• Title/Summary/Keyword: $V_{max}$

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Physicochemical Characteristics and Pharmacokintics of Ibuprofen Lysine Salts (흰쥐에서 이부프로펜 리신염의 물리화학적 특성 및 약물동태에 관한 평가)

  • Shin, Dae-Hwan;Kim, Tai-Sung;Park, Seong-Hyeok;Kim, Si-Hyun;Jo, Han-Jun;Han, Kun;Chung, Youn-Bok
    • YAKHAK HOEJI
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    • v.55 no.3
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    • pp.260-266
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    • 2011
  • Two types of water soluble lysine salts of ibuprofen were prepared and evaluated. Physicochemical properties for ibuprofen-l-lysinate (IBL-l), ibuprofen-dl-lysinate (IBL-dl) and ibuprofen (IB) were studied on melting point, specific ratation, UV spectra and $^1H$-NMR spectra. There were not differences between IBL-dl and IBL-l in UV spectra and $^1H$-NMR spectra. The pharmacokinetic parameters of IB were compared to those of its lysine salts (IBL-l and IBL-dl) after i.v. or oral administration at the dose of 50 mg/kg (calculated as IB). Total body clearance ($CL_t$) and area under the plasma concentration-time curve (AUC) were not different between IB group and IBL groups after i.v. administration. On the other hand, IBL-l and IBL-dl produced peak plasma concentrations ($C_{max}$) significantly ealier and higher than IB. Time to reach peak concentration ($T_{max}$) after IBL administration was lower than that after IB administration. There was no difference in AUC across all different groups (IB, IBL-l and IBL-dl) after oral administration. However, absorption rate constant ($k_a$) of IBL-l and IBL-dl were significantly increased than that of IB. These results indicated that the administration of IBL-l and IBL-dl may be advantageous if rapid and reliable onset of pain relief is required.

Production, Purification and Characterization of $\beta$-Galactosidase from Bifidobaacterium longurn KCTC 3 2 15 (Bifidobacterium longum KCTC 3215에 의한 $\beta$-Galactosidase의 생산. 정제 및 특성)

  • 강국희;민해기;장영효;이호근
    • Microbiology and Biotechnology Letters
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    • v.19 no.5
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    • pp.456-463
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    • 1991
  • $\beta$-Galactosidase of Bifidobacterium longum KCTC 3215 was studied on the production, purification, and characterization. Optimum conditions for the enzyme production were in the medium of 1.0% lactose as carbon source, initial pH 7.0 and in 17 hours of cultivation at $37^{\circ}C$. The enzyme was purified 9.25 folds by protamine sulfate precipitation, ammonium sulfate fractionation, DEAE-Sephadex A-50 ion exchange chromatography and Sephadex G-150 gel filtration. The maximal P-galactosidase activity was observed at pH 6.5 and at the temperature of $40^{\circ}C$ This enzyme was stable at pH 6.0-8.5. Metal ions such as $Ca^{2+} \;and \; Co^{2+}$, 2-mercaptoethanol, cysteine, and glutathione stimulated B-galactosidase activity. The enzyme activity was inhibited by addition of $Mg^{2+}, Fe^{2+}, Cs^{1+}, Li^{1+}$, DETA, galactose, and $\rho$-chloromercuribenzoic acid. The kinetics of o-nitrophenyl-$\beta$-D-galactopyranoside and lactose were $K_m$ = 1.66 mM, $V_{max}= 0.30 mM/min\cdot mg\cdot protein$ and $KK_m = 3.18 mM, \; V_{max}= 0.42 mM/min \cdot mg\cdot$ protein, respectively. The molecular weight of native enzyme was about 360, 000 dalton and the enzyme consisted of 2 identical subunits with a molecular weight of 180, 000.

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Comparison of Two Laccases from Trametes versicolor for Application in the Decolorization of Dyes

  • Li, Qi;Ge, Lin;Cai, Junli;Pei, Jianjun;Xie, Jingcong;Zhao, Linguo
    • Journal of Microbiology and Biotechnology
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    • v.24 no.4
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    • pp.545-555
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    • 2014
  • It has been previously demonstrated that laccases exhibit great potential for use in several industrial and environmental applications. In this paper, two laccase isoenzyme genes, lccB and lccC, were cloned and expressed in Pichia pastoris GS115. The sequence analysis indicated that the lccB and lccC genes consisted of 1,563 and 1,584 bp, and their open reading frames encoded 520 and 527 amino acids, respectively. They had 72.7% degree of identity in nucleotides and 86.7% in amino acids. The expression levels of LccB and LccC were up to 32,479 and 34,231 U/l, respectively. The recombinant laccases were purified by ultrafiltration and $(NH_4)_2SO_4$ precipitation, showing a single band on SDS-PAGE, which had a molecular mass of 58 kDa. The optimal pH and temperature for LccB were 2.0 and $55^{\circ}C$ with 2,2'-azinobis-[ 3-ethylbenzthiazolinesulfonic acid (ABTS) as a substrate, whereas LccC exhibited optimal pH and temperature at 3.0 and $60^{\circ}C$. The apparent kinetic parameters of LccB were 0.43 mM for ABTS with a $V_{max}$ value of 51.28 U/mg, and the Km and $V_{max}$ values for LccC were 0.29 mM and 62.89 U/mg. The recombinant laccases were able to decolorize five types of dyes. Acid Violet 43 (100 g/ml) was completely decolorized by LccB or LccC (2 U/ml), and the decolorization of Reactive Blue KN-R (100 g/ml) was 91.6% by LccC (2 U/ml). Thus, the study characterizes useful laccase isoenzymes from T. versicolor that have the capability of being incorporated into the treatment of similar azo and anthraquinone dyes from dyeing industries.

Kinetics of Horseradish Peroxidase-Catalyzed Nitration of Phenol in a Biphasic System

  • Kong, Mingming;Zhang, Yang;Li, Qida;Dong, Runan;Gao, Haijun
    • Journal of Microbiology and Biotechnology
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    • v.27 no.2
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    • pp.297-305
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    • 2017
  • The use of peroxidase in the nitration of phenols is gaining interest as compared with traditional chemical reactions. We investigated the kinetic characteristics of phenol nitration catalyzed by horseradish peroxidase (HRP) in an aqueous-organic biphasic system using n-butanol as the organic solvent and ${NO_2}^-$ and $H_2O_2$ as substrates. The reaction rate was mainly controlled by the reaction kinetics in the aqueous phase when appropriate agitation was used to enhance mass transfer in the biphasic system. The initial velocity of the reaction increased with increasing HRP concentration. Additionally, an increase in the substrate concentrations of phenol (0-2 mM in organic phase) or $H_2O_2$ (0-0.1 mM in aqueous phase) enhanced the nitration efficiency catalyzed by HRP. In contrast, high concentrations of organic solvent decreased the kinetic parameter $V_{max}/K_m$. No inhibition of enzyme activity was observed when the concentrations of phenol and $H_2O_2$ were at or below 10 mM and 0.1 mM, respectively. On the basis of the peroxidase catalytic mechanism, a double-substrate ping-pong kinetic model was established. The kinetic parameters were ${K_m}^{H_2O_2}=1.09mM$, ${K_m}^{PhOH}=9.45mM$, and $V_{max}=0.196mM/min$. The proposed model was well fit to the data obtained from additional independent experiments under the suggested optimal synthesis conditions. The kinetic model developed in this paper lays a foundation for further comprehensive study of enzymatic nitration kinetics.

Reaction Mode of Transglucosidase from Aspergillus niger for Production of Isomaltooligosaccharides (Aspergillus niger 유래의 Transglucosidase의 이소말토올리고당 생성반응 특성)

  • Ahn, Jang-Woo;Hong, Seung-Shu;Park, Kwan-Wha;Seo, Jin-Ho
    • Korean Journal of Food Science and Technology
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    • v.28 no.2
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    • pp.273-278
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    • 1996
  • The research was undertaken to characterize the reaction mode of transglucosidase (TG) from Aspergillus niger for the production of isomaltooligosaccharides such as isomaltose, panose and isomaltotriose. TG hydrolyzed maltose to glucose units and produced panose and glucose by transglucosylation. TG hydrolyzed panose to maltose and glucose when panose was used as an initial substrate. The reaction patterns of products when isomaltose, isomaltotriose or isomaltotetraose were used as substrates were different from the case when maltose was used as a substrate. Maltotriose and maltose showed the same formation pattern of products. TG also produced isomaltooligosaccharides from maltooligosaccharides. The production of panote by TG from maltose was mathematically described by Michaelis-Menten kinetics. The kinetic constants, $V_{max}$ (the maximum velocity) and $K_m$ (Michaelis constant), were estimated by Lineweaver-Burk plot to be 400 M/min and 21.4 mM, respectively.

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Protein Methylase II from Chicken Pancreas: Purification and Properties (닭 췌장 Protein Methylase II의 분리정제 및 성질)

  • Yoo, Tae-Moo;Namkoong, Suck-Min;Hong, Sung-Youl;Lee, Hyang-Woo
    • YAKHAK HOEJI
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    • v.35 no.6
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    • pp.473-482
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    • 1991
  • Protein methylase II (S-adenosyl-L-methionine:protein carboxyl-O-methyltransferase; EC 2.1.1.24., PM II) was purified from chicken pancreas by subcellular fractionation, DEAE-cellulose chromatography, QAE-Sephadex A-50 chromatography, Sephadex G-75 chromatography, and Sephadex G-75 rechromatography. The purified PM II gave a single band upon polyarcrylamide gel electrophoresis both in the presence of SDS and in Tris glycine buffer without SDS. The pI value of purified PM II was identified as 5.7 on isoelectric focusing gel. Properties and activities of PM II were studied and the following results were obtained. 1) PM II from chicken pancreas was purified approximately 221-fold with a yield of 1.3%. 2) The purified PM II appear constituted of a single polypeptide chain of a molecular weight 46,800 daltons. 3) Hemoglobin exhibited the highest of methyl-accepting activity among the substrates tested. 4) The purified PM II has a $K_m$ of $4.67{\times}10^{-6}M$ and a $V_{max}$ of 37.5 pmoles of $methyl-^{14}C/min./mg$ enzyme for $SAM^{-14}CH_3$ as methyl donor in the presence of histone type II-As. 5) It is found that S-adenosyl-L-homocysteine is a competitive inhibitor for PM II with $K_i$ value of $3.23{\times}10^{-5}M$.

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Reactivity of Phospholipase D toward Phosphatidylcholines with Different Length of Acyl Chains (길이가 틀린 아실사슬을 갖는 콜린 인지질에 대한 포스포리파제 D의 반응성)

  • Koh, Eun-Hie;Park, Insook
    • Journal of the Korean Chemical Society
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    • v.40 no.9
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    • pp.630-634
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    • 1996
  • In order to explore a substrate specificity for cabbage phospholipase D, we examined the PLD reactivity toward the phosphatidylcholines with different chain length of acyl groups. The selected acyl chains were the saturated fatty acid of $C_8:0,\;C_{12}:0,\;C_{16}:0,\;C_{20}:0$. The reactivity of these phospholipids were dependent largely on the ratio of PC : SDS. The PC : SDS ratio showing the optimal PLD activity were found to be 1:1.4, 1:2.2, 1:2.5, and 1:3.6 respectively as the increase of the acyl chain length. Likewise the optimum temperature for the maximal PLD activity were altered markedly to 25$^{\circ}C$, 30$^{\circ}C$, 35$^{\circ}C$, 45$^{\circ}C$ when the length of acyl chains increased. On the contrary the pH and concentration of $Ca^{2+}$ necessary for the optimum PLD activity were not altered significantly. The kinetic parameter $V_{max}$ for short acyl chain substrate was greater than the values for the longer acyl chain, which indicates the fastest rate of hydrolysis. By the same token, the reactivity of longer chain substrate became slower for the hydrolysis activity.

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LC-MS Determination and Bioavailability Study of Imidapril Hydrochloride after the Oral Administration of Imidapril Tablets in Human Volunteers

  • Yun Ji Hye;Myung Ja Hye;Kim Hye Jin;Lee Sibeum;Park Jong-Sei;Kim Won;Lee Eun-Hee;Moon Cheol Jin;Hwang Sung-Joo
    • Archives of Pharmacal Research
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    • v.28 no.4
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    • pp.463-468
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    • 2005
  • The purpose of the present study was to develop a standard protocol for imidapril hydrochloride bioequivalence testing. For this reason, a specific LC-MS method was developed and validated for the determination of imidapril in human plasma. A solid-phase extraction cartridge, $Sep-pak^{R}$ C18, was used to extract imidapril and ramipril (an internal standard) from deproteinized plasma. The compounds were separated using a XTerra $MS^{R}$?C18 column ($3.5 {\mu}m, 2.1\times150 mm$) and $acetonitrile-0.1\%$ formic acid (67:33, v/v) adjusted to pH 2.4 by 2 mmol/L ammonium formic acid, as mobile phase at 0.3 mL/min. Imidapril was detected as m/z 406 at a retention time of ca. 2.3 min, and ramipril as m/z 417 at ca. 3.6 min. The described method showed acceptable specificity, linearity from 0.5 to 100 ng/mL, precision (expressed as a relative standard deviation of less than $15\%$), accuracy, and stability. The plasma concentration-versus-time curves of eight healthy male volunteers administered a single dose of imidapril (10 mg), gave an $AUC_{12hr}$ of imidapril of $121.48\pm35.81 ng mL^{-1} h$, and $C_{max} and T_{max}$ values of $32.59\pm9.76 ng/mL and 1.75\pm0.27 h$. The developed method should be useful for the determination of imidapril in plasma with sufficient sensitivity and specificity in bioequivalence study.

HPLC Determination and Steady-State Bioavailability Study of Levodropropizine Sustained-release Tablets in Dogs

  • Yan, Lin;Li, Tongling;Zhang, Rongqin;Xu, Xiaohong;Zheng, Pengcheng
    • Archives of Pharmacal Research
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    • v.29 no.6
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    • pp.514-519
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    • 2006
  • A simple HPLC method using UV detection was developed and validated for the determination of levodropropizine (LDP) In dog plasma. The sample was prepared for injection using a liquid-liquid extraction method with 1-phenypiperazine as the internal standard. The mobile phase was methanol - diethylamine solution (0.05 M) (20:80, v/v, pH adjusted to 3.0 with $H_3PO_4$) with a detection wavelength of 240 nm. The limit of quantitation (LOQ) of LDP in a biological matrix was determined to be 25.25 ng/mL. The calibration curve was linear across the concentration range of 25.25 to 2020 ng/mL. The intra-day and inter-day precision values (CV%) were within 7% and accuracy (R.E. %) was within 6% of the nominal values for medium (252.5 ng/mL) and high (2020 ng/mL) LDP concentrations. For the LDP concentration at the LOQ, the intra-day and inter-day precision and accuracy were within 20% and 10%, respectively. The average absolute recovery for LDP was 70.28%. This method was successfully used to analyze plasma samples in a steady-state bioavailability study of a newly developed sustained-release LDP tablets (SR) using immediate-release tablets (IR) as the reference. The relative bioavailability of the SR was determined to be $106.3\;{\pm}\;12.8%$ (n=6). The $C_{max}$ of the SR was significantly lower (p<0.05), and the $t_{max}$ was significantly longer than that of the IR (p<0.05). The results of ANOVA and two one-sided tests indicated that the SR exhibited acceptable sustained release properties and was bioequivalent to the IR.

Characterization of Xylanase from Bacillus agaradhaerens DK-2386 Isolated from Korean Soil (토양으로부터 분리한 Bacillus agaradhaerens DK-2386 균주가 생산하는 Xylanase의 특성)

  • Choi, Ji-Hwi;Park, Young-Seo;Lee, Hyungjae;Bai, Dong-Hoon
    • Microbiology and Biotechnology Letters
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    • v.43 no.4
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    • pp.330-335
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    • 2015
  • The optimum conditions for the production of xylanase from Bacillus agaradhaerens DK-2386 have been previously investigated. In this study xylanase was purified by ammonium sulfate precipitation and CM-sepharose ion exchange chromatography. The molecular mass of the xylanase as determined by SDS-PAGE was 23 kDa in a form of monomeric enzyme. The optimum pH and temperature for xylanase activity was 6.0 and $60^{\circ}C$, respectively. Xylanase activity was increased by the addition of EDTA and then stabilized at $40^{\circ}C$ for 24 h. The maximum xylanase activity was obtained when Birchwood xylan was used as a substrate and the $V_{max}$ and $K_m$ were $49,724{\mu}mol/min$ and 6.08 mg/ml, respectively.