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1.
Food Chem ; 460(Pt 3): 140745, 2024 Aug 05.
Article in English | MEDLINE | ID: mdl-39126945

ABSTRACT

An antioxidant amyloid fibril was prepared as an emulsifier by fibrillating limited enzymatic hydrolysis-modified rice protein (HRP). The purpose of this study was to investigate the feasibility of using fibrillated HRP to stabilize oil-in-water emulsion. A free radical scavenging assay revealed that the antioxidant activity of fibrillated HRP was 2.09 times higher than that of native rice protein. Fibrillated HRP demonstrated a marked reduction in interfacial tension, increased surface hydrophobicity and contact angle (> 80°), and rapid adsorption to the interface, with 35.34 ± 2.43% interfacial adsorbed protein content. The fibrillated HRP barriers resisted environment stresses such as NaCl, pH variations, long-term storage, while reducing lipid oxidation degree. Additionally, fibrillated HRP-based emulsion was more effective in protecting ß-carotene from degradation compared to other samples. These findings provide theoretical support for the development of rice protein-based antioxidant emulsifiers and modification of emulsifying properties of plant proteins.

3.
J Food Sci ; 2024 Jul 23.
Article in English | MEDLINE | ID: mdl-39042473

ABSTRACT

Our previous studies have shown that sulfated Cyclocarya paliurus polysaccharides (SCP3) can alleviate intestinal oxidative stress (OS) damage by improving the antioxidant capacity of the intestine, but its mechanism still needs further exploration. This study aimed to reveal the possible underlying protective mechanism of SCP3 against OS damage of intestinal epithelial cells (IEC-6) based on transcriptome profiling. The results showed that SCP3 could increase the activity of superoxide dismutase and reduce the production of malondialdehyde and reactive oxygen species. In addition, the SCP3 could also alleviate the H2O2-induced high apoptosis rate and mitochondrial membrane potential decrease in IEC-6 cells. RNA-sequencing results showed that there were 2152 differentially expressed genes between the control group and the SCP3 group, and the mitogen-activated protein kinases (MAPK) and PI3K-Akt signaling pathways are the main signaling pathways that contributed to SCP3 protecting IEC-6 cells from OS damage. In summary, the SCP3 plays a role in improving intestinal cell damage by inhibiting OS, which may be closely related to the PI3K/Akt and MAPK signaling pathways. PRACTICAL APPLICATION: This study provides a theoretical basis for the practical application of Cyclocarya paliurus polysaccharides as an antioxidant ingredient in auxiliary medicines and functional foods.

4.
Food Chem ; 459: 140345, 2024 Nov 30.
Article in English | MEDLINE | ID: mdl-38986204

ABSTRACT

Considering the high abundance of bound polyphenols (BP) in whole grain dietary fiber (DF), this study utilized multi-omics approach to evaluate the impact of BP of defatted rice bran insoluble DF (RIDF) in modulating obesity. Mice on high-fat diet were gavage-administered RIDF, BP-removed or formulated RIDF. The results indicated that DF significantly reduced serum total cholesterol, triglycerides, high-density and low-density lipoprotein cholesterol levels. Moreover, hepatic lipid accumulation and damage induced by high-fat diet were significantly ameliorated with DF intervention. The presence of BP increased the abundance of beneficial bacteria g_Akkermansia and g_Butyricicocus, as well as the expression of butyric acid/propionic acid. Furthermore, the expression of hepatic lipids and lipid-like molecules was significantly decreased under the combined intervention of BP and DF, and this was accompanied by alterations in genes related to lipid, sterol, and cholesterol metabolic biological processes. These findings suggest that BP contribute to the anti-obesity effects of DF.


Subject(s)
Anti-Obesity Agents , Diet, High-Fat , Dietary Fiber , Obesity , Oryza , Polyphenols , Animals , Humans , Male , Mice , Anti-Obesity Agents/administration & dosage , Anti-Obesity Agents/chemistry , Anti-Obesity Agents/pharmacology , Bacteria/genetics , Bacteria/metabolism , Bacteria/classification , Bacteria/isolation & purification , Bacteria/drug effects , Cholesterol/metabolism , Diet, High-Fat/adverse effects , Dietary Fiber/metabolism , Dietary Fiber/analysis , Dietary Fiber/pharmacology , Gastrointestinal Microbiome/drug effects , Lipid Metabolism/drug effects , Liver/metabolism , Liver/drug effects , Mice, Inbred C57BL , Multiomics , Obesity/metabolism , Obesity/drug therapy , Obesity/diet therapy , Obesity/genetics , Oryza/chemistry , Oryza/metabolism , Polyphenols/pharmacology , Polyphenols/chemistry , Polyphenols/administration & dosage , Polyphenols/metabolism , Triglycerides/metabolism
5.
Int J Food Microbiol ; 423: 110841, 2024 Oct 02.
Article in English | MEDLINE | ID: mdl-39059140

ABSTRACT

Penicillium exopolysaccharide (EPS) inhibits galactose lectins and enhances immunity. However, EPS production is low and its synthesis mechanism remains unclear. Penicillium EF-2 strains with high EPS production were selected for this study, and Penicillium fermentation conditions were subsequently improved. The optimal culture conditions were 30 g/L lactose, 6 g/L yeast extract powder, 4 d seed age, 10 % inoculation amount, 3 d of secondary fermentation time, and the final EPS yield was 3.97 g/L. UHPLC-Q-TOF-MS/MS was used to explore the mechanism of EPS synthesis at the metabolic level. Optimal carbon source: lactose and optimal nitrogen source: yeast extract can provide precursors for EPS synthesis through related metabolic pathways. Moreover, regulating the energy, vitamin, and lipid metabolic pathways created favourable conditions for EPS synthesis and secretion. These findings explain the mechanism of EPS synthesis at the metabolic level and provide a theoretical basis for optimising and industrialising EPS production.


Subject(s)
Fermentation , Metabolomics , Penicillium , Tandem Mass Spectrometry , Penicillium/metabolism , Penicillium/growth & development , Metabolomics/methods , Chromatography, High Pressure Liquid , Culture Media/chemistry , Nitrogen/metabolism
6.
Food Res Int ; 189: 114535, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38876588

ABSTRACT

The impact of different forms of dietary fiber (total, insoluble or soluble) derived from the same source on health remains incompletely understood. In this study, the effects of total, insoluble, and soluble dietary fiber extracted from highland barley (HDF, HIDF, and HSDF) on combating obesity were evaluated and compared. A high-fat diet (HFD) was used to induce obesity in a murine model, followed by gavage administration of HDF, HIDF, or HSDF, and a comprehensive multi-omics approach was utilized to assess and compare the effects of these dietary fibers on obesity-related parameters. The results showed that all three dietary fibers significantly reduced body weight, modified blood lipid profiles, and ameliorated tissue damage in HFD-fed mice. Additionally, 16S rRNA sequencing analysis of mice feces showed that three types of dietary fiber exerted varying degrees of impact on the composition and abundance of gut microbiota while simultaneously promoting the biosynthesis of short-chain fatty acids. Specifically, HDF supplementation remarkably enhanced the abundance of Coprococcus, while HIDF and HSDF supplementation elevated the levels of Akkermansia and Allobaculum, respectively. Transcriptomic and proteomic results suggested the PPAR signaling pathway as a central regulatory mechanism influenced by these fibers. HDF and HIDF were particularly effective in modulating biological processes related to triglyceride and fatty acid metabolism, identifying Abcc3 and Dapk1 as potential targets. Conversely, HSDF primarily affected processes related to membrane lipids, ceramides, and phospholipids metabolism, with Pck1 identified as a potential target. Collectively, HDF, HIDF, and HSDF demonstrated distinct mechanisms in exerting exceptional anti-obesity properties. These insights may inform the development of personalized dietary interventions for obesity.


Subject(s)
Anti-Obesity Agents , Diet, High-Fat , Dietary Fiber , Gastrointestinal Microbiome , Hordeum , Mice, Inbred C57BL , Obesity , Hordeum/chemistry , Dietary Fiber/pharmacology , Animals , Mice , Male , Anti-Obesity Agents/pharmacology , Gastrointestinal Microbiome/drug effects , Proteomics , Disease Models, Animal , Multiomics
7.
Food Res Int ; 189: 114561, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38876594

ABSTRACT

The aim of this study was to investigate the effects of Premna microphylla turcz polysaccharide (PMP) on the rheological, gelling, and structural properties of mung bean starch (MBS) and their potential interaction mechanism. Results showed that the addition of PMP significantly improved the pasting properties, rheological properties, water holding capacity, and thermostability of MBS. The texture tests showed a decrease in hardness, gumminess and chewiness, indicating the retrogradation of MBS was inhibited. Scanning electron microscopy (SEM) suggested the MBS-PMP composite gels expressed a denser microstructure with obvious folds and tears. Moreover, the results of X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR) and interaction force tests revealed the main forces between MBS and PMP were hydrogen bonds and hydrophobic interactions to form composite gels with great gelling properties. These results facilitate the practical application of MBS and PMP, and provide some references for understanding the interaction mechanism between starch and polysaccharide.


Subject(s)
Gels , Polysaccharides , Rheology , Starch , Vigna , Starch/chemistry , Polysaccharides/chemistry , Spectroscopy, Fourier Transform Infrared , Vigna/chemistry , X-Ray Diffraction , Microscopy, Electron, Scanning , Hydrophobic and Hydrophilic Interactions , Water/chemistry , Hydrogen Bonding
8.
Foods ; 13(11)2024 Jun 03.
Article in English | MEDLINE | ID: mdl-38890982

ABSTRACT

Dietary intake of natural substances to regulate physiological functions is currently regarded as a potential way of promoting health. As one of the recommended dietary ingredients, phytosterols that are natural bioactive compounds distributed in plants have received increasing attention for their health effects. Phytosterols have attracted great attention from scientists because of many physiological functions, for example, cholesterol-lowering, anticancer, anti-inflammatory, and immunomodulatory effects. In addition, the physiological functions of phytosterols, the purification, structure analysis, synthesis, and food application of phytosterols have been widely studied. Nowadays, many bioactivities of phytosterols have been assessed in vivo and in vitro. However, the mechanisms of their pharmacological activities are not yet fully understood, and in-depth investigation of the relationship between structure and function is crucial. Therefore, a contemporaneous overview of the extraction, beneficial properties, and the mechanisms, as well as the current states of phytosterol application, in the food field of phytosterols is provided in this review.

9.
Food Chem ; 456: 139965, 2024 Oct 30.
Article in English | MEDLINE | ID: mdl-38852460

ABSTRACT

Pasteurisation and spray drying are critical steps to ensure the safety and shelf-life of formulae, but these treatments also induce formation of some potentially harmful Maillard reaction products. In this study, the occurrence of potentially harmful Maillard reaction products and proximate compositions in different commercial formulae were analysed. Our results showed that infant formulae had significantly higher concentrations of furosine, Nε-(carboxymethyl)lysine (CML) and Nε-(carboxyethyl)lysine (CEL) than follow-on/toddler formula. Specialty formulae had higher concentrations of glyoxal and CML than other types of formulae. Correlation analysis indicated that concentrations of 5-hydroxymethylfurfural, 3-deoxyglucosone, CML and CEL were closely related to fat contents. These results provided insight into concentrations of potentially harmful Maillard reaction products in different types of formulae and provide a theoretical basis for further optimisation of processing.


Subject(s)
Infant Formula , Lysine , Maillard Reaction , Infant Formula/chemistry , Infant Formula/analysis , Lysine/chemistry , Lysine/analogs & derivatives , Lysine/analysis , Humans , Furaldehyde/analogs & derivatives , Furaldehyde/analysis , Furaldehyde/chemistry , Glyoxal/chemistry , Glyoxal/analysis , Infant , Deoxyglucose/analogs & derivatives , Deoxyglucose/chemistry , Deoxyglucose/analysis
10.
J Agric Food Chem ; 72(25): 14315-14325, 2024 Jun 26.
Article in English | MEDLINE | ID: mdl-38847877

ABSTRACT

This study aimed to investigate the mitigation effect of epigallocatechin gallate (EGCG) on aging induced by 3-monochloropropane-1,2-diol (3-MCPD) in Caenorhabditis elegans, evaluate health indicators during the process, and reveal the underlying mechanism through transcriptomics and identification of mutants. The results showed that EGCG alleviated the declined fertility, shortened lifespan, reduced body size, weakened movement, increased reactive oxygen species and lipofuscin, and damaged antioxidative stress response and excessive heat shock proteins caused by 3-MCPD. Transcriptomics study indicated that treatment with 3-MCPD and EGCG altered gene expression, and gene mutants confirmed the involvement of insulin/IGF-1 signaling pathway in mediating the process that EGCG alleviated the aging toxicity induced by 3-MCPD. The study showed that EGCG alleviated the aging toxicity induced by 3-MCPD.


Subject(s)
Aging , Caenorhabditis elegans Proteins , Caenorhabditis elegans , Catechin , Heat-Shock Proteins , Reproduction , alpha-Chlorohydrin , Animals , Caenorhabditis elegans/drug effects , Caenorhabditis elegans/genetics , Caenorhabditis elegans/metabolism , Catechin/analogs & derivatives , Catechin/pharmacology , Reproduction/drug effects , Caenorhabditis elegans Proteins/genetics , Caenorhabditis elegans Proteins/metabolism , Heat-Shock Proteins/genetics , Heat-Shock Proteins/metabolism , Aging/drug effects , alpha-Chlorohydrin/toxicity , Signal Transduction/drug effects , Reactive Oxygen Species/metabolism , Oxidative Stress/drug effects , Longevity/drug effects
11.
BioDrugs ; 38(4): 571-588, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38890199

ABSTRACT

BACKGROUND AND OBJECTIVE: Tocilizumab is an immunoglobulin G1 monoclonal antibody targeting the interleukin-6 receptor (IL-6R). BAT1806/BIIB800 (tocilizumab-bavi) has been developed as a biosimilar to the reference product tocilizumab (TCZ). The objective of this study was to demonstrate physicochemical and functional similarity between BAT1806/BIIB800 and TCZ in a comprehensive comparability exercise. METHODS: A comprehensive panel of over 20 methods was used to generate datasets comparing critical and non-critical product quality attributes for 10 BAT1806/BIIB800 lots and 44 TCZ lots (16 sourced from China, 16 from the EU, and 12 from the US). Primary structure, higher-order structure, and physicochemical properties were assessed using liquid chromatography, mass spectrometry, various spectroscopy techniques/methods, capillary electrophoresis, and thermoanalytical techniques. Fragment antigen-binding (Fab)- and fragment crystallizable (Fc)-mediated biological properties were assessed using cell-based assays, immunoassays, flow cytometry, and kinetic binding assays. RESULTS: BAT1806/BIIB800 and TCZ (irrespective of source) were shown to be similar in terms of structural and functional properties. No differences were observed in terms of the most critical quality attributes, that is, soluble-IL-6R binding and inhibition of IL-6-mediated cell proliferation. BAT1806/BIIB800 and TCZ demonstrated similarity in terms of Fab- and Fc-mediated binding and biological activity. Minor differences were observed in glycosylation (afucosylation and sialylation), glycation, aggregation, and charge variants, which were demonstrated to be not clinically relevant. CONCLUSION: BAT1806/BIIB800 and TCZ were highly similar for all critical quality attributes. Where differences were observed in less critical quality attributes, additional analytical assessments and clinical study results determined these to be not clinically meaningful.


Subject(s)
Antibodies, Monoclonal, Humanized , Biosimilar Pharmaceuticals , Receptors, Interleukin-6 , Biosimilar Pharmaceuticals/chemistry , Biosimilar Pharmaceuticals/pharmacology , Humans , Antibodies, Monoclonal, Humanized/chemistry , Antibodies, Monoclonal, Humanized/pharmacology , China
12.
Sci Rep ; 14(1): 12933, 2024 Jun 05.
Article in English | MEDLINE | ID: mdl-38839762

ABSTRACT

To address the current problems of low accuracy and poor reliability of the discrete element model of cotton stalks, as well as the difficulty of guiding the design and optimization of the equipment through simulations, the discrete element modeling and physical-mechanical tests of cotton stalks in machine harvested film-stalk mixtures are carried out. The peak tensile force F j max , the peak pressure F y max , the peak bending force F w max , the peak shear force F j max , and the force-displacement (F-x) curves of cotton stalks are obtained from the physical tests. The discrete element model of double-layer cotton stalks based on the flat-joint model is established with the PFC 3 D software. The F y max is taken as the response value, and the microscopic parameters of the cotton stalk model are used as the test factors, then the Plackett-Burman test, the steepest climb test, and the Box-Behnken test are sequentially designed using Design-Expert software. The second-order regression model describing the relationship between the F y max and the microscopic parameters is established. The optimal parameter combinations of the microscopic parameters are obtained, and then they are utilized to construct the compression, bending, and shear models of cotton stalks and to carry out the validation tests. The results confirm that the established discrete element model could accurately characterize the biomechanical properties of cotton stalks and that the parameter calibration method is reasonable, which could provide a reference for the discrete element modeling of cotton stalks and other stalks, and also offer a theoretical basis for the research of the crushing and separation mechanism of the film-stalk mixtures and the development of the equipment.

13.
Int J Biol Macromol ; 271(Pt 1): 132110, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38816295

ABSTRACT

In recent years, the considerable potential of endophytic bacteria and fungi as prolific producers of exopolysaccharides (EPSs) have attracted interest. In this study, 56 endophytes were isolated from Cyclocarya paliurus, and the secondary metabolites of EPSs were extracted from Monascus purpureus, Penicillium citrinum and Aspergillus versicolor, screened, and named MPE, PCE and AVE, respectively. In this work, the physicochemical properties and antioxidant activities of three EPSs, their cell proliferation activity on IEC-6 and RAW264.7 were investigated. The three EPSs were mainly composed of neutral sugar and differ in microstructure. However, MPE had a loose structure, and PCE exhibited a dense and sheet-like structure. In addition, the three EPSs performed ordinary antioxidant activity in vitro but showed excellent cell proliferation activity on IEC-6 and RAW264.7. The cell proliferation activity of PCE was 1.4-fold that of the controls at a concentration of 800 µg/mL on IEC-6, and MPE exhibited 1.3-fold increase on RAW264.7. This study provided scientific evidence and insights into the application of endophytes as a novel plant resource possessing huge application potential.


Subject(s)
Antioxidants , Cell Proliferation , Endophytes , Juglandaceae , Penicillium , Mice , Animals , Antioxidants/pharmacology , Antioxidants/chemistry , RAW 264.7 Cells , Endophytes/chemistry , Endophytes/metabolism , Cell Proliferation/drug effects , Juglandaceae/chemistry , Penicillium/chemistry , Penicillium/metabolism , Aspergillus/chemistry , Aspergillus/metabolism , Fungal Polysaccharides/chemistry , Fungal Polysaccharides/pharmacology , Fungal Polysaccharides/isolation & purification , Monascus/chemistry , Monascus/metabolism , Rats
14.
Food Funct ; 15(11): 5942-5954, 2024 Jun 04.
Article in English | MEDLINE | ID: mdl-38738974

ABSTRACT

Our laboratory previously extracted bound polyphenols (BPP) in insoluble dietary fiber from navel orange peel (NOP-IDF), and the aim of this study was to investigate the anti-inflammatory activity and potential molecular mechanisms of BPP by establishing an LPS-induced intestinal-like Caco-2/RAW264.7 co-culture inflammation model. The results demonstrated that BPP reduced the expression of cyclooxygenase-2 (COX-2) and inducible nitric oxide synthase (iNOS), as well as the production of pro-inflammatory cytokines, nitric oxide (NO), and reactive oxidative species (ROS) during the inflammatory damage process. Furthermore, BPP alleviated the lipopolysaccharides (LPS)-induced intestinal barrier damage by attenuating the decrease in trans-epithelial electrical resistance (TEER), diamine oxidase (DAO) activity, and intestinal alkaline phosphatase (IAP) activity, as well as the downregulation of ZO-1, Occludin, and Claudin-1 protein expression levels. RNA-seq results on RAW264.7 cells in the co-culture model showed that the NF-κB and JAK-STAT pathways belonged to the most significantly affected signaling pathways in the KEGG analysis, and western blot confirmed that they are essential for the role of BPP in intestinal inflammation. Additionally, overexpression of the granulocyte-macrophage colony-stimulating factor (CSF2) gene triggered abnormal activation of the NF-κB and JAK-STAT pathways and high-level expression of inflammatory factors, while BPP effectively improved this phenomenon. The above results suggested that BPP could inhibit intestinal inflammatory injury and protect intestinal barrier integrity through CSF2-mediated NF-κB and JAK-STAT pathways.


Subject(s)
Citrus sinensis , Coculture Techniques , Dietary Fiber , Lipopolysaccharides , Polyphenols , Signal Transduction , Animals , Humans , Mice , Caco-2 Cells , Citrus sinensis/chemistry , Dietary Fiber/pharmacology , Fruit/chemistry , Granulocyte-Macrophage Colony-Stimulating Factor/metabolism , Inflammation/metabolism , Intestinal Mucosa/metabolism , Intestinal Mucosa/drug effects , Intestines/drug effects , Janus Kinases/metabolism , Lipopolysaccharides/adverse effects , NF-kappa B/metabolism , NF-kappa B/genetics , Polyphenols/pharmacology , RAW 264.7 Cells , Signal Transduction/drug effects , STAT Transcription Factors/metabolism
15.
Int J Biol Macromol ; 270(Pt 1): 132352, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38754676

ABSTRACT

Polysaccharides are used in starch-based product formulations to enhance the final quality of food products. This study examined the interaction mechanisms in Ficus pumila polysaccharide (FPP) and wheat starch (WS) gel systems with varying FPP concentrations using linear and nonlinear rheological analysis. Physicochemical structural analyses showed non-covalent FPP-WS interactions, strengthening hydrogen bonding between molecules and promoting water binding and ordered structure generation during WS gel aging. Small amplitude oscillatory shear analyses revealed that elevated FPP concentrations led to increased storage modulus (G'), loss modulus (G"), critical strains (From 29.02 % to 53.32 %) and yield stresses (From 0.94 Pa to 30.97 Pa) in the WS gel system, along with improved resistance to deformation and short-term regeneration. In the nonlinear viscoelastic region, FPP-WS gels shifted from elastic to viscous behavior. Higher FPP concentrations displayed increased energy dissipation, strain hardening (S>0, e3/e1 > 0) and shear thinning (T<0, v3/v1<0). FPP contributes more nonlinearity in the dynamic flow field as showed by the high harmonic ratio, with a larger I3/I1 values overall. This study highlights FPP's potential in starch gel food processing, and offers a theoretical basis for understanding hydrocolloid-starch interactions.


Subject(s)
Ficus , Gels , Polysaccharides , Rheology , Starch , Triticum , Starch/chemistry , Polysaccharides/chemistry , Ficus/chemistry , Gels/chemistry , Triticum/chemistry , Viscosity , Shear Strength
16.
Int J Biol Macromol ; 269(Pt 1): 132114, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38714279

ABSTRACT

Mesona chinensis polysaccharide (MCP) has excellent gel-forming characteristic, previous studies showed that MCP could affect the gelling and structural properties of rice starch, but the effect of MCP on rice starch from different types is not clarified. In this study, the effects of MCP on the pasting, rheological, and structural characteristics of glutinous rice starch (GRS), japonica rice starch (JRS), and indica rice starch (IRS) were investigated. The results showed that GRS-MCP has the best viscosity, its peak and final viscosities are higher than JRS-MCP and IRS-MCP. The gel network structure was enhanced by MCP in the order of IRS > JRS > GRS, which was reflected by greater elasticity, higher gel strength and hardness, and less free water in JRS-MCP and IRS-MCP. MCP also enhanced the ordered structure and thermal stability of the three starch gels, which is conducive to their application in the market. These findings provide new theoretical insights to produce rice starch-based foods.


Subject(s)
Gels , Oryza , Polysaccharides , Rheology , Starch , Oryza/chemistry , Starch/chemistry , Polysaccharides/chemistry , Gels/chemistry , Viscosity , Lamiaceae/chemistry , Water/chemistry
17.
Food Funct ; 15(11): 5855-5867, 2024 Jun 04.
Article in English | MEDLINE | ID: mdl-38687276

ABSTRACT

In this study, it was found that epigallocatechin-3-gallate (EGCG) could extend the lifespan of Caenorhabditis elegans (C. elegans) induced by 100 µM acrolein (ACR) at all test concentrations (300, 400, 500, 600, and 700 µM). Notably, 500 µM EGCG exhibited the most significant mean lifespan extension, increasing it by approximately 32.5%. Furthermore, 500 µM EGCG effectively reduced elevated levels of reactive oxygen species (ROS) and lipofuscin production caused by acrolein. It also bolstered the activity of antioxidant enzymes and mitigated malondialdehyde (MDA) levels compared to the ACR-only group. These effects appeared independent of dietary restrictions. Additionally, qPCR results revealed different changes in the transcription levels of 11 genes associated with antioxidative and anti-aging functions following EGCG treatment. At the expression level, GST-4::GFP, SOD-3::GFP and HSP-16.2::GFP exhibited an initial increase with ACR treatment followed by a decrease with EGCG treatment, while the expression pattern of these three GFPs remained consistent with the enzyme activity and transcription regulation level. EGCG treatment also reduced the nuclear localization of SKN-1 and DAF-16 in the MAPK and IIS pathways that were enhanced by ACR. Moreover, the longevity-promoting effects of EGCG were diminished or absent in 13 longevity gene-deletion mutants. In conclusion, EGCG demonstrates protective effects on ACR-induced C. elegans, with the IIS and MAPK pathways playing a critical role in enhancing resilience to ACR.


Subject(s)
Acrolein , Antioxidants , Caenorhabditis elegans Proteins , Caenorhabditis elegans , Catechin , Longevity , Reactive Oxygen Species , Animals , Caenorhabditis elegans/drug effects , Caenorhabditis elegans/metabolism , Caenorhabditis elegans/genetics , Acrolein/pharmacology , Acrolein/analogs & derivatives , Catechin/analogs & derivatives , Catechin/pharmacology , Caenorhabditis elegans Proteins/metabolism , Caenorhabditis elegans Proteins/genetics , Longevity/drug effects , Antioxidants/pharmacology , Reactive Oxygen Species/metabolism , Oxidative Stress/drug effects , Superoxide Dismutase/metabolism , Malondialdehyde/metabolism
18.
J Food Sci ; 89(6): 3591-3602, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38685863

ABSTRACT

Lipid oxidation often accompanies the processing and storage of peanuts, which causes a serious waste of peanut resources. To solve the problem of being prone to oxidation in peanut processing, a ternary complex antioxidant based on rosemary extract (RE) was constructed to investigate its effect on the oxidative and thermal stability of peanuts, and the inhibition of peanut oxidation by compound antioxidants was revealed by dynamic Arrhenius formula and complexation theory. The results showed that there was a synergistic effect between RE and Tert-butyl hydroquinone (TBHQ), and the antioxidant effects of RE and TBHQ were 4.86 and 1.45 times higher when used in combination than when used alone, respectively. In addition, RE-TBHQ-CA (citric acid) effectively inhibited primary and secondary oxidation of peanuts with a shelf life 8.7 times longer than that of control peanuts. This study provides a novel antioxidant compounding idea, which has a positive effect on improving the quality of peanut and other nut products, prolonging the shelf life and reducing the waste of resources. PRACTICAL APPLICATION: Compounding a complex antioxidant that permits its use in peanuts. It was found that rosemary and TBHQ might have synergistic antioxidant effects. Meanwhile, this combination of RE-TBHQ-CA effectively inhibited the oxidation of peanut oils and prolonged the shelf life of peanuts. RE-TBHQ-CA is a highly efficient complex antioxidant that can reduce the amounts of antioxidants added while maintaining high antioxidant efficiency, which may be useful for the future preservation and storage of nut products as it positively affects the quality and shelf life of the product.


Subject(s)
Antioxidants , Arachis , Citric Acid , Food Storage , Hydroquinones , Oxidation-Reduction , Plant Extracts , Rosmarinus , Rosmarinus/chemistry , Hydroquinones/chemistry , Food Storage/methods , Antioxidants/pharmacology , Plant Extracts/pharmacology , Plant Extracts/chemistry , Arachis/chemistry , Citric Acid/pharmacology , Citric Acid/chemistry , Food Preservation/methods , Food Preservatives/chemistry , Food Preservatives/pharmacology
19.
Foods ; 13(7)2024 Apr 01.
Article in English | MEDLINE | ID: mdl-38611388

ABSTRACT

Functional foods have potential health benefits for humans. Lotus seeds (LS) as functional foods have excellent antioxidant activities. However, the differences in chemical composition of different LS cultivars may affect their antioxidant activities. This study comprehensively analyzed the differences among five LS cultivars based on metabolomics and further revealed the effects of metabolites on antioxidant activities by correlation analysis. A total of 125 metabolites were identified in LS using UPLC-Q/TOF-MS. Then, 15 metabolites were screened as differential metabolites of different LS cultivars by chemometrics. The antioxidant activities of LS were evaluated by DPPH•, FRAP, and ABTS•+ assays. The antioxidant activities varied among different LS cultivars, with the cultivar Taikong 66 showing the highest antioxidant activities. The correlation analysis among metabolites and antioxidant activities highlighted the important contribution of phenolics and alkaloids to the antioxidant activities of LS. Particularly, 11 metabolites such as p-coumaric acid showed significant positive correlation with antioxidant activities. Notably, 6 differential metabolites screened in different LS cultivars showed significant effects on antioxidant activities. These results revealed the important effects of phytochemicals on the antioxidant activities of different LS cultivars. This study provided evidence for the health benefits of different LS cultivars.

20.
Foods ; 13(7)2024 Apr 05.
Article in English | MEDLINE | ID: mdl-38611417

ABSTRACT

Natural macromolecular substances are prevalent in the organs of plants and animals, such as polysaccharides, resins, proteins, etc [...].

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