• Title/Summary/Keyword: bile acid binding capacity

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Effect Extraction Conditions on Bile acids Binding Capacity in vitro of Alginate Extracted from Sea Tangle (Laminaria spp.) (다시마 alginate와 bile acids의 결합능에 미치는 추출조건의 영향)

  • YOU Byeong-Jin;IM Yeong-Sun;JEONG In-Hak;LEE Kang-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.30 no.1
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    • pp.31-38
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    • 1997
  • Changes in bile acid binding rapacity in vitro and physical properties of alginate extracted from sea tangle (Laminaria spp.) and residue after extracting alginate (RAEA) were investigated. For the purpose, extraction conditions controlled under 1, 3 and $5\%$ of sodium carbonate solution, and 1, 3, 5 and 10 hours of extraction time at $60^{\circ}C$. The less sea tangle had particle size and the higher concentration of sodium carbonate solution increseded, the more yield of alginate gained. High concentration of sodium carbonate solution and long extraction time resulted in weakly binding capacity in vitro by alginate. Among four bile acids, binding capacites with alginate were in the order of cholic, taurocholic acid>glycocholic acid>deoxycholic acid. The binding capacity of RAEA was rated at almost same degree of alginate. For increasing the binding capacity of bile acids by alginate, it was subject to high viscosity and degree of polymerization.

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Dietary ε-Polylysine Decreased Serum and Liver Lipid Contents by Enhancing Fecal Lipid Excretion Irrespective of Increased Hepatic Fatty Acid Biosynthesis-Related Enzymes Activities in Rats

  • Hosomi, Ryota;Yamamoto, Daiki;Otsuka, Ren;Nishiyama, Toshimasa;Yoshida, Munehiro;Fukunaga, Kenji
    • Preventive Nutrition and Food Science
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    • v.20 no.1
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    • pp.43-51
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    • 2015
  • ${\varepsilon}$-Polylysine (EPL) is used as a natural preservative in food. However, few studies have been conducted to assess the beneficial functions of dietary EPL. The purpose of this study was to elucidate the mechanism underlying the inhibition of neutral and acidic sterol absorption and hepatic enzyme activity-related fatty acid biosynthesis following EPL intake. EPL digest prepared using an in vitro digestion model had lower lipase activity and micellar lipid solubility and higher bile acid binding capacity than casein digest. Male Wistar rats were fed an AIN-93G diet containing 1% (wt/wt) EPL or L-lysine. After 4 weeks of feeding these diets, the marked decrease in serum and liver triacylglycerol contents by the EPL diet was partly attributed to increased fecal fatty acid excretion. The activities of hepatic acetyl-coenzyme A carboxylase and glucose-6-phosphate dehydrogenase, which are key enzymes of fatty acid biosynthesis, were enhanced in rats fed EPL diet. The increased fatty acid biosynthesis activity due to dietary EPL may be prevented by the enhancement of fecal fatty acid excretion. The hypocholesterolemic effect of EPL was mediated by increased fecal neutral and acidic sterol excretions due to the EPL digest suppressing micellar lipid solubility and high bile acid binding capacity. These results show that dietary EPL has beneficial effects that could help prevent lifestyle-related diseases such as hyperlipidemia and atherosclerosis.

In vitro Screening of Dietary Factors on Buckwheat(Fagopyrum esculentum Moench) Influencing the Regulation of Blood Pressure, Glucose and Cholesterol Level (혈압, 혈당 및 콜레스테롤농도 조절에 영향을 주는 식이 메밀인자의 in vitro 검정)

  • 최용순;김복란;김려화;이병훈;심태흠;이상영
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.29 no.2
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    • pp.280-287
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    • 2000
  • Generally, buckwheat has been regarded as a crop of secondary importance in many countries. In vitro functionalities of buckwheats as a food were evaluated in this study. Five of buckwheat cultivars were extracted with methanol, and the extractant were dried and lyophilized, separately. Or water soluble buckwheat components were digested with the commercial enzymes and the obtained protein hydrolysate was again fractionated by acid precipitation. The antioxidant capacity of the methanol extracts determined using Fe2+-ascorbic acid system was dependent ont the cultivars: The extract of Suwon 4 showed 3.3 times stronger activity than ascorbic acid in terms of IC50. Also, the extracts of buckwheats inhibited efficiently the activities of $\alpha$-amylase and lens aldose reductase. Buckwheat soluble protein or rutin suppressed the in vitro activities of angiotensin-converting enzyme, and the inhibitory degree depended largely on the cultivars. Buckwheat proteins exerted higher hydrophobicity being related to the sterol binding capacity than casein. The results suggested that buckwheat seeds may be desirable and functional food resources in human living in current society.

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Physiological Functionalities of Traditional Alaska Pollack Sik-hae (전통 명태식해(식해)의 기능성)

  • Cha, Yong-Jun;Lee, Cho-Eun;Jeong, Eun-Kyung;Kim, Hun;Lee, Jung-Suck
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.31 no.4
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    • pp.559-565
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    • 2002
  • The physiological functionalities such as antimicrobial activity, antioxidative activity, angiotensin-I converting enzyme (ACE) inhibitory activity and bile acid binding capacity were measured for the solvent-fractionated methanol extracts of Alaska pollack sik-hae at various time intervals during fermentation. Two temperature schemes of fermentation were studied: constant temperature of 2$0^{\circ}C$ (A) and stepwise change from 2$0^{\circ}C$ (10 days) to 5$^{\circ}C$ (B). The methanol extracts of Alaska pollack sik-hae showed antimicrobial activities against 9 kinds of micro-organisms including pathogenic and food poisoning strains. Among these, gram positive bacteria, in particular Staphylococcus aureus, showed more sensitivity to the extracts than gram negative bacteria and fungi. Antioxidative activity (EDA$_{50}$) increased until 15 days (A, 0.92 mg/$m\ell$) or 16 days of fermentation (B, 0.94 mg/$m\ell$), and then gradually decreased. ACE inhibitory activity was observed in all fermentation time except 0 day, and bile acid binding capacity at 15 days (A) and 16 days (B) only.

Studies on Functional Salt Fortified with Seaweed Components (해조성분 강화 기능성소금에 대한 연구)

  • Byun, Jee-Young;Namgung, Bae;Jo, Jin-Ho;Do, Jung-Ryong;In, Jae-Pyung;Kim, Young-Myoung
    • Korean Journal of Food Science and Technology
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    • v.39 no.2
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    • pp.152-157
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    • 2007
  • In an attempt to develop functional salts having beneficial health effects, we experimentally prepared three functional salts by fortification with soluble seaweed minerals (Hizikia mineral salt, HMS), fucoidan (fucoidan salt, FS) and laver extracts (laver salt, LS). To characterize the functional salts, their physicochemical properties and in vitro functionalities, such as pH, color, mineral composition, solubility, oxidation-reduction potential, sensory properties, angiotesin converting enzyme (ACE) inhibitory activity, and bile acid binding capacity were investigated. The functional salts revealed slightly lower NaCl concentrations, but showed a variety of pH values compared with conventional table salt. The pH values of HMS, FS, and LS were 11.3, 6.8, and 6.5, respectively. The oxidation-reduction potentials (ORP) of the functional salts varied from -229 mV to 38 mV, significantly lower than refined salt. The functional salts were significantly darker in color than refined salt, and the mineral composition of HMS was considerably enriched compared to refined salt, particularly in potassium ion. As a result of the sensory evaluation, FS and LS were comparatively palatable in saltiness, pungency, bitterness, and overall acceptance compared with refined salt. It was also found that one functional salt had ACE inhibitory activity (54.8% in LS) and another had bile acid binding capacity (80.7% in FS).

Effect of Low-Molecularization on Rheological Properties of Alginate (알긴산의 물성에 미치는 저분자화의 영향)

  • LEE Dong-Soo;KIM Hyeung-Rak;PYEUN Jae-Hyeung
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.31 no.1
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    • pp.82-89
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    • 1998
  • Partial hydrolyzing condition for low-molecularized alginate and rheological properties such as viscosity, solubility, emulsitying ability, oil absorption capacity, bile acids binding and metal ion binding of the low-molecularized alginates from the sea mustard ( Undaria pinnatifida) and giant kelp (Macrocystis pyrifera) were investigated. Alginate from sea mustard was regularly hydrolyzed with the increase of HCl concentration in the range of 0.2 N to 0.5 N and with the prolonged reaction time at $100^{\circ}C$. The molecular weight of alginate was decreased to a part of 100 after hydrolysis for 50 min with 0.3 N HCl. The ratio of mannuronate to guluronate was increased with the acid hydrolysis and total yield was estimated to be $75\%\~80\%$. Low-molecularization of alginate was featured in the apparent decrease of viscosity, whereas solubility, emulsifying ability, and bile acids binding ability were increased with the low-molecularization. Oil absorption capacity of the acid$\cdot$alkali soluble alginate was slightly higher than that of the water soluble alginate. Metal ion binding capacity was the highest in acid$\cdot$alkali soluble alginate, and decreased with the low-molecularization.

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Comparison of Protective Effects of Young and Ripened Persimmon Extracts against Inflammatory Stress Induced by Deoxycholic Acid in Small Intestinal Cells (Deoxycholic Acid 유도 장세포 염증성 손상에 대한 어린감과 성숙감 추출물들의 보호 효과 비교)

  • Kim, Leeseon;Kwon, Oran;Kim, Ji Yeon
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.44 no.10
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    • pp.1583-1587
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    • 2015
  • Bile acids are endogenous metabolites that aid in the digestion and absorption of ingested fat and fat-soluble vitamins. However, high concentrations of deoxycholic acid (DCA) in the colon are associated with high incidence of colorectal cancer. In the present study, the binding of persimmon extracts to DCA in order to decrease inflammatory stress induced by DCA in a small intestinal epithelial cell line, Caco-2, was investigated. Young and ripened persimmons were extracted with distilled water (DW), ethanol, and acidic ethanol. Further, DW extract residue was re-extracted with acidic ethanol. Of the obtained extracts, acidic ethanol extract of young persimmon showed the highest bile-acid binding capacity. Moreover, acidic ethanol extract of young persimmon significantly inhibited nitric oxide production in Caco-2 cells stimulated with DCA and prevented significant reduction of trans-epithelial electric resistance. Based on these results, acidic ethanol extract of young persimmon can be used as a functional ingredient to enhance gastrointestinal health.

Effect of Heat Treatments on Physical Properties and in vitro Glucose, Bile Acid, and Cadmium Transport Retardation of Wax Gourd (Benincasa hispida) (동아의 물리적 특성 및 in vitro 포도당, 담즙산, 카드뮴 투과억제 효과에 대한 열처리 영향)

  • Ju, In-Ok;Jung, Gi-Tai;Ryu, Jeong;Kim, Young-Soo
    • Korean Journal of Food Science and Technology
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    • v.35 no.6
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    • pp.1117-1123
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    • 2003
  • The effects of heat treatment on the physical and physical and physiological properties of wax gourd (Benincasa hispida) were examined. The applied heat treatments were autoclaved at $121^{\circ}C$ for 1 hr, boiled for 30 min, and microwaved at 680 W for 5 min. The water retention capacity (WRC) of the wax gourds was 9.43 g/g for the microwaved samples, 5.12 g/g for the boiled samples, 4.63 g/g for the raw samples, and 2.61 g/g for the autoclaved samples. Heat treatment caused to increase swelling by up to $4.4{\sim}7.8\;mL/g$. Calcium binding capacity of heat-treated wax gourd increased in the order of microwaved, boiled, raw, autoclaved samples. Scanning electron microscopy (SME) showed that autoclaving caused the most severe structural modifications, while microwave treatment produced the least modifications. The retarding effect on glucose and bile acid transport depended on the heat treatment. Only boiling showed the glucose retardation effect. Bile acid retardation effect increased in order of boiling (22.9%), autoclaving (17.1%), microwave treatment (14.3%), and raw wax gourd (8.6%). The cadmium retardation effect was significantly high in all samples.

Effects of Adsorption Condition on Fat-binding Characteristics of Chitosan (흡착조건이 키토산의 지방질 흡착 특성에 미치는 영향)

  • LEE Keun-Tai;SONG Ho-Su;PARK Seong-Min;KANG Ok-Ju;CHEONG Hyo-Sook
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.37 no.5
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    • pp.359-365
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    • 2004
  • To study the lipid adsorption characteristic of chitosans with different molecular weights and the degrees of deacetylation, in vitro test and near-infrared (NIR) spectroscopic analysis have been performed for the measurement of lipid adsorption characteristics of chitosan. The degrees of deacetylation in chitosans were $70{\%},\;85{\%}\;and\;92{\%}$ at different deacetylation times (1 hr, 2 hrs, 3 hrs), respectively. The molecular weight of each chitosan was controlled by enzymatic hydrolysis, and then the molecular weight of the chitosan was 4 kDa. The bulk density, water holding capacity and fat binding capacity of each chitosan powder were $96.2-504.0{\%},\;374.4-1217.9{\%},\;and\;307.0-659.3{\%}$, respectively. The higher molecular weight of chitosan was exhibited the lower bulk density and the higher water and fat binding capacities. Bindinf capacities of chitosan powders to bile salts, cholesterol and linoleic acid were $41.2-63.3{\%},\;40.8-67.4{\%},\;42.6-72.6{\%}$, respectively. In NIR spectrum of lipid adsorbed chitosan the occurrence static eletronical binding between chitosan and lipid was identified by NIR spectrum peak induced from combination of carboxylic group in lipid and amino group in chitosan. In conclusion, the higher degree of deacetylation and molecular weight of chitosan showed the higher lipid binding capacity and the lipid adsorption of chitosan were occurred by combination of carboxylic group in lipids and amino group in chitosan.

Studies on the Dietary Fiber of Brown Rice and Milled Rice (현미와 백미의 식이섬유에 관한 연구)

  • Lee, Hee-Ja;Byun, Si-Myung;Kim, Hyong-Soo
    • Korean Journal of Food Science and Technology
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    • v.20 no.4
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    • pp.576-584
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    • 1988
  • Neutral detergent fiber(NDF) were extracted from the Nampung, Milyang #23, Whasung and Jinhung varieties of rice by neutral detergent fiber method. To determine the properties of NDF three factors were measured : water-binding capacity(WBC), Fe-binding capacity and sodium taurocholate binding with NDF. The average WBC of NDF was $5.60{\pm}0.87gH_2O/g$ NDF, and the average Fe-binding capacity ranged from 24.63% at pH 5.0 to 19.6% at pH 6.0 and 48.98% at pH 7.0. Binding of sodium taurocholate with NDF was determined in vitro using C-14 labeled sodium taurocholate at 100M sodium taurocholate concentrations. NDF binding of Jinhung was 27.87 while Nampung, Milyang #23 and Whasung measured 32% each. When sodium taurocholate concentrations were raised from $40{\mu}M\;to\;240{\mu}M$ the tendency of binding increased as the concentrations increased, but not linearly.

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