• Title/Summary/Keyword: deoxycholic acid(DCA)

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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.

Removal Characteristics of Cadmium in Micellar Enhanced Ultrafiltration Using DCA (DCA 미셀을 이용한 한외여과에서 카드뮴의 제거특성)

  • 이호원;김승건;강영주
    • Membrane Journal
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    • v.13 no.4
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    • pp.211-218
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    • 2003
  • The removal characteristics of cadmium in micellar enhanced ultrafiltration (MEUF) were investigated by using an anionic biosurfactant, deoxycholic acid (DCA). The ultrafiltration experiments were performed in a batch-type stirred cell. The ultrafiltration membranes used were Millipore YM1, YM3, YM10, and YM30 which had a difference in molecular weight cut-off. The presence of cadmium ion in DCA solution tends to reduce the critical micell concentration considerably and increase the micell size. The molecular weight cut-off of ultrafiltration membrane had a minimal effect on cadmium removal whereas DCA/Cd ratio had a substantial influence. When DCA/Cd ratio was 3, the removal efficiency of cadmium was more than 99.6%. A relative flux, which is defined as ratio of the flux for a separation trial to that of deionized water run using the same piece of membrane, decreased in the order of YM3 > YM1 > YM10 > YM30.

Bile Acid Modulation of Gastroinstinal Smooth Muscle Contraction and Ionic Currents

  • Lee, Hye-Kyung;Lee, Kyoung-Hwa
    • The Korean Journal of Physiology and Pharmacology
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    • v.4 no.4
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    • pp.333-338
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    • 2000
  • We have examined whether bile acids can affect the electrical and mechanical activities of circular smooth muscle of canine colon and ileum, using isometric tension measurement or patch clamp technique. It was found that a dilution of canine bile $(0.03{\sim}2%\;by\;volume)$ enhanced or inhibited the amplitude of spontaneous contractions. An individual component of bile, deoxycholic acid (DCA) enhanced the frequency and amplitude of the spontaneous contractile activity at $10^{-6}\;M,$ while DCA at $10^{-4}\;M$ inhibited the contraction. Similarly, the response to cholic acid was excitatory at $10^{-5}\;M$ and inhibitory at $3{\times}10^{-4}\;M.$ Taurocholic acid at $10^{-4}\;M$ enhanced the amplitude of muscle contraction. Electrically, canine bile at 1% reversibly depolarized the colonic myocytes under current clamp mode. Bile acids also elicited non-selective cation currents under voltage clamp studies, where $K^+$ currents were blocked and the $Cl^-$ gradient was adjusted so that $E_{Cl}^-$ was equal to -70 mV, a holding potential. The non-selective cation current might explain the depolarization caused by bile acids in intact muscles. Furthermore, the bile acid regulation of electrical and mechanical activities of intestinal smooth muscle may explain some of the pathophysiological conditions accompanying defects in bile reabsorption.

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Efficacy Assessment of the Co-Administration of Vancomycin and Metronidazole in Clostridioides difficile-Infected Mice Based on Changes in Intestinal Ecology

  • Saiwei Zhong;Jingpeng Yang;He Huang
    • Journal of Microbiology and Biotechnology
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    • v.34 no.4
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    • pp.828-837
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    • 2024
  • Vancomycin (VAN) and metronidazole (MTR) remain the current drugs of choice for the treatment of non-severe Clostridioides difficile infection (CDI); however, while their co-administration has appeared in clinical treatment, the efficacy varies greatly and the mechanism is unknown. In this study, a CDI mouse model was constructed to evaluate the therapeutic effects of VAN and MTR alone or in combination. For a perspective on the intestinal ecology, 16S rRNA amplicon sequencing and non-targeted metabolomics techniques were used to investigate changes in the fecal microbiota and metabolome of mice under the co-administration treatment. As a result, the survival rate of mice under co-administration was not dramatically different compared to that of single antibiotics, and the former caused intestinal tissue hyperplasia and edema. Co-administration also significantly enhanced the activity of amino acid metabolic pathways represented by phenylalanine, arginine, proline, and histidine, decreased the level of deoxycholic acid (DCA), and downregulated the abundance of beneficial microbes, such as Bifidobacterium and Akkermansia. VAN plays a dominant role in microbiota regulation in co-administration. In addition, co-administration reduced or increased the relative abundance of antibiotic-sensitive bacteria, including beneficial and harmful microbes, without a difference. Taken together, there are some risks associated with the co-administration of VAN and MTR, and this combination mode should be used with caution in CDI treatment.

The Effect of Inulin Supplementation on Blood Lipid Levels, and Fecal Excretion of Bile Acid and Neutral Sterol in Korean Postmenopausal Women (폐경 후 한국 여성에서 이눌린 보충이 혈중 지질 농도와 변 담즙산 및 중성 스테롤 배설에 미치는 영향)

  • 이은영;김윤영;장기효;강순아;조여원
    • Journal of Nutrition and Health
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    • v.37 no.5
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    • pp.352-363
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    • 2004
  • Lipid-lowering effects of the inulin have been demonstrated in animal, yet attempts to reproduce similar effects in humans have generated conflicting results. In this study, the lipid-lowering potential of inulin and especially its effect on bile acid and neutral sterol excretion were investigated in Korean postmenopausal women. Nineteen postmenopausal women were randomly divided into two groups in a double-blind parallel design and consumed one of two supplements for 12 weeks; placebo of 8g maltodextrins/sucrose mixture (placebo group) or 8g inulin (inulin group). There were no significant changes in body weight during the supplementation period in either inulin or placebo group. Dietary consumption of animal fat in both group tended to decrease after 12 weeks of experiment. Intake of cholesterol was lower in placebo group, whereas the decrease of cholesterol intake in inulin group did not reach statistical significance after 12 weeks. The levels of serum total cholesterol (TC) and LDL-cholesterol (LDL-C) were significantly decreased in both placebo (p<0.05) and inulin group (p<0.01) after supplementation for 12 weeks compared with the baseline. The levels of serum triglyceride (TG) and HDL-cholesterol (HDL-C) were not significantly affected by inulin supplements, but atherogenic index (AI) and LDL-C/HDL-C ratio (LHR) as a predictor for coronary heart disease were improved (p<0.01) significantly after inulin supplementation. Therefore, inulin supplement may decrease the risk of cardiovascular disease via improving blood cholesterol level. Fecal weight and pH were not changed after 12 weeks of supplementation. There were no statistically significant changes for the fecal short-chain fatty acids (SCFAs). In inulin group, fecal deoxycholic acid (DCA) was significantly lowered compared with the baseline (p<0.05) whereas other bile acids were not changed. During the 12 weeks of intervention, no differences were found in fecal excretion of neutral sterol in the two groups. In summary, dietary inulin decreases serum TC, LDL-C, AI, LHR and lowers excretion of fecal DCA in the Korean postmenopausal women. These results support the use of inulin for reducing risk factors for hyperlipidemic postmenopausal women. However, the exact mechanism (s) responsible for the blood lipid lowering action of inulin including altered fecal bile acid remain to be elucidated.

Compositional Change of Hepatic Bile Acid by Multiple Administration of DWP305, a Combined Preparation Containing Ursodeoxycholic Acid and Silymarin, in Rats (흰쥐에서 Ursodeoxycholic Acid 및 Silymarin을 함유한 의약조서울(DWP305)의 연용투여에 의한 간내 담즙산 조성변화)

  • Cho, Jae-Youl;Yeon, Je-Deuk;Nam, Kweon-Ho;Kim, Jeum-Yong;Yoo, Eun-Sook;Yu, Young-Hyo;Park, Myung-Hwan
    • YAKHAK HOEJI
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    • v.40 no.3
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    • pp.311-319
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    • 1996
  • DWP305, a preparation containing combination of ursodeoxycholic acid(UDCA), silymarin and vitamins ($B_1\;and\;B_2$), is a drug currently being developed for hep atic disorders. In order to evaluate the changes in hepatic function by multiple oral administration(2 and 4 weeks) of DWP305 in rats, several biochemical parameters in blood, bile acid composition, and the accumulation of UDCA and lithocholic acid(LCA),a toxic metabolite formed by enterobacteria, were examined using HPLC. In blood biochemical findings, DWP305 did not affect the normal level and there was no difference in total bile acid composition for UDCA, cholic acid(CA), deoxycholic acid(DCA), chenodeoxycholic acid(CDCA) and LCA compared to the UDCA administered group, although total ratio of UDCA and CA was different from normal group. In case of ratio of taurine and glycine conjugated forms, DWP305(186mg/kg as a UDCA) administered group was also similar to normal group and UDCA administered group, while high dosing of DWP305 was not different in the ratio of UDCA administered group(930mg/kg) but normal group. And the ratio of LCA was in order of UDCA(930mg/kg), DWP305(930mg/kg as a UDCA), UDCA(186mg/kg) and DWP305(186mg/kg as a UDCA) administered group, which was less than 4%. The free form of UDCA as well as most of bile acids was not detected at all in rat liver, indicating that there's no accumulation. These results suggest that multiple dosing of DWP305 in rats may not affect hepatic biotransformation and metabolism of bile acids.

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