• Title/Summary/Keyword: ${\beta}-glucan$

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Preparation of fermented vinegars using mushroom mycelial cultures and characterization of their physicochemical properties (버섯 균사체를 이용한 발효 식초 제조 및 이화학적 특성)

  • Kim, Jeong-Han;Baek, Il-Sun;Shin, Bok-Eum;Lee, Yong-Seon
    • Journal of Mushroom
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    • v.17 no.4
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    • pp.230-234
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    • 2019
  • This study was conducted to prepare healthy vinegars using the mycelia of various mushrooms (Cordyceps militaris, Phellinus baumi, Pleurotus cornucopiae, and Ganoderma lucidum). Analyses of the bioactive components of these vinegars revealed that those prepared using mushroom mycelial cultures on fermented brown rice had increased bioactive component levels compared to those cultured on unfermented brown rice. The highest beta-glucan contents (78.7 mg/g) were found in P. baumi cultures and 0.34mg/g of cordycepin was detected in C. militaris cultures. Regarding the chemical properties of these mushroom mycelia vinegars (MMVs), those prepared using C. militaris and P. cornucopiae cultures showed higher acidity and reduced sugar content. Sensory assessments of C. militaris and P. cornucopiae MMVs yielded scores of 7.3 and 6.6, respectively. Analyses of bioactive components revealed that C. militaris MMV contained high levels of polyphenols and 786 mg/L of cordycepin. P. cornucopiae MMV contained the highest amount of beta-glucan (20.9 mg/g).

Chemical Composition of Barley Leaves from Different Varieties (품종별 보리잎의 이화학적 특성)

  • Seog, Ho-Moon;Kim, Sung-Soo;Hong, Hee-Do;Lee, Young-Tack;Kim, Jung-Gon;Kim, Kyung-Tack
    • Applied Biological Chemistry
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    • v.38 no.5
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    • pp.431-434
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    • 1995
  • Chemical composition of barley leaves of four varieties (Olbori, Suwon 298, Suwon 311 and Milyang 60) grown under the same environmental conditions at the same location was investigated. Barley leaf samples were collected on two weeks before heading period. The barley leaves contained $25{\sim}29%$ crude protein, $9.3{\sim}9.9%$ crude lipid, $9.3{\sim}11.2%$ ash, $1.3{\sim}1.8%$ ${\beta}$-glucan on dry matter basis. Chlorophyll contents of Olbori, Suwon 298, Suwon 311 and Milyang 60 were 951 mg%, 885 mg%, 866 mg%, 826 mg%, respectively. Mineral contents of barley leaves were not significantly different each other and potassium content was found to be the highest among all the minerals observed. Vitamin C contents of Olbori, Suwon 298, Suwon 311 and Milyang 60 were 328 mg%, 266 mg%, 278 mg% and 269 mg%, respectively. Free sugar contents of barley leaves were somewhat different and the glucose content was the highest among the free sugars, ranging from 5.70% to 8.35%. Besides glucose, fructose, sucrose and raffinose contents were also relatively higher than the other free sugars. In other oligosaccharides, 1-kestose($GF_2$) content was between 0.26% and 0.39% and a slight amount of 1-nystose($GF_3$) was also detected. Although aspartic acid, glutamic acid and serine were relatively higher content than the other free amino acids, the values were not consistent in different varieties.

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Antioxidative and digestion enzyme inhibitory activity of Ganoderma lucidum depends on the extraction solvent (추출용매에 따른 영지버섯(Ganoderma lucidum)의 항산화 및 소화효소 저해활성)

  • Joo, Ok Soo;Hwang, Chung Eun;Hong, Su Young;Sin, Eui Cheol;Nam, Sang Hae;Cho, Kye Man
    • Food Science and Preservation
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    • v.25 no.1
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    • pp.124-135
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    • 2018
  • This study investigated the nutritional properties and biological activities of Ganoderma lucidum (GL). The round type of GL contained higher carbohydrate content, while the Nokgak type of GL contained higher crude ash, crude fat, and crude protein content. The most abundant amino acid, fatty acid, mineral, and soluble vitamin observed were valine (round type: 11.90 mg/g and Nokgak type: 17.18 mg/g), linoleic acid (round type: 47.56% and Nokgak type: 75.68%), potassium (round type: 116.50 mg/100 g and Nokgak type: 184.36 mg/100 g), and vitamin B3 (round type: 1.78 mg/100 g and Nokgak type: 1.81 mg/100 g), respectively. In addition, the ${\beta}$-glucan content were 34.15 g/100 g (round type) and 30.07 g/100 g (Nokgak type). The GL 70% ethanol extract at $40^{\circ}C$ showed higher radical scavenging as well as carbohydrate and lipid enzyme inhibition than other conditions. At 1 mg/mL of treatment with the 70% ethanol extract at $40^{\circ}C$ of round type GL, the DPPH, ABTS, hydroxyl radical scavenging, and ${\alpha}$-glucosidase, ${\alpha}$-amylase, and pancreatic lipase inhibition activities obtained were approximately 92.85, 99.74, 58.09, 89.68, 44.68, and 67.56%, respectively.

Studies on the Development of Soybean Cheeses (대두를 이용한 소이 발효 치즈 개발에 관한 연구)

  • Hwang, Hyo-Jeong;Kang, Chin-Yang;Choi, Kwang-Jin;Lee, Yu-Lim;Shin, Kyung-Ok
    • The Korean Journal of Food And Nutrition
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    • v.31 no.6
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    • pp.811-820
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    • 2018
  • This study suggests a method of making cheese using soybeans for healthy food for people that are allergic to animal proteins, vegetarians, people on a diet, infants and toddlers. Additionally, the study was conducted to provide basic data that can contribute to the development of a quality control class of Korean cheese and underdeveloped cheese industry. Soybean cheeses have a high protein content and low fat. The free amino acids of soybean cheeses contained 11.48 mg of arginine per 100 g, 9.33 mg of glutamate, and leucine 4.91 mg, in that order. The free amino acids of Company A's milk cheese contained 20.95 mg of glutamate, 8.95 mg of proline and 8.02 mg of lysine per 100 g. In soybean cheeses, there were 2.21 mg of tryptophan and 0.73 mg of cysteine, which were not analyzed in the milk cheese of company A. The contents of the constituent amino acids was 1,070.22 mg of glutamate, 467.30 mg of aspartate and 446.30 mg of leucine in 100 grams of soybean cheeses per 100 grams. The milk cheese of Company A was 1,715.97 mg of glutamate, 798.72 mg of leucine and 685.31 mg of proline. The mineral contents of the soybean cheese were 120.29 mg/100 g of calcium, 0.92 mg/100 g of iron, 0.78 mg/100 g of zinc and 0.40 mg/100 g of selenium, respectively. The contents of vitamin $B_1$ and ${\beta}$-glucan in soybean cheese were higher than that of the milk cheese in Company A at 0.08 mg/100 g and 13.73 mg/g, respectively. Therefore, it is considered that the soy cheese is excellent in nutritional aspect and will contribute to health promotion. It is also suitable for people that are allergic to animal proteins, vegetarians, people on a diet and healthy foods for infants.

Development of an apple/pear pomace fermented with Lentinus edodes Mycelia (사과/배 부산물 및 표고버섯균사체를 이용한 발효물 개발)

  • Kim, Jin-Kyeong;Jo, Seong-Wha;Kim, Eun-Ji;Jeong, Do-Youn
    • Korean Journal of Food Science and Technology
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    • v.51 no.3
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    • pp.286-294
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    • 2019
  • The purpose of this study was to investigate the possibility of enhancing the functional compounds in apple and pear pomace (APP) by fermentation with mycelia from the mushroom Lentinula edodes. A 30% (w/v) APP with added rice bran and Biji was fermented with L. edodes at $24^{\circ}C$ and 80% humidity. The cellulase and pectinase activities in the fermented APP (FAPP) were higher than those in the non-fermented control. In addition, the physiological activities of the FAPP, including DPPH, ABTS radical scavenging, and SOD-like activity, as well as the total polyphenol and ${\beta}-glucan$ contents were higher than those in the control. FAPP treatment significantly reduced LPS-induced nitric oxide (NO) levels in Raw 264.7 cell. Therefore, FAPP treatment was considered to more effectively suppress cell injury caused by inflammatory cytokines through inhibition of LPS-induced NO production. These results suggest that the levels of functional components in APP can be increased by fermentation with this mushroom mycelium. However, further studies are needed before it can be used as a functional material.

Safety assessments of recombinant DTaP vaccines developed in South Korea

  • Gi-Sub Choi;Kyu-Ri Kang;Seung-Bum Kim;Joon-Hwan Ji;Gyu-Won Cho;Hyun-Mi Kang;Jin-Han Kang
    • Clinical and Experimental Vaccine Research
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    • v.13 no.2
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    • pp.155-165
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    • 2024
  • Purpose: Pertussis bacteria have many pathogenic and virulent antigens and severe adverse reactions have occurred when using inactivated whole-cell pertussis vaccines. Therefore, inactivated acellular pertussis (aP) vaccines and genetically detoxified recombinant pertussis (rP) vaccines are being developed. The aim of this study was to assess the safety profile of a novel rP vaccine under development in comparison to commercial diphtheria-tetanus-acellular pertussis (DTaP) vaccines. Materials and Methods: The two positive control DTaP vaccines (two- and tri-components aP vaccines) and two experimental recombinant DTaP (rDTaP) vaccine (two- and tri-components aP vaccines adsorbed to either aluminum hydroxide or purified oat beta-glucan) were used. Temperature histamine sensitization test (HIST), indirect Chinese hamster ovary (CHO) cell cluster assay, mouse-weight-gain (MWG) test, leukocytosis promoting (LP) test, and intramuscular inflammatory cytokine assay of the injection site performed for safety assessments. Results: HIST results showed absence of residual pertussis toxin (PTx) in both control and experimental DTaP vaccine groups, whereas in groups immunized with tri-components vaccines, the experimental tri-components rDTaP absorbed to alum showed an ultra-small amount of 0.0066 IU/mL. CHO cell clustering was observed from 4 IU/mL in all groups. LP tests showed that neutrophils and lymphocytes were in the normal range in all groups immunized with the two components vaccine. However, in the tri-components control DTaP vaccine group, as well as two- and tri-components rDTaP with beta-glucan group, a higher monocyte count was observed 3 days after vaccination, although less than 2 times the normal range. In the MWG test, both groups showed changes less than 20% in body temperature and body weight before the after the final immunizations. Inflammatory cytokines within the muscle at the injection site on day 3 after intramuscular injection revealed no significant response in all groups. Conclusion: There were no findings associated with residual PTx, and no significant differences in both local and systemic adverse reactions in the novel rDTaP vaccine compared to existing available DTaP vaccines. The results suggest that the novel rDTaP vaccine is safe.

Diversity, Saccharification Capacity, and Toxigenicity Analyses of Fungal Isolates in Nuruk (누룩곰팡이 분리균의 다양성 및 당화능 분석과 독소생산능 조사)

  • Kim, Min Sik;Kim, Sinil;Ha, Byeong-Seok;Park, Hye-Young;BaeK, Seong-Yeol;Yeo, Soo-Hwan;Ro, Hyeon-Su
    • The Korean Journal of Mycology
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    • v.42 no.3
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    • pp.191-200
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    • 2014
  • Nuruk samples collected from various regions in Korea were investigated in terms of fungal contents and diversity. In measurement of colony forming unit (CFU) in Nuruk suspensions on DRBC agar, Nuruk samples MS4, MS8, and MS10 were among the highest fungal density, with $1,278.9{\pm}21.6$ (${\times}10^4$), $1,868.0{\pm}27.7$ (${\times}10^4$), and $775.1{\pm}19.2$ (${\times}10^4$) were among the samples showing the highest fungal density. CFU per 20 mg Nuruk, respectively. The majority of fungal components were yeasts, including Pichia anomala, P. kudriavzevii, Kluyveromyces marxianus, and Saccharomycopsis fibuligera, whereas Aspergillus oryzae and Rhizopus oryzae, the representative Nuruk fungi, were predominant only in the low fungal density Nuruks (MS2, MS5, and MS11). Saccharification capability of the fungal isolates was assessed by measurement of amylase activity in the culture broth. The highest amylase activity was found in A. niger and A. luchuensis, followed by S. fibuligera. A. oryzae and R. oryzae showed fair amylase activity but significantly lower than those of the three fungal species. R. oryzae was suggested to play an additional role in degradation of ${\beta}$-glucan in crop component of Nuruk since R. oryzae was the only fungus that showed ${\beta}$-glucanase activity among the fungal isolates. To confirm the safety of Nuruk, aflatoxigenicity of the isolated Aspergillus was estimated using the DNA markers norB-cypA, aflR, and omtA. All of the isolates turned out to be non-aflatoxigenic as evidenced by the deletion of gene markers, norB-cypA and aflR, and the absence of aflatoxin in the culture supernatants shown by TLC analysis.

Industrial Applications of Rumen Microbes - Review -

  • Cheng, K.J.;Lee, S.S.;Bae, H.D.;Ha, J.K.
    • Asian-Australasian Journal of Animal Sciences
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    • v.12 no.1
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    • pp.84-92
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    • 1999
  • The rumen microbial ecosystem is coming to be recognized as a rich alternative source of genes for industrially useful enzymes. Recent advances in biotechnology are enabling development of novel strategies for effective delivery and enhancement of these gene products. One particularly promising avenue for industrial application of rumen enzymes is as feed supplements for nonruminant and ruminant animal diets. Increasing competition in the livestock industry has forced producers to cut costs by adopting new technologies aimed at increasing production efficiency. Cellulases, xylanases, ${\beta}$-glucanases, pectinases, and phytases have been shown to increase the efficiency of feedstuff utilization (e.g., degradation of cellulose, xylan and ${\beta}$-glucan) and to decrease pollutants (e.g., phytic acid). These enzymes enhance the availability of feed components to the animal and eliminate some of their naturally occurring antinutritional effects. In the past, the cost and inconvenience of enzyme production and delivery has hampered widespread application of this promising technology. Over the last decade, however, advances in recombinant DNA technology have significantly improved microbial production systems. Novel strategies for delivery and enhancement of genes and gene products from the rumen include expression of seed proteins, oleosin proteins in canola and transgenic animals secreting digestive enzymes from the pancreas. Thus, the biotechnological framework is in place to achieve substantial improvements in animal production through enzyme supplementation. On the other hand, the rumen ecosystem provides ongoing enrichment and natural selection of microbes adapted to specific conditions, and represents a virtually untapped resource of novel products such as enzymes, detoxificants and antibiotics.

Cellulose Hydrolysis by Digestive Enzymes of Reticulitermes speratus, a Native Termite from Korea

  • Lee, Young-Min;Kim, Hyun-Jung;Cho, Moon-Jung;Shin, Keum;Kim, Young-Kyoon;Kim, Yeong-Suk
    • Journal of the Korean Wood Science and Technology
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    • v.38 no.2
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    • pp.140-148
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    • 2010
  • This study was to investigate the enzymatic hydrolysis of cellulose using the cellulase from whole body of the native termite collected in Milyang-si, Kyungsangnamdo, Korea. In the results, optimal temperature and pH for the enzyme of native termites were $45^{\circ}C$ and pH 5.5 for both endo-${\beta}$-1, 4-glucanase and ${\beta}$-glucosidase. Enzyme activity of the termite enzyme was shown $8.8{\times}10^{-2}\;FPU/m{\ell}$. And the highest glucose hydrolysis rate of cellulose by the digestive enzyme from test termites was 24.5% based on the glucan, comparing 59.7% by commercial enzyme (only celluclast 1.5 L) at 1% (w/v) substrate and 36 hours in hydrolysis time. This hydrolysis rate by the digestive enzyme from test termites was comparatively high value in 41% level of the commercial enzyme. When cellulose was hydrolyzed by the digestive enzyme of the native termite, glucose hydrolysis was almost completed in 12 hours which was the considerably reduced time for cellulose hydrolysis. It was suggested that the quiet short reaction time for cellulose hydrolysis by the enzyme from native termite could be a very high advantage for development of hydrolysis cellulase for lignocellulosic biomass.

Study of Macrophage Activation and Structural Characteristics of Purified Polysaccharide from the Fruiting Body of Cordyceps militaris

  • Lee, Jong-Seok;Kwon, Jeong-Seok;Won, Dong-Pil;Lee, Jung-Hyun;Lee, Keun-Eok;Lee, Shin-Young;Hong, Eock-Kee
    • Journal of Microbiology and Biotechnology
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    • v.20 no.7
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    • pp.1053-1060
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    • 2010
  • Cordyceps militaris, an entomopathogenic fungus belonging to the class Ascomycetes, has been reported to have beneficial biological activities such as hypoglycemic, anti-inflammatory, antitumor, antimetastatic, hypolipidemic, immunomodulatory, and antioxidant effects. In this study, the crude water-soluble polysaccharide CMP, which was obtained from the fruiting body of C. militaris by hot water extraction and ethanol precipitation, was fractionated by DEAE-cellulose and Sepharose CL-6B column chromatographies. This process resulted in three polysaccharide fractions, termed CMP Fr I, CMP Fr II, and CMP Fr III. Of these fractions, CMP Fr II, with an average molecular mass of 127 kDa, was able to upregulate effectively the phenotypic functions of macrophages such as NO production and cytokine expression. The chemical property of the stimulatory polysaccharide, CMP Fr II, was determined based on its monosaccharide composition, which consisted of glucose (56.4%), galactose (26.4%), and mannose (17.2%). Its structural characteristics were investigated by a combination of chemical and instrumental analyses, including methylation, reductive cleavage, acetylation, Fourier transform infrared spectroscopy (FTIR), and gas chromatography-mass spectrometry (GCMS). Results indicated that CMP Fr II consisted of the (1${\rightarrow}$4) or (1${\rightarrow}$2) linked glucopyranosyl or galactopyranosyl residue with a (1${\rightarrow}$2) or (1${\rightarrow}$6) linked mannopyranosyl, glucopyranosyl, or galactopyranosyl residue as a side chain. The configuration of the ${\beta}$-linkage and random coil conformation of CMP Fr II were confirmed using a Fungi-Fluor kit and Congo red reagent, respectively.