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Biomedical subjects

Ricardo Riguera

Publications and source records attributed to Ricardo Riguera.

At least 19 recordsLinked to original sources

The 1H NMR method for the determination of the absolute configuration of 1,2,3-prim,sec,sec-triols.

The absolute configuration of 1,2,3-prim,sec,sec-triols can be assigned by comparison of the 1H NMR spectra of the tris-(R)- and the tris-(S)-MPA ester derivatives. An experimental demonstration of this correlation with 24 triols of known absolute configuration and a protocol using two parameters-Deltadelta(RS)(H3) and the difference between Deltadelta RS (H2) and Deltadelta RS (H3) = absolute value (Delta(Deltadelta RS))-for its application to the determination of the absolute configuration of other triols are presented.

Alcohols↗

Role of barium(II) in the determination of the absolute configuration of chiral amines by 1H NMR spectroscopy.

The assignment of the absolute configuration of alpha-chiral primary amines by complexation of their MPA derivatives with Ba2+ and NMR analysis of the changes generated is presented. All that is required is (a) the derivatization of the amine of unknown configuration with one enantiomer of the auxiliary reagent (MPA), either (R) or (S)-alpha-methoxyphenylacetic acid, (b) the recording of the 1H NMR spectrum of the resulting amide in MeCN-d3, (c) the addition of Ba(ClO4)2 to the NMR tube, and (d) the recording of a second spectrum after a few minutes of shaking. The above steps take a few minutes and are followed by an analysis of the shifts (measured as Deltadelta(Ba)) produced on the L1 and L2 substituents of the amine by the addition of Ba2+ and their comparison with those expected from the conformational changes produced by the complexation. The conformational changes initiated by complexation have been subjected to NMR and CD studies, which showed that the formation of the complex shifts the equilibrium from an antiperiplanar (AP) to a synperiplanar (SP) form, leading to an increase of the shielding by the phenyl group of MPA of the substituent of the amine located on the same side. In addition, theoretical calculations [density functional theory (DFT)] provide further support for the formation, structure, and stability of the complexes. The general applicability of this method and the trustworthiness of the resulting configurational assignment were guaranteed with a series of amines of known absolute configuration and varied structures, used as test compounds. The method proposed is simple, fast, and inexpensive, and it requires a very small amount of sample, only one derivatization, and the recording of just two 1H NMR spectra at room temperature. A graphical guide to simplify the application of this method is included.

Journal Article↗

"Clickable" PEG-dendritic block copolymers.

Three generations of azido-terminated PEG-dendritic block copolymers have been synthesized and completely characterized by NMR and MALDI-TOF. A radial decrease of density, leading to more mobile protons at the outermost periphery, and an increasingly higher compactness of the core with generation have been determined by T(1) and T(2) relaxation time studies. The efficient surface decoration of these dendritic polymers by means of click chemistry has been demonstrated by the incorporation of unprotected carbohydrate units in very good to excellent yields. The reaction proceeds at room temperature, under aqueous conditions, and requires just catalytic amounts of Cu. The modified block copolymers are conveniently purified by ultrafiltration. The glycodendrimers functionalized with alpha-mannose form aggregates with concanavalin A as determined by absorbance experiments at 400 nm. This aggregation ability increases with generation.

Magnetic Resonance Spectroscopy↗

Antiplasmodial metabolites isolated from the marine octocoral Muricea austera.

Bioassay-guided fractionation of the MeOH extract from the octocoral Muricea austera collected in the Pacific coast of Panama led to the isolation of eight compounds, including three tyramine derivatives (1-3), two steroidal pregnane glycosides (4, 5), and three sesquiterpenoids (6-8). Compounds 2-5 are new natural products, and their structures were determined on the basis of their spectroscopic data (HRMS, 1D and 2D NMR, and CD studies). The antiprotozoal activities of the natural compounds 1-8 as well as those of a series of synthetic glycosides (11-22) and tyramine derivatives (23-35) were evaluated in vitro against a drug-resistant Plasmodium falciparum and intracellular form of Trypanosoma cruzi.

Animals↗

Absolute configuration of amino alcohols by 1H-NMR.

A general NMR spectroscopy protocol for determination of absolute configuration of 1,2-amino alcohols, that allows differentiation of the four possible stereoisomers by analysis of the 1H NMR spectra of their bis-MPA derivatives, is described.

Journal Article↗

The prediction of the absolute stereochemistry of primary and secondary 1,2-diols by 1H NMR spectroscopy: principles and applications.

The absolute configuration of 1,2-diols formed by a primary and a secondary (chiral) hydroxyl group can be deduced by comparison of the 1H NMR spectra of the corresponding (R)- and bis-(S)-MPA esters (MPA = methoxyphenylacetic acid). This method involves the use of the chemical shifts of substituents L1/L2 attached to the secondary (chiral) carbon, and of the hydrogen atom linked to the chiral center (C alpha-H) as diagnostic signals. Theoretical (AM1, HF, and B3 LYP calculations) and experimental data (dynamic and low-temperature NMR spectroscopy, studies on deuterated derivatives, constant coupling analysis, circular dichroism (CD) spectra, and NMR studies with a number of diols of known absolute configuration) prove that the signs of the delta delta(RS) obtained for those signals correlate with the absolute configuration of the diol. A graphical model for the reliable assignment of the absolute configuration of a 1,2-diol by comparison of the NMR spectra of its bis-(R)- and bis-(S)-MPA esters is presented.

Alcohols↗

Determining the absolute stereochemistry of secondary/secondary diols by 1H NMR: basis and applications.

[structures: see text] The absolute configuration of 1,2-, 1,3-, 1,4-, and 1,5-diols formed by two secondary (chiral) hydroxy groups can be deduced by comparison of the NMR spectra of the corresponding bis-(R)- and bis-(S)-MPA esters. The correlation between the NMR spectra of the bis-ester derivatives and the absolute stereochemistry of the diol involves the comparison of the chemical shifts of the signals for substituents R1/R2 and for the hydrogens attached to the two chiral centers [H(alpha)(R1) and H(alpha)(R2)] in the bis-(R)- and the bis-(S)-ester and is expressed as delta deltaRS. Theoretical calculations [energy minimization by semiempirical (AM1), ab initio (HF), DFT (B3LYP), and Onsager methods, and aromatic shielding effect calculations] and experimental data (NMR and CD spectroscopy) indicate that in these bis-MPA esters, the experimental delta deltaRS values are the result of the contribution of the shielding/deshielding effects produced by the two MPA units that combine according to the actual stereochemistry of the diol. The reliability of these correlations is demonstrated with a wide range of diols of known absolute configuration derivatized with MPA and 9-AMA as auxiliary reagents. A simple graphical model that allows the simultaneous assignment of the two asymmetric carbons of a 1,n-diol by comparison of the NMR spectra (delta deltaRS signs) of its bis-(R)- and bis-(S)-AMAA ester derivatives is presented.

Journal Article↗

Leptolide, a new furanocembranolide diterpene from Leptogorgia alba.

Six furanocembranolides (1-6) and one pseudopterolide (7) have been isolated from the octocorals Leptogorgia alba and Leptogorgia rigida, collected on the Pacific coast of Panama. Compound 1, named leptolide, has a new structure closely related to the neurotoxin lophotoxin (3). The X-ray structures of 1-3 were determined, and the absolute configurations of 2-7 are discussed. Compounds 1-7 were evaluated in vitro against drug-resistant Plasmodium falciparum.

Animals↗

A new pyrazolo pyrimidine derivative inhibitor of cyclooxygenase-2 with anti-angiogenic activity.

In a previous study, we reported a new pyrazolo pyrimidine derivative, N(4)-benzyl-N(6),N(6)-dimethyl-1-1(tert-butyl)-1H-pyrazolo[3,4-d]pyrimidine-6,4-diamine (DPP), which inhibited potently cyclooxygenase-2 activity in intact cell assays with minor activity against cyclooxygenase-1 (IC(50)=0.9 nM for cyclooxygenase-2 versus IC(50)=59.6 nM for cyclooxygenase-1). In the present work, this behaviour was confirmed in vivo by using the 24-h zymosan-injected mouse air pouch model (ID(50)=1.36 nM/pouch for prostaglandin E(2) level). We also studied the possible beneficial effect of DPP in the angiogenesis-dependent murine air pouch granuloma and rat paw carrageenan-induced hyperalgesia models. DPP exerted analgesic and anti-angiogenic (52% reduction in angiogenesis at 10 mg/kg, i.p.) effects that may be associated with inhibition of cyclooxygenase-2 activity.

Angiogenesis Inhibitors↗

"Mix and shake" method for configurational assignment by NMR: application to chiral amines and alcohols.

[reaction: see text] A new methodology for determining absolute configurations by NMR in just a few minutes is presented. The required derivatives are obtained by mixing a solid matrix-bound auxiliary reagent (MPA, MTPA, or BPG) with the chiral substrate (primary amines or secondary alcohols) directly in the NMR tube. The NMR spectra of the derivatives are obtained without any type of separation, workup, or manipulation. The use of a 1:2 (R)/(S)-MPA resin permits the configurational assignment to be carried out with just one spectrum.

Journal Article↗

6-Dimethylamino 1H-pyrazolo[3,4-d]pyrimidine derivatives as new inhibitors of inflammatory mediators in intact cells.

The synthesis of 6-dimethylamino 1H-pyrazolo[3,4-d]pyrimidines substituted at positions 1 and 4, and their effects on murine macrophage and human neutrophil functions are described. Several compounds and especially 4b-6b are potent inhibitors of PGE(2) generation in murine macrophages. This action is related to a direct effect on COX-2 activity without affecting the enzyme expression. Some of these compounds also inhibited COX-1 and COX-2 in human monocytes and 4b showed selectivity for COX-2 inhibition.

Animals↗

Piperazine N-substituted naphthyridines, pyridothienopyrimidines and pyridothienotriazines: new antiprotozoals active against Philasterides dicentrarchi.

New antiprotozoals active against Philasterides dicentrarchi, the causative agent of scuticociliatosis in farmed turbot and Black Sea bass-bream, have been synthesised and tested. The most active compounds posses a piperazine ring, generally N-bonded to the heterocycle, and are the 1,8-naphthyridines, 2f and 5o, the pyridothienopyrimidine (7), and the pyridothienotriazines, 8, 9, 12d, 12f, 12h, 12m and 12k. Pyridothienotriazine (12k) presents the same activity (Lethal Dose, LD=0.8/1.5 mg L(-1)) as the well-known antiparasitics niclosamide and oxyclozanide.

Animals↗

Triterpene glycosides from the Far Eastern sea cucumber Cucumaria conicospermium.

Four new triterpene glycosides, cucumariosides A(2)-5 (1), A(3)-2 (2), A(3)-3 (3), and isokoreoside A (4), along with the previously isolated koreoside A (5), have been found in the sea cucumber Cucumariaconicospermium. Glycoside 1 was isolated as a native substance, while glycosides 2-5 were identified through their desulfated derivatives. Their structures have been deduced by extensive spectral analysis (NMR and MS) and chemical evidence. All the glycosides contain the same branched pentasaccharide carbohydrate chain but differ in the number and positions of the sulfate groups. Glycoside 1 has one, glycosides 2 and 3 have two, and glycosides 4 and 5 have three sulfate groups. Glycosides 2-5 are non-holostane derivatives; their aglycons lack the 18(20)-lactone and are characterized by shortened side chains, which is a very rare feature among the sea cucumber glycosides.

Animals↗

dd-diketopiperazines: antibiotics active against Vibrio anguillarum isolated from marine bacteria associated with cultures of Pecten maximus.

Bacterial strains CF-20 (CECT5719) and C-148 (CECT5718), isolated from cultures of larvae of molluscs, are shown to produce substances 1-5 with strong antibiotic activity against Vibrio anguillarum (MIC: 0.03-0.07 mug/mL) and identified as the dd-diketopiperazines cyclo(d)-Pro-(d)-Phe (1), cyclo(d)-Pro-(d)-Leu (2), cyclo(d)-Pro-(d)-Val (3), cyclo(d)-Pro-(d)-Ile (4), and cyclo-trans-4-OH-(d)-Pro-(d)-Phe (5). Comparison with other stereoisomers indicates that inhibition of V. anguillarum is associated with the presence of at least one d-amino acid in the diketopiperazine system. This is the first time a series of dd-diketopiperazines has been isolated from a single natural source and their inhibitory activity against V. anguillarum described.

Animals↗

Absolute configuration of secondary alcohols by 1H NMR: in situ complexation of alpha-methoxyphenylacetic acid esters with barium(II).

A novel methodology that allows the assignment of the absolute configuration of chiral secondary alcohols by NMR using only one derivative is presented. All that is needed is (a) the derivatization of the alcohol of unknown configuration with one enantiomer--either the (R)- or the (S)--of alpha-methoxyphenylacetic acid (MPA), (b) the recording of the 1H NMR spectrum of the resulting ester in MeCN-d3, and (c) addition of a barium(II) salt [i.e. Ba(ClO4)2] to the NMR tube till saturation and recording of a second spectrum. The assignment of the R/S configuration to the alcohol takes a few minutes and consists on the comparison of the signs of the shifts (Deltadelta(Ba)) produced by addition of the barium(II) with those predicted for the (R) and the (S) enantiomers in accordance to a simplified model that reflects the conformational changes produced by the complexation with barium and their consequences in the chemical shifts. These conformational changes are based on experimental NMR and CD results showing that the formation of a barium(II) complex with the MPA ester moves the conformational equilibrium between syn- (sp) and anti-periplanar (ap) forms toward the most stable ones (sp), and that this leads to the increase of the shielding caused by the MPA phenyl group on a certain substituent of the alcohol. In addition, ab initio Hartree-Fock (HF) and density functional theory (DFT) calculations provide further evidence on the formation, structure, and stability of the complexes with Ba2+, Mg2+, and the influence of the solvent. The general applicability of this methodology and the reliability of the configurational assignment were assured by the study of about twenty alcohols of known configuration and diverse structural features. Its scope and limitations have also being established and other representative cations (i.e. Li+, Rb+, Cs+, Mg2+, Ca2+, Sc3+, V3+, Zn2+) were also evaluated. The procedure proposed is simple, fast, and cheap because it requires a very small amount of sample, only one derivatization, and the recording of only two 1H NMR spectra at rt. A graphical guide to facilitate the application of this new method is included at the end of the paper.

Journal Article↗

A new ditriazine inhibitor of NF-kappaB modulates chronic inflammation and angiogenesis.

We have previously shown that a ditriazine derivative 4,10-dichloropyrido[5,6:4,5]thieno[3,2- d':3,2- d]-1, 2, 3-ditriazine (DTD) modulates acute inflammation in murine models by inhibition of leukocyte functions and expression of inducible enzymes including nitric oxide synthase and cyclooxygenase-2 (COX-2). In the present work, we have demonstrated the anti-inflammatory effect of DTD after oral administration in the rat adjuvant-induced arthritis, by reduction of interleukin-1beta and tumour necrosis factor-alpha levels and COX-2 expression in the inflamed tissues. These mediators were also significantly decreased by DTD treatment in the angiogenesis-dependent murine air pouch granuloma model, where this agent exerted anti-inflammatory and antiangiogenic effects. In vitro experiments indicated that DTD is an inhibitor of the nuclear factor-kappaB (NF-kappaB) pathway of cellular activation in macrophages, in parallel with the regulation of cytokine release. Our results suggest that the anti-inflammatory and antiangiogenic properties of DTD can be related to the inhibition of cytokine and PGE(2) production by interfering with NF-kappaB activation. This compound thus offers a therapeutic potential for the treatment of chronic inflammatory diseases with an angiogenic component, such as rheumatoid arthritis.

Angiogenesis Inhibitors↗