Publications by authors named "Pedro Joseph-Nathan"

Evaluation of DFT calculated vibrational parameters for the IR and VCD spectra similarity of perezone (1) and dihydroperezone (2) was undertaken. Conformational sets were obtained using different search engines, and the parameters needed for spectra prediction were obtained using several combinations of commonly employed functionals and basis sets, and then weighted spectra were generated and compared with observed traces to provide infrared similarity (S ) and enantiomeric similarity index (ESI) values. These values evidenced a poor performance of the evaluated levels of theory that were overcome when using the individual scaling factors approach, providing 16% to 139% increases of the ESI values.

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The occurrence of racemic and enantiomerically enriched (scalemic) mixtures of secondary metabolites in their natural sources is a rare phenomenon. The unprecedent case of enantiomeric variations from levorotatory to dextrorotatory, and back to levorotatory, passing through an almost racemic mixture, was recently documented for areolal, the major epoxythymol of Piptothrix areolare. In an attempt to shed some light to understand the reasons for such an unusual behavior, herein, we evaluated this phenomenon by correlating the areolal enantiomeric purity with several environmental variables, including temperature, humidity, rain precipitation, wind speed, and radiation during over 1 year of the plant life cycle.

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  • The study explores the effectiveness of using individual scaling factors (ISFs) to adjust DFT-calculated frequencies for a specific probe molecule, (+)-(R)-3-methylcyclopentanone, rather than relying on a single scaling factor.
  • By implementing a computational search algorithm to find the optimal scaling factor for each transition, the researchers aimed to maximize the similarity between calculated and observed IR spectra, resulting in notable improvements in the IR similarity (S) and enantiomeric similarity index (ESI) values.
  • The findings indicate that using ISFs leads to significantly better comparisons of calculated and observed spectra and suggests that frequency discrepancies, rather than intensity inaccuracies, contribute to the differences observed in computed IR/VCD spectra based on different
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Diastereoisomeric stigmasterol oxiranes 4, 5, 8, and 9 are known phytosterol oxidation products (POPs) that have been evaluated for their cytotoxicity, although the results are of limited significance since, in most cases, they were evaluated as mixtures. Consequently, to establish biological activity hierarchy of these oxides, it is critical to evaluate individual pure POPs. Therefore, we now describe the obtention of individual molecules and their absolute configuration (AC) determination.

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  • * The resulting compounds included a series of rearrangements leading to new derivatives with unique chemical properties.
  • * The structures of these compounds were determined through advanced techniques like NMR and X-ray diffraction, confirming the complex reactions involved in their synthesis.
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  • - Knowledge of the chiral composition and absolute configuration (AC) of epoxythymols is crucial, as they can exist as scalemic mixtures or pure enantiomers, and methods like NMR and VCD have been used for their characterization.
  • - The study explores the use of electronic circular dichroism (ECD) for determining the AC of an epoxythymol, linking its results with the properties of related known compounds to avoid extensive computations.
  • - Various epoxythymol compounds were isolated from plant extracts, and their structures were confirmed through advanced techniques, with the enantiomeric compositions specifically measured using H NMR-BINOL, and AC determined using ECD and VCD methods.
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The four new briarane diterpenoids 2-butyryloxybriarane B-3 (2), 9-acetylbriarenolide S (3), briarenolide W (4), and 12-isobriarenolide P (5), along with briarane B-3 (1) and the five known diterpenes 6-10 were isolated from the gorgonian coral Briareum asbestinum collected from the Mexican Caribbean Sea. The structures were elucidated by 1D and 2D NMR and MS measurements. Since the structure of briarane B-3 (1) was only suggested and published without any spectroscopic support, it was herein confirmed, and the supporting data are now provided.

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The minimum chemical modification that can be incorporated into an organic molecule is the replacement of a hydrogen atom for a deuterium atom. This change is not altering the pharmacological properties of a molecule, although it provides the possibility of making specific spectroscopic evaluations. Thus, in the present study, we explore how a stereogenic center is influenced by such an isotopic labeling.

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  • The study identified a new compound called 1,10-epoxydeltoidin A from the aerial parts of a plant, alongside known compounds like hopane-6,22-diol and germacranolides deltoidin A and 15-hydroxydeltoidin A.
  • A cyclization reaction using TsOH resulted in the formation of another new compound, characterized as a guaianolide.
  • The researchers established the absolute configurations of the newly identified compounds using vibrational circular dichroism spectroscopy, along with comprehensive NMR data to fully understand their structures.
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  • * Only flavanone 2 showed moderate effectiveness against the antibiotic-resistant MRSA strain, along with selective inhibition of the enzyme 5-hLOX, linking it to anti-inflammatory properties.
  • * Flavanone 2 also demonstrated some cytotoxic activity against cancer cells, although it was significantly less potent compared to known chemotherapeutic drugs like etoposide and taxol.
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The tricyclic sesquiterpene (1,3,4,5,7,8,9,10,11)-7,8-diangeloyloxylongipinan-1,9-diol, or rasteviol (), underwent multiple Wagner-Meerwein molecular rearrangements and several hydride shifts when treated with EtO-BF to generate the six new compounds (1,3,4,5,7,8,9,10,11)-7,8-diangeloyloxy-1,9-epoxyjiquilpane (), (1,3,4,5,7,8,9,11)-8-angeloyloxy-1,7-epoxyzamor-10(14)-ene (), (2,3,4,5,6,7,8,9,10)-7,8-diangeloyloxy-6,9-epoxyjanitziane (), (4,5,7,8,9,10,11)-7,8-diangeloyloxy-9-hydroxyjiquilp-3(15)-ene (), (2,3,5,7,8,10,11)-7,8-diangeloyloxyiratzian-9-one (), and (2,3,5,10,11)-8-angeloyloxyiratzi-7-en-9-one (), of which , , , and possess new hydrocarbon skeletons. Their structures were determined by 1D and 2D NMR in combination with single-crystal X-ray diffraction analyses of derivatives , , , and , which allowed confirmation of their absolute configurations by means of the Flack and Hooft parameters. In addition, some reaction mechanism information was gained from deuterium labeling experiments.

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  • A natural compound, areolal, shows significant variations in its absolute configuration within the same species, with samples displaying different enantiomeric compositions over time from the same geographical area.
  • These variations were measured using NMR data with BINOL as a chiral solvating agent, uncovering a unique phenomenon in the compound’s behavior.
  • The findings highlight potential influences of environmental factors and biochemical processes, emphasizing the importance of careful evaluation of enantiomeric composition for natural products intended for human use.
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Both DNA barcoding and phylogenetic data of the studied botanical material suggested the existence a new population of Galphimia glauca. Their leaves afforded three new nor-3,4-seco-friedelanes named galphimines M-O, together with known galphimines D, E, G, and I. Galphimines M and N possess bicyclic orthoacetates which are the first examples of orthoesters found in the Malpighiaceae family, while galphimine O has a 27,20-δ-lactone moiety.

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Although podocephalol (1) and its derived acetate 2 were found in Lasianthaea podocephala four decades ago, and 1 was later detected in the essential oils of several vegetal species, its absolute configuration (AC) and conformational preferences remained to be established. The structures of ar-himachalene 1, now isolated from Lasianthaea aurea, and its derived acetate 2, were herein confirmed by extensive 1D and 2D nuclear magnetic resonance (NMR) studies, while the conformational preferences of the cycloheptene was established by density functional theory (DFT) calculations, which in combination with vibrational circular dichroism measurements provided the (R) absolute configuration of the molecules. The structure and AC were further verified through the Flack and Hooft parameters calculations derived from single crystal X-ray diffraction data of 2.

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  • - The study focuses on two epimeric diterpenes derived from different species of Bursera, which both rearrange to form the same product through a Wagner-Meerwein transformation.
  • - The researchers found a genetic link between verticillenes and phomactanes, which share a specific bicyclic structure, suggesting a common biogenetic pathway important for producing certain antitumor compounds.
  • - Advanced molecular modeling techniques, including Monte Carlo and DFT calculations, were employed to confirm the structure of the resulting compound and to analyze the epoxidation process of a related compound.
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β-Sitosteryl (S)-ibuprofenate (2), stigmasteryl (S)-ibuprofenate (3), ergosteryl (S)-ibuprofenate (4), and cholesteryl (S)-ibuprofenate (5) were prepared in 70-75% yields by Steglich esterification and were characterized by 1D and 2D NMR, as well as by MS. The new esters were evaluated in in vivo pain models of antinociception and anti-inflammation using the writhing, formalin, and carrageenan tests, in mice and rats, and the results were compared with those of (S)-ibuprofen (1). Damage to the gastric mucosa of animals was also assessed.

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  • - The study isolated compounds 1a, 2a, and 3 (clinopodiolides A-C) as well as clinopodiolide D from the aerial parts of *Salvia clinopodioides*, which include unique structural features like a lactol moiety.
  • - These compounds were analyzed using various spectroscopic techniques, primarily H and C NMR, to confirm their structures.
  • - The isolates exhibited significant antioxidant properties, with compounds 2a and 3 outperforming α-tocopherol in lipid peroxidation inhibition and showing moderate antiamoebic, antigiardial, and antipropulsive effects.
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A series of functionalized sesquiterpenoids derived from benzocyclooctene, including natural parvifoline (1), isoparvifoline (3), epoxyparvifoline (5), epoxyisoparvifoline (7), 8,12-oxyparfivoline (9), 8,14-oxyparvifoline (11), and the respective benzoyl derivatives 2, 4, 6, 8, 10, and 12, were prepared and tested for their inhibitory effect on the in vitro α,β-tubulin polymerization process. The structural analysis and characterization of the new compounds 5-7 and 9-12 were achieved by 1D and 2D NMR spectroscopy, mass spectrometry, and X-ray diffraction analysis of 6, 7, and 9. Preparation of 9 and 12 involved molecular rearrangements of the epoxide group with transannular 1,5-hydride shifts.

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A biomimetic transformation of p-menthene glucosides into aromatic monoterpenoids that alluded to mechanisms for essential oil metabolism, which lines up with the precepts of molecular economy, is described. Acid treatment of (-)-(3 S,4 S,6 R)-3,6-dihydroxy-1-menthene 3- O-β-d-glucopyranoside (1) and (-)-(3 S,4 R,5 R,6 S)-3,5,6-trihydroxy-1-menthene 3- O-β-d-glucopyranoside (2), from Ageratina glabrata, yielded p-cymene (7) and carvacrol (9). The stable oxidized intermediates (+)-(3 S,4 S,6 R)-3,6-dihydroxy-1-menthene (3), (+)-(1 S,4 S,6 R)-1,6-dihydroxy-2-menthene (4), (+)-(1 R,4 S,6 R)-1,6-dihydroxy-2-menthene (5), (+)-(4 S,6 R)-yabunikkeol (6), (+)-(4 S)-carvotanacetone (8), (+)-(1 S,4 S,5 R,6 R)-1,5,6-trihydroxy-2-menthene (15), (+)-(1 R,4 S,5 R,6 R)-1,5,6-trihydroxy-2-menthene (16), and the new (+)-(4 S,5 R,6 S)-1(7),2-menthadiene (17) permitted establishment of the reaction mechanisms.

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The 750 MHz H NMR spectrum of cholesteryl benzoate (1b) could be assigned completely, which means all chemical shifts and all coupling constants, including some long-range values, were established. This task was possible by extracting many approximate coupling constant values in the overlapped spectrum region from an HSQC experiment, and using these values in the H iterative full spin analysis integrated in the PERCH NMR software. The task was facilitated using our published data for 3β-acetoxypregna-5,16-dien-20-one (3), the assignment data of the sesquiterpene benzoquinone dihydroperezone (2), also performed in the present study, which contains the same carbon atoms chain than cholesterol (1a), and an HSQC study of (25R)-27-deuteriocholesterol (1c) we prepared some 40 years ago.

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Article Synopsis
  • - The study introduces a method to analyze the enantiomeric excess and absolute configuration of natural epoxythymols using BINOL as a chiral agent alongside vibrational circular dichroism (VCD).
  • - Five epoxythymol compounds from Ageratina glabrata were isolated, three of which were enantiomerically pure, while others exhibited scalemic mixtures, highlighting variations in stereochemistry.
  • - The research also examined the racemization of epoxythymol derivatives and their specific rotations, indicating a range of mixtures and providing new insights since prior analyses of these compounds' absolute configurations had been limited.
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  • Research indicates the absolute configuration (AC) of the diterpenoids icetexone and conacytone, isolated since 1976, was not definitively proven until now.
  • The AC determination utilized advanced techniques such as single-crystal X-ray diffraction and vibrational circular dichroism due to the compounds' solubility issues.
  • Calculations suggest that 2-hydroxy-1,4-quinones are significantly more stable than their 4-hydroxy-1,2-quinone tautomers, leading to the conclusion that the compound romulogarzone is not a naturally occurring entity.
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From the aerial parts of , eleven diterpenoids were isolated; among them, four icetexanes and one abietane (-) are reported for the first time. Their structures were established by spectroscopic means, mainly ¹H- and C-NMR, including 1D and 2D homo- and hetero-nuclear experiments. Most of the isolated diterpenoids were tested for their antiproliferative, anti-inflammatory, and radical scavenging activities using the sulforhodamine B assay on six cancer cell lines, the TPA-induced ear edema test in mice, and the reduction of the DPPH assay, respectively.

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  • The study focuses on determining the absolute configuration of two ocimenes extracted from Artemisia absinthium essential oils using vibrational circular dichroism (VCD) methods and density functional theory (DFT) calculations.
  • The research included detailed nuclear magnetic resonance (NMR) measurements, resulting in systematic H and C chemical shift data, and analyzing homonuclear H coupling constants for one of the ocimenes.
  • Through iterative experiments and software analysis, the study successfully assigned specific signals in the molecular structure, enhancing the understanding of its chemical properties.
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  • Two new compounds, dioxomorpholines 1 and 2, along with three derivatives (3-5) and the known compound PF1233 B (6), were extracted from a marine Aspergillus species.
  • The structural identification of these compounds was achieved using advanced NMR and HRESIMS techniques, with the absolute configuration of 1 and 2 determined through vibrational circular dichroism spectra analysis.
  • While compounds 3, 5, and 6 showed no toxicity to various human cancer cell lines, they were effective in inhibiting P-glycoprotein, which helps counteract multidrug resistance, particularly in doxorubicin-resistant cells.
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