• 제목/요약/키워드: steroidal saponin

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Schima wallichii subsp. liukiuensis의 Candida종에 대한 항균효과 및 항균물질의 분리정제 (Purification of Antimicrobial Compounds and Antimicrobial Effects of Schima wallichii subsp. liukiuensis against Candida sp.)

  • 최명석;신금;양재경;안진권;권오웅;이위영
    • KSBB Journal
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    • 제16권3호
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    • pp.269-273
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    • 2001
  • 218종의 목본식물 자원으포부터 높은 항율력올 보인 Schima wallichii subsp. liukiuellsis로부터 항균활성물질을 추출, 정제하였다. Schim$\alpha$의 향균물질 추출에 가장 적합한 용매는 70% 에탄올이었으며, 계젤에 따른 항균활성은 차이를 보이지 않았고, 부위별로는 가을에 채취한 수피가 가장 좋았다. 조추출물을 유가용매로 정제하여 최종적으혹 buthanol 분획올 얻었고, 이를 silica gel과 sephadex LH-20 및 HPLC분석을 통 하여 흰색결정의 항균물질 Compound I을 얻었다. 항균물질은 UV, IR, MS분석 결과 aglycone으로 ${\alpha}$-sitosterol에 rhamnose, galactose, glucose가 1:1:1로 결합된 물질로 추정되었다. Compound I의 미생물에 대한 MIC는 3종의 bacteria에 L 1.25 g/L, 2종의 fungi에 5.0 g/L로 나타났으며, 효모에 대한 MIC는 0.04 g/L로 매우 높게 나타났다. Compound I은 천연 보존제, 의약품 등으로의 향후 개발이 기대된다.

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Some Prophylactic Options to Mitigate Methane Emi ssion from Animal Agriculture in Japan

  • Takahashi, Junichi
    • Asian-Australasian Journal of Animal Sciences
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    • 제24권2호
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    • pp.285-294
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    • 2011
  • The abatement of methane emission from ruminants is an important global issue due to its contribution to greenhouse gas with carbon dioxide. Methane is generated in the rumen by methanogens (archaea) that utilize metabolic hydrogen ($H_2$) to reduce carbon dioxide, and is a significant electron sink in the rumen ecosystem. Therefore, the competition for hydrogen used for methanogenesis with alternative reductions of rumen microbes should be an effective option to reduce rumen methanogenesis. Some methanogens parasitically survive on the surface of ciliate protozoa, so that defaunation or decrease in protozoa number might contribute to abate methanogenesis. The most important issue for mitigation of rumen methanogenesis with manipulators is to secure safety for animals and their products and the environment. In this respect, prophylactic effects of probiotics, prebiotics and miscellaneous compounds to mitigate rumen methanogenesis have been developed instead of antibiotics, ionophores such as monensin, and lasalocid in Japan. Nitrate suppresses rumen methanogenesis by its reducing reaction in the rumen. However, excess intake of nitrate causes intoxication due to nitrite accumulation, which induces methemoglobinemia. The nitrite accumulation is attributed to a relatively higher rate of nitrate reduction to nitrite than nitrite to ammonia via nitroxyl and hydroxylamine. The in vitro and in vivo trials have been conducted to clarify the prophylactic effects of L-cysteine, some strains of lactic acid bacteria and yeast and/or ${\beta}$1-4 galactooligosaccharide on nitrate-nitrite intoxication and methanogenesis. The administration of nitrate with ${\beta}$1-4 galacto-oligosaccharide, Candida kefyr, and Lactococcus lactis subsp. lactis were suggested to possibly control rumen methanogenesis and prevent nitrite formation in the rumen. For prebiotics, nisin which is a bacteriocin produced by Lactococcus lactis subsp. lactis has been demonstrated to abate rumen methanogenesis in the same manner as monensin. A protein resistant anti-microbe (PRA) has been isolated from Lactobacillus plantarum as a manipulator to mitigate rumen methanogenesis. Recently, hydrogen peroxide was identified as a part of the manipulating effect of PRA on rumen methanogenesis. The suppressing effects of secondary metabolites from plants such as saponin and tannin on rumen methanogenesis have been examined. Especially, yucca schidigera extract, sarsaponin (steroidal glycosides), can suppress rumen methanogenesis thereby improving protein utilization efficiency. The cashew nutshell liquid (CNSL), or cashew shell oil, which is a natural resin found in the honeycomb structure of the cashew nutshell has been found to mitigate rumen methanogenesis. In an attempt to seek manipulators in the section on methane belching from ruminants, the arrangement of an inventory of mitigation technologies available for the Clean Development Mechanism (CDM) and Joint Implementation (JI) in the Kyoto mechanism has been advancing to target ruminant livestock in Asian and Pacific regions.

Protodioscin protects porcine oocytes against H2O2-induced oxidative stress during in vitro maturation

  • So-Hee Kim;Seung-Eun Lee;Jae-Wook Yoon;Hyo-Jin Park;Seung-Hwan Oh;Do-Geon Lee;Da-Bin Pyeon;Eun-Young Kim;Se-Pill Park
    • Animal Bioscience
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    • 제36권5호
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    • pp.710-719
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    • 2023
  • Objective: The present study investigated whether protodioscin (PD), a steroidal saponin mainly found in rhizome of Dioscorea species, alleviates oxidative stress-induced damage of porcine oocytes during in vitro maturation. Methods: Oocytes were treated with different concentrations of PD (0, 1, 10, 100, and 200 µM) in the presence of 200 µM H2O2 during in vitro maturation. Following maturation, spindle morphology and mitogen-activated protein kinase activity was assessed along with reactive oxygen species level, GSH activity, and mRNA expression of endogenous antioxidant genes at the MII stage. On the day 7 after parthenogenetic activation, blastocyst formation rate was calculated and the quality of embryo and mRNA expression of development-related genes was evaluated. Results: Developmental competence was significantly poorer in the 0 µM PD-treated (control) group than in the non-treated (normal) and 10 µM PD-treated (10PD) groups. Although the reactive oxygen species level did not significantly differ between these three groups, the glutathione level and mRNA expression of antioxidant genes (superoxide dismutase 1 [SOD1], SOD2, nuclear factor erythroid 2-related factor 2 [Nrf2], and hemo oxygenase-1 [HO-1]) were significantly higher in the normal and 10PD groups than in the control group. In addition, the percentage of oocytes with defective spindle and abnormal chromosomal alignment was significantly lower and the ratio of phosphorylated p44/42 to total p44/42 was significantly higher in the normal and 10PD groups than in the control group. The total cell number per blastocyst was significantly higher in the 10PD group than in the control group. The percentage of apoptotic cells in blastocysts was highest in the control group; however, the difference was not significant. mRNA expression of development-related genes (POU domain, class 5, transcription factor 1 [POU5F1], caudal type homeobox 2 [CDX2], Nanog homeobox [NANOG]) was consistently increased by addition of PD. Conclusion: The PD effectively improves the developmental competence and quality of blastocysts by protecting porcine oocytes against oxidative stress.

Estrogen Replacement Effect of Korean Ginseng Saponin on Learning and Memory of Ovariectomized Mice

  • Jung, Jae-Won;Hyewhon Rhim;Bae, Eun-He;Lee, Bong-Hee;Park, Chan-Woong
    • Journal of Ginseng Research
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    • 제24권1호
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    • pp.8-17
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    • 2000
  • 스테로이드 호르몬의 일종인 에스트로젠은 생식기능에 영향을 미치는 것 외에 학습 및 기억과 관련된 기능에도 영향을 미치는 것으로 알려져 있다. 최근, 에스트로젠은 기억과 관련된 뇌세포 신 경망의 발달과 뇌 기능 장애를 방지할 수 있다는 부분에서 상당한 관심의 대상이되고 있다. 그러나 에스트로젠 대체 치료가 폐경기의 많은 여성들에게 도움을 주기도 하지만 여러 부작용을 유발하는 것으로도 알려져 있다 인삼 역시도 스테로이드 특성을 보이며 에스트로젠과 유사한 화학구조를 가지는 여러 성분을 가지고 있다. 본 실험의 목적은 첫째로 공간 기억력을 측정하기에 여러 장점을 가지고 있으면서 다른 어떠한 행동학적 실험보다 학습과 기억의 동물 모텔로 잘 알려진 방법인 Morris water maze를 이용하여 에스트로젠의 효과를 확인하고, 두 번째는 인삼이 학습과 기억에서 에스트로젠과 같은 효과를 나타낼 수 있는지를 확인하는 것이다. 본 실험은 인위적으로 난소를 제거한 쥐에 17$\beta$-estradiol(100~250 $\mu\textrm{g}$/ml), panaxadiol(PD), panaxatriol(PT) sapo-nins(15~100 $\mu\textrm{g}$/ml)을 sesame oil에 녹인 capsule을 implant했다. 첫 번째 실험에서 난소를 제거한 쥐에 에스트로젠을 투입했을때 학습과 기억의 효과를 확인했다. 두 번째 실험에서는 난소를 제거한 쥐에 3가지 다른 농도에서의 PD, PT를 투입했을 때 학습과 기억에 대한 에스트로젠의 효과와 비교해 보았다. 2주 동안의implant 후 water maze 실험결과 세 그룹 모두 난소를 제거한 그룹보다 기억력이 향상되었다 이러한 결과를 토대로 에스트로젠이 학습과 기억에 영향을 준다는 것을 확인할 수 있었고 PD, PT 또한 학습과 기억에 관련된 행동에서 에스트로젠과 같은 효과를 나타낼 수 있다는 것을 확인할 수 있었다. 이러한 동물모델에서의 연구를 통하여 인삼이 에스트로젠 장기결핍치료에서 나타나는 여러 호르몬 부작용을 극복할 수 있는 에스트로젠 대체물질로 개발되어 기억력 저하를 수반하는 Alzheimer's disease 및 여러 퇴행성 중추신경 질환의 치료제로 대체의학의 natural compound이용에 그 기초 기전을 제공할 수 있으리라 여긴다.

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