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Structural study of spirolide marine toxins by mass spectrometry. Part II. Mass spectrometric characterization of unknown spirolides and related compounds in a cultured phytoplankton extract.

The spirolides are a family of marine biotoxins derived from the dinoflagellate Alexandrium ostenfeldii, recently isolated from contaminated shellfish and characterized. A crude phytoplankton extract has been extensively studied for mass spectrometric determination and characterization of several known spirolides and previously unreported compounds. The complex sample was initially analyzed by full-scan mass spectrometry in an ion-trap instrument, enabling identification of several components. Subsequent analysis by selected-ion monitoring in a triple-quadrupole instrument resulted in the confirmation of the identities of the compounds detected in the ion trap. Purification of the crude extract was performed using an automated mass-based fractionation system, yielding several fractions with different relative contributions of the spirolide components. Collision-induced dissociation (CID) in the triple-quadrupole instrument produced significant fragment ions for all identified species. Selective enrichment of some minor compounds in certain fractions enabled excellent CID spectra to be generated; this had previously been impossible, because of interferences from the major toxins present. Fourier-transform ion cyclotron resonance (FTICR) mass spectrometry was then performed for accurate determination of the masses of MH+ ions of all the species present in the sample. Additionally, infrared multiphoton dissociation in the FTICR instrument generated elemental formulae for product ions, including those formed in the previous collisional activation experiments. Collection of these results and the fragmentation scheme proposed for the main component of the extract, 13-desmethyl spirolide C, from part I of this study, enabled elucidation of the structures of some uncharacterized spirolides and some biogenetically related compounds present at previously unreported masses.

Animals↗

Semi-synthesis of 2-deoxo- and 3-epi-paraherquamide A.

2-Deoxo- and 3-epi-paraherquamide A were synthesized from paraherquamide A. 2-Deoxoparaherquamide A has good activity against HC and TC in our jird model comparable to the parent compound, while 3-epi-paraherquamide A showed no activity.

Animals↗

Phosphorus-nitrogen compounds: synthesis and spectral investigations on new spiro-cyclic phosphazene derivatives.

The condensation reaction of {N-[(2-hydroxyphenylmethyl)amino]-4,6-dimethylpyridine} (2), which is a reduction product of 1, with trimer N(3)P(3)Cl(6) affords partially a substituted spiro-cyclic phosphazene derivative (3). The fully substituted phosphazenes (4 and 5) have also been obtained from the reactions of 3 with the excess of pyrrolidine and morpholine. The characterizations and spectral investigations of these compounds have been made by elemental analyses, FTIR, 1H-, 13C-, 31P NMR, correlation spectroscopy (COSY), heteronuclear chemical shift correlation (HETCOR), heteronuclear multiple-bond correlation (HMBC) and mass spectroscopy (MS). The salient features of spectral data of these compounds have been discussed.

Carbon Isotopes↗

Study of structure/activity relationships by multivariate statistical analysis in a series of triazaspirodecanediones with CNS activities.

The CNS activities of thirteen triazaspirodecanediones have been compared by multivariate statistical analysis. The response parameters used in this study were spontaneous motor activity, potentiation of pentobarbital effect, anticonvulsant and anxiolytic activities. Pharmacological data were analyzed using two methods: (1) a factorial correspondence analysis; (2) an automatic analysis based first on a hierarchical clustering represented by a dendrogram and second on the minimum spanning tree method. The obtained results allow to imagine the synthesis of more specific compounds.

Animals↗

Spiroimidazolidinone library derivatives on SynPhase lanterns.

Optimization and solid-phase synthesis of new spiroimidazolidinone derivatives as highly functionalized templates is reported. The synthesis of 1,4,8-triazaspiro[4.5]decan-2-one derivatives was performed on SynPhase lanterns from dipeptides anchored on the solid support and N-protected piperidone. A library of 180 discrete compounds was prepared.

Chromatography, High Pressure Liquid↗

Concerted synthesis of a spirobicyclic type-VI beta-turn mimic of Pro-Pro-Pro-NH2.

A highly concerted strategy for the synthesis of symmetrical type-VI beta-turn mimics was formulated. A proof of concept is presented in the synthesis of a spirobicyclic peptidomimetic of Pro-Pro-Pro-NH2, compound 6. The formation of an unusual adduct that was encountered in the process also is reported. This approach is potentially general for type-VI beta-turn mimics where the i+1 and i+2 residues are identical.

Amino Acid Sequence↗

Inhibition of converting enzyme in the cerebrospinal fluid of rats after oral treatment with converting enzyme inhibitors.

Inhibition of brain converting enzyme (CE) has been implicated in the antihypertensive action of some CE inhibitors. However, it is still a matter of debate whether these drugs gain access to the central nervous system upon systemic administration. In this study in rats we investigated the ability of p.o. applied CE inhibitors to penetrate from blood into cerebrospinal fluid (CSF) by analyzing the inhibition of CE activity in the CSF after acute bolus and after 1 week overnight treatment with enalapril, ramipril and Hoe 288. Penetration into the CSF closely paralleled the lipid solubility of the drugs. The most lipophilic drug, Hoe 288 (10 mg/kg), inhibited CE activity in the CSF after acute (66%) and after chronic (30%) p.o. treatment. Ramipril (10 mg/kg), being less lipophilic than Hoe 288, was only effective after acute bolus administration (59% inhibition), whereas the most hydrophilic drug, enalapril (30 mg/kg), did not reduce CE activity in the CSF after either regimen. The CE inhibition in the CSF after acute p.o. treatment with ramipril and Hoe 288 was dose-dependent with threshold doses of 3 to 10 mg/kg (ramipril) and less than 1 mg/kg (Hoe 288). The presence of ramipril and Hoe 288 in the CSF was also demonstrated by the inhibitory effect of heat-inactivated CSF from CE inhibitor-treated rats on purified CE from rabbit lung. A comparison of the in vitro activities of the three prodrugs and their parent diacids against CE in plasma and in CSF and against purified CE revealed hydrolysis of the prodrugs to their parent diacids in plasma and CSF.(ABSTRACT TRUNCATED AT 250 WORDS)

Administration, Oral↗

New constituents of the leaves of Alpinia flabellata.

Two new compounds were isolated from the leaves of Alpinia flabellata. The structures of these compounds were determined by a combination of NMR techniques and HREIMS as 4-hydroxy-2-(2,4,5-trimethoxyphenyl)-2E-butenal (1) and rel-labd-12-en-15(16)-olid-7-one-8R-spiro-1'-[2S-(2,4,5-trimethoxyphenyl)-3-cyclohexene] (2).

Aldehydes↗

Lipophilicity characterization of new N-phenylamino-azaspiranes as potential anticonvulsant agents.

The lipophilicity of a library of N-phenylamino-2-azaspiro[4.4]nonane- and [4.5]decane-1,3-dione derivatives has been determined by reversed-phase thin-layer chromatography with n-propanol-Tris buffer (pH 7.4) mixtures as mobile phases. Examination of chromatographic behaviour revealed a linear correlation between R(M) values and the concentration of n-propanol in the mobile phase. The partition coefficients (logP) were also calculated by use of the PrologP module of the Pallas computer program. Comparison of R(M0) values and calculated (logP(PALLAS)) data revealed the correlation expressed by the equation: logP(PALLAS) = 0.9995 R(M0) + 1.3451 (n = 28; r = 0.8971; F = 107.13; p < 0.05). The role of the lipophilicity in the anticonvulsant activity of a set of compounds examined is discussed: the active anticonvulsants were less lipophilic than inactive ones.

Animals↗

Carbohydrate-derived spiroketals: stereoselective synthesis of di-D-fructose dianhydrides via intramolecular aglycon delivery.

[reaction: see text] A one-pot synthesis of C(2)-symmetric di-d-fructose dianhydrides having the 1,6,9,13-tetraoxadispiro [4.2.4.2]tetradecane skeleton has been accomplished via intramolecular aglycon delivery from (6 --> 6) xylylene-tethered fructofuranose precursors. The stereochemical outcome of the glycosylation-spiroketalization process is governed by the geometrical constraints imposed by the rigid tetracyclic structure of the final compound.

Cyclization↗

[Studies on antitumor drugs: the synthesis of N',N"-dispirotripiperaziniums].

In order to search for new antitumor drugs, sixteen N',N"-dispirotripiperazine derivatives were synthesized from N',N"-dispirotripiperazinium dichloride dihydrochloride by substitution, acylation and Mannich reaction. Six compounds were selected for preliminary pharmacological test. The result showed that five compounds possess inhibitory action against carcinoma S37 in rats. The inhibitory activity of compounds VI and X was 55.0% and 41.9% respectively.

Animals↗

1,3,5-triazine-based mass spectral tagging of one-bead one-compound libraries.

A triazine-based mass encoding strategy that accommodates cleavable linker, isotopic labeling, and diversity receptor moieties is reported. The resulting triazine-based tags, which are coupled to bifunctionalized TentaGel resin in a one-pot transformation, enable the construction of a 1-oxa-2,8-diazaspiro[4.5]dec-2-ene-7-carboxamide library and facilitate decoding by equalizing the ionization potential of the liberated tags in single bead MALDI-TOF experiments as well as balancing the reactivity of the starting tags in the resin coupling step. [reaction: see text].

Aza Compounds↗

AR-R17779, and alpha7 nicotinic agonist, improves learning and memory in rats.

Nicotinic acetylcholine systems have been found to be important for learning and memory function. The prototypic nicotinic agonist nicotine has been shown in a variety of studies to improve aspects of cognitive function. The specific involvement of nicotinic receptor subtypes is now being investigated. The involvement of alpha7 nicotinic receptors was assessed in this project using a novel alpha7 nicotinic agonist, AR-R 17779. Repeated doses (subcutaneous injection 20 min before testing) of the racemic mixture AR-R 13489 and its active isomer AR-R 17779 were assessed in adult female Sprague-Dawley rats using the eight-arm radial maze. AR-R 13489 (2 mg/kg) caused a significant improvement of long-term win-shift acquisition after 3 weeks of training (n = 10 per group). The same dose of AR-R 17779 also caused a significant improvement in repeated acquisition within each daily session in the radial-arm maze. In another study, the active isomer AR-R 17779 significantly improved radial-arm maze working memory function in rats with lesions to the septohippocampal projection. Fimbria-fornix lesions significantly impaired working memory performance and AR-R 17779 significantly reversed that impairment. These studies showed that alpha7 nicotinic agonist treatment improved learning in two radial-arm maze tasks and reversed working memory impairment caused by fimbria-fornix sections, providing evidence for alpha7 involvement in learning and memory, and the potential therapeutic use of AR-R 17779.

Animals↗

Antitumor effect of keto-diepoxides isolated from the fungus Nattrassia mangiferae.

A novel keto-diepoxide Sch 49209 and its derivative Sch 50672, produced by the fungus Nattrassia mangiferae, inhibited tumor cell invasion through an artificial basement membrane. These compounds, at nontoxic concentrations, inhibited invasion of HT-1080 cells in a dose-dependent manner. The IC50 values for Sch 49209 and Sch 50672 were 0.75 and 8 microM, respectively, when cells were incubated with drugs for 5 h. Sch 49209 inhibited both tumor cell invasion and cell motility to the same extent under conditions that did not cause any apparent cytotoxicity. Sch 4209 and Sch 50672, however, inhibited the growth of ras-transformed cells in a semisolid medium in a 5-day culture with IC50 values of 0.6 and 2.4 microM, respectively. They also inhibited the anchorage-dependent growth of pT24 cells in vitro with IC50 values of 0.5 and 0.9 microM for Sch 40209 and Sch 50672, respectively. Using the murine lung epidermoid carcinoma M27 cells implanted SC in mice as a model, we found both Sch 49209 and Sch 50672 inhibited the growth of this tumor at doses ranging from 2 to 10 mg/kg. These compounds also decreased the formation of spontaneous lung metastasis in this model. Sch 50672 inhibited the growth of human tumor xenografts, SW620 and A431, in athymic mode mice. Our data suggest that keto-diepoxides inhibit tumor growth and metastasis and that this activity may be due, in part, to anti-invasive activity.

Animals↗