• Title/Summary/Keyword: Fermented oyster extract

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Randomized, Double-blind, and Placebo-controlled a Human Study for Growing of Stature via the Analysis of Effect of Ferment Oyster Extract: Study Protocol (발효굴추출물의 경구 섭취가 소아 신장 성장에 미치는 효과 및 안전성 평가를 위한 무작위배정, 이중눈가림, 위약 대조 인체적용시험: 인체적용시험 프로토콜)

  • Kim, Hee-Yeon;Park, Beom-Chan;Cheon, Jin-Hong;Choi, Jun-Yong;An, Byeong-Min;Park, Joung-Hyun;Lee, Bae-Jin;Kim, Kibong
    • The Journal of Pediatrics of Korean Medicine
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    • v.33 no.4
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    • pp.37-46
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    • 2019
  • Objectives The purpose of this study is to confirm the efficacy and safety of the treatment of with fermented oyster extract on height growth in children with short stature. Methods A total of 100 people, between 6 and 11 years old, will be participated in a randomized, double-blind, and placebo-controlled human study. The fermented oyster group will take 500 mg of fermented oyster extract once a day for 24 weeks. The placebo group will take 3400 mg of fructooligosaccharide as placebo once a day for 24 weeks. The outcomes of the intervention will be measured at the baseline, 6 week, 12 week, 18 week, and 24 week. The primary outcome is the changes in height from the baseline. The secondary outcomes are growth rate, height SDS, bone age, GH, IGF-1, IGFBP-3, osteocalcin, BALP, DPD, and LH. Results This trial was approved by the institutional review board of Pusan National University Korean Medicine Hospital (registry number: PNUKHIRB-2019002). Recruitment of the research participants will be opened from May 2019 till December 2019. Conclusions This study will provide clinical information to determine the efficacy and safety of the treatment with fermented oyster extract on height growth in children with short stature.

Effect of fermented sarco oyster extract on age induced sarcopenia muscle repair by modulating regulatory T cells

  • Kyung-A Byun;Seyeon Oh;Sosorburam Batsukh;Kyoung-Min Rheu;Bae-Jin Lee;Kuk Hui Son;Kyunghee Byun
    • Fisheries and Aquatic Sciences
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    • v.26 no.6
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    • pp.406-422
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    • 2023
  • Sarcopenia is an age-related, progressive skeletal muscle disorder involving the loss of muscle mass and strength. Previous studies have shown that γ-aminobutyric acid (GABA) from fermented oysters aids in regulatory T cells (Tregs) cell expansion and function by enhancing autophagy, and concomitantly mediate muscle regeneration by modulating muscle inflammation and satellite cell function. The fermentation process of oysters not only increases the GABA content but also enhances the content of branched amino acids and free amino acids that aid the level of protein absorption and muscle strength, mass, and repair. In this study, the effect of GABA-enriched fermented sarco oyster extract (FSO) on reduced muscle mass and functions via Treg modulation and enhanced autophagy in aged mice was investigated. Results showed that FSO enhanced the expression of autophagy markers (autophagy-related gene 5 [ATG5] and GABA receptor-associated protein [GABARAP]), forkhead box protein 3 (FoxP3) expression, and levels of anti-inflammatory cytokines (interleukin [IL]-10 and transforming growth factor [TGF]-β) secreted by Tregs while reducing pro-inflammatory cytokine levels (IL-17A and interferon [IFN]-γ). Furthermore, FSO increased the expression of IL-33 and its receptor IL-1 receptor-like 1 (ST2); well-known signaling pathways that increase amphiregulin (Areg) secretion and expression of myogenesis markers (myogenic factor 5, myoblast determination protein 1, and myogenin). Muscle mass and function were also enhanced via FSO. Overall, the current study suggests that FSO increased autophagy, which enhanced Treg accumulation and function, decreased muscle inflammation, and increased satellite cell function for muscle regeneration and therefore could decrease the loss of muscle mass and function with aging.

Effects of Fermented Oyster Extract Supplementation on Body Composition, Muscular Strengths and Blood Muscle Growth Fact ors in Elderly Women (발효굴 섭취가 중년 여성의 신체조성, 근력 및 혈중 근성장 인자에 미치는 영향)

  • Park, Joung-Hyun;Kim, Dong-Seok;Lee, Bae-Jin;Her, Jung-Soo;Jeon, Byeong Hwan
    • Journal of Marine Bioscience and Biotechnology
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    • v.13 no.2
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    • pp.76-85
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    • 2021
  • Crassostrea gigas were fermented using L. brevis BJ20 to prepare fermented oyster extract (FO). The participants of this study were randomly assigned to FO and placebo (CON) groups. The FO group was given 1.0 g of FO supplementation and the CON group was given sucrose each day for eight weeks. The effects of FO supplementation on body composition, muscula r strength, and blood factors associated with muscle growth were assessed. The FO supplement was enriched with arginine (6,183.3 mg), phenylalanine (217.9 mg), leucine (122.6 mg), isoleucine (59.8 mg), valine (16.4 mg), and γ-amino butyric acid (GABA, 1,053.7 mg). The total fat was significantly decreased in the FO group compared with the CON group (p < 0.05). 60D/S Ext.T/Wo rk and 60D/S Flex.T/Work concomitantly with 60D/S Flex.PeakTQ/BW were significantly increase d by FO treatment compared to CON group (p < 0.05). However, posture stability was not significa ntly different between the groups. The levels of angiotensin-converting enzyme were significantly decreased within the FO group (p < 0.05). The FO group showed significantly decreased levels of tumor necrosis factor-α and increased levels of human growth hormone compared with the CON group (p < 0.01). The levels of insulin-like growth factor-1 increased (p < 0.01) in the FO group while that of creatine kinase and triglyceride decreased significantly compared with the CON group (p < 0.05). These results demonstrated that FO supplementation is effective in preventing sarcopenic obesity and maintaining and strengthening muscular function in elderly wom en. Hence, FO supplements can be used as functional ingredients for these benefits.

Safety effect of fermented oyster extract on the endocrine disruptor assay in vitro and in vivo

  • Lee, Hyesook;Hwangbo, Hyun;Ji, Seon Yeong;Oh, Seyeon;Byun, Kyung-A;Park, Joung-Hyun;Lee, Bae-Jin;Kim, Gi-Young;Choi, Yung Hyun
    • Fisheries and Aquatic Sciences
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    • v.24 no.10
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    • pp.330-339
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    • 2021
  • Oyster (Crassostrea gigas) is a marine bivalve mollusk widely distributed in coastal areas, and have been long widely used in industrial resources. Several studies demonstrated that fermented oyster (FO) extract attribute to bone health, but whether administration of FO play as an endocrine disruptor has not been studied. Therefore, in the present study, we investigated the effect of FO on the endocrine system in vitro and in vivo. As the results of the competitive estrogen receptor (ER) and androgen receptor (AR) binding affinities, FO was not combined with ER-α, ER-β, and AR. However, 17β-estradiol and testosterone, used as positive control, were interacted with ER and AR, respectively. Meanwhile, oral administration of 100 mg/kg and 200 mg/kg of FO doesn't have any harmful effect on the body weight, androgen-dependent sex accessory organs, estrogen-dependent-sex accessory organs, kidney, and liver in immature rats. In addition, FO supplementation has no effect on the serum levels of luteinizing hormone (LH), follicle stimulating hormone (FSH), testosterone, and 17β-estradiol. However, the relative weight of androgen- and estrogen-dependent organs were significantly increased by subcutaneously injection of 4.0 mg/kg of testosterone propionate (TP) and by orally administration of 1.0 ㎍ of 17α-ethynyl estradiol (EE) in immature male and female rats, respectively. Furthermore, TP and EE administration markedly decreased the serum LH and FSH levels, which are similar those of mature Sprague-Dawley (SD) rat. Furthermore, the testosterone and 17β-estradiol levels were significantly enhanced in TP and EE-treated immature rats. Taken together, our findings showed that FO does not interact with ER and AR, suggesting consequentially FO does not play as a ligand for ER and AR. Furthermore, oral administration of FO did not act as an endocrine disruptor including androgenic activity, estrogenic activity, and abnormal levels of sex hormone, indicating FO may ensure the safety on endocrine system to develop dietary supplement for bone health.

Suppressive Effects of Homemade Environment-friendly Materials on Alternaria Blight and Anthracnose of Ginseng (친환경자재를 이용한 인삼 점무늬병과 탄저병의 발병억제효과)

  • Lim, Jin-Soo;Mo, Hwang-Sung;Lee, Eung-Ho;Park, Kee-Choon;Chung, Chan-Moon
    • Korean Journal of Organic Agriculture
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    • v.22 no.4
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    • pp.705-718
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    • 2014
  • This study was performed to evaluate the suppressive effects of organic fungicides made using environment-friendly materials on leaf spot disease and anthracnose that infect ginseng. Anthracnose (Colletotrichum gloeosporioides) and leaf spot disease (Alternaria panax) are principal diseases that decrease the yield of ginseng by defoliation before root enlargement. Fermented eggs and oyster shells, water extract of green tea and ethanol extract of red ginseng dregs were significantly effective in suppressing leaf spot disease. Fermented crab and shrimp shells and fermented motherwort were also effective in suppressing the recurrence of ginseng anthracnose. The preventive effects of these environment-friendly materials were definitely superior to the therapeutic effects. Therefore, these materials could be used as alternatives to chemical pesticides, which can not be applied in organic ginseng cultivation field. These organic fungicides need to be applied before the incidence of ginseng anthracnose in order to maximize their suppressive effects.

THE TASTE COMPOUNDS FERMENTED ACETES CHINENSIS (새우젓의 정미성분에 관한 연구)

  • CHUNG Seung-Yong;LEE Eung-Ho
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.9 no.2
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    • pp.79-110
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    • 1976
  • In Korea fermented fish and shellfish have traditionally been favored and consumed as seasonings or further processed for fish sauce. Three major items in production quantity among more than thirty kinds which are presently available in the market are fermented anchovy, oyster and small shrimp. They are usually used as a seasoning mixture of Kimchi in order to provide a distinctive flavor. Fermented small shrimp, Acetes chinensis is most widely and largely used ana occupies an important position in food industry of this country. But no study on its taste compounds has been reported. This study was attempted to establish the basic data for evaluating taste compounds of fermented small shrimp. The changes of such compounds during fermentation as free amino acids, nucleotides and their related compounds, TMAO, TMA, and betaine were analysed. In addition, change in microflora during the fermentation under the halophilic circumstance was also investigated. The samples were prepared with three different salt contents of 20, 30 and $40\%$ to obtain the proper degree of fermentation at a controlled tempeature of $20{\pm}2^{\circ}C$. The results are summarized as follows: Volatile basic nitrogen increased rapidly until 108 days of fermentation and afterwards it tended to increase slowly. Amino nitrogen also increased rapidly until 43 days of fermentation and then increased slowly. Extract nitrogen increased and marked the maximum value at 72 day fermentation and then decreased slowly. ADP, AMP and IMP tended to degrade rapidly while hypoxanthine increased remarkably at 27 day fermentation but slightly decreased at 72 day fermentation. It is presumed that the characteristic flavor of fermented small shrimp might be attributed to the relatively higher content of hypoxanthine. In the free amino acid composition of fresh small shrimp abundant amino acids were proline, arginine, alanine, glycine, lysine, glutamic acid, leucine, valine and threonine in order. Such amino acids like serine, methionine, isoleucine, phenylalanine, aspartic acid, tyrosine and histidine were poor. In small shrimp extract, proline, arginine, alanine, glycine, lysine and glutamic acid were dominant holding $18.5\%,\;14.6\%,\;10.8\%,\;8.7\%,\;8.1\%\;and\;7.7\%$ of total free amino acids respectively. The total free amino acid nitrogen in fresh small shrimp was $63.9\%$ of its extract nitrogen. The change of free amino acid composition in the extract of small shrimp during fermentation was not observed. Lysine, alanine glutamic acid, proline, glycine and leucine were abundant in both fresh sample and fermented products. The increase of total free amino acids during 72 day fermentation reached approximately more than 2 times as compared with that of fresh sample and then decreased slowly. Fermented small shrimp with $40\%$ of salt was too salty to be commercial quality as the results of organoleptic test showed. It is found that 72 day fermentation with $20\%\;and\;30\%$ of salt gave the most favorable flavor. It is convinced that the characteristic flavor of fermented small shrimp was also attributed to such amino acids as lysine, proline, alanine, glycine and serine known as sweet compounds, as glutamic acid with meaty taste, and as leucine known as bitter taste. The amount of betaine increased during fermentation and reached the maximum at 72 day fermentation and then decreased slowly TMA increased while TMAO decreased during fermentation. The amount of TMAO nitrogen in fermented small shrimp was $200mg\%$ on moisture and salt free base. Betaine and TMAO known as sweet compounds were abundant in fermented small shrimp. It is supposed that these compounds could also play a role as important taste compounds of fermented small shrimp. At the initial stage of fermentation, Achromobacter, Pseudomonas, Micrococcus denitrificans which belong to marine bacteria were isolated. After 40 day fermentation, they disappeared rapidly while Halabacterium, Pediococcus, Sarcian, Micrococcus morrhuae and the yeasts such as Saccharomyces sp. and Torulopsis sp. dominated. It is concluded that the most important taste compounds of fermented small shrimp were amino acids such as lysine, proline, alanine, glycine, serine, glutamic acid, and leucine, betaine, TMAO and hypoxanthine.

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Antioxidant Activities of Protaetia brevitarsis Larvae Fermented by Lactobacillus acidophilus (유산균 발효가 흰점박이꽃무지(Protaetia brevitarsis) 유충의 항산화활성에 미치는 영향)

  • Min Jeong, Park;Soo Jeong, Cho
    • Journal of Life Science
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    • v.32 no.11
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    • pp.890-898
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    • 2022
  • This study was carried out to evaluate the effect of fermentation by Lactobacillus acidophilus on the antioxidant activity of Protaetia brevitarsis larvae fed with mushroom substrates (king oyster mushroom). The total polyphenol content of the P. brevitarsis larvae extracts (PLEs) (93.33±0.98 mg GAEs/extract g) was higher than that of the fermented P. brevitarsis larvae extracts (FPLEs) (65.02±1.32 mg GAEs/extract g). The flavonoid contents of the PLEs and FPLEs were 18.3±1.57 QEs mg/extract g and 17.69±0.95 QEs mg/extract g, respectively. The DPPH radical scavenging activity showed no significant difference between the PLEs and FPLEs at a concentration of 2-4 mg/ml. However, at a concentration of 8 mg/ml or more, the DPPH radical scavenging activity of the FPLEs was higher than that of the PLEs. The reducing power of the FPLEs was also higher than that of the PLEs, and more than twice as high at a concentration of 1.6 mg/ml or more. The ORAC value of the FPLEs (79.22±0.72 μM TEs/extract g) was higher than that of the PLEs (74.34±0.37 μMTEs/extract g). A WST-1 assay of the RAW 264.7 cells indicated that the PLEs and FPLEs showed no cytotoxicity.

Effects of Salted-Fermented Fish Products and Their Alternatives on Angiotensin Converting Enzyme Inhibitory Activity of Kimchi During Fermentation (젓갈 및 젓갈 대용 부재료가 김치의 숙성 중 Angiotensin 전환효소 저해작용에 미치는 영향)

  • Park, Douck-Choun;Park, Jae-Hong;Gu, Yeun-Suk;Han, Jin-Hee;Byun, Dae-Seok;Kim, Eun-Mi;Kim, Young-Myung;Kim, Seon-Bong
    • Korean Journal of Food Science and Technology
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    • v.32 no.4
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    • pp.920-927
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    • 2000
  • Angiotensin converting enzyme(ACE) inhibitory activity of Kimchi added with salted-fermented fish products(SFFP), such as salted-fermented anchovy(SFA), salted-fermented anchovy sauce(SFAS), low salt-fermented anchovy sauce(LSFAS), salted-fermented small shrimp(SFS), low salt-fermented sandlance sauce(LSFSS) and their alternatives, such as oyster hydrolysate(OH), Alaska pollack hydrolysate(APH) and sea-staghorn extract(SSE) were studied during fermentation at $20^{\circ}C,\;10^{\circ}C\;and\;4^{\circ}C$. ACE inhibitory activities of Kimchi samples added with SFFP were increased until some fermentation period and then kept similarly constant levels at every fermentation temperature. Similar tendencies were occurred in amino nitrogen (AN) content. ACE inhibitory activities of Kimchi samples added with SFFP alternatives rapidly increased in 1st or 2nd day fermentation and then very slowly increased but AN contents showed roughly constant levels $(400{\sim}600\;mg/100\;g)$ in every fermentation temperature. Kimchi added with LSFAS had higher ACE inhibitory activity (>80%) with elevated level of AN (>600 mg/100 g) among the tested Kimchi samples. Kimchi samples added with SFFP alternatives also showed comparable activity to Kimchi added with SFFP This study shows that Kimchi added with SFFP and their alternatives is a good source as a functional food.

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Effects of Salted-Fermented Fish Products and Their Alternatives on Nitrite Scavenging Activity of Kimchi During Fermentation (젓갈 및 젓갈 대용 부재료가 김치의 숙성 중 아질산염 분해작용에 미치는 영향)

  • Park, Douck-Choun;Park, Jae-Hong;Gu, Yeun-Suk;Han, Jin-Hee;Byun, Dae-Seok;Kim, Eun-Mi;Kim, Young-Myung;Kim, Seon-Bong
    • Korean Journal of Food Science and Technology
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    • v.32 no.4
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    • pp.942-948
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    • 2000
  • Nitrite scavenging activity of Kimchi added with salted-fermented fish products(SFFP), such as low salt-fermented anchovy sauce(LSFAS), salted-fermented anchovy sauce(SFAS), salted-fermented anchovy(SFA), salted-fermented small shrimp(SFS), low salt-fermented sandlance sauce(LSFSS) and their alternatives, such as oyster hydrolysate(OH), Alaska pollack hydrolysate(APH) and Sea-staghorn extract(SSE) were studied during fermentation at $20^{\circ}C,\;10^{\circ}C\;and\;4^{\circ}C$. Nitrite contents of Kimchi samples added with SFFP were roughly decreased except Kimchi added with SFS and SFAS, which increased at the 2nd day of fermentation. Fermentation of Kimchi at $4^{\circ}C\;and\;10^{\circ}C$ resulted a decrease in nitrite(<5 ppm). Nitrite contents of Kimchi samples added with SFFP alternatives rapidly decreased in the initial fermentation and then kept a low level (<2 ppm). Nitrite scavenging effects of Kimchi samples added with SFFP and their alternatives were steady during fermentation, showing a little variation in samples added with SFFP. Samples added with LSFAS and OH showed higher nitrite scavenging effects(90%) than others$(70{\sim}80%)$.

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Effect of Water Extracts of Shellfish Shell on Fermentation and Calcium Content of Kimchi (김치의 숙성과 칼슘함량에 미치는 조개류 껍질 물추출물 첨가효과)

  • 김미정;김미향;김순동
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.32 no.2
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    • pp.161-166
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    • 2003
  • This study attempted to fortify Kimchi with water extracts of shells of shellfishes (corb shell, short neck clam, taste clam, ark shell, top shell, oyster) as natural resource of calcium. Kimchi added with the shell extracts in 5% were fermented at 1$0^{\circ}C$ with measurements in chemical, microbiological and sensory qualities. Calcium content of shellfish shells before water extraction was in the range of 25.57~38.78%. Kimchi added with the extracts showed higher pH, lower acidity, lower total aerobic bacterial count and higher lactic acid bacteria count compared to control Kimchi without any addition. After 7 day fermentation the Kimchi added with the extracts also showed higher ash and calcium contents compared to control products (3.3~5.0 vs. 2.8~3.0% and 300~376 vs. 70~95 mg%). Kimchi with oyster shell extract gave the most pronounced effect in ash and calcium contents. The addition of extract made Kimchi crisper and less sourer oganoleptically. In the overall acceptability, the Kimchi fortified with the shell extracts were better than control after 14 day fermentation.