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Antimutagenic activity of extracts from anticancer drugs in Chinese medicine.

The antimutagenic activities of extracts of 36 commonly used anticancer crude drugs from Chinese herbs were studied by using the Salmonella/microsomal system in the presence of picrolonic acid or benzo[a]pyrene to test whether they contain direct or indirect antimutagens. Each crude drug was extracted with boiling water for 2 h, the method which is commonly used by Chinese people to prepare the drug for oral intake. The extracts of Pteris multifida P. showed the highest antimutagenic activity against picrolonic acid-induced mutation. The extracts of 6 other different kinds of Chinese herbs were shown to have a moderate antimutagenic activity against picrolonic acid-induced mutation, and they are: Actinidia chinensis P., Artemisia lavendulaefolia DC. and Crotalaria sessiflora L., Prunella vulgaris L., Paris polyphylla S. and Ampelopsis brevipedunculata T. The extracts of Smilax china L., Prunella vulgaris L. and Actinidia chinensis P. were demonstrated to inhibit the mutagenicity of benzo[a]pyrene completely. The 12 other kinds of extracts of Chinese herbs which had a moderate antimutagenic activity against benzo[a]pyrene were: Pteris polyphylla S., Ampelopsis brevipedunculata T., Duchesnea indica F., Gossypium herbaceum L., Lithospermum erythrorrhizon SZ., Artemisia lavendulaefolia DC., Selaginella doederleinii H., Dianthus superbus L., Centipeda minima ABA., Curcuma zedoaria R., Marsdenia tenacissima WA. and Kalopanax septemlobus K. Among them, there were 5 kinds of crude drugs, Actinidia chinensis P., Artemisia lavendulaefolia DC., Prunella vulgaris L., Paris polyphylla S. and Ampelopsis brevipedunculata T., containing antimutagenic factors against both picrolonic acid- and benzo[a]pyrene-induced mutation.

Antineoplastic Agents, Phytogenic↗

BTS 71 412: in vitro profile of a novel pyrazolinone immunosuppressant.

The effect of BTS 71 412, 4-acetyl-1-(4-chlorophenyl)-3-(2-methylthiophenyl)- 3-pyrazolin-5-one, has been determined on a variety of immune reactions in vitro in order to gain a further insight into the mechanisms whereby this novel immunosuppressive drug suppresses cell and antibody mediated immune responses in vivo. BTS 71 412 markedly inhibited [3H]thymidine incorporation by mouse splenocytes activated with concanavalin-A (IC50 = 20.1 microM), phytohaemagglutinin (IC50 = 4.6 microM), lipopolysaccharide (LPS) (IC50 = 3.2 microM), anti-IgM (mu-chain specific) (IC50 = 2.6 microM), or mixed lymphocyte culture (IC50 = 8.4 microM). Activity of BTS 71 412 was not associated with a reduction in cell viability. BTS 71 412 also prevented [3H]thymidine incorporation by the murine HT-2 helper T-cell clone when cultured with IL-2 (IC50 = 7.6 microM) or IL-4 (IC50 = 7.3 microM), enriched Thy-1+ T-lymphocytes stimulated with phorbol 12-myristate 13-acetate plus ionomycin (IC50 = 3.6 microM), and enriched B220- B-lymphocytes stimulated with LPS (IC50 = 3.0 microM). Splenocytes cultured with BTS 71 412 produced lower levels of interleukin (IL)-2, IL-10 and interferon-gamma when stimulated with concanavalin-A (IC50 values 42 microM, 22 microM and 60 microM, respectively). The compound suppressed in vitro antibody responses to keyhole limpet haemocyanin (IC50 = 2.3 microM), but did not reproducibly inhibit IL-6 or tumour necrosis factor alpha production by adherent peritoneal macrophages stimulated with LPS in vitro. These data indicate that BTS 71 412 specifically inhibits both B- and T-lymphocyte activation and proliferation but does not affect macrophage activation in vitro.

Animals↗

Nafazatrom (Bay g 6575) blunts canine hypoxic pulmonary vasoconstriction: evidence for a prostaglandin-mediated mechanism.

The eicosanoids are circulating vasoactive substances which may serve as modulators of pulmonary vasomotor tone. Nafazatrom (Bay g 6575) has been reported to raise circulating levels of prostaglandin I2 (PGI2) either by stimulating its synthesis or inhibiting its metabolism, and may also decrease leukotriene synthesis by inhibiting lipoxygenase. We evaluated the hemodynamic effects of nafazatrom administered intravenously in doses of 2,5, and 10 mg/kg in intact, anesthetized dogs ventilated with 21% and 10% oxygen. The hypoxia-induced increase in pulmonary vascular resistance was blunted by nafazatrom in an inverse dose-dependent fashion. Pretreatment with the cyclooxygenase inhibitor indomethacin (5 mg/kg subcutaneously twice daily for two days) abolished the response to low-dose nafazatrom. The pulmonary vasodilator response to the infusion of arachidonic acid (100 micrograms/kg/min) during hypoxic ventilation was blocked by the 10 mg/kg dose of nafazatrom. We conclude that nafazatrom blunts hypoxic pulmonary vasoconstriction in a manner consistent with a drug-induced increase in PGI2 activity, and that the inverse dose-dependent effects of the drug which we observed are due to an inhibition of cyclooxygenase at higher doses.

Animals↗

Radioimmunoassay of LTB4 and 6-trans LTB4: analytical and pharmacological characterisation of immunoreactive LTB4 in ionophore stimulated human blood.

A sensitive RIA for LTB4 (which cross-reacts 60% with 6-trans LTB4) has been developed with a minimal detectable mass of 7.4 X 10(-15) mole. The properties of a second RIA more specific for 6-trans LTB4 are also described. The latter has utility in the measurement of the enzymatic and non-enzymatic transformations of LTA4 and in the characterisation of inhibitors of LTA4 epoxide hydrolase. Conditions for the direct RIA of immunoreactive LTB4 in human plasma are described. Addition of calcium ionophore, A23187, to human blood increased basal immunoreactive LTB4 levels from less than 100pg ml-1 to 259 +/- 23ng ml-1 (mean +/- SEM, n = 16). Extraction and RPHPLC confirmed that greater than 90% of immunoreactive LTB4 co-eluted with synthetic and [3H]LTB4. Pharmacological characterisation of immunoreactive eicosanoids revealed that in vitro the NSAIDs: aspirin, indomethacin, flurbiprofen and benoxaprofen did not inhibit LTB4 but inhibited TXB2, consistent with cyclo-oxygenase inhibition whereas the prototype mixed inhibitor BW755c inhibited both LTB4 and TXB2. This experimental paradigm may be used in the clinical measurement of the bio-availability of novel agents that inhibit eicosanoid biosynthesis.

4,5-Dihydro-1-(3-(trifluoromethyl)phenyl)-1H-pyraz↗

Effect of lipoxygenase inhibitors on Ca2(+)-induced constriction of the rabbit ear artery.

1. The effects of nafazatrom, nordihydroguaiaretic acid (NDGA) and quercetin on Ca2(+)-induced vasoconstriction were studied in isolated rabbit ear arteries. 2. The arteries were perfused with Ca2(+)-free and high K+ (75 mM) Krebs bicarbonate buffer. Constriction of the artery was induced by addition of Ca2+ (1.5 mM) to the perfusion fluid. 3. Indomethacin (1 microM) did not alter the response to Ca2+. 4. Nafazatrom (2 or 5 microM) produced a concentration-dependent inhibition of the constrictor response to Ca2+ ranging from 4 to 23% after 1 hr of perfusion and 26 to 62% after 3 hr. 5. Similar effects were obtained with NDGA and quercetin (0.5 and 1 microM). 6. The inhibitory effects of nafazatrom and quercetin were antagonized by Ca2+ (2.5 mM) or Bay K 8644 (1 microM), a calcium channel activator. 7. Ca2(+)-induced contractions recovered within 30 min after discontinuation of perfusion with quercetin, whereas nafazatrom and NDGA had longer durations of action. 8. These results suggest that inhibitors of lipoxygenase antagonized Ca2(+)-induced vasoconstriction and that products of lipoxygenase metabolism may facilitate Ca2+ entry into vascular smooth muscle cells.

Animals↗

Detection and separation of the anthrapyrazole CI-941 and its metabolites in serum and urine by high-performance liquid chromatography.

A high-performance liquid chromatographic method using ion-pairing chromatography on reversed-phase C18 material with a mobile phase of acetonitrile-water (19:81, v/v) containing 5 mM 1-pentanesulfonic acid was developed for the detection and separation of the anthrapyrazole CI-941 (I) and its metabolites. After sample clean-up with solid-phase extraction, I and its metabolites were measurable at a wavelength of 491 nm. A detection limit of 5 ng/ml was achievable for I. The dicarboxylic acid derivative and the isomers of the monocarboxylic acid derivative could be separated. Application of the method to a human pharmacokinetic study showed two and four metabolites of I in serum and urine respectively.

Anthraquinones↗

Detection and identification of famprofazone and its metabolite in human urine.

Detection and identification of famprofazone and its metabolite, p-hydroxydesmethylfamprofazone, were described. The identity of the new metabolite was confirmed by comparing its mass spectrum and gas chromatographic retention time with that of the synthetic standard and its derivatives. Unchanged famprofazone was detected up to 6 h and the metabolite was detected up to 32 h in human urine after administration of famprofazone. The sum of the two compounds excreted in urine was ca. 1.5% of the dose.

Anti-Inflammatory Agents, Non-Steroidal↗

Enantiomeric composition of amphetamine and methamphetamine derived from the precursor compound famprofazone.

Fourteen different metabolic precursors of amphetamine or methamphetamine have previously been identified. Many of these drugs are available only by prescription and several are only available in some parts of the world and not in others. One of these drugs, famprofazone, is available over-the-counter which complicates the interpretation of methamphetamine urine drug testing results. To assist in the interpretation of typical laboratory results, a study was conducted to determine the enantiomeric composition of the methamphetamine and amphetamine produced from the metabolism of famprofazone. Fifty mg of famprofazone was administered to a volunteer followed by collection of urine for the next 6 days. The resulting quantity, enantiomeric composition and percent conversion from famprofazone to the product amphetamine and methamphetamine was determined. The results showed the amphetamine and methamphetamine to include both the d- and l-enantiomers. Percent conversion and peak concentrations were similar to those reported in previous studies.

Amphetamines↗

Drug-induced agranulocytosis: bone marrow granulocytic progenitor cells.

Bone marrow CFU-GM and cluster forming cells were studied in ten patients in different stages of drug-induced agranulocytosis using a methylcellulose cell culture technique in vitro. In the aplastic phase of the disease (A), the number of both CFU-GM and cluster forming cells was decreased in comparison to normal values. In the regenerative phase of the disease (R), the number of both granulocytic progenitors increased but did not reach normal values. In patients considered to be recovered from acute agranulocytosis (Rec), a decreased number of progenitors persisted indicating residual damage at this granulocytic cell level. It is suggested that agranulocytosis is due to isolated damage of granulocytic cells and predictable cascade of events within different cell compartments could be used as an in vivo model for investigation of the regulation of granulopoiesis.

Agranulocytosis↗

New bicyclic cannabinoid receptor-1 (CB1-R) antagonists.

A series of conformationally constrained bicyclic derivatives derived from SR141716 was prepared and evaluated as hCB(1)-R antagonists and inverse agonists. Optimization of the structure-activity relationships around the 2,6-dihydro-pyrazolo[4,3-d]pyrimidin-7-one derivative 2a led to the identification of two compounds with oral activity in rodent feeding models (2h and 4a). Replacement of the PP group in 2h with other bicyclic groups resulted in a loss of binding affinity.

Analgesics↗

Synthesis, in vitro antiproliferative activities, and Chk1 inhibitory properties of indolylpyrazolones and indolylpyridazinedione.

The synthesis of 5-indolylpyrazol-3-one, 4-indolylpyrazol-3-one and 4-indolyl-pyridazin-3,6-dione is reported. Their Chk1 inhibitory properties have been evaluated and their in vitro antiproliferative activities toward three tumor cell lines: murine leukemia L1210, human colon carcinoma HT29 and HCT116 have been determined. 4-Indolyl-pyridazin-3,6-dione is inactive against Chk1 and exhibits weak cytotoxicities toward the tumor cell lines tested. The IC(50) values toward Chk1 of the two indolylpyrazolones are identical and are in the micromolar range, but the cytotoxicities of 4-indolylpyrazol-3-one are significantly stronger than those of 5-indolylpyrazol-3-one. Since 4-indolylpyrazol-3-one and 5-indolylpyrazol-3-one can present several conformers and tautomeric forms, molecular modelling in the ATP binding site of Chk1 has been carried out to investigate which form could induce the best stabilization in the active site of the enzyme. To get an insight into the kinase selectivity of these compounds, their inhibitory activities toward Src kinase were evaluated.

Amino Acid Sequence↗

EK-6136 (3-methyl-4-(O-methyl-oximino)-1-phenylpyrazolin-5-one): a novel Cdc25B inhibitor with antiproliferative activity.

Cdc25B is a dual specific phosphatase, which plays a pivotal role in the activation of cell-cycle-dependent kinase 1 (Cdk1). A novel Cdc25B inhibitor, EK-6136, was identified by high throughput screening (HTS) using compounds from Korea Chemical Bank and examined for its biological effects. EK-6136 inhibited Cdc25B with an IC50 of 6.4+/-1.5 microM. EK-6136 showed selectivity against several phosphatases including PTP-1B, CD45, Cdc25A, PP1, VHR and Yop. In the inhibition kinetic study, EK-6136 displayed a mixed inhibition pattern with a Ki value of 7.8+/-1.2 microM. Consistent with in vitro results, EK-6136 inhibited the proliferation of MCF-7 (human breast carcinoma), HT-29 (human colorectal adenocarcinoma) and A549 (lung carcinoma) cells with increased Cdk-1 phosphorylation. Herein, we propose that EK-6136 is an active HTS hit as a Cdc25B inhibitor with antiproliferative activity, and can be used for the design of more potent and selective antiproliferative agents.

CDC2 Protein Kinase↗

Generation of reactive oxygen species undergoing redox cycle of nostocine A: a cytotoxic violet pigment produced by freshwater cyanobacterium Nostoc spongiaeforme.

Nostocine A (1) is an extracellular cytotoxic violet pigment produced by the freshwater cyanobacterium, Nostoc spongiaeforme TISTR 8169. Treatment with 1 was found to accelerate the generation of reactive oxygen species (ROS) in the green alga, Chlamydomonas reinhardtii, in the light. In vitro analysis revealed that 1 specifically eliminated superoxide radical anion (O(2)(-)) among several ROS tested. During the course of the reaction, oxygen (O(2)) was simultaneously synthesized and the O(2) synthesizing rate increased with the amount of 1 added. In contrast, O(2)(-) generation occurred when NADPH or NADH was added to a solution of 1 under aerobic condition. The reduction potential of 1 is very similar to that of O(2) indicating that 1 and O(2) can easily exchange electrons depending on the mass balance between their oxidized and reduced forms. Based on these results, the following hypothesis is formulated for the mechanism of intracellular ROS generation by treatment with 1: 1 taken into the target cells is reduced specifically by intracellular reductants such as NAD(P)H. When the O(2) level is sufficiently higher than that of 1, the reduced product of 1 is immediately oxidized by O(2). This is accompanied by the synthesis of O(2)(-) from O(2). The generation of O(2)(-) successively occurs, undergoing repeated redox cycles of 1, when the levels of the reductant and O(2) are still dominant to promote these reactions. This similar intracellular ROS generation mechanism to that of paraquat may cause the cytotoxicity.

Animals↗

Pyrazolyl conjugates of bombesin: a new tridentate ligand framework for the stabilization of fac-[M(CO)3]+ moiety.

We have described the synthesis of tridentate pyrazolyl ligand frameworks for coordination to the fac-[*M(CO)(3)](+) metal fragment (*M=(186/188)Re or (99m)Tc). These ligands impart a degree of kinetic inertness on the metal center, warranting their study in biological systems. We herein report in vitro/in vivo radiolabeling investigations of a new series of pyrazolyl bombesin (BBN) conjugates radiolabeled via the Isolink kit. These new conjugates are based on the general structure [(99m)Tc-pyrazolyl-X-BBN[7-14]NH(2)], where X=beta-alanine, serylserylserine or glycylglycylglycine. The pyrazolyl ligand is a tridentate ligand framework that coordinates the metal center through nitrogen donor atoms. The results of these investigations demonstrate the ability of these new conjugates to specifically target the gastrin-releasing peptide receptor subtype 2, which is overexpressed on human prostate PC-3 cancerous tissues. Therefore, these studies suggest the tridentate pyrazolyl ligand framework to be an ideal candidate for the design and development of low-valent (99m)Tc-based diagnostic radiopharmaceuticals based on BBN or other targeting vectors.

Animals↗