Journal of the Korean Society of Food Science and Nutrition
/
v.34
no.8
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pp.1143-1150
/
2005
Antioxidative activities of 5 common edible seaweeds in Korea, three brown algae (seaweed fusiforme, sea mustard, sea tangle), one green algae (sea lettuce) and one red algae (laver), were examined. The antioxidative activities of ethanol extracts from these seaweeds were examined by measuring of inhibition rates against iron-induced linoleate peroxidation, DPPH (1,1-diphenyl -2-picrylhydrazyl) radical generation and MDA-BSA (malondialdehyde-bovine serum albumin) conjugation. Sea lettuce ethanol extract showed the strongest anti-oxidative activity among them, especially in inhibition against conjugation of lipid peroxide and protein. Second to sea lettuce, laver and sea tangle ethanol extracts showed high DPPH radical scavenging activity and inhibition against MDA-BSA conjugation. However, seaweed fusiforme and sea mustard ethanol extracts did not show antioxidative activities. Sea mustard contained the highest total flavonoids (11.33 mg/g dry wt) and sea lettuce contained the highest total polyphenol (8.97 mg/g dry wt) among these seaweeds. In addition, there was strong positive correlation between the antioxidative activity and total polyphenol content in these seaweeds, suggesting polyphenol compounds may contribute to antioxidative effect of seaweeds. From these data, it is suggested to consume much of seaweeds such as sea lettuce, laver and sea tangle to prevent age-related chronic diseases, and also develope neutraceutical products using polyphenol rich fraction from sea lettuce.
JSTS:Journal of Semiconductor Technology and Science
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v.5
no.3
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pp.149-158
/
2005
This paper describes design, fabrication, and application of the silicon based temperature controllable micro reactor. In order to achieve fast temperature variation and low energy consumption, reaction chamber of the micro reactor was thermally isolated by etching the highly conductive silicon around the reaction chamber. Compared with the model not having thermally isolated structure, the thermally isolated micro reactor showed enhanced thermal performances such as fast temperature variation and low energy consumption. The performance enhancements of the micro reactor due to etched holes were verified by thermal experiment and numerical analysis. Regarding to 42 percents reduction of the thermal mass achieved by the etched holes, approximately 4 times faster thermal variation and 5 times smaller energy consumption were acquired. The total size of the fabricated micro reactor was $37{\times}30{\times}1mm^{3}$. Microchannel and reaction chamber were formed on the silicon substrate. The openings of channel and chamber were covered by the glass substrate. The Pt electrodes for heater and sensor are fabricated on the backside of silicon substrate below the reaction chamber. The dimension of channel cross section was $200{\times}100{\mu}m^{2}$. The volume of reaction chamber was $4{\mu}l$. The temperature of the micro reactor was controlled and measured simultaneously with NI DAQ PCI-MIO-16E-l board and LabVIEW program. Finally, the fabricated micro reactor and the temperature control system were applied to the thermal denaturation and the trypsin digestion of protein. BSA(bovine serum albumin) was chosen for the test sample. It was successfully shown that BSA was successfully denatured at $75^{\circ}C$ for 1 min and digested by trypsin at $37^{\circ}C$ for 10 min.
In our previous study, we observed that hydrosalpingeal fluid (HSF) adversely effect mouswe embryo development and hatching. The aim of this study was to evaluate the effect of HSF as assessed by the blastocyst development rate (BDR) and by cell counting in vitro. HSF was collected from ninie patients undergoing salpingoneostomy to correct hydrosalpinx. Two-cell embryos were obtained from superovulated ICR mice. T6 medium and $T6{\pm}0.4%$ bovine serum albumin were used as control media. T6 medium containing 10% or 50% HSF and 100% HSF from each patient were used as test media. Nine to 15 embryos were cultured in micro drops prepared from each of these media. To assess the total cell number within each blastocyst, the blastocysts were fixed and stained with Hoechst 33342 to facilitate cell counting. The mean BDR in two control media were 88.89% and 85.40%. The mean BDR in media containing 10%, 50%, 100% HSF were 85.87%, 89.58% and $75.57%^*$, respectively ($^*$: p<0.05). The overall mean cell count $({\pm}SEM)$ in control media were $87.6{\pm}9.65\;and\;90.12{\pm}11.38$. The BDR was affected adversely only by 100% HSF and not in media containing 10% or 50% HSF. Mean cell counts were decreased significantly only in blastocysts cultured 100% HSF ($63.8{\pm}13.66$; p<0.01) but not in blastocysts cultured in 10% or 50% HSF ($91.3{\pm}12.44\;and\;82.9{\pm}18.27$, respectively). Thus, it is concluded that HSF has no embyotoxic effect but has a mildly negatively effect on embryonic growth and development.
The factors affecting the back-extraction efficiency of Bovine Serum Albumin (BSA, Mw. 65kDa, pl 4.9) solubilized in an AOT reverse micellar solution, prepared by the injection method, to an excess aqueous phase were investigated. In particular, the effects of pH, the types of salts, alcohols added as cosurfactants, and their concentrations in the aqueous phase were examined. Furthermore, by comparing the CD spectra of the back-extracted BSA and the feed BSA, the structural changes of BSA during the extraction process were determined. The addition of 1:1 salt such as KCl or NaCl to the aqueous phase resulted in almost a 100% extraction to the aqueous phase at a pH higher than its isoelectric point pl. This high efficiency of back-extraction might be due to the change in the interactions between the protein and micellar aggregates driven by the added salt. For 1:2 salts like $CaCl_2$ and $MgCl_2$, BSA was back-extracted with lower than 20% extraction efficiency. Maximum extraction efficiencies were attained at about pH=7 and pH=8 for monovalent and divalent salts, respectively. The addition of alcohols as cosurfactants led to an improvement in monovalent and divalent salts, respectively. From the CD spectra of BSA extracted to the aqueous phase, it was observed that denaturation of BSA was not significant. In certain back-extraction conditions, the extracted BSA showed even higher activity than the feed BSA.
Rabbit follicular oocytes were cultured in a basic medium containing 0.4% bovine serum albumin (BSA), carbohydrates and amino acids in various combinations. Osmolarity of the medium was maintained at 308 mOsm. The carbohydrates, pyruvate, lactate and glucose were all about equally beneficial, but not essential for rabbit oocyte maturation. Glutamine and proline, but not methionine or phenylalanine stimulated oocyte develoment. Glutamine stimulated more follicular oocytes to develop to prophase and metaphase II than did any of the three carbohydrates tested alone or in combination. Ammonia production after 24 hours of culture was highest in medium containing glutamine(15.2$\\mu$g/ml) but this was not inhibitory to maturation. Negligible amounts of ammonia were found with the other amino acids added. The optimum level of osmolarity for rabbit oocyte maturation appears to be ranged from 250$\\sim$310 mOsm with the maximum level of 270 mOsm. With 0, 0.08, 0.4, 2, 10 and 50 mM of glutamine in the medium, plus BSA but without carbohydrates, 30, 73, 70, 71, 59, 45% of the oocytes developed to prophase or metaphase II respectively. This indicates that no carbohydrate is required of the maturation of rabbit oocytes when 0.08$\\sim$2 mM of glutamine is included, which are the optimum range. Follicular oocytes could develop in the medium containing $^14 C$-glutamine and BSA but without carbohydrates or other organic compound. From the $^14 CO_2$ produced and TCA precipitable material isolated, it is suggested that glutamine probably is utilized by oocytes and cumulus cells as a source of energy as well as for protein synthesis.
Lee, Su Min;Kim, Jin Eun;Oh, Myoung Jin;Lee, Joo Dong;Jeon, You-Jin;Kim, Bora
Journal of the Society of Cosmetic Scientists of Korea
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v.39
no.1
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pp.19-24
/
2013
To investigate the efficacy of enzymatic extract of Ecklonia cava and its polyphenol extract (AG-DK) as cosmetic ingredients, the anti-oxidative effect, anti-glycation effect, anti-melanogenic effect, and anti-inflammatory effect of the extracts were evaluated in vitro. The enzymatic extract of E. cava ($SC_{50}$ 42.9 ppm) and AG-DK ($SC_{50}$ 6.4 ppm) showed a strong DPPH free radical scavenging activity. The anti-glycation ability of the enzymatic extract of E. cava and AG-DK was tested using bovine serum albumin (BSA), which inhibited the formation of advanced glycation end-products (AGEs) in the BSA/glucose system. The enzymatic extract of E. cava ($IC_{50}$ 97.2 ppm) and AG-DK ($IC_{50}$ 7 ppm) had inhibitory effects on tyrosinase activity. Moreover, the enzymatic extract of E. cava and AG-DK had an anti-inflammatory effect through the inhibition of nitricoxide (NO) and prostaglandin E2 ($PGE_2$). These findings suggest that the enzymatic extract of E. cava and AG-DK can be applied to skin-care products as cosmetic ingredients.
The asymmetric hybrid membranes of polyethersulfone (PES) and $ZrO_2$ nanoparticles were prepared via new one-step procedure combining simultaneously the phase-inversion method and the sol-gel technique. The optimum contents of $Zr(PrO)_4\;and\;HNO_3$ catalyst were determined by the adsorption experiments of phosphate anion onto the resulting hybrid membranes. The maximum adsorption of phosphate anion is obtained at the conditions of 0.15 mL $Zr(PrO)_4$ addition per 1 mL PES and 30 mL $HNO_3$ addition per 1 mL $Zr(PrO)_4$. Variation of morphology, performance and incorporated $ZrO_2$ amount of the resulting hybrid membranes were discussed and determined using SEM, pure water flux, TGA, ICP, XRD and contact angle measurements. Increasing $Zr(PrO)_4$ addition into casting solution, pure water flux is increased and $ZrO_2$ amount in the hybrid membrane is maximized at the conditions 0.15 mL $Zr(PrO)_4$ addition per 1 mL PES. The prephosphatation of PES-$ZrO_2$ hybrid membrane was studied to modify the surface characteristics of membrane. Ultrafiltration of bovine serum albumin (BSA) solution was performed in a dead-end cell using both a bare (non-phosphated) and a phosphated hybrid membrane. It is revealed that both the permeate flux and BSA rejection were increased as about 40% by prephosphatation of hybrid membrane. These results may be explained on the basis of the increase of membrane hydrophilicity, which was determined from contact angle measurements.
Hirata, T.;Tsutsui, C.;Yokoi, Y.;Sakatani, Y.;Mori, A.;Horii, A.;Yamamoto, T.;Taguchi, A.
Proceedings of the Korean Vacuum Society Conference
/
2010.02a
/
pp.44-45
/
2010
We are currently conducting studies on culturing and biocompatibility assessment of various cells such as neural stem cells and induced pluripotent stem cells(IPS cells) on carbon nanotube (CNT), on nerve regeneration electrodes, and on silicon wafers with a focus on developing nerve integrated CNT based bio devices for interfacing with living organisms, in order to develop brain-machine interfaces (BMI). In addition, we are carried out the chemical modification of carbon nanotube (mainly SWCNTs)-based bio-nanosensors by the plasma ion irradiation (plasma activation) method, and provide a characteristic evaluation of a bio-nanosensor using bovine serum albumin (BSA)/anti-BSA binding and oligonucleotide hybridization. On the other hand, the researches in the case of "novel plasma" have been widely conducted in the fields of chemistry, solid physics, and nanomaterial science. From the above-mentioned background, we are conducting basic experiments on direct irradiation of body tissues and cells using a micro-spot atmospheric pressure plasma source. The device is a coaxial structure having a tungsten wire installed inside a glass capillary, and a grounded ring electrode wrapped on the outside. The conditions of plasma generation are as follows: applied voltage: 5-9 kV, frequency: 1-3 kHz, helium (He) gas flow: 1-1.5 L/min, and plasma irradiation time: 1-300 sec. The experiment was conducted by preparing a culture medium containing mouse fibroblasts (NIH3T3) on a culture dish. A culture dish irradiated with plasma was introduced into a $CO_2$-incubator. The small animals used in the experiment involving plasma irradiation into living tissue were rat, rabbit, and pick and are deeply anesthetized with the gas anesthesia. According to the dependency of cell numbers against the plasma irradiation time, when only He gas was flowed, the growth of cells was inhibited as the floatation of cells caused by gas agitation inside the culture was promoted. On the other hand, there was no floatation of cells and healthy growth was observed when plasma was irradiated. Furthermore, in an experiment testing the effects of plasma irradiation on rats that were artificially given burn wounds, no evidence of electric shock injuries was found in the irradiated areas. In fact, the observed evidence of healing and improvements of the burn wounds suggested the presence of healing effects due to the growth factors in the tissues. Therefore, it appears that the interaction due to ion/radicalcollisions causes a substantial effect on the proliferation of growth factors such as epidermal growth factor (EGF), nerve growth factor (NGF), and transforming growth factor (TGF) that are present in the cells.
This study was performed to determine the antioxidative effect of the hexane, dichloromethane, ethylacetate, butanol and water fractions of Ganoderma lucidum extracts on the inhibition of malondialdehyde(MDA) and bovine serum albumin(BSA) conjugation reaction, the inhibition of lipid peroxidation and the scavenging effect on 1,1-diphenyl-2-picryl-hydrazyl(DPPH) radical, the antimutagenic capacity as measured by the Ames test and the inhibitory effect on cancer cell. Ganoderma lucidum is believed to have possible antioxidative capacities, although the results have varied according to the assay method. The most effective antioxidative capacity was inhibition of lipid peroxidation. Among the five fractions, water fraction showed strong inhibition rates on MDA & BSA conjugation reaction, and ethylacetate fractions showed the most effective inhibition rate on lipid peroxidation and scavenging effect on DPPH radical. The indirect and direct antimutagenic effects of ethanol extracts of Ganoderma lucidum were examined by Ames test using Salmonella typhimurium TA98 and TA100. Among the samples, the water fraction did not have any antimutagenic effect. The inhibition rates on mutagenicity in the presence of 2.5 mg/plate were nearly $100\%$ for Salmonella typhimurium TA98 and TA100 except the hexane fraction of the direct mutagenicity mediated by 2-Nitrofluorene in Salmonella typimurium TA98($64.69\%$). Under the 2.5 mg/plate concentration, the inhibitory effects of hexane and dichloromethane fraction were superior to that of the other fractions on the direct mutagenicity for Salmonella typhimurium TA100 and indirect mutagenicity for Salmonella typhimurium TA98 and TA100. The inhibitory effect of Ganoderma lucidum extracts on cell proliferation in HeLa and MCF-7 was investigated by U test. The dichloromethane fraction showed highly antiproliferative effect in HeLa and MCF-7($IC_{50}$: 0.122 mg/mL, 0.272 mg/mL, respectively) cells while the water faction had a weak inhibitory effect($IC_{50}$: 0.691 mg/mL, 10.919 mg/mL respectively). These results suggest that Ganoderma lucidum may have antioxidative, antimutagenic and anticancer capacities and may be a candidate of the prevention and dietetic treatment of chronic diseases and the development of antioxidative, antimutagenic and anticancer functional food.
In this study, we investigated the anti-allergic effect of the ethyl acetate fraction of Ecklonia cava (EC-EtoAc) on the immunoglobulin E (IgE)/bovine serum albumin (BSA)-mediated activation of bone marrow-derived cultured mast cells (BMCMCs). We revealed that the $62.5{\mu}g/ml$ of EC-fractions ($EC-CHCl_3$, EC-Hexane and EC-EtoAc) inhibited IgE/BSA-activated ${\beta}$-hexosaminidase release from BMCMCs without cytotoxicity. Especially, EC-EtoAc showed the higher ${\beta}$-hexosaminidase release than the others. Also, EC-EtoAc reduced the expression levels of cytokines such as interleukin (IL)-$1{\beta}$, IL-4, IL-5, IL-6, IL-10, IL-13, interferon (IFN)-${\gamma}$ and tumor necrosis factor (TNF)-${\alpha}$ and a chemokine, thymus- and activation-regulated chemokine (TARC), compared to the only IgE/BSA-treated BMCMCs. Furthermore, EC-EtoAc significantly prevented the binding of IgE to Fc epsilon receptor $(Fc{\varepsilon}R)I$ and reduced the $Fc{\varepsilon}RI$ expression on the sensitized BMCMCs. Taken together, these results suggest that E. cava may be the natural agent with beneficial potentials for the treatment of type I allergic diseases induced by mast cell activation.
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