• Title/Summary/Keyword: unfermented soybean

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Bacillus megatherium group에 의한 발효식품 연구 1

  • 계성렬;정윤수;이계호
    • Korean Journal of Microbiology
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    • v.1 no.1
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    • pp.26-29
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    • 1963
  • 1. Cooked soybean was fermented for about a week by Bacillus megatherium 88-3, D-28 and D-28a; and compared with the cooked soybean which was not fermented, this fermented soybean showed much increase in vitamin $B_{12}$ and $B_2$, while vitamin $B_1$ decreased. 2. In the process of fermenting the cooked soybean, Bacillus megatherium, 88-3 is the bacteria which produces brown pigment; and Bacillus megatherium D-28 and D-28a is the bacteria which produces yellow pigment. 3. In weight, fermented soybean-fed rat showed more increase than the unfermented soybean-fed rat. But the growth of the rat fed with Bacillus megatherium 88-3 fermented soybean was not good. Probably, this phenomenon came from the trouble in rat's metabolism by brown pigment. 4. In food efficiency, Bacillus megatherium D-28a is 4.3% lower than Bacillus megatherium B-938, but it is 17.l% higher than the unfermented cooked soybean. Bacillus megatherium 88-3, which is 47.1% lower in food efficiency than the unfermented cooked soybean, has been found "not good" in the growth of rat.th of rat.

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Effects of Fermented Soybean upon Anti-inflammation and Intestinal Mucous Membrane Permeability (청국장의 항염증 및 장점막 투과성 개선 효과)

  • Kim, Hyung-Gu;Lee, Myeong-Jong;Kim, Ho-Jun;Kim, Ki-Cheol;Bose, Shambhunath
    • Journal of Korean Medicine for Obesity Research
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    • v.12 no.1
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    • pp.33-47
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    • 2012
  • Objectives This study was designed to investigate the effects of fermented soybean upon anti-inflammation, cytotoxicity, antioxidant and intestinal mucous membrane permeability by measuring the cell viability, NO (nitric oxide) production, DPPH, Polyphenol, HRP and TEER in cells like Raw 264.7 and HCT 116 using fermented soybean. Methods Raw 264.7 cell and HCT 166 cell were used in this study. And fermented soybean powders were used for the experimental group and soybean powders for the control group. There was inflammation response upon using lipopolysaccharide(LPS). Fermented soybean powders and soybean powders were in a respectively different dose added to the cells with LPS. MTT assay, NO, DPPH and Polyphenol measurement, TEER, HRP were conducted for each cell. The results of this study were presented in mean and standard deviation. Results 1. In Raw 254.7 cells added with $100{\mu}l/ml$ unfermented soybean powders, 104.95% higher than 62.59% was measured. In Raw 254.7 cells added with $100{\mu}l/ml$ fermented soybean powders, there was 74.90% measured higher than 62.59%, which was a significant result. 2. By a gradual increase of unfermented soybean powders like $0.1{\mu}l/ml$, $1.0{\mu}l/ml$, $10{\mu}l/ml$, $100{\mu}l/ml$, the measured NO were also gradually decreased $53.12{\mu}M$, $47.57{\mu}M$, $37.02{\mu}M$, $28.16{\mu}M$. In case of cells added with fermented soybean powders, $43.95{\mu}M$ NO was measured in $0.1{\mu}l/ml$ which is significant, and in other cases, mostly measured over$ 56.72{\mu}M$. 3. It was inferred that fermented soybean powders have anti-inflammatory effects of maintaining intestinal mucous membrane permeability because the measured values of cells in both groups were all higher than $133.62{\Omega}$ measured of cells added with only LPS. And measured values of cells in both groups were all lower than 2.26 measured of cells added with only LPS. 4. In case of experiment DPPH and polyphenol measurement, fermented group was all higher than unfermented group. Conclusion From the results of conducting MTT assay, NO measurement, and TEER, HRP by using cells Raw 264.7 and HCT-116, even though there was no significance in the correlation between cytotoxicity, anti-inflammatory effects, both unfermented soybean powders and fermented soybean powders were shown to have intestinal mucous membrane permeability improvement effects. This effects could be applicable for autoimmune diseases, chronic inflammatory diseases and so additional studies are expected in the future. From the results of conducting DPPH, Polyphenol measurement, Fermented soybean may be useful as potential antioxidant.

Isoflavone Content in Korean Fermented and Unfermented Soybean Foods (대두 가공 식품 중의 이소플라본 함량)

  • Choi, Yeon-Bae;Sohn, Heon-Soo
    • Korean Journal of Food Science and Technology
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    • v.30 no.4
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    • pp.745-750
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    • 1998
  • Soybean isoflavones known as an anticarcinogenic factor were evaluated in some Korean soybean foods by high performance liquid chromatography. Unfermented soybean foods contained predominantly isoflavone ${\beta}-glycosides$ (genistin and daidzin), but in the fermented soybean foods isoflavones were present mainly as aglycones (genistein and daidzein). Average contents of isoflavones of tofu, soymilk and soy sprout were 1, 151, 676 and 424 mg/kg, respectively. Among the fermented soybean products, soybean paste (Chongkukjang) was highest in the isoflavone content (920 mg/kg) and the degree of hydrolysis of ${\beta}-glycosidic$ bonds was ranged from 30 to 100%. Doenjang, Chunjang and Kanjang contained lesser amounts of isoflavones and their contents were 627, 291 and 10 mg/kg, respectively. Korean traditional fermented foods, Chongkukjang and Doenjang could be regarded as the excellent sources of soy isoflavone aglycones.

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Effects of By-Product Fertilizing of the Unfermented Soybean (Cheongguk-jang) on Chemical Properties of Soil and Growth of Lettuce (미 발효된 청국장 콩의 시비가 토양의 이화학적 성질 변화와 상추의 생육에 미치는 영향)

  • Hong, Joo-Hwa;Chang, Ki-Woon;Kang, Young-Mo;Jo, Chon-Hwi;Han, Ki-Pil;Lee, Jong-Jin
    • Journal of the Korea Organic Resources Recycling Association
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    • v.14 no.4
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    • pp.132-140
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    • 2006
  • This investigation into unfermented soybeans, which were left from the soybeans used to make cheongguk-jang, was conducted to find out its availability of the application to the environmental-friendly fertilizers. The test of cultivating lettuce, using 1/5000a Wagner pot, was carried out inside the affiliated farm glasshouse, belonged to University of Chung-Nam National. The results showed that in the category of leaf length, the control and cheongguk-jang soybeans treatment plot had similar outcomes and in the category of the extract of the cheongguk-jang soybeans, it increased by about 26~33%. And in the categories of width and number of leaves it showed that the extract treatment increased by about 9~20%, in compared to the control. Finally, in the category of fresh weight, the results showed that cheongguk-jang soybean and the extract of the cheongguk-jang soybean effectively increased by about 9~27%, and that pig manure compost treatment plot with the extract of the cheongguk-jang soybean also significantly increased by about 26%, compared to the control. Accordingly, the unfermented soybean left in the production of cheongguk-jang and the extract of the cheongguk-jang soybean are considerably appeared to be valuable environmental-friendly fertilizers.

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Evaluating Nutritional Quality of Single Stage- and Two Stage-fermented Soybean Meal

  • Chen, C.C.;Shih, Y.C.;Chiou, P.W.S.;Yu, B.
    • Asian-Australasian Journal of Animal Sciences
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    • v.23 no.5
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    • pp.598-606
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    • 2010
  • This study investigated the nutritional quality of soybean meal (SBM) fermented by Aspergillus ($FSBM_A$) and/or followed by Lactobacillus fermentation ($FSBM_{A+L}$). Both fermented products significantly improved protein utilization of SBM with higher trichloroacetic acid (TCA) soluble true protein content, in vitro protein digestibility and available lysine content, especially in $FSBM_{A+L}$. Moreover, $FSBM_{A+L}$ produced a huge amount of lactic acid resulting in lower pH as compared to the unfermented SBM or soybean protein concentrate (SPC) (p<0.05). $FSBM_A$ and $FSBM_{A+L}$ raised 4.14% and 9.04% of essential amino acids and 5.38% and 9.37% of non-essential amino acids content, respectively. The ${\alpha}$-galactoside linkage oligosaccharides such as raffinose and stachyose content in $FSBM_A$ and $FSBM_{A+L}$ decreased significantly. The results of soluble protein fractions and distribution showed that the ratio of small protein fractions (<16 kDa) were 42.6% and 63.5% for $FSBM_A$ and $FSBM_{A+L}$, respectively, as compared to 7.2% for SBM, where the ratio of large size fractions (>55 kDa, mainly ${\beta}$-conglycinin) decreased to 9.4%, 5.4% and increased to 38.8%, respectively. There were no significant differences in ileal protein digestibility regardless of treatment groups. SPC inclusion in the diet showed a better protein digestibility than the SBM diet. In summary, soybean meal fermented by Aspergillus, especially through the consequent Lactobacillus fermentation, could increase the nutritional value as compared with unfermented SBM and is compatible with SPC.

Tempeh Fermentation from a Mixture of Soybean and Sorghum Grain (대두-수수 혼합곡물의 템페발효)

  • Kim, Chong-Tai;Kim, Chul-Jin;Kim, Dong-Chul;Kwon, Tae-Won
    • Korean Journal of Food Science and Technology
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    • v.22 no.6
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    • pp.668-674
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    • 1990
  • Tempeh-type fermented products were prepared from soybean, sorghum or mixture of soybean and sorghum(1 : 1) with the traditional Indonesian inoculum(LARU : mixed cultures of Rhizopus oligosporus). Fermentation increased protein and fiber contents in the soybean tempeh(ST) and tempeh of soybean-sorghum mixture(SSM). Fat content was slightly higher in sorghum tempeh(SGT) and SSM than that of control. During the fermentation, pH, soluble solid and soluble nitrogen were increased, while no significant change was found in the total solids. The trypsin inhibitor activity(TIA) and phytic acid content decreased after 32 hrs fermentation. It is suggested that Rhizopus oligosporus is capable of hydrolyzing trypsin inhibitor and phytic acid of the substrate. Thiamine and niacin contents increased in all samples as compared with the unfermented control. In amino acid level, there were some decreased in total amino acids after 32 hrs fermentation in three types of tempeh. While the concentrations of lysine, valine. tyrosine and alanine in ST, SGT and SSM were increased those of serine and glutamic acid were decreased in compare to the unfermented control.

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Comparison of Antioxidant Potentials in Methanolic Extracts from Soybean and Rice Fermented with Monascus sp.

  • Pyo, Young-Hee
    • Food Science and Biotechnology
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    • v.16 no.3
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    • pp.451-456
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    • 2007
  • The potential antioxidant activities of methanolic extracts from soybean and rice fermented with Monascus sp. were investigated. M. pilosus IFO 480 and M. anka IFO 478 were screened as a suitable strain to promote the antioxidant activities in soybean- and rice- fermentation. The methanol extracts from soybean and rice after fermenting for 20 days at $30^{\circ}C$ resulted in a significant increase in the antioxidant capacities expressed as radical (ABTS and DPPH) scavenging assay and peroxidation inhibition (%) by thiocyanate method and increased (p<0.01) by a 2.6 to 3.1-fold compared with those of the unfermented products. The average antioxidant potentials of Monascus-fermented soybean extracts (MFSE) were significantly (p<0.01) stronger than Monascus-fermented rice extracts (MFRE). A linear correlations between free radical scavenging activity of MFSE and the total phenolics content (r=0.84) and total flavonoids content (r=0.81) were observed. These results indicated that MFSE exhibited stronger (p<0.01) antioxidant activity and contained significantly higher levels (p<0.05) of phenolics than MFRE.

A NOTE ON THE REMOVAL OF PHYTATE IN SOYBEAN MEAL USING Aspergillus usami

  • Ilyas, A.;Hirabayasi, M.;Matsui, T.;Yano, H.;Yano, F.;Kikishima, T.;Takebe, M.;Hayakawa, K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.8 no.2
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    • pp.135-138
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    • 1995
  • Soybean meal was fermented by Aspergillus usami in order to reduce phytate content. Aflatoxin B1 was not detected in the fermented soybean meal. The contents of crude protein, crude fiber, ether extract and crude ash were slightly increased following fermentation with a concomitant reduction in nitrogen free extract. Though the fermentation partly degraded proteins in the soybean meal, there was small difference in amino acid composition between the soybean meal and the fermented soybean meal. The results showed that the fermentation did not affect nutritional value of protein in soybean meal. Approximately 55% of phosphorus extracted by trichloroacetic acid was inositol hexaphosphate (phytate) in the soybean meal. The content of inositol tetra to hexaphosphates was not detected in the fermented soybean meal. These results indicated that the fermentation almost completely eliminated phytate in soybean meal. Phytase activity was not detected in the unfermented soybean meal. However, the enzyme activity in the fermented soybean meal was 167.7 U/g. When the fermented soybean meal in supplemented in formula feeds, phytase in the fermented soybean meal might partly degrade the phytate in other ingredients in the digestive tract. The fermented soybean meal is possibly used as a phytate-free protein source of feed, which contains high available phosphorus.

Potential Effect of Monascus-fermented Soybean Extracts on Alkaline Phosphatase Activity of Human Osteoblast-like Cells

  • Pyo, Young-Hee;Kwon, Mi-Ja;Kim, In-Ho
    • Food Science and Biotechnology
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    • v.17 no.2
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    • pp.434-437
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    • 2008
  • The aim of this study was to investigate whether Monascus-fermented soybean extracts (MFSE) containing natural estrogen-like compounds such as isoflavones and mevinolins has potential effects on human osteoblast-like SaOS2 cells using 3-[4,5-dimethylthiazol-2-yl]-2,5-diphenyltetrazolium bromide (MTT) and alkaline phophatase (ALP) assaies. MFSE exerted biphasic dose-dependent effect; stimulating osteoblastic activity at low concentrations and inhibiting SaOS2 cells viability at high concentrations. At $10^{-8}-10^{-4}\;mg/mL$, MFSE is not only non-cytotoxic but also induced comparatively high ALP activity on SaOS2 cells. ALP activity (%) significantly increased (220.1%, p<0.05) when SaOS2 cells were treated with MFSE at a concentration of $10^{-5}\;mg/mL$, whereas slowly increased (185.6%, p<0.05) in unfermented soybean extracts (UFSE) at $10^{-3}\;mg/mL$. The potentially greater ALP activity of MFSE compared to the UFSE might partially be caused by its mevinolin, which was derived from the soybean during Monascus-fermentation. Our findings indicate that supplementation of MFSE may accelerate the speed of intracellular ALP synthesis by the bone cells when provided at optimal dosages.

Production of Bioactive Components and Anti-Oxidative Activity of Soybean Grit Fermented with Bacillus subtilis HA according to Fermentation Time (Bacillus subtilis HA를 이용한 soybean grit의 고체발효 기간에 따른 생리활성물질 생산 및 항산화 효과)

  • Kim, Ji-Eun;Lee, Sam-Pin
    • Korean Journal of Food Science and Technology
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    • v.41 no.2
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    • pp.179-185
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    • 2009
  • Soybean grits, fortified with various bioactive components, were produced by solid-state fermentation using Bacillus subtilis HA. ${\alpha}$-Amylase activity gradually increased during fermentation over 5 days. Fibrinolytic and protease activities were highest in the soybean grits fermented for 7 days. The grits fermented for 5 days also showed the highest tyrosine content, indicating a higher peptide content. Peptides of low molecular weight (below 3,000 daltons) and browning pigments increased with increasing fermentation time. The fermented soybean grits showed higher contents of total phenolic compounds, to approximately 18 mg/g. DPPH free radical scavenging effects were higher in the soybean grits fermented for 3 days. Also, ABTS radical scavenging effects were greater in the fermented grits compared to the unfermented grits. Overall, the soybean grits fermented by solid-state fermentation for 5 days showed enhanced production of bioactive compounds and greater antioxidant properties.