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1 f WT-L1 adhesion was between 1-butanol and 1-pentanol.
2 esis of the 6-carbon alcohol, (S)-3-methyl-1-pentanol.
3 pentanol was 7.5 times higher than for (R)-2-pentanol.
4 from the boron complex upon treatment with 1-pentanol.
5 tane, n-hexane, n-heptane, 1 -butanol, and 1-pentanol.
6 2-hexanol, benzoic acid, benzaldehyde, and 1-pentanol.
7 he production of valerate (0.61 g L(-1)) and pentanol (0.33 g L(-1)), which are rare products in CO-f
9 2,4-decadienal, 1-octen-3-one, 2-decanone, 1-pentanol, 1-octen-3-ol, geosmin and 2,3-diethyl-5-methyl
10 -phenylethanol (PEA), 2-butanol (BUT), and 2-pentanol (2-PEN) with the highest ee up to 82.4% but als
11 1-octen-3-one, 2-nonanone, 1-nonen-3-one, 1-pentanol, 2-pentyl furan, 2-isopropyl-3-methoxypyrazine,
14 ng natural E. coli metabolites into 4-methyl-pentanol (4MP) via coenzyme A (CoA)-dependent chemistry
15 evels of Oscillospira and higher levels of 1-pentanol and 2-butanone in NAFL patients compared to CTR
17 At optimized conditions (FLMs consisted of 1-pentanol and extraction solutions of deionized water and
19 mM phosphate buffer, pH 10.7), FLM (10 muL 1-pentanol), and donor solution (20 muL sample/standard so
21 valuated on methanol, ethanol, 1-propanol, 1-pentanol, and 1-octanol using a commercial cross-polariz
22 Finally, PLSR analysis allowed to select 1-pentanol as putative marker of sensory alteration and he
23 ane gave, after protonolysis, (R)-3-methyl-1-pentanol as well as (R)- and (S)-3-methyl-1-hexanols in
24 for the alkane solutes), the saturation by 1-pentanol causes a dramatic increase of the alcohol parti
25 ropionate, trans-2-pentenoate, valerate, and pentanol, compounds with applications that include biofu
26 , 2,3 pinanediol, 3-oxo-ionol and 3-methyl-1-pentanol, coumaran and damascenone; in Rondinella, hexan
27 ids, namely cetyl trimethylammonium chloride/pentanol/D(2)O and sodium lauryl sulfate/octanol/brine l
28 ants (pentanoic acid, methyl pentanoate, and pentanol) did not recruit new areas of glomerular activa
29 ry were 2-amylfuran, (E/Z)-2,6-nonadienal, 1-pentanol, epoxylinalool, (Z)-jasmone, 2-acetylpyrrole, f
32 on cell-cell adhesion were antagonized by 1-pentanol (IC(50) = 715 microM) and 1-octanol (IC(50) = 3
33 f eight VOCs (ethanol, 3-methylbutan-1-ol, 1-pentanol, octanal, nonanal, ethyl acetate, ethyl octanoa
34 arbonaceous plasma composed of CO(2)/MgCl(2)/Pentanol or N(2)O/Pentanol for O and MgCl(2)/Pentanol fo
35 ary phase is very small, both n-hexane and 1-pentanol partition strongly into and thereby swell the s
39 alkane solutes for both the n-hexane- and 1-pentanol-swollen stationary phases, the effects on the a
41 ohols (ethanol, 1-propanol, 1-butanol, and 1-pentanol) to the corresponding carboxylates was carried
42 ling idea to an associated liquid 4-methyl-2-pentanol used as an example, we identify different press
43 for (R)-2-butanol, while the K(m) for (S)-2-pentanol was 7.5 times higher than for (R)-2-pentanol.
47 including 3-pentanone, cyclopentanone, and 1-pentanol, were further identified, none of which have be