• Title/Summary/Keyword: L-lactic acid

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Antibacterial Effect of Eucalyptus Oil, Tea Tree Oil, Grapefruit Seed Extract, Potassium Sorbate, and Lactic Acid for the development of Feminine Cleansers

  • Yuk, Young Sam
    • International Journal of Internet, Broadcasting and Communication
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    • v.13 no.2
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    • pp.82-92
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    • 2021
  • Purpose: It has been reported that the diversity and abundance of microbes in the vagina decrease due to the use of antimicrobial agents, and the high recurrence rate of female vaginitis due to this suggests that a new treatment is needed. Methods: In the experiment, we detected that 10% potassium sorbate solution, 1% eucalyptus oil solution, 1% tea tree oil solution, 400 µL/10 mL grapefruit seed extract solution, 100% lactic acid, 10% acetic acid solution, and 10% lactic acid solution were prepared and used. After adjusting the pH to 4, 5, and 6 with lactic acid and acetic acid in the mixed culture medium, each bacterium was inoculated into the medium and incubated for 72 h at 35℃. Incubate and 0 h each. 24 h. 48 h. The number of bacteria was measured after 72 h. Results: In the mixed culture test between lactic acid bacteria and pathogenic microorganisms, lactic acid bacteria showed good results at pH 5-5.5. Potassium sorbate, which has varying antibacterial activity based on the pH, killed pathogenic bacteria and allowed lactic acid bacteria to survive at pH 5.5. Conclusion: The formulation ratio obtained through this study could be used for the development of a feminine cleanser that can be used as a substitute for antibacterial agents. Further, the findings of this study may be able to solve the problem of antimicrobial resistance in the future.

Breeding of L(+)-Lactic Acid Producing Strain by Low-Energy Ion Implantation

  • Ge, Chun-Mei;Gu, Shao-Bin;Zhou, Xiu-Hong;Yao, Jian-Ming;Pan, Ren-Rui;Yu, Zeng-Liang
    • Journal of Microbiology and Biotechnology
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    • v.14 no.2
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    • pp.363-366
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    • 2004
  • In order to obtain an industrial strain with higher L(+)-lactic acid yield, the wild type strain Rhizopus oryzae PW352 was mutated by means of Nitrogen ions implantation (l5 Kev, $7.8 \times 10^{14} - 2.08 \times 10^{15} ions/Cm^2$ and two mutants RE3303 and RF9052 were isolated. After 36 h shake-flask cultivation, the concentration of L(+)-lactic acid reached 131-136 g/l, the conversion rate of glucose was as high as 86%-90% and the productivity was 3.61 g/l.h. It was almost a 75% increase in lactic acid production compared with the wild type strain. Maximum fermentation temperature of RF9052 was increased to $45^{\circ}C$ from original $36^{\circ}C$. At the same time, the preferred range of fermentation temperature of RF9052 was broadened compared with PW352.

2-Thiobarbituric Acid, Color and Drip Loss Evaluations of Refrigerated Pork Loins Treated with Lactococcus lactis ATCC l1454 (Lactococcus lactis ATCC l1454로 처리한 냉장돼지 고기 등심의 2-Thiobarbituric Acid, Color 및 육즙유출의 평가)

  • 김광현;김창렬
    • The Korean Journal of Food And Nutrition
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    • v.14 no.1
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    • pp.59-64
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    • 2001
  • Treating pork loins with lactic acid cultures (Lactococcus lactis subsp. ATCC 11454 grown in 10% milk solids) during storage at 4$^{\circ}C$ were studied. 2-Thiobarbituric acid (TBA), color. and drip loss evaluations of refrigerated pork loins were assessed. Pork loins were immersed in solutions containing 0∼10% individual lactic acid cultures for 0∼5 min. Pork loins treated with 3.96 log units of lactic acid cultures after storage of 1 days as 4$^{\circ}C$ had no significant difference (P > 0.05) TBA values compared to those of controls. Pork loins treated with 3.96 log unitss of lactic acid cultures during storage of 9 days at 4$^{\circ}C$ had no significant difference (P > 0.05). Hunter color L* and b* values compared to those of controls. However, pork loins treated with 4.10 and 4.23 log unitss of lactic acid cultures after storage of 1 and days at 4$^{\circ}C$ had a significant difference (P < 0.05) Hunter color a* values compared to those of controls. Pork loins treated with 4.10 and 4.23 log unitss of lactic acid cultures after storage of 4 days at 4$^{\circ}C$ had a significant difference (P < 0.05) drip loss values compared to those of controls.

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Analysis of Constituents in Socheongryong-tangs Fermented by Lactic acid bacteria (유산균 발효에 의한 소청룡탕의 발효 전 후 성분 변화 연구)

  • Yang, Min-Cheol;Kim, Dong-Seon;Jeong, Sang-Won;Ma, Jin-Yeul
    • Korean Journal of Oriental Medicine
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    • v.17 no.3
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    • pp.115-121
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    • 2011
  • Objective : The purpose of this study was to investigate the changes in the contents of constituents in Socheongryong-tang (CY) and its fermentations (FCY) with 10 species of lactic acid bacteria. Methods : Ten strains of lactic acid bacteria, Lactobacillus casei 127, L. acidophilus 128, L. casei 129, L. plantarum 144, L. amylophilus 161, L. curvatus 166, L. delbruekil subsp. lactis 442, L. casei 693, B. breve 744, and B. thermophilum 748, were used for the fermentation of Socheongryong-tang. The increased and decreased constituents were identified using HPLC/DAD and various liquid chromatographic techniques, and the structure was elucidated using NMR and MS. These compounds were quantitatively analyzed using an HPLC/DAD system. Results : The increased constituents were identified to be liquiritigenin (1) and cinnamyl alcohol (2), and the decreased constituent was determined to be liquiritin (3). Liquiritigenin (1) and cinnamyl alcohol (2) were increased in all of the FCYs, while liquiritin (3) was decreased. The fermentation of the ten lactic acid bacteria demonstrated that the decomposable rate of these three compounds in FCYs were different. Socheongryong-tang fermented by L. plantarum 144 and L. amylophilus 161 showed the most remarkable changes. Conclusions : CY could be increased antibacterial, neuroprotective, or antiinflammatory effect by fermentation with lactic acid bacteria, especially with L. plantarum and L. amylophilus, considering their known biological activities. In addition, it is expected that this study will help to establish quality control parameters for FCY.

Recovery of Rare Metals from the Waste Secondary Lithium Ion Battery Cathode Active Materials Using Lactic Acid and Oxalic acid (젖산과 옥살산을 이용한 폐 이차 리튬이온 전지 양극 활물질로부터 희유금속들의 회수)

  • Kim, Younjung;Han, Ji Sun;Choi, Sik Young;Oh, In-Gyung;Hong, Yong Pyo;Ryoo, Keon Sang
    • Journal of the Korean Chemical Society
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    • v.63 no.6
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    • pp.446-452
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    • 2019
  • We have developed a method that can leach Co, Mn, and Ni in the cathode active material safely using lactic acid. When cathode active material was leached by lactic acid, lactic acid showed the highest efficiency at 2 N than 1 N and above 4 N concentration. When the cathode active material was added incrementally into the solution of lactic acid, the maximum solubility was 30 g/L at 2 N concentration. Oxalic acid was added in the solution of lactic acid and it showed that rare metals represent the most economical recovery efficiency at 4 g/L. Based on this study, it was found that the optimal condition for recovery of rare metals from cathode active material is oxalic acid : cathode active material = 7 : 1 as a ratio of weight. In addition, it was observed that the precipitate produced by oxalic acid is a polynuclear crystalline material bonded with 3 components of Co, Ni, and Mn.

Comparative Tests on the Acid Tolerance of Some Lactic-Acid-Bacteria Species Isolated from Lactic Fermented Products (젖산 발효제품에서 분리한 유산균의 내산성 비교)

  • Sim, Jae-Hun;Oh, Se-Jong;Kim, Sang-Kyo;Baek, Young-Jin
    • Korean Journal of Food Science and Technology
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    • v.27 no.1
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    • pp.101-104
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    • 1995
  • We isolated sixty lactic acid bacteria(LAB) from lactic fermented products. Among 60 isolates of LAB, 30 isolates were identified as Lactobacillus casei ssp.(5 strains), Lactobacillus acidophilus(2 strains), Lactobacillus delbrueckii ssp. bulgaricus(6 strains), Lactobacillus plantarum(4 strains), Streptococcus salivarius ssp. thermophilus(11 strains), and Streptococcus faecalis(2 strains). The acid tolerance and bile resistance of 30 LAB were determined. Because the acid tolerance was affected by the initial cell concentrations, the analysis of covariance could be used to remove the effect of initial cells on acid tolerance when testing for differences in acid tolerance among six species. Viability of LAB under acidic condition, pH 3 for 2 hours at $37^{\circ}C$, was significantly different among the species. L. casei and L. acidophilus strains showed great viability, but L. bulgaricus and S. thermophilus strains were very weak in acid tolerance.

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Effect of Kimchi ingredients on the growth of pathogenic and lactic acid bacteria (김치부재료의 유산균 증식 및 유해균 억제효과)

  • Kang, Sun-Yi;Han, Myung-Joo
    • Korean journal of food and cookery science
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    • v.21 no.6 s.90
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    • pp.838-843
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    • 2005
  • When ingredients of Kimchi were mixed and stored in $18^{\circ}C$, lactic acid bacteria, such as Leuconostoc mesenteroides and Lactobacillus plantarum, were selectively grown up. Herefore, to understand why lactic acid bacteria were selectively cultured in Kimchi, antibacterial activities of Kimchi ingredients against some pathogens and Kinlchi lactic acid bacteria were investigated. Kimchi mixed with all ingredients significantly inhibited the growth of all tested pathogens: S. typhimurium, S. sonnei, and E. coli. Kimchi without green onion, garlic or ginger inhibited the growth of S. typhimurium, but did not E. coli and S. sonnei. However, Kimchi without red pepper powder did not inhibit the growth of all tested pathogens. All ingredients of Kimchi did not inhibit the growth of L. plantarum and L. mesenteroides. These results suggest that Kimchi ingredients can synergistically inhibit the growth of pathogens and Kimchi may be a selective medium for lactic acid bacteria.

Identification and Fermentation Characteristics of Lactic Acid Bacteria Isolated from Hahyangju Nuruk (하향주 누룩으로부터 분리한 젖산균의 동정 및 발효 특성)

  • Park, Chi-Duck;Jung, Hee-Kyoung;Park, Hwan-Hee;Hong, Joo-Heon
    • Food Science and Preservation
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    • v.14 no.2
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    • pp.188-193
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    • 2007
  • The purpose of this study was to isolate lactic acid bacteria, useful in the fermentation industry from Hahyangju Nuruk. Five strains were isolated, and identified as Lactobacillus based on growth inhibition by 10% (v/v) alcohol at pH 4.0. Isolated strains were identified to species, and named Lactobacillus plantarum L-3, L. sakei L-10, and L. curvatus strains L-8, L-11, and L-12. Morphological characteristics, physiological data, carbohydrate fermentation patterns, and 16S rRNA sequence data, were all used to characterize the bacterial isolates. L. plantarum L-3 showed the highest lactic acid productivity of all isolates, but grew only poony in the presence of 10% (v/v) alcohol at pH 4.0. The other strains exhibited lower lactic acid productivity than did L. plantarum L-3 and did not grow in the presence of 10% (v/v) alcohol at pH 4.0. The optimal temperature and pH for lactic acid production were $30^{\circ}C$ and pH 6.0 7.0, respectively. The lactic acid productivity of L. plantarum L-3, L. sakei L-10 and the three L. curvatus strains L-8, L-11, and L-12 were (% v/v of culture supematant) 1.55, 1.0, 1.06, 1.0, and 0.99, respectively, at $30^{\circ}C$ and pH 6.0. While L. plantarum L-3 suffered growth inhibition in the presence of 10% (v/v) alcohol, growth of the other strains was inhibited at 8% (v/v) alcohol.

Isolation and Identification of Lactic acid Producing Bacteria from Kimchi and Their Fermentation Properties of Soymilk (젖산 생성능이 우수한 김치 유래 젖산균의 분리 및 두유 발효 특성)

  • Lee, Lan-Sook;Jung, Kyung Hee;Choi, Ung-Kyu;Cho, Chang-Won;Kim, Kyung-Im;Kim, Young-Chan
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.42 no.11
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    • pp.1872-1877
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    • 2013
  • Lactic acid bacteria were selected on the basis of lactic acid producing ability from kimchi, a traditional Korean fermented food. Among the initial screening of over 150 strains selected from the sample, 27 strains were selected as lactic acid producing bacteria, and 4 strains were finally selected based on their ability to produce relatively high levels of lactic acid. The four strains were identified as Lactobacillus (L.) plantarum Gk04, Pediococcus pentosaceus Gk07, L. brevis Gk35 and L. curvatus Gk36 by the conventional morphological, cultural, physiological and biochemical characteristics, as well as by 16S rRNA sequence analysis. Among the identified lactic acid bacteria, L. curvatus Gk36 was used for soymilk fermentation. The viable cell counts and acidity values measured for the L. curvatus Gk36 were comparable to the commmercial L. acidopillus. Thus, the L. curvatus Gk36 is a potential probiotic strain to prepare fermented soy products, such as kephir, yogurt, tempeh and soy sauce.

Flavonoid production and antioxidant activity effect by lactic acid bacteria fermentation of deer antler extract (녹용추출물의 유산균 발효에 의한 플라보노이드 생성과 항산화활성 효과)

  • Kim, Hyun-Kyoung
    • The Journal of the Convergence on Culture Technology
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    • v.8 no.2
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    • pp.399-408
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    • 2022
  • As part of research on the development of functional materials for antlers, lactic acid fermentation of antler extract was performed. It was intended to develop a functional material with enhanced total polyphenol and flavonoid content and enhanced antioxidant activity. During the fermentation of lactic acid bacteria, the number of proliferation, total polyphenol and total flavonoid content, DPPH radical scavenging and antioxidant activity were quantified and evaluated. As a result of adding these four types of lactic acid bacteria to the antler water extract substrate, the number of lactic acid bacteria measured was 2.04~5.00×107. Meanwhile, a protease (Baciullus amyloliquefaciens culture: Maxazyme NNP DS) was added to the antler extract to decompose the peptide bonds of the contained proteins. Then, these four types of lactic acid bacteria were added and the number of lactic acid bacteria increased to 2.84×107~2.21×108 as the result of culture. The total polyphenol contents were 4.82~6.26g/mL in the lactic acid bacteria fermentation extracts, and after the reaction of protease enzyme and lactic fermentation, increased to 14.27~20.58 g/mL. The total flavonoid contents were 1.52~2.21 g/ml in the lactic acid bacteria fermentation extracts, and after the protease reaction and fermentation, increased to 5.59~8.11 mg/mL. DPPH radical scavenging activities of lactic acid bacteria fermentation extracts was 17.03~22.75%, but after the protease reaction and fermentation, remarkably increased to 32.82~42.90%.