• Title/Summary/Keyword: Lipid uptake

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The chemical composition and biological activities of volatile flavor components of Elsholtzia splendens (꽃향유 전초의 향기성분 분석과 생리활성 평가)

  • Jeong, Jae Hoon;Lim, Heung Bin
    • Analytical Science and Technology
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    • v.18 no.6
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    • pp.500-510
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    • 2005
  • This study was conducted to investigate the chemical composition of essential oil, absolute and oleoresin isolated from Elsholtzia splendens and their biological activities. Yields of essential oil, absolute and oleoresin extracted from Elsholtzia splendens were 0.28%, 12.45% and 9.95%, respectively. The major component was 2-cyclohexen-1-one in essential oil, methyl linolenate in absolute and 9,12,15-octadecatrienoic acid in oleoresin. Essential oil and oleoresin showed the inhibitory activities in enzyme-dependent, enzyme-independent and autooxidative lipid peroxidation system. $EC_{50}$ values in nuetral red uptake (NRU) assays for the exposure times of 24 h were $46.4{\mu}g/ml$, $681.7{\mu}g/ml$ and $17.6{\mu}g/ml$ in essential oil, absolute and oleoresin, and oleoresins showed the cytotoxic effect at the only high dose. Any mutagenic and antibiotic activity did not show in absolute and oleoresin, but, there were mutagenic and antibiotic activities only when treated with essential oil $500{\mu}g/ml$ above in Ames test. Essential oil and oleoresin might be somewhat effective in prolongating the ciliostasis of rat trachea.

Effects of Cadmium and Arsenic on Physiological Responses and Copper and Zinc Homeostasis of Rice

  • Jung, Ha-il;Chae, Mi-Jin;Kim, Sun-Joong;Kong, Myung-Suk;Kang, Seong-Soo;Lee, Deog-Bae;Ju, Ho-Jong;Kim, Yoo-Hak
    • Korean Journal of Soil Science and Fertilizer
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    • v.48 no.5
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    • pp.397-403
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    • 2015
  • Heavy metals reduce the photosynthetic efficiency and disrupt metabolic reactions in a concentration-dependent manner. Moreover, by replacing the metal ions in metalloproteins that use essential metal ions, such as Cu, Zn, Mn, and Fe, as co-factors, heavy metals ultimately lead to the formation of reactive oxygen species (ROS). These, in turn, cause destruction of the cell membrane through lipid peroxidation, and eventually cause the plant to necrosis. Given the aforementioned factors, this study was aimed to understand the physiological responses of rice to cadmium (Cd) and arsenic (As) toxicity and the effect of essential metal ions on homeostasis. In order to confirm the level of physiological inhibition caused by heavy metal toxicity, hydroponically grown rice (Oryza sativa L. cv. Dongjin) plants were exposed with $0-50{\mu}M$ cadmium (Cd, $CdCl_2$) and arsenic (As, $NaAsO_2$) at 3-leaf stage, and then investigated malondialdehyde (MDA) contents after 7 days of the treatment. With increasing concentrations of Cd and As, the MDA content in leaf blade and root increased with a consistent trend. At 14 days after treatment with $30{\mu}M$ Cd and As, plant height showed no significant difference between Cd and As, with an identical reduction. However, As caused a greater decline than Cd for shoot fresh weight, dry weight, and water content. The largest amounts of Cd and As were found in the roots and also observed a large amount of transport to the leaf sheath. Interestingly, in terms of Cd transfer to the shoot parts of the plant, it was only transported to upper leaf blades, and we did not detect any Cd in lower leaf blades. However, As was transferred to a greater level in lower leaf blades than in upper leaf blades. In the roots, Cd inhibited Zn absorption, while As inhibited Cu uptake. Furthermore, in the leaf sheath, while Cd and As treatments caused no change in Cu homeostasis, they had an antagonist effect on the absorption of Zn. Finally, in both upper and lower leaf blades, Cd and As toxicity was found to inhibit absorption of both Cu and Zn. Based on these results, it would be considered that heavy metal toxicity causes an increase in lipid peroxidation. This, in turn, leads to damage to the conductive tissue connecting the roots, leaf sheath, and leaf blades, which results in a reduction in water content and causes several physiological alterations. Furthermore, by disrupting homeostasis of the essential metal ions, Cu and Zn, this causes complete heavy metal toxicity.

Effects of Salviae miltiorrhizae Radix (SMR) on Serum Lipid Level in Hyperlipidemic Rats (단삼(丹蔘)이 고지혈증 흰쥐의 혈중 지질 변화에 미치는 영향)

  • Kim, Hyeong-Cheol;Kim, Hyung-Woo;Kim, Yong-Seong;Lee, Jang-Sik;Kwon, Jeong-Nam;Kim, Young-Gyun;Cho, Su-In
    • The Korea Journal of Herbology
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    • v.22 no.4
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    • pp.239-245
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    • 2007
  • Objective : Salviae miltiorrhizae Radix (SMR) has widely used to treat patients with cardiovascular diseases such as coronary arteriosclerosis, angina pectoris and hyperlipidemia. This study was designed to investigate the effects of SMR on changes in serum cholesterol and protective effects on liver tissue damage in Hyperlipidemic rats. Methods : The present author investigated changes in serum glucose, cholesterols, AST/ALT and histopathological changes of liver tissue by oral administration of SMR in Rats. Results : In this study, body weights of hyperlipidemic rats induced high fat diet did not changed, and treatment with SMR did not affect body weights in hyperlipidemic rats. For experimental period, Food and Water uptake in SMR administered group were the same as those in hyperlipidemic control group. In this experiment, treatment with SMR decreased total cholesterol and AST in serum which elevated by high fat diet respectively. In addition, SMR administration protected liver tissue from damage induced by induction of hyperlipidemia. Conclusions: These results suggest that SMR is useful to treat patients with disease related to cardiovascular diseases including hyperlipidemia, because SMR can decrease cholesterol and AST in serum and also have non-specific protective effect on tissues including liver.

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Radical Scavenging and Anti-Obesity Effects of 50% Ethanol Extract from Fermented Curcuma longa L. (발효울금 50% 에탄올 추출물의 라디칼 소거능 및 지방형성 억제 효과)

  • Kim, Jihye;Jun, Woojin
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.44 no.2
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    • pp.281-286
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    • 2015
  • In this study, free radical scavenging activities (ABTS, DPPH, NBT, TBARS, and ORAC) and anti-obesity potential were evaluated using 50% ethanol extract from fermented Curcuma longa L. (FCE50). FCE50 showed free radical scavenging activities and anti-oxidant potential. Lipid accumulation and intracellular TG content were significantly reduced by 25.8% and 28.6%, respectively, by $250{\mu}g/mL$ of FCE50 compared to adipocytes. Glucose uptake was significantly reduced by 12.0%. FCE50 significantly reduced mRNA expression of acetyl-CoA carboxylase in 3T3-L1 cells. These results indicate that the anti-adipogenic effect of FCE50 might be due to its radical scavenging activity and anti-oxidant potential.

Nano-sized Drug Carriers and Key Factors for Lymphatic Delivery

  • Choi, Ji-Hoon;Lee, Yong-Bok
    • Journal of Pharmaceutical Investigation
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    • v.40 no.spc
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    • pp.75-82
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    • 2010
  • Specific diseases like cancer and acquired immune deficiency syndrome (AIDS) occur at various organs including lymphatics and spread through lymphatic system. Thus, if therapeutic agents for such diseases are more distributed or targeted to lymphatic system, we can obtain several advantages like reduction of systemic side effect and increase of efficacy. For these reasons, much interest has been focused on the nature of lymphatics and a lot of studies for lymphatic delivery of drugs have been carried out. Because lymphatics consist of single layer endothelium and have high permeability compared with blood capillaries, especially, the studies using nano-sized carriers have been performed. Polymeric nano-particle, liposome, and lipid-based vehicle have been adopted for lymphatic delivery as carriers. According to the administration route and the kind of carrier, the extent of lymphatic delivery efficiency of nano-sized carriers has been changed and influenced by several factors such as size, charge, hydrophobicity and surface feature of carrier. In this review, we summarized the key factors which affect lymphatic uptake and the major features of carriers for achieving the lymphatic delivery. Lymphatic delivery of drug using nano-sized carriers has many fold improved ability of lymphatic delivery compared with that of conventional dosage forms, but it has not shown whole lymph selectivity yet. Even though nano-sized carriers still have the potential and worth to study as lymphatic drug delivery technology as before, full understanding of delivery mechanism and influencing factors, and setting of pharmacokinetic model are required for more ideal lymphatic delivery of drug.

Tolerance of Crops to Simulated Acid Rain at Vegetative Growth Stage (인공산성비에 대한 작물에 영양생장기 내성 및 피해양상)

  • 김태주;이석순;김복진
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.39 no.6
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    • pp.556-563
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    • 1994
  • To compare the tolerance of crops to acid rain of simulated acid rains(SAR) of three pH levels (3.0, 4.5, and 6.0) were applied to rice, corn, soybean, adzuki bean, hot pepper, tomato, sesame, barley, wheat, Chinese cabbage, radish, lettuce, and spinach for 30 days from 20 days after emergence at two-day interval with 10mm at a time. No visual damages were observed. Also, no alteration of ultrastructure was observed although some lightly stained lipid granules were observed in the chloroplasts of sesame, soybean, and adzuki bean at the SAR treatment of pH 3.0. As pH of SAR decreased, chlorophyll content increased in adzuki bean, decreased in rice, tomato, and spinach, and similar in the other crops. Photosynthetic activity of adzuki bean increased, while decreased in Chinese cabbage and barley as pH of SAR decreased, and similar in other crops. Concentration and uptake of N were not affected by SAR treatments in all crops except tomato and barley. When a strong SAR of pH 2.0 was applied, rice, corn, sesame, tomato, barley, and wheat were relatively tolerant, while adzuki bean, hot pepper, soybean, Chinese cabbage, lettuce, radish, and spinach were susceptible in terms of visual damages.

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The Effects of Physical States of Phospholipids on $Ca^{2+}$-ATPase Activity of Biological Membranes (지질의 물리학적 성상이 $Ca^{2+}$-ATPase 활성도에 미치는 영향)

  • Hah, Jong-Sik
    • The Korean Journal of Physiology
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    • v.22 no.2
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    • pp.163-177
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    • 1988
  • The $Ca^{2+}-ATPase$ of sarcoplasmic reticulum (SR) was solubilized and reconstituted into a mixture of phosphatidylcholine (PC) and phosphatidylethanolamine (PE) of varying ratios in order to assess the effect of physical states of phospholipids on the incorporation and functions $Ca^{2+}-ATPase$. On the basis of the spectral data of Ca-arsenazo III, the $Ca^{2+}$ uptake of SR was increased linearly as the PC content increased in the reconstituted vesicles. The ATP hydrolysis activity also increased as PC content increased up to 25% and then decreased slightly as the PC content further increased. On the other hand the incorporation of $Ca^{2+}-ATPase$ into the reconstituted vesicls occured maximally at 25% PC and 75% PE mixture which is known to have a non-bilayer structure in reconstitution system. From the above results it is clear that preexisting defects in the lipid bilayer promote protein incorporation into the bilayer during reconstitution and lamellar structure of the bilayer facilitates the $Ca^{2+}-ATPase$ function.

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γ-Aminobutyric acid (GABA) confers chromium stress tolerance in mustard (Brassica juncea L.) seedlings by modulating the antioxidant defense and glyoxalase systems

  • Al Mahmud, Jubayer;Hasanuzzaman, Mirza;Nahar, Kamrun;Rahman, Anisur;Hossain, Md. Shahadat;Fujita, Masayuki
    • Proceedings of the Korean Society of Crop Science Conference
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    • 2017.06a
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    • pp.235-235
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    • 2017
  • Chromium (Cr) toxicity is hazardous to the seed germination, growth, and development of plants. ${\gamma}$-Aminobutyric acid (GABA) is a non-protein amino acid and is involved in stress tolerance in plants. To investigate the effects of GABA in alleviating Cr toxicity, we treated eight-d-old mustard (Brassica juncea L.) seedlings with Cr (0.15 mM and 0.3 mM $K_2CrO_4$, 5 days) alone and in combination with GABA ($125{\mu}M$) in a semi-hydroponic medium. The roots and shoots of the seedlings accumulated Cr in a dose-dependent manner, which led to an increase in oxidative damage [lipid peroxidation; hydrogen peroxide ($H_2O_2$) content; superoxide ($O{_2}^{{\cdot}-}$) generation; lipoxygenase (LOX) activity], MG content, and disrupted antioxidant defense and glyoxalase systems. Chromium stress also reduced growth, leaf relative water content (RWC), and chlorophyll (chl) content but increased phytochelatin (PC) and proline (Pro) content. Furthermore, supplementing the Cr-treated seedlings with GABA reduced Cr uptake and upregulated the non-enzymatic antioxidants (ascorbate, AsA; glutathione, GSH) and the activities of the enzymatic antioxidants including ascorbate peroxidase (APX), monodehydroascorbate reductase (MDHAR), dehydroascorbate reductase (DHAR), glutathione reductase (GR), glutathione peroxidase (GPX), superoxide dismutase (SOD), catalase (CAT), glyoxalase I (Gly I), and glyoxalase II (Gly II), and finally reduced oxidative damage. Adding GABA also increased leaf RWC and chl content, decreased Pro and PC content, and restored plant growth. These findings shed light on the effect of GABA in improving the physiological mechanisms of mustard seedlings in response to Cr stress.

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Effects of Amomum cadamomum Linne Extract on TNF-α-induced Inflammation and Insulin Resistance in 3T3-L1 Adipocytes

  • Kang, Kyung-Hwa;Song, Choon-Ho
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.30 no.1
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    • pp.54-60
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    • 2016
  • Amomum cadamomum Linne (ACL) has long been utilized against the inhibited qi movement related diseases such as dyspepsia, acute gastroenteritis, vomiting and diarrhea in Korean medicine. We speculated that ACL could improve the metabolic disorders such as obesity and type 2 diabetes through removing the phlegm-dampness and promoting the qi movement or stagnation. This study was designed to investigate effects and molecular mechanisms of ACL extract on the improvement of adipocyte dysfunction induced by TNF-α in 3T3-L1 adipocytes. Potential roles of ACL extract in the lipogenesis, inhibition of inflammatory cytokines and insulin resistance, were investigated in this study. Also, we examined the adipose genes and signaling molecules related to insulin resistance and glucose uptake to elucidate its mechanism. Our data demonstrated that TNF-α significantly incresed the release of lipid droplets and the production of MCP-1 and IL-6 from adipocytes. In gene expression, TNF-α reduced the expression of aP2, PPARγ, C/EBPα, GLUT4, and IRS-1 related to lipogenesis and insulin sesitivity, while TNF-α increased the expression of MCP-1 related to inflammation. In addition, TNF-α down-regulated the PPARγ and IRS-1 protein and up-regulated the IRS-1 Ser307 phosphorylation. These alterations induced by TNF-α were prevented by the treatment of ACL extract. Thus, our results indicate that ACL extract can be used to prevent from the TNF-α-induced adipocyte dysfunction through insulin and PPARγ pathways.

Antioxidant Effects of Serotonin and L-DOPA on Oxidative Damages of Brain Synaptosomes

  • Ham, Sang-Soo;Kim, Dong-Hyun;Lee, Suk-Ha;Kim, Yun-Sang;Lee, Chung-Soo
    • The Korean Journal of Physiology and Pharmacology
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    • v.3 no.2
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    • pp.147-155
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    • 1999
  • Antioxidant effects of serotonin and L-DOPA on neuronal tissues were examined by studying the oxidative damages of brain synaptosomal components. The study further explored the mechanism by which they exert protective actions. Serotonin and L-DOPA (1 ${\mu}M$ to 1 mM) significantly inhibited lipid peroxidation of brain tissues by either $Fe^{2+}$ and ascorbate or t-butyl hydroperoxide in a dose dependent fashion. Protective effect of serotonin on the peroxidative actions of both systems was greater than that of L-DOPA. Protein oxidation of synaptosomes caused by $Fe^{2+}$ and ascorbate was attenuated by serotonin and L-DOPA. Protein oxidation more sensitively responded to L-DOPA rather than serotonin. Serotonin and L-DOPA (100 ${\mu}M$) decreased effectively the oxidation of synaptosomal sulfhydryl groups caused by $Fe^{2+}$ and ascorbate. The production of hydroxyl radical caused by either $Fe^{3+},$ EDTA, H_2O_2$ and ascorbate or xanthine and xanthine oxidase was significantly decreased by serotonin and L-DOPA (1 mM). Equal concentrations of serotonin and L-DOPA restored synaptosomal $Ca^{2+}$ uptake decreased by $Fe^{2+}$ and ascorbate, which is responsible for SOD and catalase. Protective effects of serotonin and L-DOPA on brain synaptosomes may be attributed to their removing action on reactive oxidants, hydroxyl radicals and probably iron-oxygen complex, without chelating action on iron.

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