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12661“…This study aimed to improve production, purify, and characterize a β-glucosidase from a newly isolated Neofusicoccum parvum strain F7. β-Glucosidase production was significantly enhanced by a sequential statistical modelling approach from 1.5-fold in Plackett–Burman design to 2.5 U/ml in the Box–Behnken design compared to the preliminary one variable at a time experiments (1.6 U/ml). …”
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12662“…Aldehydes content decreased over the storage period, while the esters (methyl butanoate, methyl hexanoate, ethyl hexanoate, and benzyl acetate) and furanones (furaneol and mesifuran) were increased as representing aroma compounds in strawberry ripening. …”
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12663por Jia, Wenbin, Kawahata, Ichiro, Cheng, An, Sasaki, Takuya, Sasaoka, Toshikuni, Fukunaga, Kohji“…Here, we confirm that the FABP3 inhibitor, MF1 ((4-(2-(1-(2-chlorophenyl)-5-phenyl-1H-pyrazol-3-yl)phenoxy) butanoic acid), successfully reduces nicotine-induced CPP scores in mice. …”
Publicado 2023
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12664“…Four storage stages were discriminated by partial least squares discriminant analysis, and nine differential volatile compounds showed a variable importance for the projection score >1, including octanoic acid, methyl ester, decanoic acid, methyl ester, acetic acid, heptanoic acid, methyl ester, propanoic acid, 2-hydroxy-, methyl ester, (ñ)-, hexanoic acid, propanoic acid, butanoic acid, and nonanoic acid. With the volcano plot analysis, hexadecanoic acid, methyl ester, was the common volatile marker candidate to discriminate chilled stages of Tan mutton. …”
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12665“…Therefore, in the current study, we are using the Plackett- Burman design (PBD) approach, where sixteen experimental trials were applied to optimize the production of the target oligosaccharide LA-EPS-20079 from Lactobacillus acidophilus. …”
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12666por Tong, Yucui, Guo, He'nan, Abbas, Zaheer, Zhang, Jing, Wang, Junyong, Cheng, Qiang, Peng, Shuyue, Yang, Tiantian, Bai, Ting, Zhou, Yichen, Li, Jinzhuan, Wei, Xubiao, Si, Dayong, Zhang, Rijun“…The antibacterial activity was improved 3.62 times compared to initial fermentation conditions by using optimization techniques such as single factor experiments, Plackett–Burman design (PBD), steepest ascent method (SAM), and central composite design (CCD) methods. …”
Publicado 2023
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12667“…In addition, the pathways of significant enrichment either from DEGs between Antibiotics and Control or from DEGs between MCE and Control were almost identical, including Th17 cell differentiation, butanoate metabolism, T-cell receptor signaling pathway, intestinal immune network for IgA production, antigen processing and presentation, and ABC transporters. …”
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12668por Farkas, Carlos, Retamal-Fredes, Eduardo, Ávila, Ariel, Fehlings, Michael G., Vidal, Pia M.“…Genome-scale metabolic modeling using gapseq successfully identified pyruvate-to-butanoate and pyruvate-to-propionate reactions involving genes such as Buk and ACH1, respectively. …”
Publicado 2023
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12669“…The aim of this study was to investigate the ameliorative effect of methionine restriction on sperm quality in aging mice, using methionine or 2-hydroxy-4-(methylthio)butanoate (HMTBA) as the methionine source, with a view to providing nutritional strategies to mitigate the decline in sperm quality in aging livestock. …”
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12670por Wu, Wei, Yan, Li, Yuan, Xiao-Fei, Wang, Lu, Zhang, Yu, Tu, Rong-xiang, Pan, Jiang-Qi, Yin, Lu, Ge, Zhi-Ru“…GO analyses revealed these DEGs to be significantly enriched in ovarian steroidogenesis, fatty acid elongation, biosynthesis of unsaturated fatty acids, synthesis and degradation of ketone bodies, and butanoate metabolism. The PPI network of the DEGs had 14 genes and 70 edges. …”
Publicado 2023
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12671por Li, Xin, Zhang, Xianpeng, Yu, Ting, Ye, Liping, Huang, Ting, Chen, Ying, Liu, Shuhan, Wen, Youfeng“…The results of PCA, MDS, Fst and phylogenetic tree were consistent: Lhasa Tibetans clustered with other highland Tibeto-Burman speakers, there was obvious genetic homogeneity of Tibetans in Xizang, and genetic similarity between Tibetans and northern Han people and geographically adjacent populations was found. …”
Publicado 2023
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12672por Smallegange, Renate C., Qiu, Yu Tong, Bukovinszkiné-Kiss, Gabriella, Van Loon, Joop J. A., Takken, Willem“…In the olfactometer, propanoic acid, butanoic acid, 3-methylbutanoic acid, pentanoic acid, heptanoic acid, octanoic acid, and tetradecanoic acid increased attraction relative to the basic blend. …”
Publicado 2009
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12673por Berry, A., Matthews, L., Jangani, M., Plumb, J., Farrow, S., Buchan, N., Wilson, P. A., Singh, D., Ray, D. W., Donn, R. P.“…Jangani, M., Plumb, J., Farrow, S., Buchan, N., Wilson, P. A., Singh, D., Ray, D., W., Donn, R. …”
Publicado 2010
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12674por Eloe, Emiley A., Fadrosh, Douglas W., Novotny, Mark, Zeigler Allen, Lisa, Kim, Maria, Lombardo, Mary-Jane, Yee-Greenbaum, Joyclyn, Yooseph, Shibu, Allen, Eric E., Lasken, Roger, Williamson, Shannon J., Bartlett, Douglas H.“…Overrepresented transporters in the PRT metagenome included outer membrane porins, diverse cation transporters, and di- and tri-carboxylate transporters that matched well with the prevailing catabolic processes such as butanoate, glyoxylate and dicarboxylate metabolism. …”
Publicado 2011
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12675por Cai, Xiaoyun, Qin, Zhendong, Wen, Bo, Xu, Shuhua, Wang, Yi, Lu, Yan, Wei, Lanhai, Wang, Chuanchao, Li, Shilin, Huang, Xingqiu, Jin, Li, Li, Hui“…The short tandem repeat network of O3a3b-M7 displayed a hierarchical expansion structure (annual ring shape), with MK haplotypes being located at the original point, and the HM and the Tibeto-Burman haplotypes distributed further away from core of the network. …”
Publicado 2011
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12676por Mary, Camille, Duek, Paula, Salleron, Lisa, Tienz, Petra, Bumann, Dirk, Bairoch, Amos, Lane, Lydie“…In eukaryotic cells, the methionine salvage pathway takes place in the cytosol and usually involves six enzymatic activities: MTA phosphorylase (MTAP, EC 2.4.2.28), 5′-methylthioribose-1-phosphate isomerase (mtnA, EC 5.3.1.23), 5′-methylthioribulose-1-phosphate dehydratase (mtnB, EC: 4.2.1.109), 2,3-dioxomethiopentane-1-phosphate enolase/phosphatase (mtnC, EC 3.1.3.77), aci-reductone dioxygenase (mtnD, EC 1.13.11.54) and 4-methylthio-2-oxo-butanoate (MTOB) transaminase (EC 2.6.1.-). The aim of this study was to complete the available information on the methionine salvage pathway in human by identifying the enzyme responsible for the dehydratase step. …”
Publicado 2012
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12677“…SAR3419 (huB4-DM4) is a novel antibody–drug conjugate that is composed of a humanized monoclonal IgG1 anti-CD19 antibody (huB4) attached to the potent cytotoxic drug, a maytansine derivative (DM4), through a cleavable disulfide cross-linking agent N-Succinimidyl-4-2-pyridyldithio butanoic acid (SPDB). The preclinical efficacy of maytansine derivative–anti-CD19 conjugate was demonstrated in our laboratory, and SAR3419 was found to be more effective than CHOP in a xenograft model. …”
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12678por Kiran, George Seghal, Dhasayan, Asha, Lipton, Anuj Nishanth, Selvin, Joseph, Arasu, Mariadhas Valan, Al-Dhabi, Naif Abdullah“…RESULTS: Briefly, the sponge associated actinobacterium N. alba MSA10 was screened and fermentation conditions were optimized for the production of melanin pigment. The Plackett-Burman design followed by a Box-Behnken design was developed to optimize the concentration of most significant factors for improved melanin yield. …”
Publicado 2014
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12679“…The effects of experimental conditions, including pH, concentration of reagents, and equilibration time and temperature, on cloud point extraction were optimized efficiently using Plackett–Burman and Box–Behnken experimental designs. Under the optimum conditions, good linearity was observed in the concentration ranges of 0.5–5 µg/L for Pb and 0.05–0.50 µg/L for Cd. …”
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12680“…The method was applied for the simultaneous analysis of two topical microbicides, stampidine (STP) and HI443 in bulk and nanoformulations. The Plackett-Burman design was used for screening; whereas, Box-Behnken design was used to evaluate the main and interaction effects of the selected factors on the responses, namely peak area of STP (Y(1)), HI443 (Y(2)), tailing of STP (Y(3)), and HI443 (Y(4)). …”
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