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12541por Ahmed, Hany, Leyrolle, Quentin, Koistinen, Ville, Kärkkäinen, Olli, Layé, Sophie, Delzenne, Nathalie, Hanhineva, Kati“…Abbreviations:4-EPS 4-ethylphenylsulfate; 5-AVA(B) 5-aminovaleric acid (betaine); Aβ Amyloid beta protein; AhR Aryl hydrocarbon receptor; ASD Autism spectrum disorder; BBB Blood–brain barrier; BDNF Brain-derived neurotrophic factor; CNS Central nervous system; GABA ɣ-aminobutyric acid; GF Germ-free; MIA Maternal immune activation; SCFA Short-chain fatty acid; 3M-4-TMAB 3-methyl-4-(trimethylammonio)butanoate; 4-TMAP 4-(trimethylammonio)pentanoate; TMA(O) Trimethylamine(-N-oxide); TUDCA Tauroursodeoxycholic acid; ZO Zonula occludens proteins…”
Publicado 2022
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12542por Pu, Guang, Hou, Liming, Du, Taoran, Wang, Binbin, Liu, Hang, Li, Kaijun, Niu, Peipei, Zhou, Wuduo, Huang, Ruihua, Li, Pinghua“…Moreover, the increase in fiber intake promoted the digestion of fiber, production of short chain fatty acids (SCFAs), and enhanced microbial pyruvate metabolism and butanoate metabolism. In conclusion, short-term high fiber feeding has no adverse effects on the growth performance of finishing pigs. …”
Publicado 2022
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12543por Beale, David J., Nguyen, Thao V., Shah, Rohan M., Bissett, Andrew, Nahar, Akhikun, Smith, Matthew, Gonzalez-Astudillo, Viviana, Braun, Christoph, Baddiley, Brenda, Vardy, Suzanne“…Turtles exposed to PFAS displayed altered amino acid and butanoate metabolisms, as well as altered purine and pyrimidine metabolism. …”
Publicado 2022
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12544“…The method’s analytical performance was verified in terms of precision, linearity, accuracy, and robustness (applying a Plackett–Burman design). The developed method was applied for the determination of MXL enantiomers in pharmaceuticals. …”
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12545“…World assumptions scale (R. Janoff-Bulman) (Padun, Kotelnikova, 2007) 3. Purpose-in-Life Test (J. …”
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12546“…The objective of this study was to optimize the culture conditions and medium components for maximal xylanase production from a newly isolated Trichoderma harzianum strain using the Plackett–Burman Design (PBD) and Box Behnken Design (BBD) experimental strategies. …”
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12547por Campo-Sabariz, Joan, García-Vara, Adriana, Moral-Anter, David, Briens, Mickael, Hachemi, Mohammed A., Pinloche, Eric, Ferrer, Ruth, Martín-Venegas, Raquel“…The role of 2-hydroxy-(4-methylseleno)butanoic acid (OH-SeMet), a form of organic selenium (Se), in selenoprotein synthesis and inflammatory response of THP1-derived macrophages stimulated with lipopolysaccharide (LPS) has been investigated. …”
Publicado 2022
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12548por He, Xuejia, Zhang, Ting, Zeng, Yubing, Pei, Pei, Liu, Yulan, Jia, Wenbin, Zhao, Hongyang, Bi, Meirong, Wang, Shan“…In this study, we found that the butanoate metabolism pathway exhibited significantly decreased and short chain fatty acid (SCFAs)-producing bacteria, especially butyrate-producing bacteria, were significantly decreased in fecal of neonatal hypoxic–ischemic brain damage (HIBD) rats. …”
Publicado 2022
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12549“…A chemometric design of experiment-based approach was utilized comprising a Placket–Burman design (PBD) and central composite design (CCD) for screening and optimization of significant variables of derivatization and FPSE protocol, respectively. …”
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12550por Ma, Jinghao, Cheng, Liujie, Zhang, Yujiao, Liu, Yuchun, Sun, Qi, Zhang, Jie, Liu, Xiaoyan, Fan, Guangsen“…The optimal conditions for 3-Met production by YHM-G were obtained by single factor design, Plackett–Burman design, steepest ascent path design and response surface methodology as follows: 42.7 g/L glucose, pH 6, 0.9 g/L yeast extract, 6 g/L L-methionine (L-Met), culture temperature 28 °C, shaking speed 210 rpm, loading volume 50 mL/250 mL, inoculum size 0.5% (v/v), culturing period 48 h and 2.5 g/L Tween-80. …”
Publicado 2022
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12551“…Aspalathus linearis (Burman f.) R. Dahlgren (known as rooibos tea) exhibits a wide range of activities beneficial for cardio-metabolic health. …”
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12552por Alanazi, Wael A., Alhamami, Hussain N., Alshamrani, Ali A., Alqahtani, Faleh, Alshammari, Abdulrahman, Alhazzani, Khalid, Alswayyed, Mohammed“…Also, several plasma metabolites including butanoic acid, N-methylphenylethanolamine, oxalic acid, l-alanine, phosphoric acid, l-theorinine, pyroglutamic acid, and 2-bromosebacic acid were changed by GEF. …”
Publicado 2023
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12553por Numan, Muhammad, Shah, Muddaser, Asaf, Sajjad, Ur Rehman, Najeeb, Al-Harrasi, Ahmed“…From the identified bacteria, four compounds—1 (4-(4-cinnamoyloxy)phenyl)butanoic acid), 2 (cyclo-(L-Pro-D-Tyr)), 3 (cyclo-(L-Val-L-Phe)), and 4 (cyclo-(L-Pro-L-Val))—were isolated and characterized by 1D and 2D NMR and mass spectroscopy. …”
Publicado 2022
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12554“…According to the Jaccard index of similarity, caddisfly species assemblages of Mongolia’s ten sub-basins were divided into two main groups: One group includes the Selenge, Shishkhed, Bulgan, Tes, and Depression of Great Lakes sub-basins; the other group includes the Kherlen, Onon, Khalkh Gol, Valley of Lakes, and Gobi sub-basins. …”
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12555por Inukai, Yosuke, Yamamoto, Kenta, Honda, Takashi, Ito, Takanori, Imai, Norihiro, Ishizu, Yoji, Nakamura, Masanao, Kawashima, Hiroki, Ishigami, Masatoshi“…PICRUSt2 analysis showed some metabolic pathways, including butanoate (butyrate) metabolism, were enriched in the nondiarrhea group when compared with those in the diarrhea group. …”
Publicado 2023
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12556por Samant, Pratik, Ruysscher, Dirk de, Hoebers, Frank, Canters, Richard, Hall, Emma, Nutting, Chris, Maughan, Tim, Van den Heuvel, Frank“…BACKGROUND AND PURPOSE: A popular Normal tissue Complication (NTCP) model deployed to predict radiotherapy (RT) toxicity is the Lyman-Burman Kutcher (LKB) model of tissue complication. …”
Publicado 2023
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12557por Jain, Rajeev, Jain, Bharti, Kabir, Abuzar, Bajaj, Atul, Ch, Ratnasekhar, Sharma, Shweta“…Design of experiment-based optimization was performed using Placket-Burman Design (PBD) and Central Composite Design (CCD) for the screening of significant factors of FPSE and their optimization, respectively. …”
Publicado 2023
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12558“…Notably, the substrate preferences of some mutants towards different chain-length substrates were enhanced: I24Y for n-heptanal, I27F for n-decanal and n-dodecanal, V28F for n-dodecanal, F87Y for n-decanal, C70F for n-hexanal, A118F for n-butanal, A121F for C(4,6,7) aldehydes, V184F for n-dodecanal and n-decanal, M193Y for C(6–10) aldehydes and L198F for C(7–10) aldehydes. …”
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12559por Egea, J., Fabregat, I., Frapart, Y.M., Ghezzi, P., Görlach, A., Kietzmann, T., Kubaichuk, K., Knaus, U.G., Lopez, M.G., Olaso-Gonzalez, G., Petry, A., Schulz, R., Vina, J., Winyard, P., Abbas, K., Ademowo, O.S., Afonso, C.B., Andreadou, I., Antelmann, H., Antunes, F., Aslan, M., Bachschmid, M.M., Barbosa, R.M., Belousov, V., Berndt, C., Bernlohr, D., Bertrán, E., Bindoli, A., Bottari, S.P., Brito, P.M., Carrara, G., Casas, A.I., Chatzi, A., Chondrogianni, N., Conrad, M., Cooke, M.S., Costa, J.G., Cuadrado, A., My-Chan Dang, P., De Smet, B., Debelec-Butuner, B., Dias, I.H.K., Dunn, J.D., Edson, A.J., El Assar, M., El-Benna, J., Ferdinandy, P., Fernandes, A.S., Fladmark, K.E., Förstermann, U., Giniatullin, R., Giricz, Z., Görbe, A., Griffiths, H., Hampl, V., Hanf, A., Herget, J., Hernansanz-Agustín, P., Hillion, M., Huang, J., Ilikay, S., Jansen-Dürr, P., Jaquet, V., Joles, J.A., Kalyanaraman, B., Kaminskyy, D., Karbaschi, M., Kleanthous, M., Klotz, L.O., Korac, B., Korkmaz, K.S., Koziel, R., Kračun, D., Krause, K.H., Křen, V., Krieg, T., Laranjinha, J., Lazou, A., Li, H., Martínez-Ruiz, A., Matsui, R., McBean, G.J., Meredith, S.P., Messens, J., Miguel, V., Mikhed, Y., Milisav, I., Milković, L., Miranda-Vizuete, A., Mojović, M., Monsalve, M., Mouthuy, P.A., Mulvey, J., Münzel, T., Muzykantov, V., Nguyen, I.T.N., Oelze, M., Oliveira, N.G., Palmeira, C.M., Papaevgeniou, N., Pavićević, A., Pedre, B., Peyrot, F., Phylactides, M., Pircalabioru, G.G., Pitt, A.R., Poulsen, H.E., Prieto, I., Rigobello, M.P., Robledinos-Antón, N., Rodríguez-Mañas, L., Rolo, A.P., Rousset, F., Ruskovska, T., Saraiva, N., Sasson, S., Schröder, K., Semen, K., Seredenina, T., Shakirzyanova, A., Smith, G.L., Soldati, T., Sousa, B.C., Spickett, C.M., Stancic, A., Stasia, M.J., Steinbrenner, H., Stepanić, V., Steven, S., Tokatlidis, K., Tuncay, E., Turan, B., Ursini, F., Vacek, J., Vajnerova, O., Valentová, K., Van Breusegem, F., Varisli, L., Veal, E.A., Yalçın, A.S., Yelisyeyeva, O., Žarković, N., Zatloukalová, M., Zielonka, J., Touyz, R.M., Papapetropoulos, A., Grune, T., Lamas, S., Schmidt, H.H.H.W., Di Lisa, F., Daiber, A.Enlace del recurso
Publicado 2017
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12560por Fathima, Artnice Mega, Chuang, Derrick, Laviña, Walter Alvarez, Liao, James, Putri, Sastia Prama, Fukusaki, Eiichiro“…Previously, targeted metabolomics on the 1-butanol-producing cyanobacterial strain Synechococcus elongatus BUOHSE has revealed the reduction step from butanoyl-CoA to butanal, catalyzed by CoA-acylating propionaldehyde dehydrogenase (PduP), as a rate-limiting step in the CoA-dependent pathway. …”
Publicado 2018
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