The Experts below are selected from a list of 702 Experts worldwide ranked by ideXlab platform

James E Trosko - One of the best experts on this subject based on the ideXlab platform.

  • β sitosterol from psyllium seed husk Plantago ovata forsk restores gap junctional intercellular communication in ha ras transfected rat liver cells
    Nutrition and Cancer, 2005
    Co-Authors: Yasushi Nakamura, Noriko Yoshikawa, Ikumi Hiroki, Kenji Sato, Kozo Ohtsuki, Chiacheng Chang, Brad L Upham, James E Trosko
    Abstract:

    We purified compounds from the husks of psyllium seeds (Plantago ovata Forsk; desert Indian wheat), beginning with an ethanol extraction then followed by HP-20 and silica gel chromatography, which restored gap junctional intercellular communication (GJIC) in v-Ha-ras transfected rat liver epithelial WB-F344 cell line (WB-Ha-ras). GJIC was assessed by a scrape loading dye transfer assay. The active compound was identified as beta-sitosterol based on gas chromatography retention times and electron ionization mass spectroscopy (EI-MS) spectrum of authentic beta-sitosterol. Authentic beta-sitosterol restored GJIC in the tumorigenic WB-Ha-ras GJIC-deficient cells at a dose of 2.4 micromolar. In addition, a similar phytosterol, stigmasterol, also restored GJIC, albeit at a lower activity. beta-sitosterol and stigmasterol increased the level of connexin43 protein (Cx43) and restored phosphorylation of Cx43 to levels similar to the parental nontransfected cell line. We concluded that the restoration of intercellular communication in the GJIC-deficient, tumorigenic WB-Ha-ras cell line by the ethanol soluble fraction of psyllium seed husks is largely due to the presence of the phytosterol, beta-sitosterol. We discuss implications for dietary modulation of cancer by beta-sitosterol.

  • beta sitosterol from psyllium seed husk Plantago ovata forsk restores gap junctional intercellular communication in ha ras transfected rat liver cells
    Nutrition and Cancer, 2005
    Co-Authors: Yasushi Nakamura, Noriko Yoshikawa, Ikumi Hiroki, Kenji Sato, Kozo Ohtsuki, Chiacheng Chang, Brad L Upham, James E Trosko
    Abstract:

    We purified compounds from the husks of psyllium seeds (Plantago ovata Forsk; desert Indian wheat), beginning with an ethanol extraction then followed by HP-20 and silica gel chromatography, which restored gap junctional intercellular communication (GJIC) in v-Ha-ras transfected rat liver epithelial WB-F344 cell line (WB-Ha-ras). GJIC was assessed by a scrape loading dye transfer assay. The active compound was identified as beta-sitosterol based on gas chromatography retention times and electron ionization mass spectroscopy (EI-MS) spectrum of authentic beta-sitosterol. Authentic beta-sitosterol restored GJIC in the tumorigenic WB-Ha-ras GJIC-deficient cells at a dose of 2.4 micromolar. In addition, a similar phytosterol, stigmasterol, also restored GJIC, albeit at a lower activity. beta-sitosterol and stigmasterol increased the level of connexin43 protein (Cx43) and restored phosphorylation of Cx43 to levels similar to the parental nontransfected cell line. We concluded that the restoration of intercellular communication in the GJIC-deficient, tumorigenic WB-Ha-ras cell line by the ethanol soluble fraction of psyllium seed husks is largely due to the presence of the phytosterol, beta-sitosterol. We discuss implications for dietary modulation of cancer by beta-sitosterol.

Yasushi Nakamura - One of the best experts on this subject based on the ideXlab platform.

  • β sitosterol from psyllium seed husk Plantago ovata forsk restores gap junctional intercellular communication in ha ras transfected rat liver cells
    Nutrition and Cancer, 2005
    Co-Authors: Yasushi Nakamura, Noriko Yoshikawa, Ikumi Hiroki, Kenji Sato, Kozo Ohtsuki, Chiacheng Chang, Brad L Upham, James E Trosko
    Abstract:

    We purified compounds from the husks of psyllium seeds (Plantago ovata Forsk; desert Indian wheat), beginning with an ethanol extraction then followed by HP-20 and silica gel chromatography, which restored gap junctional intercellular communication (GJIC) in v-Ha-ras transfected rat liver epithelial WB-F344 cell line (WB-Ha-ras). GJIC was assessed by a scrape loading dye transfer assay. The active compound was identified as beta-sitosterol based on gas chromatography retention times and electron ionization mass spectroscopy (EI-MS) spectrum of authentic beta-sitosterol. Authentic beta-sitosterol restored GJIC in the tumorigenic WB-Ha-ras GJIC-deficient cells at a dose of 2.4 micromolar. In addition, a similar phytosterol, stigmasterol, also restored GJIC, albeit at a lower activity. beta-sitosterol and stigmasterol increased the level of connexin43 protein (Cx43) and restored phosphorylation of Cx43 to levels similar to the parental nontransfected cell line. We concluded that the restoration of intercellular communication in the GJIC-deficient, tumorigenic WB-Ha-ras cell line by the ethanol soluble fraction of psyllium seed husks is largely due to the presence of the phytosterol, beta-sitosterol. We discuss implications for dietary modulation of cancer by beta-sitosterol.

  • beta sitosterol from psyllium seed husk Plantago ovata forsk restores gap junctional intercellular communication in ha ras transfected rat liver cells
    Nutrition and Cancer, 2005
    Co-Authors: Yasushi Nakamura, Noriko Yoshikawa, Ikumi Hiroki, Kenji Sato, Kozo Ohtsuki, Chiacheng Chang, Brad L Upham, James E Trosko
    Abstract:

    We purified compounds from the husks of psyllium seeds (Plantago ovata Forsk; desert Indian wheat), beginning with an ethanol extraction then followed by HP-20 and silica gel chromatography, which restored gap junctional intercellular communication (GJIC) in v-Ha-ras transfected rat liver epithelial WB-F344 cell line (WB-Ha-ras). GJIC was assessed by a scrape loading dye transfer assay. The active compound was identified as beta-sitosterol based on gas chromatography retention times and electron ionization mass spectroscopy (EI-MS) spectrum of authentic beta-sitosterol. Authentic beta-sitosterol restored GJIC in the tumorigenic WB-Ha-ras GJIC-deficient cells at a dose of 2.4 micromolar. In addition, a similar phytosterol, stigmasterol, also restored GJIC, albeit at a lower activity. beta-sitosterol and stigmasterol increased the level of connexin43 protein (Cx43) and restored phosphorylation of Cx43 to levels similar to the parental nontransfected cell line. We concluded that the restoration of intercellular communication in the GJIC-deficient, tumorigenic WB-Ha-ras cell line by the ethanol soluble fraction of psyllium seed husks is largely due to the presence of the phytosterol, beta-sitosterol. We discuss implications for dietary modulation of cancer by beta-sitosterol.

Gleb E Yakubov - One of the best experts on this subject based on the ideXlab platform.

  • viscoelastic behaviour of rapid and slow self healing hydrogels formed by densely branched arabinoxylans from Plantago ovata seed mucilage
    Carbohydrate Polymers, 2021
    Co-Authors: Jason R Stokes, Gleb E Yakubov
    Abstract:

    Abstract We report rheological characterisation of hydrogels formed by highly substituted brush-like arabinoxylans from Plantago ovata seed mucilage. Two arabinoxlyan fractions with similar molecular weight and linkage compositions are chosen to form gels with distinct rheological properties but a similar network structure. Small and large amplitude oscillatory shear rheology is used to characterise the sol-gel transition as a function of temperature and concentration. Differences in rheology and gelation of the two hydrogels are found to be associated with the different proportion of ‘slow’- and ‘fast’-dissociating junctions stabilised by hydrogen bonds, with the ‘fast’-dissociating junctions playing an important role in rapid self-healing of the gel. Based on the temperature dependence of storage modulus and time–temperature superposition principle in combination with the Arrhenius equation, the activation energies of junction zone dissociation are estimated to be 402–480 kJ/mol and 97–144 kJ/mol for the ‘slow’ and ‘fast’ junction types, respectively.

  • multi scale assembly of hydrogels formed by highly branched arabinoxylans from Plantago ovata seed mucilage studied by usans sans and rheology
    Carbohydrate Polymers, 2019
    Co-Authors: Gleb E Yakubov, Elliot P Gilbert, Kim B Sewell, Allison M L Van De Meene, Jason R Stokes
    Abstract:

    The structures of two hydrogels formed by purified brush-like polysaccharides from Plantago ovata seed mucilage have been characterised from the nanometre to micrometre scale by using a combination of SANS and USANS techniques. These two hydrogels have distinctly different melting and rheological properties, but the structure of their gel networks bears striking similarity as revealed by USANS/SANS experiments. Surprisingly, we find that the dramatic changes in the rheological properties induced by temperature or change in the solvent quality are accompanied by a small alteration of the network structure as inferred from scattering curves recorded above melting or in a chaotropic solvent (0.7 M KOD). These results suggest that, in contrast to most gel-forming polysaccharides for which gelation depends on a structural transition, the rheological properties of Plantago ovata mucilage gels are dependent on variations in intermolecular hydrogen bonding. By enzymatically cleaving off terminal arabinose residues from the side chains, we have demonstrated that composition of side-chains has a strong effect on intermolecular interactions, which, in turn, has a profound effect on rheological and structural properties of these unique polysaccharides.

  • rheological and structural properties of complex arabinoxylans from Plantago ovata seed mucilage under non gelled conditions
    Carbohydrate Polymers, 2018
    Co-Authors: Gleb E Yakubov, Elliot P Gilbert, Marta Martinezsanz, Jason R Stokes
    Abstract:

    Abstract Two gel-forming arabinoxylan (AX) fractions with very similar linkage composition and molecular weight distributions have been isolated from Plantago ovata seed mucilage. Both isolated fractions have distinct gel properties attributed to differences in intermolecular hydrogen bonding. This study probes the effect of hydrogen bonding on molecular interactions of P. ovata AX fractions under non-gelled conditions achieved using a mild hydrogen bonding inhibitor, 0.2 M KOH. Chain conformation, relaxation dynamics and interactions between AX molecules are investigated using a combination of rheological techniques and small angle X-ray and neutron scattering. The scattering data confirm similar molecular dimensions and chain rigidity for both fractions, while showing distinct patterns of molecular interactions which result in the formation of a self-associated polymer network. The relationship between molecular associations, chain relaxation time and entanglement behaviour of P. ovata AX solutions are corroborated though the analysis of flow profiles and small amplitude oscillatory shear rheology.

  • multi layer mucilage of Plantago ovata seeds rheological differences arise from variations in arabinoxylan side chains
    Carbohydrate Polymers, 2017
    Co-Authors: Gleb E Yakubov, Wei Zeng, Xiaohui Xing, John Stenson, Vincent Bulone, Jason R Stokes
    Abstract:

    Mucilages are hydrocolloid solutions produced by plants for a variety of functions, including the creation of a water-holding barrier around seeds. Here we report our discovery of the formation of three distinct mucilage layers around Plantago ovata seeds upon their hydration. Each layer is dominated by different arabinoxylans (AXs). These AXs are unusual because they are highly branched and contain β-1,3-linked xylose in their side chains. We show that these AXs have similar monosaccharide and linkage composition, but vary in their polymer conformation. They also exhibit distinct rheological properties in aqueous solution, despite analytical techniques including NMR showing little difference between them. Using enzymatic hydrolysis and chaotropic solvents, we reveal that hydrogen bonding and side chain distribution are key factors underpinning the distinct rheological properties of these complex AXs.

Jason R Stokes - One of the best experts on this subject based on the ideXlab platform.

  • viscoelastic behaviour of rapid and slow self healing hydrogels formed by densely branched arabinoxylans from Plantago ovata seed mucilage
    Carbohydrate Polymers, 2021
    Co-Authors: Jason R Stokes, Gleb E Yakubov
    Abstract:

    Abstract We report rheological characterisation of hydrogels formed by highly substituted brush-like arabinoxylans from Plantago ovata seed mucilage. Two arabinoxlyan fractions with similar molecular weight and linkage compositions are chosen to form gels with distinct rheological properties but a similar network structure. Small and large amplitude oscillatory shear rheology is used to characterise the sol-gel transition as a function of temperature and concentration. Differences in rheology and gelation of the two hydrogels are found to be associated with the different proportion of ‘slow’- and ‘fast’-dissociating junctions stabilised by hydrogen bonds, with the ‘fast’-dissociating junctions playing an important role in rapid self-healing of the gel. Based on the temperature dependence of storage modulus and time–temperature superposition principle in combination with the Arrhenius equation, the activation energies of junction zone dissociation are estimated to be 402–480 kJ/mol and 97–144 kJ/mol for the ‘slow’ and ‘fast’ junction types, respectively.

  • multi scale assembly of hydrogels formed by highly branched arabinoxylans from Plantago ovata seed mucilage studied by usans sans and rheology
    Carbohydrate Polymers, 2019
    Co-Authors: Gleb E Yakubov, Elliot P Gilbert, Kim B Sewell, Allison M L Van De Meene, Jason R Stokes
    Abstract:

    The structures of two hydrogels formed by purified brush-like polysaccharides from Plantago ovata seed mucilage have been characterised from the nanometre to micrometre scale by using a combination of SANS and USANS techniques. These two hydrogels have distinctly different melting and rheological properties, but the structure of their gel networks bears striking similarity as revealed by USANS/SANS experiments. Surprisingly, we find that the dramatic changes in the rheological properties induced by temperature or change in the solvent quality are accompanied by a small alteration of the network structure as inferred from scattering curves recorded above melting or in a chaotropic solvent (0.7 M KOD). These results suggest that, in contrast to most gel-forming polysaccharides for which gelation depends on a structural transition, the rheological properties of Plantago ovata mucilage gels are dependent on variations in intermolecular hydrogen bonding. By enzymatically cleaving off terminal arabinose residues from the side chains, we have demonstrated that composition of side-chains has a strong effect on intermolecular interactions, which, in turn, has a profound effect on rheological and structural properties of these unique polysaccharides.

  • rheological and structural properties of complex arabinoxylans from Plantago ovata seed mucilage under non gelled conditions
    Carbohydrate Polymers, 2018
    Co-Authors: Gleb E Yakubov, Elliot P Gilbert, Marta Martinezsanz, Jason R Stokes
    Abstract:

    Abstract Two gel-forming arabinoxylan (AX) fractions with very similar linkage composition and molecular weight distributions have been isolated from Plantago ovata seed mucilage. Both isolated fractions have distinct gel properties attributed to differences in intermolecular hydrogen bonding. This study probes the effect of hydrogen bonding on molecular interactions of P. ovata AX fractions under non-gelled conditions achieved using a mild hydrogen bonding inhibitor, 0.2 M KOH. Chain conformation, relaxation dynamics and interactions between AX molecules are investigated using a combination of rheological techniques and small angle X-ray and neutron scattering. The scattering data confirm similar molecular dimensions and chain rigidity for both fractions, while showing distinct patterns of molecular interactions which result in the formation of a self-associated polymer network. The relationship between molecular associations, chain relaxation time and entanglement behaviour of P. ovata AX solutions are corroborated though the analysis of flow profiles and small amplitude oscillatory shear rheology.

  • multi layer mucilage of Plantago ovata seeds rheological differences arise from variations in arabinoxylan side chains
    Carbohydrate Polymers, 2017
    Co-Authors: Gleb E Yakubov, Wei Zeng, Xiaohui Xing, John Stenson, Vincent Bulone, Jason R Stokes
    Abstract:

    Mucilages are hydrocolloid solutions produced by plants for a variety of functions, including the creation of a water-holding barrier around seeds. Here we report our discovery of the formation of three distinct mucilage layers around Plantago ovata seeds upon their hydration. Each layer is dominated by different arabinoxylans (AXs). These AXs are unusual because they are highly branched and contain β-1,3-linked xylose in their side chains. We show that these AXs have similar monosaccharide and linkage composition, but vary in their polymer conformation. They also exhibit distinct rheological properties in aqueous solution, despite analytical techniques including NMR showing little difference between them. Using enzymatic hydrolysis and chaotropic solvents, we reveal that hydrogen bonding and side chain distribution are key factors underpinning the distinct rheological properties of these complex AXs.

Brad L Upham - One of the best experts on this subject based on the ideXlab platform.

  • β sitosterol from psyllium seed husk Plantago ovata forsk restores gap junctional intercellular communication in ha ras transfected rat liver cells
    Nutrition and Cancer, 2005
    Co-Authors: Yasushi Nakamura, Noriko Yoshikawa, Ikumi Hiroki, Kenji Sato, Kozo Ohtsuki, Chiacheng Chang, Brad L Upham, James E Trosko
    Abstract:

    We purified compounds from the husks of psyllium seeds (Plantago ovata Forsk; desert Indian wheat), beginning with an ethanol extraction then followed by HP-20 and silica gel chromatography, which restored gap junctional intercellular communication (GJIC) in v-Ha-ras transfected rat liver epithelial WB-F344 cell line (WB-Ha-ras). GJIC was assessed by a scrape loading dye transfer assay. The active compound was identified as beta-sitosterol based on gas chromatography retention times and electron ionization mass spectroscopy (EI-MS) spectrum of authentic beta-sitosterol. Authentic beta-sitosterol restored GJIC in the tumorigenic WB-Ha-ras GJIC-deficient cells at a dose of 2.4 micromolar. In addition, a similar phytosterol, stigmasterol, also restored GJIC, albeit at a lower activity. beta-sitosterol and stigmasterol increased the level of connexin43 protein (Cx43) and restored phosphorylation of Cx43 to levels similar to the parental nontransfected cell line. We concluded that the restoration of intercellular communication in the GJIC-deficient, tumorigenic WB-Ha-ras cell line by the ethanol soluble fraction of psyllium seed husks is largely due to the presence of the phytosterol, beta-sitosterol. We discuss implications for dietary modulation of cancer by beta-sitosterol.

  • beta sitosterol from psyllium seed husk Plantago ovata forsk restores gap junctional intercellular communication in ha ras transfected rat liver cells
    Nutrition and Cancer, 2005
    Co-Authors: Yasushi Nakamura, Noriko Yoshikawa, Ikumi Hiroki, Kenji Sato, Kozo Ohtsuki, Chiacheng Chang, Brad L Upham, James E Trosko
    Abstract:

    We purified compounds from the husks of psyllium seeds (Plantago ovata Forsk; desert Indian wheat), beginning with an ethanol extraction then followed by HP-20 and silica gel chromatography, which restored gap junctional intercellular communication (GJIC) in v-Ha-ras transfected rat liver epithelial WB-F344 cell line (WB-Ha-ras). GJIC was assessed by a scrape loading dye transfer assay. The active compound was identified as beta-sitosterol based on gas chromatography retention times and electron ionization mass spectroscopy (EI-MS) spectrum of authentic beta-sitosterol. Authentic beta-sitosterol restored GJIC in the tumorigenic WB-Ha-ras GJIC-deficient cells at a dose of 2.4 micromolar. In addition, a similar phytosterol, stigmasterol, also restored GJIC, albeit at a lower activity. beta-sitosterol and stigmasterol increased the level of connexin43 protein (Cx43) and restored phosphorylation of Cx43 to levels similar to the parental nontransfected cell line. We concluded that the restoration of intercellular communication in the GJIC-deficient, tumorigenic WB-Ha-ras cell line by the ethanol soluble fraction of psyllium seed husks is largely due to the presence of the phytosterol, beta-sitosterol. We discuss implications for dietary modulation of cancer by beta-sitosterol.