• Title/Summary/Keyword: bioconversion

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Effects of Jeju Citrus unshiu Peel Extracts Before and After Bioconversion with Cytolase on Anti-Inflammatory Activity in RAW264.7 Cells (면역세포에서 Bioconversion 전후 제주 감귤 과피 추출물의 항염증 효과)

  • Seo, Jieun;Lim, Heejin;Chang, Yun-Hee;Park, Hye-Ryeon;Han, Bok-Kyung;Jeong, Jung-Ky;Choi, Kyoung-Sook;Park, Su-Beom;Choi, Hyuk-Joon;Hwang, Jinah
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.44 no.3
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    • pp.331-337
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    • 2015
  • Citrus and its peels, which are by-products from juice and/or jam processing, have long been used in Asian folk medicine. Citrus peels show an abundant variety of flavanones, and these flavanones have glycone and aglycone forms. Aglycones are more potent than glycones with a variety of physiological functions since aglycone absorption is more efficient than glycones. Bioconversion with cytolase converted narirutin and naringin into naringenin and hesperidin into hesperetin. Therefore, this study aimed to investigate the anti-oxidant and anti-inflammatory effects of bioconversion of Citrus unshiu (CU) peel extracts with cytolase (CU-C) in RAW264.7 cells. HPLC chromatograms showed that CU and CU-C had 23.42% and 29.39% total flavonoids, respectively. There was substantial bioconversion of narirutin to naringenin and of hesperidin to hesperetin. All citrus peel extracts showed DPPH scavenging activities in a dose-dependent manner, and CU-C was more potent than intact CU. RAW264.7 cells were pre-treated with $0{\sim}500{\mu}g/mL$ of citrus peel extracts for 4 h and then stimulated by $1{\mu}g/mL$ of lipopolysaccharide (LPS) for 8 h. All citrus peel extracts showed decreased mRNA levels and protein expression of LPS-induced inducible nitric oxide synthase (iNOS) and cyclooxygenase-2 (COX-2) in a dose-dependent manner. Especially, CU-C markedly inhibited mRNA and protein expression of iNOS and COX-2 compared to intact citrus peel extracts. All citrus peel extracts showed decreased NO production by iNOS activity. This result suggests that bioconversion of citrus peel extracts with cytolase may provide potent functional food materials for prevention of chronic diseases attributable to oxidation and inflammation by boosting the anti-inflammatory effects of citrus peels.

Biocatalysts in Reverse Micelles (역미셀에서 생촉매제)

  • 이강민
    • KSBB Journal
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    • v.7 no.1
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    • pp.51-58
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    • 1992
  • The use of watersoluble enzymes for chemical synthesis suffers from several limitations. The solubilization of biocatalyst (Enzymes and Cells) with reverse micelles or microemulsion could be a method for bioconveision of low water soluble substrates. In this review, We will discuss the properties and the potentials of reverse micelle for catalytic bioconversion and biotechnology.

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Optimization of Culture Conditions for the Bioconversion of Vitamin $D_3\;to\;1{\alpha}$,25-Dihydroxyvitamin $D_3$ Using Pseudonocardia autotrophica ID9302

  • Kang, Dae-Jung;Lee, Hong-Sub;Park, Joon-Tae;Bang, Ji-Sun;Hong, Soon-Kwang;Kim, Tae-Yong
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.11 no.5
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    • pp.408-413
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    • 2006
  • We assessed the ability of a Pseudonocardia sp. from soil samples to bioconvert vitamin $D_3$. The optimal culture conditions for the bioconversion of vitamin $D_3$ to active $1{\alpha}$,25-dihydroxyvitamin $D_3$ were investigated by varying the carbon and nitrogen sources, the metal salt concentrations, the initial pH, and the temperature. Microbial transformations were carried out with the addition of vitamin $D_3$ dissolved in ethanol. They were sampled by extraction with methanol-dichloromethane and the samples were examined by HPLC. Optimum culture conditions were found to be 0.4% yeast extract, 1% glucose, 3% starch, 1% fish meal, 0.2% NaCl, 0.01% $K_2HPO_4$, 0.2% $CaCO_3$, 0.01% NaF, and pH 7.0 at $28^{\circ}C$. The optimal timing of the addition of vitamin $D_3$ for the production of calcitriol by Pseudonocardia autotrophica ID9302 was concurrent with the inoculation of seed culture broth. Maximum calcitriol productivity and the yield of bioconversion reached a value of 10.4mg/L and 10.4% respectively on the 7th day in a 75L fementer jar under the above conditions.

Evaluation of ginsenoside bioconversion of lactic acid bacteria isolated from kimchi

  • Park, Boyeon;Hwang, Hyelyeon;Lee, Jina;Sohn, Sung-Oh;Lee, Se Hee;Jung, Min Young;Lim, Hyeong In;Park, Hae Woong;Lee, Jong-Hee
    • Journal of Ginseng Research
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    • v.41 no.4
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    • pp.524-530
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    • 2017
  • Background: Panax ginseng is a physiologically active plant widely used in traditional medicine that is characterized by the presence of ginsenosides. Rb1, a major ginsenoside, is used as the starting material for producing ginsenoside derivatives with enhanced pharmaceutical potentials through chemical, enzymatic, or microbial transformation. Methods: To investigate the bioconversion of ginsenoside Rb1, we prepared kimchi originated bacterial strains Leuconostoc mensenteroides WiKim19, Pediococcus pentosaceus WiKim20, Lactobacillus brevis WiKim47, Leuconostoc lactis WiKim48, and Lactobacillus sakei WiKim49 and analyzed bioconversion products using LC-MS/MS mass spectrometer. Results: L. mesenteroides WiKim19 and Pediococcus pentosaceus WiKim20 converted ginsenoside Rb1 into the ginsenoside Rg3 approximately five times more than Lactobacillus brevis WiKim47, Leuconostoc lactis WiKim48, and Lactobacillus sakei WiKim49. L mesenteroides WIKim19 showed positive correlation with b-glucosidase activity and higher transformation ability of ginsenoside Rb1 into Rg3 than the other strains whereas, P. pentosaceus WiKim20 showed an elevated production of Rb3 even with lack of b-glucosidase activity but have the highest acidity among the five lactic acid bacteria (LAB). Conclusion: Ginsenoside Rg5 concentration of five LABs have ranged from ${\sim}2.6{\mu}g/mL$ to $6.5{\mu}g/mL$ and increased in accordance with the incubation periods. Our results indicate that the enzymatic activity along with acidic condition contribute to the production of minor ginsenoside from lactic acid bacteria.

Bioconversion of Isoflavones and the Probiotic Properties of the Electroporated Parent and Subsequent Three Subcultures of Lactobacillus fermentum BT 8219 in Biotin-Soymilk

  • Ewe, Joo-Ann;Wan-Abdullah, Wan-Nadiah;Alias, Abdul Karim;Liong, Min-Tze
    • Journal of Microbiology and Biotechnology
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    • v.22 no.7
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    • pp.947-959
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    • 2012
  • This study was aimed at an evaluation of the potential inheritance of electroporation effects on Lactobacillus fermentum BT 8219 through to three subsequent subcultures, based on their growth, isoflavone bioconversion activities, and probiotic properties, in biotin-supplemented soymilk. Electroporation was seen to cause cell death immediately after treatment, followed by higher growth than the control during fermentation in biotin-soymilk (P<0.05). This was associated with enhanced intracellular and extracellular ${\beta}$-glucosidase specific activity, leading to increased bioconversion of isoflavone glucosides to aglycones (P<0.05). The growing characteristics, enzyme, and isoflavone bioconversion activities of the first, second, and third subcultures of treated cells in biotin-soymilk were similar to the control (P>0.05). Electroporation affected the probiotic properties of parent L. fermentum BT 8219, by reducing its tolerance towards acid (pH 2) and bile, lowering its inhibitory activities against selected pathogens, and reducing its ability for adhesion, when compared with the control (P<0.05). The first, second, and third subcultures of the treated cells showed comparable traits with that of the control (P>0.05), with the exception of their bile tolerance ability, which was inherited to the treated cells of the first and second subcultures (P<0.05). Our results suggest that electroporation could be used to increase the bioactivity of biotin-soymilk via fermentation with probiotic L. fermentum BT 8219, with a view towards the development of functional foods.

Bioactive Characteristics of the Astragalus Membranaceus Ethanol & Bioconversion Extracts as functional Cosmetic materials (기능성 화장품 소재로서의 황기 에탄올 추출물과 황기 생물전환 추출물의 생리활성 특성)

  • Bae, Hye-Kyung
    • Journal of the Korean Applied Science and Technology
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    • v.38 no.5
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    • pp.1265-1272
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    • 2021
  • This study was intended to investigate the potential of Astragalus membranaceus ethanol extract(AM) and Astragalus membranaceus bioconversion extract(AMB) as functional cosmetic materials. To confirm the antioxidant effect, polyphenol and flavonoid contents were measured, and a study was conducted on skin cell toxicity and skin cell aging through cell experiments. As a result of the antioxidant experiment, the content of polyphenols and flavonoids increased in a concentration-dependent manner in the effects of polyphenols and flavonoids, and it was confirmed that the ethanol extracts were higher than the bioconversion extracts. It was confirmed that the AM and AMB increased the MMP1 expression inhibitory effect in a concentration-dependent manner in HDF cells. Therefore, this study is considered to be very useful as a functional cosmetic material in terms of antioxidant and skin aging prevention when using AM and AMB as functional cosmetic materials.

Physiological activity and efficacy of cosmetic products in bio-converted soybean embryo extract (생물전환 콩 배아추출물의 생리활성 및 화장품의 효능 연구)

  • Min, Kyung-Nam;Lee, Gun-Hee;Park, Sung-Jin;Choe, Tae-Boo
    • Journal of the Korea Convergence Society
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    • v.10 no.3
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    • pp.211-220
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    • 2019
  • This study was to investigate the physiological activities of bioconversion soybean embryo extract and the effects of sleeping pack containing extract on skin. The aglycone isoflavones of the soybean embryo extract bioconversed with pectinase were identified by HPLC. in vitro tests showed that they were non-toxic, anti-inflammatory, anti-melanin and anti-aging activity. After 4 weeks of human body application with the sleeping pack using extract, the skin surface roughness and eye wrinkles were so improved by low stimulation that the sleeping pack containing bioconversion soybean embryo extract has a positive effect on the skin. We confirmed that the bioconversion soybean embryo extract was effective in enhancing the physiological activity and was useful as a cosmetic material of various formulations.

Bioconversion and growth performance of Hermetia illucens in single fruit by-products

  • Bonwoo Koo;Ji Yeong Park;Eunsun Kim;Yongsoon Kim;Kwanho Park
    • International Journal of Industrial Entomology and Biomaterials
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    • v.46 no.2
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    • pp.34-40
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    • 2023
  • As agricultural production increases due to population growth, agricultural by-products that are generated at all production stages increase commensurately. Black soldier fly (BSF) (Hermetia illucens) treatment has potential as an environmentally friendly process to combat the environmental pollution caused by agricultural by-products. This study examined the utilization of BSF larvae in the decomposition of the by-products of apples and mandarins, fruits commonly produced in South Korea. The BSF test larvae were fed apple pomace or mandarin waste, and the control larvae were fed calf feed. Larval weight and size were measured at 4-day intervals until larvae reached the pre-pupal stage. Larval development time, survival rate, and BSF fecundity rate were calculated for all three substrates. Waste reduction and bioconversion ratios were also calculated. The developmental time of larvae fed with apple pomace and mandarin waste was greater than that of the control larvae. The average weight of larvae fed with the fruit by-products was less than that of the control. There was no significant difference in the survival rate of BSF larvae or the fecundity rate of BSF between the substrates used in this study. BSF larvae decomposed 48.0% and 61.5% of apple pomace and mandarin waste, respectively. The bioconversion efficiency rates of BSF larvae fed with apple pomace and mandarin waste were 9.1% and 12.1%, respectively. These results indicated that decomposition of single fruit by-products by BSF larvae is an environmentally friendly and effective bioconversion process.

Comparative Analysis of Tagatose Productivity of Immobilized L-Arabinose Isomerase Expressed in Escherichia coli and Bacillus subtilis

  • Cheon, Ji-Na;Kim, Seong-Bo;Park, Seong-Won;Han, Jong-Kwon;Kim, Pil
    • Food Science and Biotechnology
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    • v.17 no.3
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    • pp.655-658
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    • 2008
  • Although arabinose isomerase (E.C. 5.3.1.4), a commercial enzyme for edible tagatose bioconversion, can be expressed in an Escherichia coli system, this expression system might leave noxious by-products in food. To develop an eligible tagatose bioconversion with food-safe system, we compared the tagatose production activity of immobilized arabinose isomerase expressed in Bacillus subtilis (a host generally recognized as safe) with that of the enzyme expressed in E. coli. A 48% increase in tagatose production (4.3 g tagatose/L at $69.4\;mg/L{\cdot}hr$) was found using the B. subtilis-expressed immobilized enzyme system, compared to the E. coli-expressed enzyme system (2.9 g tagatose/L). The increased productivity with safety of the B. subtilis-expressed arabinose isomerase suggests that it is a more eligible candidate for commercial tagatose production.

Bioconversion of Dairy Processing Waste into Value-Added Chemicals

  • Kim, Dong-Shik
    • Journal of Environmental Policy
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    • v.2 no.2
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    • pp.65-79
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    • 2003
  • More than 145 million tons of liquid whey is produced world-wide as dairy processing waste per year, and half of it is discarded without proper treatment. Due to its high nutrient value, the environmental impact can be significant. Bioconversion of cheese whey can provide an effective way to reduce the waste and, at the same time, generate economically attractive value-added chemicals. In this study, cheese whey was fermented with P. acidipropionici to produce propionic acid which has a high market value for chemical and pharmaceutical industries. In order to specifically enhance propionic acid production, acetic acid production was suppressed using o-iodosobenzoic acid as an enzyme inhibitor. When grown in the presence of the inhibitor, propionic acid production rate increased by a factor of 2 while acetic acid production rate decreased by a factor of 3. Furthermore, when 0.3 mM of o-iodosobenzoic acid was used, the incipient stage(creeping growth period) was considerably reduced. Therefore, the inhibitor helps the cells begin to grow earlier and speed up the production of propionic acid. Although the production rate of propionic acid effectively increased, the final concentration(or production yield) remained unchanged due to product inhibition. Methods that can reduce product inhibition are being tested combined with o-iodosobenzoic acid to optimize both the production rate and yield. The results are expected to be informative for controlling the other byproducts for other applications.

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