Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “NOSCAPINE”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 109 records · Page 6Linked to original sources

Effects of L-tryptophan on the effects of antitussives.

The effects of L-tryptophan and the major constituents of cough medicines on the antitussive effect of dihydrocodeine were examined in a comparative study with anesthetized rats. The antitussive effect of dihydrocodeine was enhanced by simultaneous administration of noscapine or methylephedrine. In rats treated with noscapine and methylephedrine together, the effect of dihydrocodeine was more markedly enhanced. Furthermore L-tryptophan reduced by half the antitussive ED50 (AtD50) of dihydrocodeine. There was no difference between the AtD50 of dihydrocodeine when administered in combination with noscapine and methylephedrine and that of dihydrocodeine when combined with noscapine and L-tryptophan. The AtD50 of noscapine and dextromethorphan was also reduced by about half when what was administered with L-tryptophan. By contrast, the liability with respect to physical dependence on dihydrocodeine was not enhanced by the simultaneous administration of L-tryptophan. These results suggest that L-tryptophan can be considered to be a useful constituent of antitussive preparations.

Animals↗

Minor alteration of microtubule dynamics causes loss of tension across kinetochore pairs and activates the spindle checkpoint.

We have previously identified the opium alkaloid noscapine as a microtubule interacting agent that binds stoichiometrically to tubulin and alters its conformation. Here we show that, unlike many other microtubule inhibitors, noscapine does not significantly promote or inhibit microtubule polymerization. Instead, it alters the steady-state dynamics of microtubule assembly, primarily by increasing the amount of time that the microtubules spend in an attenuated (pause) state. Further studies reveal that even at high concentrations, noscapine does not alter the tubulin polymer/monomer ratio in HeLa cells. Cells treated with noscapine arrest at mitosis with nearly normal bipolar spindles. Strikingly, although most of the chromosomes in these cells are aligned at the metaphase plate, the rest remain near the spindle poles, both of which exhibit loss of tension across kinetochore pairs. Furthermore, levels of the spindle checkpoint proteins Mad2, Bub1, and BubR1 decrease by 138-, 3.7-, and 3.9-fold, respectively, at the kinetochore region upon chromosome alignment. Our results thus suggest that an exquisite control of microtubule dynamics is required for kinetochore tension generation and chromosome alignment during mitosis. Our data also support the idea that Mad2 and Bub1/BubR1 respond to kinetochore-microtubule attachment and/or tension to different degrees.

Animals↗

Inhibitory effects of non-narcotic antitussive drugs on cholinergically and non-cholinergically mediated neurogenic contractions of guinea-pig isolated bronchial muscle.

We have examined the actions of non-narcotic antitussive drugs on the response evoked by electrical field stimulation or by acetylcholine (ACh) and neurokinin A (NKA) on guinea-pig bronchial strip chain. Electrical field stimulation (1-32 Hz, 0.5 ms, 30 V for 5 s) evoked a biphasic contraction in a frequency-dependent manner, consisting of a cholinergically mediated fast contraction followed by a non-cholinergically mediated slow contraction. Dextromethorphan (1-300 microM) and tipepidine (0.1-100 microM) caused a concentration-dependent inhibition in the height of the biphasic contraction, but noscapine (1-300 microM) was less effective. Submaximal contractions of bronchial muscle evoked by exogenous ACh (1-30 microM) were inhibited by tipepidine (10-100 microM), but not by dextromethorphan (10-100 microM) or noscapine (10-100 microM), while those evoked by exogenous NKA (10-300 nM) were augmented by these drugs. The results indicate that in guinea-pig isolated bronchial muscle, dextromethorphan inhibited both neurally-mediated responses but not those to the exogenously applied agent. Tipepidine caused an inhibition similar to the non-cholinergically mediated response of dextromethorphan, it also caused a more profound inhibition of the cholinergically mediated response and selectively antagonized ACh. Noscapine had no effect.

Animals↗

Treatment of hormone-refractory breast cancer: apoptosis and regression of human tumors implanted in mice.

Following surgery, the hormone dependence of breast tumors is exploited for therapy using antagonists such as tamoxifen, although occasional hormone-resistant clones do appear. Another chemotherapeutic strategy uses microtubule inhibitors such as taxanes. Unfortunately, these agents elicit toxicities such as leukocytopenia, diarrhea, alopecia, and peripheral neuropathies and are also associated with the emergence of drug resistance. We have previously described a tubulin-binding, natural compound, noscapine, that was nontoxic and triggered apoptosis in many cancer types albeit at 10 mumol/L or higher concentrations depending on the cell type. We now show that a synthetic analogue of noscapine, 9-bromonoscapine, is approximately 10-fold to 15-fold more potent than noscapine in inhibiting cell proliferation and induces apoptosis following G2-M arrest in hormone-insensitive human breast cancers (MDA-MB-231). Furthermore, a clear loss of mitochondrial membrane potential, release of cytochrome c, activation of the terminal caspase-3, and the cleavage of its substrates such as poly(ADP-ribose) polymerase, suggest an intrinsic apoptotic mechanism. Taken together, these data point to a mitochondrially mediated apoptosis of hormone-insensitive breast cancer cells. Human tumor xenografts in nude mice showed significant tumor volume reduction and a surprising increase in longevity without signs of obvious toxicity. Thus, our data provide compelling evidence that 9-bromonoscapine can be useful for the therapy of hormone-refractory breast cancer.

Animals↗

[Objectivation of the effect of antitussive agents using tussometry in patients with chronic cough].

The antitussive effect of several antitussive agents has been objectively evaluated in patients with chronic stable cough due to bronchial carcinoma, pulmonary tuberculosis or chronic obstructive lung disease. The patients received the active antitussive drugs or placebo in a double-blind, randomized crossover design. The preparations were administered at 10 p.m. and 2 a.m. on 7 consecutive nights and no antitussive was given for the following 20 hours. Cough frequency and intensity were recorded from 10 p.m. until 6 a.m. The active medications were noscapine (30 mg), dextromethorphan (20 mg), dihydrocodeine (30 mg) and codeine (20, 30 and 60 mg) at 10 p.m. and 2 a.m. Cough frequency and intensity were objectively assessed with a pressure transducer placed over the trachea and recorded on a chartrecorder. Statistical analysis was performed with analysis of variance and multiple range testing. Noscapine, dextromethorphan, dihydrocodeine and codeine (60 mg) significantly (p less than 0.001) reduced the cough frequency compared to placebo. They also produced a greater reduction of cough intensity than placebo, codeine (20 mg) and codeine (30 mg) (p less than 0.001). The duration of action of low-dose codeine (6 hours) was unsatisfactory. Subjective preference for dextromethorphan indicates a psychotropic central nervous action of this drug not assessed by the measuring device. Noscapine was equally well tolerated but more neutral psychologically.

Adult↗

Diamorphine treatment for opiate dependence: putative markers of concomitant heroin misuse.

The supply of substitute opioid medication as a treatment for heroin dependence is now common practice. There is growing international interest in the prescription of injectable diamorphine for subgroups of patients who are unable to stop injecting opiate drugs; in the United Kingdom it is estimated that there are currently 300 patients prescribed diamorphine for this purpose. The detection of illicit heroin misuse (through urinary diamorphine metabolites) is confounded in subjects prescribed diamorphine. We investigated the potential to distinguish between the use of street heroin and pharmaceutical diamorphine through the detection in urine of various opiate alkaloids originating in the opium poppy, Papaver somniferum. Over a 7-week period, 532 clients of an urban substance misuse service provided a total of 1122 urine samples for clinical purposes. Using a novel mixed-mode solid-phase extraction and gas chromatography/mass spectrometry technique, we screened samples for morphine, 6-monoacetylmorphine, codeine, meconine, papaverine, noscapine, thebaine and their metabolites. All urine samples from diamorphine-treated patients were positive for morphine. Of samples from patients receiving other treatments, 30% (95%CI: 27-33%) were positive for morphine, indicating probable street heroin misuse. Of morphine-positive samples, 61% (95%CI: 55-67%), from the "other treatments" group were positive for at least one of codeine, meconine and putative noscapine or papaverine metabolites. This was reduced to 56% (95%CI: 50-62%) when excluding codeine. Only one sample (0.1%) was positive for any one of these putative markers in the absence of morphine, when excluding codeine. These findings show that the detection of urinary noscapine and papaverine metabolites is useful in distinguishing between use of pharmaceutical diamorphine and street heroin. This may be of benefit to promote safer and more effective prescribing of diamorphine in opiate dependency, and as an outcome measure in trials of diamorphine prescribing.

Journal Article↗

Estimation of binding parameters by kinetic data analysis: differentiation between one and two binding sites.

A method that enables the discrimination between binding models and the estimation of binding parameters, based solely on kinetic data, is described. Experimental data from association and dissociation experiments were fitted simultaneously to models with mono- or biphasic kinetics with the aid of a non-linear maximum likelihood computer program. Discrimination between two models can be performed statistically. The protocol was used to study the binding of the antitussive [3H]noscapine to guinea pig brain homogenate. Two binding processes could be discriminated by their kinetics, despite the fact that [3H]noscapine apparently binds to one homogeneous population of binding sites in equilibrium binding experiments. This method might find general application when two populations of binding sites are suspected from kinetic data, but when selective ligands are lacking. Since parameter estimates are obtained independent of equilibrium binding data, our approach could also serve as an independent control of such experiments, with respect to both Kd and Bmax.

Animals↗

Effects of rimcazole, a specific antagonist of sigma sites, on the antitussive effects of non-narcotic antitussive drugs.

We examined the effects of rimcazole, a specific antagonist of sigma sites, on the antitussive effects of dextromethorphan and noscapine in mice. Intraperitoneal injection of rimcazole, in doses from 1 to 10 mg/kg, significantly and dose dependently antagonized the cough depressant effect of N,N'-di(orthotolyl)guanidine (DTG), a sigma ligand. The cough depressant effects of dextromethorphan (3 mg/kg i.p.) and noscapine (10 mg/kg i.p.) were also significantly and dose dependently reduced by pretreatment with rimcazole. However, rimcazole (10 mg/kg i.p.) did not have a significant effect on the antitussive effect of morphine (3 mg/kg i.p.). Furthermore, rimcazole by itself (10 and 30 mg/kg i.p.) had no significant effect on the number of coughs. These results suggest that sigma sites may be involved in the antitussive mechanism of centrally acting non-narcotic antitussive drugs.

Animals↗

Enhancing the in vitro and in vivo detection of aneuploidy by fluorescence in situ hybridization with the use of bromodeoxyuridine as a proliferation marker.

Aneuploidy is associated with spontaneous abortions, birth defects, and many types of human cancers. Currently there are few assays developed for the efficient detection of aneuploidy in vivo. However, with the recent availability of chromosome-specific DNA probes for the rat, fluorescence in situ hybridization (FISH) techniques could be used for the rapid and sensitive detection of aneuploidy in different tissue and cell types. In order to develop a system that can detect alterations in chromosome number in rat cells in vitro, we treated cultured rat lymphocytes with three aneugens-noscapine hydrochloride (0-150 microM) and vincristine and vinblastine sulfate (0-0.06 microM). 5-Bromo-2-deoxyuridine (BrdU; 1 microM) was added to the culture medium to allow proliferating and non-proliferating cells to be distinguished. To test this assay under in vivo conditions, 21-day-old male Sprague-Dawley rats were subcutaneously implanted with osmotic pumps that delivered BrdU (approximately 12 mg/kg per day) continuously. These rats were administered vinblastine sulfate (0, 0.5 and 1mg/kg) by intraperitoneal injection. The rat lymphocytes and hepatocytes incorporating BrdU were detected by immuno-fluorescent labeling, and FISH with a rat chromosome 4 probe was performed on the labeled and unlabeled cells. Highly significant increases in hyperdiploidy were seen in the replicating rat lymphocytes treated with noscapine, vincristine or vinblastine in vitro and in the rat hepatocytes treated with vinblastine in vivo. In contrast, no significant increase in hyperdiploidy was observed in the non-replicating cells. These results demonstrate that this BrdU-enhanced FISH assay with chromosome-specific rat probes can be used to efficiently detect numerical chromosomal aberrations in vitro and in vivo in slowly or moderately replicating rat tissues. The combination of BrdU-labeling and FISH allows the scoring of hyperdiploidy to be focused on the actively replicating cells, thereby increasing the sensitivity of the FISH technique.

Aneuploidy↗

Rational design of the microtubule-targeting anti-breast cancer drug EM015.

We studied in silico docking of noscapine onto tubulin, combined with calculations of surface charge, pi-pi, van der Waals, and hydrogen bonding interactions, to rationally design a new compound, EM015. This tubulin-binding semisynthetic compound is a selective and potent anti-breast cancer agent and displays a 20-fold lower IC(50) against many tumor cells compared with our founding compound, (S)-6,7-dimethoxy-3-((R)-4-methoxy-6-methyl-5,6,7,8-tetrahydro[1,3]-dioxolo-[4,5-g]isoquinolin-5-yl)isobenzo-furan-1(3H)-one (noscapine). Furthermore, EM015 is also effective against a variety of drug-resistant cells. Surprisingly, the cell cycle profile of nontumorigenic normal cells is not affected. Many antimicrotubule cancer drugs in clinic today, particularly taxanes and Vincas, face challenges including frequent visits to the hospital for prolonged i.v. infusions, toxicities, and tumor recurrences due to drug resistance. EM015, on the other hand, is orally available, regresses breast tumor xenografts in nude mice models, and increases longevity. Furthermore, we have failed to observe any detectable toxicity in tissues, such as liver, kidney, spleen, lung, heart, and brain, as well as neurons, which are common targets of antimicrotubule drug therapy. Thus, EM015 has a great promise in the clinic.

Animals↗

Changes in place of origin of heroin seized in Denmark from 1981 to 1986. "Chemical fingerprint" of 138 samples.

Hundred thirty-eight samples of heroin weighing more than 0.1 g seized between 1981 and 1986 were characterized according to their contents of opium alkaloids, adulterants, and diluents together with their form and color. The "chemical fingerprint" was used to establish a change in the heroin during the period. As compared to the first few years covered by the survey, a predominant number of the samples at the end of the period were in the base form and contained the opium alkaloids papaverine and noscapine. In particular, the concentration of noscapine as related to the heroin content of each sample had increased considerably, indicating Pakistan or Iran as being the places of origin of most of the heroin seized in Denmark at the end of the period.

Chemical Phenomena↗

Automated multiple development thin-layer chromatography for separation of opiate alkaloids and derivatives.

There are three types of opiate alkaloids. First, the poppy alkaloids: morphine, codeine, thebaine, noscapine and papaverine; then, the semi-synthetic and synthetic derivatives used in therapy as antitussives and analgesics, such as pholcodine, ethylmorphine and dextromethorphan; at last narcotic compounds, diacetylmorphine (heroin) and opiates employed as substitutes in treatment of addiction: buprenorphine and methadone. For classical thin-layer chromatography (TLC) of opium alkaloids, it is necessary to use complex eluents with strong alkaline substances to obtain a clean separation between morphinan and isoquinoline compounds. This study purposes the planar chromatographic analysis of these substances by the automated multiple development (AMD) compared with results obtained by classical TLC method. The aim of this work was to achieve the best separation of these opiate alkaloids and derivatives by this modern technique of planar chromatography. The AMD system provided a clean separation for each of three opiates groups studied and the best results have been obtained with universal gradient: methanol 100, methanol-dichloromethane 50/50, dichloromethane 100, dichloromethane 100, hexane 100 for opium alkaloids and with gradient A: 5% of 28% ammonia in methanol 100, acetone 100, acetone 100, ethyl acetate-dichloromethane 50/50, dichloromethane 100 for antitussives and substitutes. Two reagents were used for the detection of alkaloids by spraying: Dragendorff and iodoplatinate reagents. The detection limits with these two reagents were 1 microg for ethylmorphine, thebaine, papaverine, codeine, and 2 microg for morphine and noscapine and other alkaloids.

Antitussive Agents↗

Detection and measurement of opium alkaloids and metabolites in urine of opium eaters by methane chemical ionization mass fragmentography.

A gas chromatographic-mass spectrometric assay for eight opium alkaloids in human urine following opium ingestion is described. The compounds were extracted from urine with methylene chloride-isopropanol (7:3, v/v) at pH 9.5, evaporated, derivatized with Tri-Sil Z and analyzed by methane chemical ionization mass fragmentography. The method in sensitive to ca. 0.01 microgram/ml for morphine and codeine and ca. 0.05 microgram/ml for the other compounds. Adsorption problems on the gas chromatography column prevented obtaining reproducible results for the measurement of noscapine. Extraction efficiencies over the pH range of 8-11 for the eight compounds are reported. Retention times of the opium alkaloids were determined using five different liquid phases (3%) on Gas-Chrom Q (100-120 mesh) and two column lengths (36 cm and 183 cm). The 36-cm column packed with OV-210 was selected for use in the assay. Ions were selected for monitoring for each component from their methane chemical ionization spectrum to provide the needed sensitivity and specificity for analysis of a multi-component mixture. The assay was used for the analysis of an "opium eater's" urine. Morphine, codeine, nomorphine, norcodeine and noscapine were detected; however, no evidence was obtained for thebaine, papaverine or oripavine. Unconjugated morphine (0.64 microgram/ml) was present at nearly twice the concentration of codeine (0.37 microgram/ml) and normorphine and norcodeine were present in equal amounts (ca. 0.15 microgram/ml).

Gas Chromatography-Mass Spectrometry↗

Liquid chromatographic-atmospheric pressure chemical ionization mass spectrometric analysis of opiates and metabolites in rat urine after inhalation of opium.

To examine the urinary excretion of opiates and their metabolites following inhalation exposure of rats to opium, analytical procedures for the simultaneous determination of the compounds in opium, the vapor derived by the volatilization of opium and the urine of rats exposed to the opium vapor were developed using liquid chromatography-atmospheric pressure chemical ionization mass spectrometry (LC-APCI-MS). Seven compounds were determined in the opium, namely morphine, codeine, thebaine, noscapine, papaverine, meconic acid and meconin. All seven were extracted with 2.5% acetic acid solution and subjected to LC-APCI-MS analysis. The separation was performed on an ODS column in acetonitrile-50 mM ammonium formate buffer (pH 3.0) using a linear gradient program and quantitative analysis was carried out in the selected ion monitoring mode ([M+H](+)). For the analysis of the volatilization of opium, the opium (1 g) was added to a glass pipe, which was then heated at 300 degrees C for 20 min. Negative pressure (air flow-rate; 300 ml/min) was used to draw the vapor through a series of glass wool and methanol traps. The total amount of each compound in the vapor was estimated by measurement of the compounds trapped in the glass wool and methanol. Wister rats (n=3) were exposed to the vapor derived from the volatilization system and the urinary amounts (0-72 h) of the six opiates and metabolites including morphine-3-grucronide (M3G) and morphine-6-grucronide (M6G) were measured after solid-phase extraction. The calibration curves for those compounds in the rat urine were linear over the concentration range 10-500 ng/ml. The recoveries for each analyte from the rat urine sample spiked with standard solution were generally greater than 80%, and the relative standard deviation for the analytical procedure was less than 8% with the exception of meconin. After inhalation exposure of rats to opium, M3G (5.45-14.38 micro g), morphine (2.27-4.65 micro g), meconin (0.54-1.85 micro g), codeine (0.54-1.85 micro g), noscapine (0.34-0.40 micro g) and papaverine (0.01-0.04 micro g) were detected in the urine over 72 h. However, only trace levels of thebaine were observed despite it being one of the major alkaloids found in the opium. On the other hand, a relatively large amount of meconin was detected in the vapor and the urine as compared with the opium. It is suggested that the presence of meconin in biological fluids could be indicative of opium ingestion by inhalation.

Administration, Inhalation↗

Synthesis and radioligand binding studies of methoxylated 1,2,3,4-tetrahydroisoquinolinium derivatives as ligands of the apamin-sensitive Ca2+-activated K+ channels.

Several methoxylated 1,2,3,4-tetrahydroisoquinoliniums derived from N-methyl-laudanosine and N-methyl-noscapine were synthesized and evaluated for their affinity for apamin-sensitive binding sites. The quaternary ammonium derivatives have a higher affinity with regard to the tertiary amines. 6,7-Dimethoxy analogues possess a higher affinity than the 6,8- and 7,8-dimethoxy isomers. A 3,4-dimethoxybenzyl or a 2-naphthylmethyl moiety in C-1 position are more favorable than a 3,4-dimethoxyphenethyl group. Smaller groups such as propyl or isobutyl are unfavorable. In 6,7-dimethoxy analogues, increasing the size and lipophilicity with a naphthyl group in the C-1 position leads to a slight increase of affinity, while the same group in the 6,7,8-trimethoxy series is less favorable. The 6,7,8-trimethoxy derivative 3f is the first tertiary amine in the series to possess an affinity close to that of N-methyl-laudanosine and N-methyl-noscapine. Moreover, electrophysiological studies show that the most effective compound 4f blocks the apamin-sensitive afterhyperpolarization in rat dopaminergic neurons.

Animals↗