Linear solvation energy relationships (LSERs) amended by the introduction of a molecular electronic factor were employed to establish quantitative structure-retention relationships using immobilized artificial membrane (IAM) chromatography, in particular ionizable solutes. The chromatographic indices, log k(IAM), were determined by HPLC on an IAM.PC.DD2 column for 53 structurally diverse compounds, including neutral, acidic and basic compounds. Unlike neutral compounds, the IAM chromatographic retention of ionizable compounds was affected by their molecular charge state. When the mean net charge per molecule (delta) was introduced into the amended LSER as the sixth variable, the LSER regression coefficient was significantly improved for the test set including ionizable solutes. The delta coefficients of acidic and basic compounds were quite different indicating that the molecular electronic factor had a markedly different impact on the retention of acidic and basic compounds on IAM column. Ionization of acidic compounds containing a carboxylic group tended to impair their retention on IAM, while the ionization of basic compounds did not have such a marked effect. In addition, the extra-interaction with the polar head of phospholipids might cause a certain change in the retention of basic compounds. A comparison of calculated and experimental retention indices suggested that the semi-empirical LSER amended by the addition of a molecular electronic factor was able to reproduce adequately the experimental retention factors of the structurally diverse solutes investigated.
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http://dx.doi.org/10.1016/j.chroma.2006.07.073 | DOI Listing |
Chem Biodivers
January 2025
Jiangxi University of Chinese Medicine, Research Center for Differentiation and Development of CM Basic Theory of Jiangxi University of Chinese Medicine, Jiangxi Province Key Laboratory of CM Etiopathogenesis, Nanchang, Jiangxi, China, 330004, 330004, nan chang, CHINA.
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State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, China.
The aromatic compound β-phenylethanol (2-PE) is inherently toxic and can inhibit cell activity in Saccharomyces cerevisiae, making it highly challenging to enhance strain tolerance through rational design due to the lack of reliable connections between tolerance phenotype and genetic loci. This study employed adaptive laboratory evolution strategy to investigate the tolerance characteristics of S. cerevisiae S288C under inhibitory concentrations of 2-PE.
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January 2025
Lanzhou University, School of Basic Medical Sciences, CHINA.
Dearomatization reactions are among the most straightforward and efficient methods for creating sp3-rich cyclic systems from simple, readily available arenes. These reactions have been widely applied in the total synthesis of natural products, medicinal chemistry, and material sciences. The fruitful development of dearomatization strategies and methodologies targeting single aromatic substrate over the past decades has paved the way for more sophisticated multiple dearomatization processes, which offer greater advantages in constructing molecular complexity.
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Kyoto University: Kyoto Daigaku, Graduate Schools of Pharmaceutical Sciences, 46-29, Yoshidashimoadachi-cho, Sakyo-ku, 606-8501, Kyoto, JAPAN.
Novel circularly-polarized-luminescence (CPL) materials were designed and synthesized by integrating the intrinsic chirality of helicene with the acid/base-responsive properties of fluorescein. The synthesized helicene-fluorescein hybrids exhibit reversible switching between blue fluorescence under neutral conditions and red fluorescence under basic conditions. Furthermore, these hybrid compounds demonstrate unique chiroptical switching behavior with a rare base-triggered CPL sign inversion, where (P)-isomers show a negative CPL signal around 450 nm under neutral conditions and a positive signal around 620 nm under basic conditions, with three-fold enhanced dissymmetry factors (|glum|) under basic conditions.
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Department of Biology, Faculty of Science, Hacettepe University, Ankara, Turkey.
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