• 제목/요약/키워드: sodium butyrate

검색결과 58건 처리시간 0.026초

Effect of Defaunation on In Vitro Fermentation Characteristics and Methane Emission When Incubated with Forages

  • Qin, Wei-Ze;Choi, Seong-Ho;Lee, Seung-Uk;Lee, Sang-Suk;Song, Man-Kang
    • 한국초지조사료학회지
    • /
    • 제33권3호
    • /
    • pp.197-205
    • /
    • 2013
  • An in vitro study was conducted to determine the effects of defaunation (removal of protozoa) and forage sources (rice straw, ryegrass and tall fescue) on ruminal fermentation characteristics, methane ($CH_4$) production and degradation by rumen microbes. Sodium lauryl sulfate, as a defaunation reagent, was added into the mixed culture solution to remove ruminal protozoa at a concentration of 0.375 mg/ml. Pure cellulose (0.64 g, Sigma, C8002) and three forage sources were incubated in the bottle of culture solution of mixed rumen microbes (faunation) or defaunation for up to 24 h. The concentration of ammonia-N was high under condition of defaunation compared to that from faunation in all incubations (p<0.001). Total VFA concentration was increased at 3, 6 and 12 h (p<0.05~p<0.01) but was decreased at 24 h incubation (p<0.001) under condition of defaunation. Defaunation decreased acetate (p<0.001) and butyrate (p<0.001) proportions at 6, 12 and 24 h incubation times, but increased propionate (p<0.001) proportion at all incubation times for forages. Effective degradability of dry matter was decreased by defaunation (p<0.001). Defaunation not only decreased total gas (p<0.001) and $CO_2$ (p<0.01~0.001) production at 12 and 24 h incubations, but reduced $CH_4$ production (p<0.001) at all incubation times for all forages. The $CH_4$ production, regardless of defaunation, in order of forage sources were rice straw > tall fescue > ryegrass > cellulose (p<0.001) up to 24 h incubation.

Suppression of HIF-1α by Valproic Acid Sustains Self-Renewal of Mouse Embryonic Stem Cells under Hypoxia In Vitro

  • Lee, Hyo-Jong;Kim, Kyu-Won
    • Biomolecules & Therapeutics
    • /
    • 제20권3호
    • /
    • pp.280-285
    • /
    • 2012
  • The developing embryo naturally experiences relatively low oxygen conditions in vivo. Under in vitro hypoxia, mouse embryonic stem cells (mESCs) lose their self-renewal activity and display an early differentiated morphology mediated by the hypoxia-inducible factor-$1{\alpha}$ (HIF-$1{\alpha}$). Previously, we demonstrated that histone deacetylase (HDAC) is activated by hypoxia and increases the protein stability and transcriptional activity of HIF-$1{\alpha}$ in many human cancer cells. Furthermore HDAC1 and 3 mediate the differentiation of mECSs and hematopoietic stem cells. However, the role of HDACs and their inhibitors in hypoxia-induced early differentiation of mESCs remains largely unknown. Here, we examined the effects of several histone deacetylase inhibitors (HDACIs) on the self-renewal properties of mESCs under hypoxia. Inhibition of HDAC under hypoxia effectively decreased the HIF-$1{\alpha}$ protein levels and substantially improved the expression of the LIF-specific receptor (LIFR) and phosphorylated-STAT3 in mESCs. In particular, valproic acid (VPA), a pan HDACI, showed dramatic changes in HIF-$1{\alpha}$ protein levels and LIFR protein expression levels compared to other HDACIs, including sodium butyrate (SB), trichostatin A (TSA), and apicidin (AP). Importantly, our RT-PCR data and alkaline phosphatase assays indicate that VPA helps to maintain the self-renewal activity of mESCs under hypoxia. Taken together, these results suggest that VPA may block the early differentiation of mESCs under hypoxia via the destabilization of HIF-$1{\alpha}$.

Aeromonas hydrophila PL43이 생산하는 지질분해 효소의 정제 및 특성 (Purification and Characterization of a Lipolytic Enzyme Produced by Aeromonas hydrophila PL43)

  • 김용우;홍성욱;정건섭
    • 한국미생물·생명공학회지
    • /
    • 제44권2호
    • /
    • pp.130-139
    • /
    • 2016
  • 지렁이의 장내로부터 분리한 미생물 중에서 지질을 가수분해하는 활성이 높은 미생물을 선발하였으며, 동정하여 Aeromonas hydrophila PL43으로 명명하였다. A. hydrophila PL43이 생산하는 지질분해 효소의 정제는 황산암모늄 침전, DEAE-sepharose FF 이온교환 크로마토그래피, Sepharose S-300HR 겔 크로마토그래피 단계로 수행하였으며 최종적으로 정제한 지질분해 효소는 p-nitrophenyl butyrate (pNPB)를 기질로 사용했을 때, 84.5배로 정제되었고 효소 활성의 회수율은 3.7%이었다. p-nitrophenyl palmitate (pNPP)를 기질로 사용했을 때에는 56.6배로 정제되었고 효소 활성의 회수율은 2.5%이었다. SDS-PAGE를 수행한 결과, A. hydrophila PL43이 생산하는 지질분해효소의 분자량은 약 74 kDa으로 추정되었다. 지질분해 효소의 pH에 대한 영향은 pNPB와 pNPP 기질에서 pH 8.0에서 최대활성이 보였고 pH 7.0−10.0에서 안정하였다. pNPB를 기질로 사용한 경우에는 50℃에서 pNPP를 기질로 사용한 경우는 60℃에서 최대 활성을 나타냈으며, 정제한 지질분해 효소는 20−60℃에서 안정성을 나타내었다. 정제한 지질분해효소는 금속이온 Co2+, Cu2+, Fe2+에 의해서 효소활성이 억제되었으며, EDTA의 metal chelating에 의해 활성이 회복되었다. Inhibitor에 의한 저해는 효소 활성부위의 serine 잔기와 결합하여 효소 활성을 억제하는 PMSF에서 가장 우수하였으며 효소 활성부위의 aspatyl 잔기에 결합하여 효소활성을 억제하는 pepstatin A는 농도가 높아짐에 따라 효소활성을 저해하였다. 따라서 정제한 지질분해 효소는 활성부위에 serine 잔기와 aspartyl 잔기가 있는 것으로 사료되었다. 정제한 지질분해 효소의 Km 값과 Vmax 값은 pNPB를 기질로 사용 했을 때 Km 값과 Vmax 값은 1.07 mM과 7.27 mM/min이고, 기질이 pNPP일 때 Km 값과 Vmax 값은 1.43 mM 과 2.72 mM/min이었다.

새로운 심관관류 영상 화합물로서 $^{99m}Tc$-Ethyl-3-Isocyano-butyrate의 합성, 표지 및 체내동태에 대한 연구 (Synthesis Characterization and Biodistribution of $^{99m}Tc$-Ethyl-3-Isocyanobutyrate as a New Myocardial Perfusion Agent)

  • 이명철;조정혁;이동수;임상무;오승준;정수욱;이경한;정재민;정준기;고창순
    • 대한핵의학회지
    • /
    • 제27권2호
    • /
    • pp.223-232
    • /
    • 1993
  • Technetium labeled isonitrile analogues are widely used as myocardial perfusion imaging agents. We synthesized and characterized a new isonitrile compound, ethyl 3-isocyanobutyrate(EIB). Proton and $^{13}C$ NMR spectroscopy and thin layer chromatography with a $C_{18}$ coat was performed. EIB was easily labeled with $^{99m}TcO_4^-$- with sodium dithionite. The labeling efficiency measured by RP-HPLC was over 95%. The labeled product was stable with dilution in normal saline and with prolonged incubation at room temperature. There was no formation of secondary products or free $^{99m}TcO_4^-$. In vivo kinetics study of $^{99m}Tc$ (I) labeled EIB in rabbits showed adequate myocardial uptake, good contrast against lung background, and relatively rapid liver clearance. The heart to lung ratio was over 2.5 and the heart to liver ratio was approximately from 0.4 to 5 at 60 minutes post injection. Hepatic clearance of $^{99m}Tc-MIBI$ was faster ($t_{1/2}$=6 minutes) than that of $^{99m}Tc-MIBI$. In vivo kinetics observed in dog was similar to that in rabbit but there was faster gallbladder filling, and thus lower liver background. SPECT imaging of the canine myocardium showed favorable imaging characteristics. However, biodistribution in mice demonstrated a myocardial % injected dose/organ of less than 0.1%. This was thought to be due to interspecies difference in plasma esterase activity. In human plasma, $^{99m}Tc$ ( I ) labeled EIB was stable for at least 2 hours, without production of secondary products by HPLC. We conclude that ethyl 3-isocyanobutyrate may be a potential new myocardial perfusion imaging agent and deserves further investigation as to its usefulness for clinical use.

  • PDF

Effects of Defaunation on Fermentation Characteristics, Degradation of Ryegrass Hay and Methane Production by Rumen Microbes In Vitro When Incubated with Plant Oils

  • Qin, Wei-Ze;Li, Cheng-Yun;Choi, Seong-Ho;Jugder, Shinekhuu;Kim, Hyun-Ju;Lee, Sang-Suk;Song, Man-Kang
    • 한국초지조사료학회지
    • /
    • 제34권3호
    • /
    • pp.193-201
    • /
    • 2014
  • This study was conducted to examine the effects of defaunation (removal of live protozoa) on fermentation characteristics, degradation of ryegrass hay and $CH_4$ (methane) production by rumen microbes when incubated with plant oils (SO, sunflower oil and LO, linseed oil) in vitro. Sodium lauryl sulfate (0.000375 g/ml) as a defaunation reagent was added into the culture solution and incubated anaerobically up to 24 h at $39^{\circ}C$. pH from defaunation was increased for all treatments from 6 h incubation times (p<0.01-0.001) compared with those from fauantion. Concentration of ammonia-N from defaunation is higher than that from faunation at 3 h (p<0.001), 12 h (p<0.05) and 24 h (p<0.001) incubation times. Defaunation decreased (p<0.01-0.001) total volatile fatty acid concentration at all incubation times. Molar proportions of $C_2$ (acetate, p<0.05-0.001) and butyrate (p<0.01-0.001) were also decreased by defaunation at all incubation times. Molar proportion of $C_3$ (propionate), however, was increased by defaunation at all incubation times (p<0.001). Thus the rate of $C_2$ to $C_3$ was decreased by defaunation at all incubation times (p<0.001). Defaunation decreased ED (effective degradability) of dry matter (p<0.001) and ED of neutral detergent fiber (p<0.001) of ryegrass hay. Defaunation decreased total gas, $CH_4$ production, $CH_4$ % in total gas and $CH_4/CO_2$ at all incubation times (p<0.001). Oil supplementation decreased total gas (p<0.05-0.001), $CH_4$ production (p<0.001) and $CH_4$ % in total gas (p<0.001) compared with control at all incubation times. The result of this study showed that defaunation combined with oil supplementation may cause an alteration of microbial communities and further medicate the fermentation pattern, resulting in both reduction of degradation of ryegrass hay and $CH_4$ production. No difference, however, was observed in all the examinations between SO and LO.

HDAC 저해제에 의한 인체 백혈병 U937 세포의 apoptosis 유발에 미치는 Bcl-2의 영향 (Effects of Bcl-2 Overexpressing on the Apoptotic Cell Death Induced by HDAC Inhibitors in Human Leukemic U937 Cells)

  • 이준혁;허만규;박동일;최병태;최영현
    • 생명과학회지
    • /
    • 제17권4호
    • /
    • pp.552-560
    • /
    • 2007
  • 본 연구에서는 인체백혈병세포 U937에서 HDAC 저해제에 의한 증식억제, 세포주기 교란 및 apoptosis 유도에 미치는 Bcl-2 유전자의 영향에 관하여 조사하였다. 이를 위하여 U937/vector 및 U937/Bcl-2 세포주를 대상으로 대표적인 HDAC 저해제인 TSA 및 Na-B 처리에 의한 세포 증식 및 생존율에 미치는 영향을 조사한 결과, TSA에 의한 U937 세포의 증식억제 및 생존율의 감소는 Bcl-2의 과발현에 의하여 차단되는 효과를 보였으나, Na-B는 U937/vector 및 U937/Bcl-2세포사이에 큰 변화를 보이지는 않았다. 세포주기 교란효과에서 Na-B는 TSA에 비하여 유의적인 차이를 보이지 못하였으며, 이는 TSA에 의한 apoptosis가 U937/Bcl-2 세포에서는 억제되었으나, Na-B에 의한 apoptosis는 Bcl-2의 과발현에 의하여 차단되지 못한 것과 연관성이 있는 결과였다. 또한 TSA에 의한 apoptosis 유발의 Bcl-2에 의한 차단 효과는 TSA에 의하여 활성화된 caspase의 활성 억제, Bcl-2 발현 자체의 완화 등 apoptosis 조절 인자들의 발현 및 활성 변화에 기인 된 것임을 알 수 있었다.

"유-그레나"의 명암배양에 따르는 유기질의 이용과 호흡 및 생장에 대하여 (SOME PHYSIOLOGICAL STUDIES ON THE UTILIZATION OF ORGANIC SUBSTRATES BY EUGLENA GRACILIS VAR. BACILLA 10616 IN LIGHT AND IN DARKNESS)

  • Lee, Min-Jai
    • Journal of Plant Biology
    • /
    • 제2권1호
    • /
    • pp.1-12
    • /
    • 1959
  • 1) The comparative studies of the quantitative measurement of growth characteristics and utilization of substrates by Euglena gracilis var. bacilla 10616 in the light and in darkness have been carried out. Eodogenous respiration, effect of respiratory inhibitors and responses to the added substrates for the exogenous respiration are also investigated. 2) All cultures are grown in the open air under the continuous illumination of fluorescent light of 3500 lux at room termperature, the growth rate of the culture in the basal medium added 0.5% lactate is found to be the highest. The growth rate decreases successively for the cultures of 0.5% sucinate, 0.5% Na-acetate, 0.5% malate, and control. There is no growth in the basal meidum added 0.5% butyrate and 0.5% hydroquinone. The similar results are obtained for the mentioned cultures in the darkness. However, the growth rate in basal medium added 0.5% glucose and 0.5% sucrose does seem to increase in the darkness unlike the illumination. 3) The endogenous rate of respiration for the organism cultured photosynthetically is about 12.94ul 02/mg/hr, in basal medium and the respiratory quotient is about 0.84. The rate is decreased by starvations to 6.5ul 02/mg/hr, about to a half, but the respiratory quotient does net change. 4) The oxygen consomption during initial 2 hours in suspending solution ranging from pH 4.5 to pH 9.3 is highest at pH 4.5 in which the algae had grown, at pH 5.5 and at pH 6.9. 5) Endogenous respiration of the cells is strongly inhibited by 0.1M of potassium cyanide, malomic acid, sodium fluoride and iodo-acetic acid. It is also strongly inhibited by 0.01M of potassium cyanide. 6) The respiratory response to added substrates for the exogenous respiration in the organism is coincided with the rate in the basal medium added the substrate in light and in darkness, whether the cells are fed or starved. 7) According to the results of this study, there seems to be the flexibility of the interconversion between photosynthesis and chemosynthesis, heterotropic mode of metabolism, in Euglena gracilis var. bacillaris, and that this organism utilizes the lactate most. It also may be suggested that the enayme systems linked in the each steps of Embden-Myerhof-Parnas path way and TCA cycle seem to exist in this organism.

  • PDF

Butyric acid and prospects for creation of new medicines based on its derivatives: a literature review

  • Lyudmila K. Gerunova;Taras V. Gerunov;Lydia G. P'yanova;Alexander V. Lavrenov;Anna V. Sedanova;Maria S. Delyagina;Yuri N. Fedorov;Natalia V. Kornienko;Yana O. Kryuchek;Anna A. Tarasenko
    • Journal of Veterinary Science
    • /
    • 제25권2호
    • /
    • pp.23.1-23.15
    • /
    • 2024
  • The widespread use of antimicrobials causes antibiotic resistance in bacteria. The use of butyric acid and its derivatives is an alternative tactic. This review summarizes the literature on the role of butyric acid in the body and provides further prospects for the clinical use of its derivatives and delivery methods to the animal body. Thus far, there is evidence confirming the vital role of butyric acid in the body and the effectiveness of its derivatives when used as animal medicines and growth stimulants. Butyric acid salts stimulate immunomodulatory activity by reducing microbial colonization of the intestine and suppressing inflammation. Extraintestinal effects occur against the background of hemoglobinopathy, hypercholesterolemia, insulin resistance, and cerebral ischemia. Butyric acid derivatives inhibit histone deacetylase. Aberrant histone deacetylase activity is associated with the development of certain types of cancer in humans. Feed additives containing butyric acid salts or tributyrin are used widely in animal husbandry. They improve the functional status of the intestine and accelerate animal growth and development. On the other hand, high concentrations of butyric acid stimulate the apoptosis of epithelial cells and disrupt the intestinal barrier function. This review highlights the biological activity and the mechanism of action of butyric acid, its salts, and esters, revealing their role in the treatment of various animal and human diseases. This paper also discussed the possibility of using butyric acid and its derivatives as surface modifiers of enterosorbents to obtain new drugs with bifunctional action.