• Title/Summary/Keyword: 유산간균

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Isolation and Identification of Probiotic Lactobacillus Isolates for Calf Meal Supplements (사료 첨가용 생균제를 위한 Probiotics 유산간균의 분리 및 동정)

  • Lee Seung-Bae;Choi Suk-Ho
    • Food Science of Animal Resources
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    • v.26 no.1
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    • pp.106-112
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    • 2006
  • Fifty four acid-resistant and bile-resistant isolates of lactic acid bacteria were initially isolated from the faces of Korea native cattle and Holstein using MRS agar and LAPT agar, and ten strains with superior activity against bile salt were finally selected LS1, LS15, and LL6 isolates showed survival of 66.5%, 82.6% and 80.7% against the simulated stomach liquid(pH 2.5), respectively. LL6 and LL7 isolates had the highest inhibitory activities against the pathogenic bacteria such as Salmonella typhimurium, Staphylococcus aureus, and Clostridium perfringens. By using API 50 CHL kit LS1, LS2 and LM1 isolates were identified as a L. fermentum. LL6 and LL7 isolates as a L. acidophilus, and LS3 isolate as a L. plantarum. The other four isolates belong to genus Lactobacillus. All the isolates tested were sensitive to some antibiotics such as ampicillin, amoxicillin and erythromycin, but resistant to colistin and ciprofloxacin. LB1, LL6 and LL7 isolates were resistant to gentamicin and neomycin. Especially, the LL6 isolate showed the highest resistance to both of the simulated stomach liquid and bile salt, in addition to the highest inhibitory activities against Sal. typhimurium, Staph. aureus and Cl. perfringens.

Biological and Functional Characteristics of Lactic Acid Bacteria in Different Kimchi (김치 종류에 따른 유산균의 생물학적 및 기능적 특성)

  • Ko, Kang Hee;Liu, Wenli;Lee, Hyun Hee;Yin, Jie;Kim, In Cheol
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.42 no.1
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    • pp.89-95
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    • 2013
  • Biological and functional characteristics of lactic acid bacteria (LAB) were investigated in mustard stem/leaf kimchi (MK), cabbage kimchi (CK), young radish kimchi (YRK), and cubed radish kimchi (CRK). LAB of young radish kimchi were mainly composed of bacilli in contrast to the other kimchi. 89.2% LAB isolated from all kimchi harbored plasmids. However, LAB had an average of $4.1{\pm}0.5$ plasmid bands in YRK, more than MK, CK, and CRK. Exopolysaccharides were produced by 10.9~11.1% of LAB, and were especially by LAB isolated from radish kimchi. A significant percentage of LAB (69.5%) had antibacterial activity against one sensitive strain or more. LAB from CK, YRK and CRK had antimicrobial activities against Bacillus sp., Listeria monocytogenes, and Salmonella Typhimurium, while the LAB from MK had activities against Vibrio parahaemolyticus higher than those from the other kimchi. In YRK and CRK, acid-tolerant LAB were twice as prevalent as those in MK and CK. Bile-tolerant LAB isolated from CRK were more prevalent than other kimchi. When $10^8$ CFU of LAB were added to Caco-2 cells, 12.1% of LAB isolated from all kimchi showed similar adherent activity to Lactobacillus rhamnosus GG. LAB of MK particularly adhered to Caco-2 cells, 2.0~4.1 fold higher than LAB in the other kimchi. From these results, biological and functional characteristics of LAB varied according to the type of kimchi and LAB existing in kimchi were limited to their respective species.

송아지 이유사료 첨가용 생균제를 위한 probiotics 유산균의 분리 및 동정에 관한 연구

  • Lee, Seung-Bae;Choe, Seok-Ho
    • Proceedings of the Korean Society for Food Science of Animal Resources Conference
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    • 2005.05a
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    • pp.331-337
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    • 2005
  • 한우와 홀스타인의 분변으로부터 MRS배지와 LAPT배지를 이용하여 무작위 선발법으로 54균주의 유산균을 1차로 분리 하였다. 1차로 분리된 54균주에 대해 내담즙성이 우수한 10균주를 분리 한 다음 내산성을 조사한 결과 인공위액 pH2.5에서 LS1, LS15 및 LL6 균주가 각각 66.5%, 82.6% 및 80.7%의 생존율을 나타내었다. Sal. typhimurium, Sta. aureus 및 Cl. perfringens 의 병원균에 대해 가장 큰 항균력을 보인 균주는 LL6와 LL7이었다. API CHL kit로 동정한 결과 LS1, LS2 및 LM1 균주는 모두 L. fermentum, LL6와 LL7 균주L. acidophilus, LS3 균주는 L. plantarum으로 각각동정 되고, 나머지 4균주는 Lactobacillus sp. 로 동정되어 분리된 10균주 모두 안전성 있는 유산 간균임을 확인하였다. 10종류의 항생제에 대한 내성을 조사한 결과 ampicillin, amoxicillin and erythromycin 에 대해서는 억제되었으나 colistin과 ciprofloxacin에 대해 모두 내성을 나타내었다. LB1, LL6 및 LL7 균주는 gentamicin과 neomycin에 대해 내성을 보여 주었다. 분리 동정된 균주 중에 내산성, 내담즙성 및 병원성균에 대한 항균력이 우수한 것으로 probiotic 유산균으로 사용가능성이 높은 것은 LL6인 L. acidophilus 로 나타났다.

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Studies on Lactobacillus Virulent Phage in Plantdrainage (공장배수계에 존재하는 유산간균 Virulent Phage에 관한 연구)

  • 강국희;백영진;강영찬;김기원
    • Microbiology and Biotechnology Letters
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    • v.5 no.1
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    • pp.13-17
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    • 1977
  • We isolated lactobacillus phage hosting L. casei strains, and examined distribution of the phages and resistance to the sanitary reagent treatment in drainages fo Korea plant. 1) There were Type 1, 11, 111, and 1v of the phage J$_1$in plantdrainages and the order of distribution was Type 1v>Type 11>Type 1>$^1$Type 111. 2) All the phages in plantdrainages were completely removed by spreading the invert soap. 3) Sodium hypochloride, invert soap and dresol were most effective sanitary reagents, and isopropyl alcohol and ethyl alcohol were sanitary reagents.

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THE DENTAL CARIES, CARIOGENIC MICROORGANISMS AND LEVELS OF SALIVARY IMMUNOGLOBULIN IN SUBJECTS WITH DOWN'S SYNDROME (다운증후군 환자의 치아우식증과 치아우식 원인균 및 타액내 면역항체의 연관성)

  • Kim, Seon-Mi;Yang, Kyu-Ho;Choi, Nam-Ki;Kang, Mi-Sun;Lim, Hoi-Soon;Oh, Jong-Suk
    • Journal of the korean academy of Pediatric Dentistry
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    • v.34 no.1
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    • pp.130-139
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    • 2007
  • This study investigated the relationship between dental caries and various oral factors in subjects with Down's syndrome. We compared 25 subjects with Down's syndrome with 63 healthy control. The dental caries index and plaque index were examined, and the total salivary immunoglobulin A and S. mutans specific salivary immunoglobulin A concentration were measured using ELISA. The S. mutans counts, Lactobacillus counts and buffer capacity were measured with Dentocult test medium. The decayed and filled surface index of deciduous teeth in subjects with Down's syndrome was lower than in controls(p<0.001). The plaque index and total salivary immunoglobulin A concentration showed no difference, S. mutans specific salivary immunoglobulin A concentration and buffer capacity in subjects with Down's syndrome were lower than in controls(p<0.001). There was no significant difference between two groups in the S. mutans counts and Lactobacillus counts. In 9-11 year age group, S. mutans counts in subjects with Down's syndrome was lower than in controls(p<0.001) and S. mutans specific salivary immunoglobulin A concentration was lower(p<0.05). There was a high correlation among deciduous dental caries index and buffering capacity and S. mutans counts.

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Drug Resistance and R Plasmids of Lactobacilli Isolated from Fermented Milk (유산균음료(乳酸菌飮料)로부터 분리(分離)한 유산간균(乳酸桿菌)의 R-Plasmids의 중개(仲介)에 의(依)한 대장균(大腸菌)에로의 항생제내성(抗生劑耐性) 전달(傳達))

  • Ha, Tai-You;Lee, Jeong-Ho
    • The Journal of the Korean Society for Microbiology
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    • v.15 no.1
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    • pp.55-62
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    • 1980
  • Eleven strains of lactobacilli were isolated from fermented milk of 9 companies. They were classified 3 strains as L. bulgaricus, 2 strains as L. plantarum, 2 strains as L. cellobiosus, 1 strain as L. lactis, 1 strain as L. acidophilus, 1 strain as L. casei subsp. casei and 1 strain as L. casei subsp. tolerans. And these strains were examined for drug resistance, transferability and transfer frequency of R plasmid. Most of isolates were sensitive to tetracycline(TC), penicillin(PC), and erythromycin(EM), but some strains were resistant to streptomycin(SM), chloramphenicol(CP), ampicillin(AP), kanamycin(KM), and nalidixic acid(NA). All of isolates were resistant to two or more drugs and 6 different drug resistant patterns were found. The most frequently encountered patterns were NA AP CP SM KM(5 strains) followed by NA AP CP KM(2 strains), NA AP CP SM(1 strain), NA AP CP(1 strain), NA CP(1 strain) and NA AP(1 strain). Tranfer experiment of drug resistance showed that of all 11 resistant strains, 9 strains transferred R plasmid determining AP(6 strains) or AP SM(3 strains) to a recipient, E. coli ML 1410 strain with $2.8{\times}10^{-5}-1.5{\times}10^{-1}%$ of transfer frequency. These results indicate that lactobacilli conjugally transfer their resistance to E. coli.

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Studies of the effect of dietary lactobacilli on the intestinal flora and body weight gains in suckling piglets (유산간균 Lactobacilli 경구투여에 의한 자돈의 장내균총형성 및 증체에 미치는 영향)

  • 윤성식
    • The Korean Journal of Food And Nutrition
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    • v.1 no.1
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    • pp.33-40
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    • 1988
  • A Study was conducted to investigate the effect of feeding Lactobacillus casei YS on the growing performance and gastrointestinal flora of the suckling piglets, which were delivered from 2 heads of three-way crossbred(Landrace$\times$Large White$\times$Duroc) pigs, for 4 weeks. The results from the present study was summarized as follows. Average body weight gains of feeding group was slightly better than that of control group and diarrhea was prevented by successive 7 days feeding. Population levels of lactic acid bacteria were maintained about 107 colony forming unit(cfu) per gram of the contents in both feeding and control group at upper parts of small intestine. In this part, coliform count was greatly reduced in (ceding group but not in control group. pH values of the intestinal contents were gradually decreased especially at the upper part of alimentary track of feeding group. Among lactic acid bacteria, L. salivarius, L. cases and L. fermentum were found most predominant strains in feeding group, Wheareas L. salivarius, L. acidophilus and L. cunts in control group. In the other hand, Escherichia coli recovered from scouring pigs were resistant to the drug such as streptomycin, ampicillin and sensitive to gentamycin and neomycin in vitro test.

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Development of Phage-resistant Mutants from Lactobacillus casei (Lactobacillus casei의 Bacteriophage내성돌연맥리균분리)

  • 강국희;이경화;박기문;유익제;김영창
    • Microbiology and Biotechnology Letters
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    • v.10 no.3
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    • pp.217-222
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    • 1982
  • A lactic starter organism, Lactobaciilus casei YIT 9018 was treated with N-methyl-N'-nitro-N-nitrosoguanidine (NTG) to obtain phage-resistant mutants. Freshly grown cells suspended in citrate buffer were exposed to NTG of 50 g/$m\ell$ for 40 min. Among 88 colonies isolated eight colonies showed distinct resistance to phages isolated previously from milk plants. The eight new colonies showed character similar to the original L. casei except that they responded differently to phage of different sources and thus were designated as eight different mutants of L casei. From the phage resisting toaether with the fermentative ability equivalent to the mother organism the mutants may be considered to be used as starter cultures for fermented milk.

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Traditional Dairy Products by Lactic Acid Bacteria in Mongolia (몽골에 있어서의 전통적 유산균 발효유제품)

  • Inhyu Bae;Sedkhun Burenjargal;Kang, Kook-Hee;Yang, Chul-Ju;Kong, Il-Keun
    • Food Science of Animal Resources
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    • v.22 no.2
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    • pp.183-191
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    • 2002
  • The Mongolian milk processing technology has a specific characteristic as a result of the living habits of Central Asian nomads. There are many kinds of milk products in Mongolia due to their processing activity used milk from various dairy animal species. Mongolia has over 30 kinds of dairy products and fermented milk products which are occupied more than 36% of the Mongolian dairy products. Herdsmen who engaged extensive livestock production have specific methods to conserve and prepare the starter culture of fermented milk products in nomadic condition. Specifically, Mongolian lactic starter cultures were prepared from keeping milk products and specific wild plants. Nowadays, over 5 kinds of wild plants such as Rheum undulatum L. Rheum ribes L, Rumex acetosa L. Artemisa sibersena L, Artemisa vulgare are used for lactic starter preparing. Traditional processing methods of the Mongolian fermented milk products are based on the scientific basis and there are easy to learn and operate.

Potentials of Synbiotics for Pediatric Nutrition and Baby Food Applications: A Review (소아 영양 및 유아식 응용을 위한 신바이오틱스의 잠재력: 총설)

  • Jung, Hoo Kil;Kim, Sun Jin;Seok, Min Jeong;Cha, Hyun Ah;Yoon, Seul Ki;Lee, Nah Hyun;Kang, Kyung Jin
    • Journal of Dairy Science and Biotechnology
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    • v.33 no.2
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    • pp.111-118
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    • 2015
  • Probiotic, prebiotic, and synbiotic substances as well as microorganisms were added to infant formula in an attempt to influence the intestinal microflora with an aim to stimulate the growth of lactic acid bacteria, especially bifidobacteria and lactobacilli. Over the last 10 years, new synbiotic infant formulas containing probiotics and prebiotics have been proposed in order to simulate the effect of breast-feeding on the intestinal microflora. Owing to their synergistic effect, the new synbiotics are expected to be more helpful than using probiotics and prebiotics individually. Maintenance of the viability of the probiotics during food processing and the passage through the gastrointestinal tract should be the most important consideration, since a sufficient number of bacteria ($10^8cfu/g$) should reach the intended location to have a positive effect on the host. Storage conditions and the processing technology used for the manufacture of products such as infant formula adversely affect the viability of the probiotics. When an appropriate and cost-effective microencapsulation methodology using the generally recognized as safe (GRAS) status and substances with high biological value are developed, the quality of infant formulas would improve. The effect of probiotics may be called a double-effect, where one is an immunomodulatory effect, induced by live probiotics that advantageously alter the gastrointestinal microflora, and the other comprises anti-inflammatory responses elicited by dead cells. At present, a new terminology is required to define the dead microorganisms or crude microbial fractions that positively affect health. The term "paraprobiotics" (or ghost probiotics) has been proposed to define dead microbial cells (not damaged or broken) or crude cell extracts (i.e., cell extracts with complex chemical composition) that are beneficial to humans and animals when a sufficient amount is orally or topically administered. The fecal microflora of bottle-fed infants is altered when the milk-based infant formula is supplemented with probiotics or prebiotics. Thus, by increasing the proportion of beneficial bacteria such as bifidobacteria and lactobacilli, prebiotics modify the fecal microbial composition and accordingly regulate the activity of the immune system. Therefore, considerable attention has been focused on the improvement of infant formula quality such that its beneficial effects are comparable to those of human milk, using prebiotics such as inulin and oligosaccharides and potential specific probiotics such as bifidobacteria, which selectively stimulate the proliferation of beneficial bacteria in the microflora and the indigenous intestinal metabolic activity of the microflora.

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