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1.
Int J Mol Sci ; 25(15)2024 Jul 31.
Article in English | MEDLINE | ID: mdl-39125929

ABSTRACT

In this work, liposomes loaded with the fungicide, Fludioxonil (FLUD), for the containment of fungal diseases in agriculture were developed. Three types of vesicles with different compositions were compared: (I) plain vesicles, composed of soy phosphatidylcholine and cholesterol; (II) PEG-coated vesicles, with an additional polyethylene glycol coating; and (III) cationic vesicles, containing didodecyldimethylammonium bromide. Nanometric-sized vesicles were obtained both by the micelle-to-vesicle transition method and by the extrusion technique, and encapsulation efficiency, drug loading content, and Zeta potential were determined for all the samples. The extruded and PEGylated liposomes were the most stable over time and together with the cationic ones showed a significant prolonged FLUD release capacity. The liposomes' biological activity was evaluated on conidial germination, germ tube elongation and colony radial growth of the ascomycete Botrytis cinerea, a phytopathogenic fungus affecting worldwide many important agricultural crops in the field as well as in the postharvest phase. The extruded and PEGylated liposomes showed greater effectiveness in inhibiting germ tube elongation and colony radial growth of the fungal pathogen, even at 0.01 µg·mL-1, the lowest concentration assessed.


Subject(s)
Botrytis , Dioxoles , Fungicides, Industrial , Liposomes , Plant Diseases , Liposomes/chemistry , Botrytis/drug effects , Fungicides, Industrial/pharmacology , Fungicides, Industrial/chemistry , Dioxoles/pharmacology , Dioxoles/chemistry , Dioxoles/administration & dosage , Plant Diseases/microbiology , Plant Diseases/prevention & control , Polyethylene Glycols/chemistry , Agriculture/methods , Quaternary Ammonium Compounds/chemistry , Quaternary Ammonium Compounds/pharmacology , Phosphatidylcholines/chemistry , Spores, Fungal/drug effects , Pyrroles
2.
Food Chem ; 457: 140079, 2024 Nov 01.
Article in English | MEDLINE | ID: mdl-38901343

ABSTRACT

The unknown effect of sesame lignans on aroma formation in sesame oil via the Maillard reaction (MR) and lipid oxidation was investigated. Sesamin, sesamolin, or sesamol was added to 3 models: lysine+glucose (MR), cold-pressed sesame oil (SO), and MR + SO, and were heated at 120 °C for 60 min. All three lignans suppressed SO oxidation while increasing DPPH scavenging ability (p < 0.05). Lignans increased depletions of lysine and glucose and MR browning (p < 0.05). Lignans reduced most aroma-active pyrazines, aldehydes, ketones, alcohols, and esters (p < 0.05). Sesamol and sesamolin increased perceptions of the preferable aromas of nutty, roasted sesame, and popcorn while reducing the undesirable green and rancid aromas (p < 0.05). Sesamol demonstrated a stronger effect on lipid oxidation, MR browning, aroma formation, and sensory perception than sesamin and sesamolin. This study suggests that sesame lignans can modulate aroma formation and sensory perception of sesame oil by interacting with the MR and lipid oxidation pathways.


Subject(s)
Lignans , Maillard Reaction , Odorants , Oxidation-Reduction , Sesame Oil , Sesamum , Lignans/chemistry , Sesame Oil/chemistry , Sesamum/chemistry , Odorants/analysis , Humans , Phenols/chemistry , Dioxoles/chemistry , Benzodioxoles/chemistry
3.
Int J Biol Macromol ; 270(Pt 1): 132101, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38734354

ABSTRACT

Aspergillus oryzae ß-D-galactosidase (ß-Gal) efficiently hydrolyzes sesaminol triglucoside into sesaminol, which has higher biological activity. However, ß-Gal is difficult to be separate from the reaction mixture and limited by stability. To resolve these problems, ß-Gal was immobilized on amino-functionalized magnetic nanoparticles mesoporous silica pre-activated with glutaraldehyde (Fe3O4@mSiO2-ß-Gal), which was used for the first time to prepare sesaminol. Under the optimal conditions, the immobilization yield and recovered activity of ß-Gal were 57.9 ± 0.3 % and 46.5 ± 0.9 %, and the enzymatic loading was 843 ± 21 Uenzyme/gsupport. The construction of Fe3O4@mSiO2-ß-Gal was confirmed by various characterization methods, and the results indicated it was suitable for heterogeneous enzyme-catalyzed reactions. Fe3O4@mSiO2-ß-Gal was readily separable under magnetic action and displayed improved activity in extreme pH and temperature conditions. After 45 days of storage at 4 °C, the activity of Fe3O4@mSiO2-ß-Gal remained at 92.3 ± 2.8 %, which was 1.29 times than that of free enzyme, and its activity remained above 85 % after 10 cycles. Fe3O4@mSiO2-ß-Gal displayed higher affinity and catalytic efficiency. The half-life was 1.41 longer than free enzymes at 55.0 °C. Fe3O4@mSiO2-ß-Gal was employed as a catalyst to prepare sesaminol, achieving a 96.7 % conversion yield of sesaminol. The excellent stability and catalytic efficiency provide broad benefits and potential for biocatalytic industry applications.


Subject(s)
Aspergillus oryzae , Enzymes, Immobilized , Glutaral , Silicon Dioxide , beta-Galactosidase , Enzymes, Immobilized/chemistry , Enzymes, Immobilized/metabolism , beta-Galactosidase/chemistry , beta-Galactosidase/metabolism , Aspergillus oryzae/enzymology , Silicon Dioxide/chemistry , Glutaral/chemistry , Dioxoles/chemistry , Dioxoles/pharmacology , Magnetite Nanoparticles/chemistry , Porosity , Temperature , Hydrogen-Ion Concentration , Enzyme Stability , Furans
4.
Food Chem ; 452: 139555, 2024 Sep 15.
Article in English | MEDLINE | ID: mdl-38728896

ABSTRACT

This study presents the employment of Fourier transform infrared (FTIR) spectroscopy with attenuated total reflection and principal component analysis (PCA) to analyze the stability of a Pickering emulsion stabilized by carboxylated-cellulose nanocrystal (cCNC) comprising sesame oil phases with or without sesamolin. FTIR measurements identified an intermolecular hydrogen bond between the ester group of the triglyceride and the carboxyl group of the cCNC to create the emulsion droplet. The spectral bands from the hydroxyl group vibration (3700-3050 cm-1), carbonyl (1744 cm-1), CO groups of the ester triglyceride and cCNC (1160-998 cm-1) markedly discriminated between stabilized and destabilized emulsions. The PCA of FTIR spectra detected the change of molecular interaction during storage according to creaming, aggregation, and coalescence and changes in physicochemical parameters such as droplet size, refractive index, and zeta potential. Hence, PCA enabled the observation of the destabilization of emulsion in real-time.


Subject(s)
Cellulose , Emulsions , Sesame Oil , Emulsions/chemistry , Cellulose/chemistry , Spectroscopy, Fourier Transform Infrared , Sesame Oil/chemistry , Chemometrics , Particle Size , Dioxoles/chemistry , Dioxoles/analysis
5.
J Nat Med ; 78(3): 774-783, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38418720

ABSTRACT

Epithelial-mesenchymal transition (EMT) has recently been associated with cancer invasion, metastasis, and resistance. In our previous study, we discovered nanaomycin K, a natural growth inhibitor for EMT-induced Madin Darby canine kidney (MDCK) cells, from the cultured broth of actinomycetes. However, the screening method was undeveloped, because the activity of nanaomycin K was discovered accidentally. In this study, we established a screening method by analyzing the characteristics of nanaomycin K in MDCK cells. Nanaomycin K showed the characteristic growth inhibitory activity on MDCK cells cultured under four conditions: medium containing dimethyl sulfoxide, SB431542, TGF-ß, and a mixture of SB431542 and TGF-ß. The activity was stronger in TGF-ß-treated cells than in DMSO-treated cells. In the mixture of SB431542 and TGF-ß-treated cells, the activity of nanaomycin K was suppressed. The anti-cancer agents, mitomycin C, cisplatin, and staurosporine, lacked the characteristics as that of nanaomycin K for these four treatment conditions. Since these four conditions distinguish between the effects of nanaomycin K and other anti-cancer agents in EMT-induced cells, the screening method was established. Among the 13,427 plant extracts tested, Piper betle leaf extract displayed growth inhibitory activity against EMT-induced cells. Through the purification of the extract via bio-guided fractionation, hydroxychavicol was isolated as an active compound. The cytotoxic activity of hydroxychavicol was stronger in EMT-induced MDCK cells than in control cells. However, its cytotoxic activity was suppressed in EMT-inhibited cells. Furthermore, hydroxychavicol exhibited same activity against SAS cells (human squamous cell carcinoma of the tongue). Thus, we have successfully established a screening method for growth inhibitors of EMT-induced cells and have discovered an inhibitor from plant-based sources.


Subject(s)
Epithelial-Mesenchymal Transition , Piper betle , Transforming Growth Factor beta , Animals , Dogs , Humans , Benzamides/pharmacology , Benzamides/chemistry , Cell Proliferation/drug effects , Dioxoles/pharmacology , Dioxoles/chemistry , Epithelial-Mesenchymal Transition/drug effects , Eugenol/pharmacology , Eugenol/analogs & derivatives , Growth Inhibitors/pharmacology , Growth Inhibitors/chemistry , Growth Inhibitors/isolation & purification , Madin Darby Canine Kidney Cells , Plant Extracts/pharmacology , Plant Extracts/chemistry , Transforming Growth Factor beta/metabolism , Piper betle/chemistry
6.
Mini Rev Med Chem ; 23(6): 756-770, 2023.
Article in English | MEDLINE | ID: mdl-35616667

ABSTRACT

BACKGROUND: Neurodegenerative Diseases (NDs) are characterized by progressive neuronal deterioration as a result of several pathogenesis mechanisms. Phytochemicals, including sesamin with multitarget activities, have been studied widely. OBJECTIVE: In this review, we aim to survey the neuroprotective effects of sesamin on NDs and its mechanisms of action. METHODS: Searching GoogleScholar, PubMed, and Science Direct databases, we reviewed original English language articles on sesamin effects against NDs, specifically Alzheimer's Disease (AD) and Parkinson's Disease (PD), either in vivo or in vitro settings, with no time limitation. RESULTS: Sesamin has been reported to interfere with NDs progression through its antioxidative, antiinflammatory, and antiapoptotic actions in most of the retrieved studies. Sesamin also can prevent amyloid-ß aggregation in AD models and elevate dopamine levels in PD-induced models. CONCLUSION: The results of this study revealed the beneficial effects of sesamin in the prevention and management of NDs, including AD and PD; however, no clinical data supporting these effects in humans is available, which highlights the need for designing clinical trials to evaluate the efficacy, proper dosage, pharmacokinetics aspects, and possible side effects of sesamin in humans.


Subject(s)
Alzheimer Disease , Lignans , Parkinson Disease , Humans , Parkinson Disease/drug therapy , Parkinson Disease/pathology , Dioxoles/therapeutic use , Dioxoles/chemistry , Dioxoles/pharmacology , Alzheimer Disease/drug therapy , Alzheimer Disease/pathology , Lignans/pharmacology , Lignans/therapeutic use , Lignans/chemistry
7.
J Nutr Sci Vitaminol (Tokyo) ; 68(1): 55-64, 2022.
Article in English | MEDLINE | ID: mdl-35228496

ABSTRACT

Sesamin and episesamin are the main lignans found in refined sesame oil and have been reported to exert various health benefits. However, the health benefits of these lignans and their molecular mechanisms have not been fully understood. This study evaluated the effects of sesamin, episesamin, and their metabolites on the nuclear bile acid receptor, farnesoid X receptor (FXR, NR1H4), which regulate gene expression involved in bile acid metabolism and gluconeogenesis. By using two different cell-based luciferase reporter assay systems, we found that sesamin, sesamin metabolites, and some episesamin metabolites inhibited FXR activation driven by a bile acid and a synthesized agonist, and it is suggested that these compounds exert their antagonist activity by competing with the FXR agonists on the ligand-binding domain. Sesamin and its major metabolite SC-1 suppressed the expression of several gluconeogenesis-related genes governed by FXR in HepG2 cells but did not affect the expression level of CYP7A1, the rate-limiting enzyme for bile acid synthesis. Dietary sesamin supplementation (AIN-93G supplemented with 0.5% sesamin) led to the decreased hepatic expression of several gluconeogenesis-related genes and reduced blood glucose levels in mice, without adverse effects on bile acid metabolism. These results shed light on the health benefits of taking sesamin and episesamin.


Subject(s)
Gluconeogenesis , Lignans , Animals , Dioxoles/chemistry , Dioxoles/metabolism , Dioxoles/pharmacology , Gluconeogenesis/genetics , Lignans/chemistry , Lignans/metabolism , Lignans/pharmacology , Liver/metabolism , Mice
8.
Biochem Biophys Res Commun ; 590: 158-162, 2022 01 29.
Article in English | MEDLINE | ID: mdl-34974305

ABSTRACT

The progression of chronic kidney disease (CKD) increases the risks of cardiovascular morbidity and end-stage kidney disease. Indoxyl sulfate (IS), which is derived from dietary l-tryptophan by the action of bacterial l-tryptophan indole-lyase (TIL) in the gut, serves as a uremic toxin that exacerbates CKD-related kidney disorder. A mouse model previously showed that inhibition of TIL by 2-aza-l-tyrosine effectively reduced the plasma IS level, causing the recovery of renal damage. In this study, we found that (+)-sesamin and related lignans, which occur abundantly in sesame seeds, inhibit intestinal bacteria TILs. Kinetic studies revealed that (+)-sesamin and sesamol competitively inhibited Escherichia coli TIL (EcTIL) with Ki values of 7 µM and 14 µM, respectively. These Ki values were smaller than that of 2-aza-l-tyrosine (143 µM). Molecular docking simulation of (+)-sesamin- (or sesamol-)binding to EcTIL predicted that these inhibitors potentially bind near the active site of EcTIL, where the cofactor pyridoxal 5'-phosphate is bound, consistent with the kinetic results. (+)-Sesamin is a phytochemical with a long history of consumption and is generally regarded as safe. Hence, dietary supplementation of (+)-sesamin encapsulated in enteric capsules could be a promising mechanism-based strategy to prevent CKD progression. Moreover, the present findings would provide a new structural basis for designing more potent TIL inhibitors for the development of mechanism-based therapeutic drugs to treat CKD.


Subject(s)
Dioxoles/pharmacology , Enzyme Inhibitors/pharmacology , Gastrointestinal Microbiome , Lignans/pharmacology , Renal Insufficiency, Chronic/enzymology , Renal Insufficiency, Chronic/etiology , Sesamum/chemistry , Tryptophanase/antagonists & inhibitors , Benzodioxoles/chemistry , Benzodioxoles/pharmacology , Dioxoles/chemistry , Gastrointestinal Microbiome/drug effects , Kinetics , Lignans/chemistry , Molecular Docking Simulation , Phenols/chemistry , Phenols/pharmacology , Tryptophanase/metabolism
9.
Chem Biol Drug Des ; 99(1): 118-125, 2022 01.
Article in English | MEDLINE | ID: mdl-34411455

ABSTRACT

Tripartite motif-containing 44 (TRIM44) is known to play an oncogenic role in multiple human cancers, including esophageal cancer. Sesamin possesses potent anti-inflammatory and anti-cancer properties for various cancers. This study is designed to unravel the biological functions of sesamin and TRIM44 in esophageal cancer. TRIM44 expression in esophageal squamous cell cancer (ESCC) cell lines and tissues was determined by RT-qPCR assay and Western blot. The effects of sesamin and TRIM44 on ESCC cell growth in vivo and in vitro were assessed by the mouse model and CCK-8 assay, respectively. We found that TRIM44 was significantly upregulated in ESCC cell lines and tissues when compared to their counterparts. Sesamin treatment or depletion of TRIM44 markedly reduced ESCC cell proliferation. The nuclear factor kappa B (NF-κB) and toll-like receptor 4 (TLR4) signaling pathway may be involved in sesamin-mediated TRIM44 suppression. Finally, we showed that oral administration of sesamin dramatically inhibited tumor growth or ESCC in nude mice. Our results suggest that sesamin exerts anti-tumor activity in ESCC via inhibition of NF-κB signaling pathway, demonstrating its potential for the treatment of esophageal cancer.


Subject(s)
Antineoplastic Agents/pharmacology , Dioxoles/pharmacology , Lignans/pharmacology , Signal Transduction/drug effects , Animals , Antineoplastic Agents/chemistry , Antineoplastic Agents/therapeutic use , Cell Line, Tumor , Cell Proliferation/drug effects , Cell Survival/drug effects , Dioxoles/chemistry , Dioxoles/therapeutic use , Esophageal Neoplasms/drug therapy , Esophageal Neoplasms/metabolism , Esophageal Neoplasms/pathology , Esophageal Squamous Cell Carcinoma/drug therapy , Esophageal Squamous Cell Carcinoma/metabolism , Esophageal Squamous Cell Carcinoma/pathology , Humans , Intracellular Signaling Peptides and Proteins/genetics , Intracellular Signaling Peptides and Proteins/metabolism , Lignans/chemistry , Lignans/therapeutic use , Mice , Mice, Nude , NF-kappa B/metabolism , Transplantation, Heterologous , Tripartite Motif Proteins/genetics , Tripartite Motif Proteins/metabolism
10.
mBio ; 12(6): e0300121, 2021 12 21.
Article in English | MEDLINE | ID: mdl-34781746

ABSTRACT

Perfluorinated carbon atoms in a diether linkage are common in commercial anesthetics, drugs, fungicides, and insecticides. An important chemical group comprising perfluorodiethers is the 2,2-fluoro-1,3-benzodioxole (DFBD) moiety. The fluorine atoms stabilize the molecule by mitigating against metabolism by humans and microbes, as used in drugs and pesticides, respectively. Pseudomonas putida F1 catalyzed defluorination of DFBD at an initial rate of 2,100 nmol/h per mg cellular protein. This is orders of magnitude higher than previously reported microbial defluorination rates with multiply fluorinated carbon atoms. Defluorination rates declined after several hours, and the medium darkened. Significant defluorination activity was observed with cells grown on toluene but not l-arginine. Defluorination required only toluene dioxygenase. Pseudomonas and recombinant Escherichia coli cells expressing toluene dioxygenase oxidized DFBD to DFBD-4,5-dihydrodiol. The dihydrodiol could be oxidized to 4,5-dihydroxy-DFBD via the dihydrodiol dehydrogenase from P. putida F1. The dihydrodiol dehydrated with acid to yield a mixture of 4-hydroxy-DFBD and 5-hydroxy-DFBD. All those metabolites retained the difluoromethylene group; no fluoride or dark color was observed. The major route of DFBD-4,5-dihydrodiol decomposition produced fluoride and 1,2,3-trihydroxybenzene, or pyrogallol, and that was shown to be the source of the dark colors in the medium. A mechanism for DFBD-4,5-dihydrodiol transformation to two fluoride ions and pyrogallol is proposed. The Pseudomonas genome database and other databases revealed hundreds of bacteria with enzymes sharing high amino acid sequence identity to toluene dioxygenase from P. putida F1, suggesting the mechanism revealed here may apply to the defluorination of DFBD-containing compounds in the environment. IMPORTANCE There are more than 9,000 polyfluorinated compounds developed for commercial use, some negatively impacting human health, and they are generally considered to be resistant to biodegradation. Only a limited number of studies have identified microbes with enzymes sufficiently reactive to defluorinate difluoromethylene carbon groups. The present study examined one important group of commercial fluorinated chemicals and showed its rapid defluorination by a bacterium and its key enzyme, a Rieske dioxygenase. Rieske dioxygenases are common in environmental bacteria, and those closely resembling toluene dioxygenase from Pseudomonas putida F1 are candidates for biodegradative defluorination of the common 2,2-fluoro-1,3-benzodioxole (DFBD) moiety.


Subject(s)
Dioxoles/metabolism , Pseudomonas putida/metabolism , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Biodegradation, Environmental , Dioxoles/chemistry , Halogenation , Oxygenases/genetics , Oxygenases/metabolism , Pseudomonas putida/chemistry , Pseudomonas putida/enzymology , Pseudomonas putida/genetics
11.
J Oleo Sci ; 70(9): 1261-1274, 2021 Sep 04.
Article in English | MEDLINE | ID: mdl-34373408

ABSTRACT

As a valuable natural antioxidant, sesaminol can be used in food and medicine industries, but it is trace in sesame seeds and oil, and it is feasible to prepare sesaminol from sesaminol triglucoside (STG) which is abundant in defatted sesame cake. Therefore, in order to establish an effective enzymatic preparation method and elucidate the antioxidant structure-activity relationship of sesaminol, a suitable glycosidase for preparing sesaminol from STG were screened, enzymatic hydrolysis was optimized by single-factor test and response surface methodology, and finally, the structure-activity relationship of sesaminol was illustrated by comparative molecular field analysis (CoMFA). These results suggested that ß-galactosidase was the optimal glycosidase for enzymatic hydrolysis of STG to prepare sesaminol. Under the optimal conditions of a reaction temperature of 50°C, reaction time of 4.0 h, pH of 5.5, substrate concentration of 1.0 mg/mL, and enzyme dosage of 20 mg/mL, the conversion rate of sesaminol was 98.88±0.67%. Sesaminol displayed excellent antioxidant ability in 2,2-diphenyl-1-picrylhydrazyl (DPPH, IC50 = 0.0011 mg/mL), 2,2'-azinobis-(3-ethyl-benzothiazoline-6-sulfonate) (ABTS, IC50 = 0.0021 mg/mL) radical scavenging activities and Ferric reducing antioxidant power (FRAP, 103.2998 mol/g) compared to other sesaminol derivatives. According to -log (IC50 of DPPH) and -log (IC50 of ABTS), CoMFA models were successfully established based on Q2 >0.5 (QDPPH 2 = 0.558, QABTS 2 = 0.534). The active site of sesaminol tended to be located on the hydroxyl group of the benzene ring (R1 position). A positive correlation between the bulky and positively charged groups at the 1H, 3H-furo [3, 4-c] furan group, the small, negatively charged groups at the R1 position and the antioxidant activity of sesaminol. This study provides an effective method to prepare sesaminol, reveals the structure-activity relationship of sesaminol and provides theoretical basis to design the novel compound.


Subject(s)
Antioxidants , Dioxoles/chemical synthesis , Dioxoles/pharmacology , Furans/chemical synthesis , Furans/pharmacology , Glucosides/chemistry , Sesamum/chemistry , beta-Galactosidase/chemistry , Dioxoles/chemistry , Free Radical Scavengers , Furans/chemistry , Hydrogen-Ion Concentration , Hydrolysis , Structure-Activity Relationship , Temperature , Time Factors
12.
Molecules ; 26(12)2021 Jun 18.
Article in English | MEDLINE | ID: mdl-34207059

ABSTRACT

Diclinanona calycina R. E. Fries popularly known as "envira", is a species of the Annonaceae family endemic to Brazil. In our ongoing search for bioactive compounds from Annonaceae Amazon plants, the bark of D. calycina was investigated by classical chromatography techniques that yielded thirteen compounds (alkaloids and flavonoids) described for the first time in D. calycina as well as in the genus Diclinanona. The structure of these isolated compounds were established by extensive analysis using 1D/2D-NMR spectroscopy in combination with MS. The isolated alkaloids were identified as belonging to the subclasses: simple isoquinoline, thalifoline (1); aporphine, anonaine (2); oxoaporphine, liriodenine (3); benzyltetrahydroisoquinolines, (S)-(+)-reticuline (4); dehydro-oxonorreticuline (3,4-dihydro-7-hydroxy-6-methoxy-1-isoquinolinyl)(3-hydroxy-4-methoxyphenyl)-methanone) (5); (+)-1S,2R-reticuline Nß-oxide (6); and (+)-1S,2S-reticuline Nα-oxide (7); tetrahydroprotoberberine, coreximine (8); and pavine, bisnorargemonine (9). While the flavonoids belong to the benzylated dihydroflavones, isochamanetin (10), dichamanetin (11), and a mixture of uvarinol (12) and isouvarinol (13). Compound 5 is described for the first time in the literature as a natural product. The cytotoxic activity of the main isolated compounds was evaluated against cancer and non-cancerous cell lines. Among the tested compounds, the most promising results were found for the benzylated dihydroflavones dichamanetin (10), and the mixture of uvarinol (12) and isouvarinol (13), which presented moderate cytotoxic activity against the tested cancer cell lines (<20.0 µg·mL-1) and low cytotoxicity against the non-cancerous cell line MRC-5 (>25.0 µg·mL-1). Dichamanetin (11) showed cytotoxic activity against HL-60 and HCT116 with IC50 values of 15.78 µg·mL-1 (33.70 µmol·L-1) and 18.99 µg·mL-1 (40.56 µmol·L-1), respectively while the mixture of uvarinol (12) and isouvarinol (13) demonstrated cytotoxic activity against HL-60, with an IC50 value of 9.74 µg·mL-1, and HCT116, with an IC50 value of 17.31 µg·mL-1. These cytotoxic activities can be attributed to the presence of one or more hydroxybenzyl groups present in these molecules as well as the position in which these groups are linked. The cytotoxic activities of reticuline, anonaine and liriodenine have been previously established, with liriodenine being the most potent compound.


Subject(s)
Alkaloids/chemistry , Annonaceae/chemistry , Flavones/chemistry , Isoquinolines/chemistry , Plant Bark/chemistry , Alkaloids/pharmacology , Aporphines/chemistry , Aporphines/pharmacology , Brazil , Cell Line, Tumor , Dioxoles/chemistry , Dioxoles/pharmacology , Flavanones/pharmacology , Flavones/pharmacology , HCT116 Cells , HL-60 Cells , Hep G2 Cells , Humans , Isoquinolines/pharmacology , MCF-7 Cells , Plant Extracts , Plant Leaves/chemistry
13.
ChemMedChem ; 16(18): 2882-2894, 2021 09 16.
Article in English | MEDLINE | ID: mdl-34159741

ABSTRACT

Since the revelation of noscapine's weak anti-mitotic activity, extensive research has been conducted over the past two decades, with the goal of discovering noscapine derivatives with improved potency. To date, noscapine has been explored at the 1, 7, 6', and 9'-positions, though the 1,3-benzodioxole motif in the noscapine scaffold that remains unexplored. The present investigation describes the design, synthesis and pharmacological evaluation of noscapine analogues consisting of modifications to the 1,3-benzodioxole moiety. This includes expansion of the dioxolane ring and inclusion of metabolically robust deuterium and fluorine atoms. Favourable structural modifications were subsequently incorporated into multi-functionalised noscapine derivatives that also possessed modifications previously shown to promote anti-proliferative activity in the 1-, 6'- and 9'-positions. Our research efforts afforded the deuterated noscapine derivative 14 e and the dioxino-containing analogue 20 as potent cytotoxic agents with EC50 values of 1.50 and 0.73 µM, respectively, against breast cancer (MCF-7) cells. Compound 20 also exhibited EC50 values of <2 µM against melanoma, non-small cell lung carcinoma, and cancers of the brain, kidney and breast in an NCI screen. Furthermore, compounds 14 e and 20 inhibit tubulin polymerisation and are not vulnerable to the overexpression of resistance conferring P-gp efflux pumps in drug-resistant breast cancer cells (NCIADR/RES ). We also conducted X-ray crystallography studies that yielded the high-resolution structure of 14 e bound to tubulin. Our structural analysis revealed the key interactions between this noscapinoid and tubulin and will assist with the future design of noscapine derivatives with improved properties.


Subject(s)
Antineoplastic Agents/pharmacology , Dioxoles/pharmacology , Tubulin Modulators/pharmacology , Tubulin/metabolism , Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/chemistry , Cell Proliferation/drug effects , Dioxoles/chemical synthesis , Dioxoles/chemistry , Dose-Response Relationship, Drug , Drug Screening Assays, Antitumor , Humans , Molecular Structure , Polymerization/drug effects , Structure-Activity Relationship , Tubulin Modulators/chemical synthesis , Tubulin Modulators/chemistry , Tumor Cells, Cultured
14.
Chem Biodivers ; 18(5): e2100106, 2021 May.
Article in English | MEDLINE | ID: mdl-33759356

ABSTRACT

In search of new environmentally friendly and effective antifungal agents, a series of 4-aminoquinolines bearing a 1,3-benzodioxole moiety were prepared and their structures were fully elucidated by spectroscopic analyses. The antifungal activities of all the target compounds against five phytopathogenic fungi were evaluated in vitro. The results revealed that most of the newly synthesized compounds exhibited obvious inhibitory activities at the concentration of 50 µg/mL. Among them, 6-(furan-2-yl)-N-(4-methylphenyl)-2H-[1,3]dioxolo[4,5-g]quinolin-8-amine hydrochloride (7m) displayed more promising antifungal potency with EC50 values of 10.3 and 14.0 µg/mL against C. lunata and A. alternate, respectively. Particularly, the EC50 value of 7m against C. lunata was 7.3-fold as potent as the standard azoxystrobin. There were some significant morphological alterations in the mycelia of C. lunata when treated with 7m at 50 µg/mL. Additionally, the preliminary structure-activity relationships (SARs) were also discussed. Thus, this study suggests that 4-aminoquinolines bearing a 1,3-benzodioxole moiety are interesting scaffolds for the development of novel antifungal agents.


Subject(s)
Aminoquinolines/pharmacology , Antifungal Agents/pharmacology , Dioxoles/pharmacology , Fungi/drug effects , Aminoquinolines/chemical synthesis , Aminoquinolines/chemistry , Antifungal Agents/chemical synthesis , Antifungal Agents/chemistry , Dioxoles/chemistry , Dose-Response Relationship, Drug , Microbial Sensitivity Tests , Molecular Structure
15.
Bioorg Med Chem Lett ; 43: 127898, 2021 07 01.
Article in English | MEDLINE | ID: mdl-33684440

ABSTRACT

A series of target compounds 1,3-benzodioxole-based fibrate derivatives were designed and synthesized. All the target compounds were preliminarily evaluated by hyperlipidemia mice induced by Triton WR-1339, in which compound 12 displayed a greater anti-hyperlipidemia activity than other compounds as well as positive drug fenofibrate (FF). 12 showed a significant reduction of plasma lipids, such as triglycerides (TG), total cholesterol (TC) and low-density lipoprotein cholesterin (LDL-C), in high fat diet (HFD) induced hyperlipidemic mice. In addition, hepatic transaminases (AST and ALT) were ameliorated after administration of 12, in particular the AST, and the histopathological examination showed that 12 improved the hepatic lipid accumulation. The expression of PPAR-α involved in lipids metabolism was up-regulated in the liver tissues of 12-treated group. Other significant activity such as antioxidant, and anti-inflammation was confirmed and reinforced the effects of 12 as a potential hypolipidemia and hepatoprotective agent.


Subject(s)
Dioxoles/pharmacology , Hyperlipidemias/drug therapy , Hypolipidemic Agents/pharmacology , Lipids/antagonists & inhibitors , Protective Agents/pharmacology , Animals , Diet, High-Fat/adverse effects , Dioxoles/chemical synthesis , Dioxoles/chemistry , Dose-Response Relationship, Drug , Hyperlipidemias/chemically induced , Hyperlipidemias/metabolism , Hypolipidemic Agents/chemical synthesis , Hypolipidemic Agents/chemistry , Mice , Molecular Structure , Protective Agents/chemical synthesis , Protective Agents/chemistry , Structure-Activity Relationship
16.
Molecules ; 26(4)2021 Feb 07.
Article in English | MEDLINE | ID: mdl-33562414

ABSTRACT

Major lignans of sesame sesamin and sesamolin are benzodioxol--substituted furofurans. Sesamol, sesaminol, its epimers, and episesamin are transformation products found in processed products. Synthetic routes to all lignans are known but only sesamol is synthesized industrially. Biosynthesis of furofuran lignans begins with the dimerization of coniferyl alcohol, followed by the formation of dioxoles, oxidation, and glycosylation. Most genes of the lignan pathway in sesame have been identified but the inheritance of lignan content is poorly understood. Health-promoting properties make lignans attractive components of functional food. Lignans enhance the efficiency of insecticides and possess antifeedant activity, but their biological function in plants remains hypothetical. In this work, extensive literature including historical texts is reviewed, controversial issues are critically examined, and errors perpetuated in literature are corrected. The following aspects are covered: chemical properties and transformations of lignans; analysis, purification, and total synthesis; occurrence in Seseamum indicum and related plants; biosynthesis and genetics; biological activities; health-promoting properties; and biological functions. Finally, the improvement of lignan content in sesame seeds by breeding and biotechnology and the potential of hairy roots for manufacturing lignans in vitro are outlined.


Subject(s)
Benzodioxoles/chemistry , Furans/chemistry , Lignans/chemistry , Phenols/chemistry , Sesamum/chemistry , Benzodioxoles/chemical synthesis , Dioxoles/chemistry , Lignans/chemical synthesis , Oxidation-Reduction , Phenols/chemical synthesis , Seeds/chemistry , Sesamum/genetics
17.
Biomed Chromatogr ; 35(4): e5021, 2021 Apr.
Article in English | MEDLINE | ID: mdl-33169364

ABSTRACT

Asarinin, ß-eudesmol, and wogonin have common antiangiogenic activities and have the potential for use in chemotherapy. Besides, they are multivalent substances that are combined in various herbal medicines. The purpose of this study was to develop a method for simultaneous analysis of asarinin, ß-eudesmol, and wogonin, which are representative pharmacological components of Asarum heterotropoides, Atractylodes lancea, and Scutellaria baicalensis, respectively, in rat biosamples using ultraperformance liquid chromatography-tandem mass spectrometry. The three components were separated using 5 mm aqueous ammonium acetate containing 0.1% formic acid and acetonitrile as a mobile phase, equipped with a KINETEX core-shell C18 column. The analysis was quantitated on a triple-quadrupole mass-spectrometer employing electrospray ionization, and operated in the multiple reaction monitoring mode. The chromatograms showed high resolution, sensitivity, and selectivity with no interference with plasma, urine, and feces constituents. The developed analytical method satisfied international guidance criteria and could be successfully applied to the pharmacokinetic (PK) studies evaluating oral bioavailability of asarinin, ß-eudesmol, and wogonin after oral and intravenous administration and their urinary and fecal excretion ratios after oral administration to rats. Furthermore, the analysis was extended to PK studies following oral administration of Gumiganghwal-tang. This study was the first simultaneous analysis of the aforesaid three constituents in rat plasma, urine, and feces that also determined their PK parameters.


Subject(s)
Chromatography, High Pressure Liquid/methods , Dioxoles , Flavanones , Lignans , Plant Extracts , Sesquiterpenes, Eudesmane , Animals , Dioxoles/analysis , Dioxoles/chemistry , Dioxoles/pharmacokinetics , Flavanones/analysis , Flavanones/chemistry , Flavanones/pharmacokinetics , Lignans/analysis , Lignans/chemistry , Lignans/pharmacokinetics , Linear Models , Male , Plant Extracts/administration & dosage , Plant Extracts/pharmacokinetics , Rats , Rats, Sprague-Dawley , Reproducibility of Results , Sensitivity and Specificity , Sesquiterpenes, Eudesmane/analysis , Sesquiterpenes, Eudesmane/chemistry , Sesquiterpenes, Eudesmane/pharmacokinetics , Tandem Mass Spectrometry/methods
18.
Nat Prod Res ; 35(4): 579-586, 2021 Feb.
Article in English | MEDLINE | ID: mdl-30896260

ABSTRACT

In our continuous search for cytotoxic compounds from the genus Zanthoxylum, chromatographic separation of the MeOH/CH2Cl2 (1:1) extract of Z. chalybeum yielded one new alkamide; 4-(isoprenyloxy)-3-methoxy-3,4-deoxymethylenedioxyfagaramide (1) and a known one; fagaramide (2). Similarly, from the MeOH/CH2Cl2 (1:1) extract of the stem bark of Z. parachanthum four known compounds; canthin-6-one (3), dihydrochelerythrine (4), lupeol (5) and sesamin (6) were isolated. Characterization of the structures of these compounds was achieved using spectroscopic techniques (NMR and MS). Using resazurin reduction assay 1, 3 and 6 displayed moderate cytotoxicity with IC50 values below 50 µM against the drug sensitive CCRF-CEM and multidrug-resistant CEM/ADR5000 leukemia cell lines. It is interesting to note that 3 was more active than the standard drug, doxorubicin against CEM/ADR5000 leukemia cells. Compounds 3 and 6 showed good selectivity on leukemia cells than normal cells. In future studies 3 should be tested against a panel of drug resistant human cells.


Subject(s)
Carbolines/therapeutic use , Cinnamates/therapeutic use , Dioxoles/therapeutic use , Drug Resistance, Multiple/drug effects , Drug Resistance, Neoplasm/drug effects , Indole Alkaloids/therapeutic use , Leukemia/drug therapy , Polyunsaturated Alkamides/therapeutic use , Zanthoxylum/chemistry , Apoptosis/drug effects , Carbolines/chemistry , Carbolines/pharmacology , Carbon-13 Magnetic Resonance Spectroscopy , Cell Death/drug effects , Cell Line, Tumor , Cinnamates/chemistry , Cinnamates/pharmacology , Dioxoles/chemistry , Dioxoles/pharmacology , Humans , Indole Alkaloids/chemistry , Indole Alkaloids/pharmacology , Membrane Potential, Mitochondrial/drug effects , Plant Extracts/chemistry , Polyunsaturated Alkamides/chemistry , Polyunsaturated Alkamides/pharmacology
19.
Sci Rep ; 10(1): 19889, 2020 11 16.
Article in English | MEDLINE | ID: mdl-33199724

ABSTRACT

Cancer is one of the main causes of mortality in the world. Many cancer cells produce ATP through high-level lactic acid fermentation catalyzed by lactate dehydrogenase (LDH), which converts pyruvic acid to lactic acid. LDH plays a dominant role in the Warburg effect, wherein aerobic glycolysis is favored over oxidative phosphorylation. Due to the high lactic acid production level in cancer cells, LDH-targeting could be a potential cancer treatment strategy. A few approaches, such as drug treatment, reportedly inhibited LDH activity. In this study, we describe new 1,3-benzodioxole derivatives that might be potential small molecule candidates for LDHA inhibition. The synthesis was carried out by trans-esterification between aryl ester and alcohol groups from piperonyl alcohol. Compounds 2 and 10 exhibited a selective LDHA IC50 value of 13.63 µM and 47.2 µM, respectively. Whereas only compound 10 showed significant cytotoxicity in several lines of cancer cells, especially in human pancreatic cancer PANC-1 cells. These synthesized compounds possess 2 aromatic rings and -CF3 moiety, which expectedly contributes to LDHA inhibition. The presented products have the potential to become a promising LDHA inhibitor drug candidate.


Subject(s)
Antineoplastic Agents/chemical synthesis , Antineoplastic Agents/pharmacology , Dioxoles/chemistry , Enzyme Inhibitors/chemical synthesis , Enzyme Inhibitors/pharmacology , L-Lactate Dehydrogenase/antagonists & inhibitors , Neoplasms/drug therapy , Cell Proliferation , Humans , Neoplasms/enzymology , Neoplasms/pathology , Tumor Cells, Cultured
20.
Int J Mol Sci ; 21(22)2020 Nov 21.
Article in English | MEDLINE | ID: mdl-33233411

ABSTRACT

Gomisin A (Gom A), a lignan isolated from Schisandra chinensis, has been reported produce numerous biological activities. However, its action on the ionic mechanisms remains largely unanswered. The present experiments were undertaken to investigate the possible perturbations of Gom A or other related compounds on different types of membrane ionic currents in electrically excitable cells (i.e., pituitary GH3 and pancreatic INS-1 cells). The exposure to Gom A led to the differential inhibition of peak and end-pulse components of voltage-gated Na+ current (INa) in GH3 cells with effective IC50 of 6.2 and 0.73 µM, respectively. The steady-state inactivation curve of INa in the presence of Gom A was shifted towards a more hyperpolarized potential. However, neither changes in the overall current-voltage relationship nor those for the gating charge of the current were demonstrated. The application of neither morin (10 µM) nor hesperidin (10 µM) perturbed the strength of INa, while sesamine could suppress it. However, in the continued presence of Gom A, the addition of sesamine failed to suppress INa further. Gom A also effectively suppressed the strength of persistent INa activated by long ramp voltage command, and further application of tefluthrin effectively attenuated Gom A-mediated inhibition of the current. The presence of Gom A mildly inhibited erg-mediated K+ current, while a lack of change in the amplitude of hyperpolarization-activated cation current was observed in its presence. Under cell-attached current recordings, the exposure to Gom A resulted in the decreased firing of spontaneous action currents with a minimal change in AC amplitude. In pancreatic INS-1 cells, the presence of Gom A was also noticed to inhibit peak and end-pulse components of INa differentially with the IC50 of 5.9 and 0.84 µM, respectively. Taken together, the emerging results presented herein provide the evidence that Gom A can differentially inhibit peak and sustained INa in endocrine cells (e.g., GH3 and INS-1 cells).


Subject(s)
Cyclooctanes/pharmacology , Dioxoles/pharmacology , Lignans/pharmacology , Schisandra/chemistry , Voltage-Gated Sodium Channel Blockers/pharmacology , Voltage-Gated Sodium Channels/genetics , Animals , Cell Line , Cyclooctanes/chemistry , Dioxoles/chemistry , Ion Transport/drug effects , Kinetics , Lignans/chemistry , Potassium Channels, Voltage-Gated/antagonists & inhibitors , Potassium Channels, Voltage-Gated/genetics , Rats , Voltage-Gated Sodium Channels/drug effects
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