• Title/Summary/Keyword: Exo-biopolymer

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Production Conditions and Characterization of the Exo-biopolymer Produced by Submerged Cultivation of Ganoderma lucijum Mycelium (영지(Ganoderma lucidum) 균사체의 액체배양에 의한 세포외 생물고분자의 생산조건과 특성)

  • Lee, Shin-Young;Kang, Tae-Su
    • Microbiology and Biotechnology Letters
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    • v.24 no.1
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    • pp.111-118
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    • 1996
  • For the screening and the development of the new bio-material, cultural conditions for the exo-biopolymer (EBP) production throught the submerged cultivation of Ganoderma lucidum mycelium were investigated. Also, the fractionations and the purifications of the exo-biopolymer were carried out and the chemical compositions of the exo-biopolymer were examined. The optimal culture conditions for the exo-biopolymer production were pH 5.0, 30$^{\circ}C$ and 100 rpm of agitation speed in the medium containing of 5% (w/v) glucose, 0.5%(w/v) yeast extract, 0.1% (w/v) ($(NH_4)_2HPO_4$, and 0.05% (w/v) $KH_2PO_4$. In the flask cultivation for 7 days under these conditions, the concentration of the maximum exo-biopolymer and the cell mass were 15.4g/l and 18.8g/l, respectively. The specific growth rate was 0.039 $hr^{-1}$. In addition, the substrate consumption rate, and the exo-biopolymer production rate were 0.043$gg^{-1}$$hr^{-1}$ and 0.025$gg^{-1}$$hr^{-1}$, respectively. The exo-biopolymer was fractionated into BWS (water soluble exo-biopolymer) and BWI (water insoluble exo-biopolymer) by the water extraction, and the sugar contents of two fractions were higher than 97% (based on dry basis). The components sugar of BWS and BWI fractions were glucose, galactose, mannose, xylose, and fucose. Their molar ratios were 3.6:1.5:2.1:0.5: trace and 2.9:3.1:2.0:1.6:0.3, respectively.

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Macrophage Stimulating Activity of Exo-Biopolymer from Submerged Culture of Lentinus edodes with Rice Bran

  • Yu, Kwang-Won;Shin, Kwang-Soon;Choi, Yang-Mun;Suh, Hyung-Joo
    • Journal of Microbiology and Biotechnology
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    • v.14 no.4
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    • pp.658-664
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    • 2004
  • To find a new utilization of rice bran, nine higher fungi were examined for the production of exo-biopolymer with macrophage stimulating activity from rice bran. Among the exo-biopolymers produced from submerged cultures, Lentinus edodes showed the highest activity, followed by Grifola frondosa, Schizophyllum commune, and Coriolus versicolor. L. edodes also had the most potent macrophage stimulating activity in a liquid culture rather than in a solid culture. In order to improve rice bran utilization and the yield of exo-biopolymer with macrophage stimulating activity, the treatment of Rapidase effectively increased the macrophage stimulating activity (about 30% increase), whereas the other enzymes (Econase, Viscozyme, Ultraflo, Celluclast, and Thermylase) treatments did not increase the macrophage stimulating activity. Exo-biopolymer with macrophage stimulating activity from L. edodes contained mainly neutral sugars (58.7%) with considerable amounts of uronic acid (32.2%) and a small amount of proteins (9.1%). Component sugars of exo-biopolymer consisted of mainly arabinose, galactose, glucose, mannose, and xylose (0.95:0.81:0.96:1.00:0.39, respectively). When the exo-biopolymer was treated with $NaIO_4, NaClO_2$, and pronase, the $NaClO_2$ treatment and pronase digestion had little effect, whereas $NaIO_4$ oxidation significantly decreased the macrophage stimulating activity (47.6% reduction at $100\mug/ml$). Therefore, the carbohydrate moiety in exo-biopolymer from L. edodes plays an important role in the expression of the macrophage stimulating activity.

Hypoglycemic Effect of Exo- and Endo-biopolymers Produced by Submerged Mycelial Culture of Ganoderma lucidum in Streptozotocin-Induced Diabetic Rats

  • Yang, Byung-Keun;Michael A Wilson;Cho, Kai-Yip;Song, Chi-Hyun
    • Journal of Microbiology and Biotechnology
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    • v.14 no.5
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    • pp.972-977
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    • 2004
  • The hypoglycemic effect of an exo-biopolymer (EXO) and endo-biopolymer (ENDO) produced from submerged mycelial culture of Ganoderma lucidum was investigated in streptozotocin (STZ)-induced diabetic rats. Both the EXO and ENDO showed hypoglycemic potential, however, the former proved to be more potent than the latter. The administration of the EXO at the dose of 100 mg/kg body weight (BW) significantly reduced the plasma glucose level (23.5%) and increased the plasma insulin level (2.2 fold) in the diabetic animals. The EXO also lowered the plasma total cholesterol, triglyceride, low-density lipoprotein (LDL) cholesterol, and athrogenic index by 14.7, 31.4, 24.1, and 45.4%, respectively, and reduced the liver total cholesterol and triglyceride levels by 6.7 and 25.8%, respectively. It increased the plasma high-density lipoprotein (HDL) cholesterol (37.7%), compared to the control group. Furthermore, the alanine transaminase (ALT) and aspartate transaminase (AST) showed lower activities in the EXO administered groups than the other experimental groups. Taken together, these results suggest that the exo-biopolymer may alleviate the blood glucose level by increased insulin secretion.

Optimazation of Submerged Culture Conditions for Exo-Biopolymer Production by Paecilomyces japonica

  • Bae, Jun-Tae;Sinha, Jayanta;Park, Jong-Pil;Song, Chi-Hyun;Yun, Jong-Won
    • Journal of Microbiology and Biotechnology
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    • v.10 no.4
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    • pp.482-487
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    • 2000
  • Optimization of submerged culture conditions for the production of exo-biopolymer from Paecilomyces japonica ws studied. Maltose, yeast extract, and potassium phosphate were the most suitable sources of carbon, nitrogen, and inorganic salt, respectively, for both production of the exo-biopolymer and mycelial growth. The optimal culture conditions in a flask culture were pH 5.0, $25^{\circ}C$, and 150 rpm in a medium containing (as in g/l) 30 maltose, 6 yeast extruct, 2 polypeptone, $0.5{\;}K_3HPO_4,{\;}0.2{\;}KH_2PO_4,{\;}0.2{\;}MnSO_4{\cdot}5H_2O,{\;}0.2{\;}MgSO_4{\cdot}7H_2O$. Exo-biopolymer production and mycelial growth in the above suggested medium were significantly increased in a 2.5-1 jar fermentor, where the maximum biopolymer concentration was 8 g/l. The morphological changes of the mycelium in the submerged culture were observed within pH ranges from 4.0 to 9.0; i.e., growth of the filamentous form was optimal at culture pHs of 5.0 and 6.0, whereas pellet was formed at other pHs.

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Optimization of Submerged Culture Conditions for Exo-biopolymer Production by Paecilomyces japonica

  • Bae, Jun-Tae;Sinha, Jayanta;Yun, Jong-Won
    • 한국생물공학회:학술대회논문집
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    • 2000.04a
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    • pp.199-202
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    • 2000
  • Optimization of submerged culture conditions for the production of exo-biopolymer from Paecilomyces japonica was studied. Maltose, yeast extract and potassium phosphate were the most suitable sources of carbon, nitrogen, and inorganic salt, respectively, for both production of the exo-biopolymer and mycelial growth. The optimal culture conditions in flask culture were pH 5.0, $25^{\circ}C$ and 150 rpm in a meidum containing of 30 g maltose, 6 g yeast extract, 2 g polypeptone, 0.5 g $K_2HPO_4$, 0.2 g $KH_2PO_4$, 0.2 g $MnSo_4\;{\cdot}\;5H_2O$, 0.2 g $MgSO_4\;{\cdot}\;7H_2O$ in 1-L distilled water. Exo-biopolymer production and mycelial growth in the suggested medium were significantly increased in a 2.5-L jar fermentor, where the maximum biopolymer concentration was 8 g/1.

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The Effect of Agitation Speed on the Productoin of Mycelia and Exo-biopolymer by Cordyceps sinensis 16 in Submerged Culture

  • Cha, Seon-Hui;Jang, Hyo-Il;O, Gyeong-Geun;Go, Jong-Ho;Kim, Seung-Uk
    • 한국생물공학회:학술대회논문집
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    • 2001.11a
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    • pp.382-385
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    • 2001
  • The effect of agitation speed on the production of mycelial growth and exo-biopolymer in bioreaetor culture was investigated. The maximum production of mycelia and exo-biopolymer was obtained at 350 rpm, where the maximum concentrations of mycelial growth and exo-biopolymer were 62 g/L and 23 g/L, respectively. The effect of agitation speed on the hyphal length and the number of tips was examined. The hyphal length and the number of tips of Cordyceps sinensis 16 in bioreaetor culture at 350 rpm were increased up to 660 ${\mu}m$ and 14/ml, respectively.

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Optimization of submerged culture conditions for the mycelial growth and exo-biopolymer production by Cordyceps millitaris

  • Park, Jong-Pil;Sinha, Jayanta;Song, Chi-Hyeon;Yun, Jong-Won
    • 한국생물공학회:학술대회논문집
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    • 2000.11a
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    • pp.317-320
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    • 2000
  • The optimal temperature and pH for both mycelial growth and exe-biopolymer production by Cordyceps millitaris in shake flask culture were found to be $20^{\circ}C$ and 6.0, respectively. Sucrose (4%) and corn steep powder (1%) were the most suitable carbon and nitrogen source for mycelial growth and exo-biopolymer production. The maximum specific growth rate $(0.142h^{-1})$ was achieved when sucrose was used as the sole carbon source. Exo-biopolymer production was increased with the increase in C/N molar ratio concentration, probably due to the facilitated carbon uptake. Under the optimal culture conditions, the maximum mycelial growth exe-biopolymer concentration were reached to around 13.3 g dry cell weigh/l and 3.33 g/l, respectively.

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Anti-complementary Activities of Exo- and Endo-biopolymer Produced by Submerged Mycelial Culture of Eight Different Mushrooms

  • Yang, Byung-Keun;Gu, Young-Ah;Jeong, Yong-Tae;Song, Chi-Hyun
    • Mycobiology
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    • v.35 no.3
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    • pp.145-149
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    • 2007
  • The Elfvingia applanata (EA), Hericium erinaceum (HE), Grifola frondosa (GF), Pholiota nameko (PN), Pleurotus eryngii (PE), Trametes suaveolens (TS), Fomes fomentarius (FF), and Inonotus obliquus (IO) could produce the endo- (EN) and exo-biopolymer (EX) in submerged culture. The highest anti-complementary activity of the EN was exhibited by PN (49.1%), followed by HE (38.6%), TS (37.0%), and FF (33.0%), whereas the high activity of the EX was found with GF (59.8%), followed by HE (36.3%), TS (30.8%), and IO (28.8%). The EN of P. nameko (EN-PN) and EX of G. frondosa (EX-GF) were found to contain 78.6% and 41.2% carbohydrates, while 21.4% and 58.8% protein, respectively. The sugar and amino acid compositions of EN-PN and EX-GF were also analyzed in detail.

Enhancement of immunological activity in exo-biopolymer from submerged culture of Lentinus edodes with rice bran

  • Kim, Hwa-Young;Han, Jae-Taek;Hong, Seong-Gil;Yang, Sung-Bum;Hwang, Sung-Joo;Shin, Kwang-Soon;Suh, Hyung-Joo;Park, Mi-Hyoun
    • Natural Product Sciences
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    • v.11 no.3
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    • pp.183-187
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    • 2005
  • The objective of the present study was to determine the possible immune-enhancing effects of a substance extracted from a submerged culture of Lentinus edodes with rice bran (SLRB). According to the results obtained by measuring the in vitro macrophage activity of the exo-biopolymer from SLRB, it appears to exhibit activity similar to that of LPS, and this activity seems to occur in a dose-dependent manner. According to the results obtained by measuring splenocyte proliferation, the exo-biopolymer appears to induce an increase in proliferation of approximately 1.4-fold compared to the control group. We measured the proliferation of bone marrow cells in order to evaluate gut immunity and, according to our results, proliferation was increased to 109% that of the control group, and was similar to that associated with LPS. In order to characterize the enhancement of immunological activity in vivo, we orally administered the exo-biopolymer (25, 50, 250 mg/kg bw) to C3H/He mice, and then measured the macrophage activity, determining that the activity was higher than that of the controls at concentrations of 50 and 250 mg/kg. Therefore, the exo-biopolymer from SLRB can be considered to be a useful a BRM agent, as it clearly allows some protection against immunological diseases.

Development of continuous process for the production of Exo-biopolymer with Cordyceps militaris

  • Kim, Kyoung-Ju;Lee, Jung-Heon
    • 한국생물공학회:학술대회논문집
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    • 2003.10a
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    • pp.243-245
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    • 2003
  • The continuous fermentation process for exe-biopolymer production with Cordyceps militaris has been developed in this research. With the change of dilution rate, biopolymer production has been changed and the maximal biopolymer production has been achieved when the dilution rate was 0.0225/hr. The maximum mycelium concentration and biopolymer concentration were 8 g/L and 4.2 g/L, respectively.

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