studies were carried out with hydroxyurea-sensitive, -resistant, and -revertant cell lines. Hydroxyurea-resistant mouse L cells contained M2 gene amplification and elevated levels of enzyme activity, M2 message, and total cellular M2 protein concentration. Hydroxyurea-revertant cells exhibited a wild-type M2 gene copy number, and approximately wild-type levels of enzyme activity, M2 message, and M2 protein concentration. In addition, we observed that the hydroxyurea-resistant cells possessed elevated levels of L-chain ferritin message and total cellular H-chain ferritin protein when compared to wild-type cells. In contrast, the revertant cell population contained approximately wild-type levels of ferritin mRNA and protein. In keeping with these observations, obtained with mouse L cells, was the finding that hydroxyurea-resistant Chinese hamster ovary cells with increased ribonucleotide reductase activity exhibited elevated expression of both ferritin and M2 genes, which declined in drug-sensitive revertant hamster cell lines with decreased levels of ribonucleotide reductase activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗