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Off-line combination of countercurrent separation (CCS) and quantitative H NMR (qHNMR) methodologies enabled the systematic dissection and gravimetric quantification of a chemically complex crude extract (RCE). The loss-free nature and high selectivity of CCS achieved the quantitative discrimination of fatty acids (FAs), sugars, and proanthocyanidins (PACs) from ten other metabolite classes: phenylpropanoids, phenylethanoids, acyclic monoterpenoid glycosides, pinene derived glycosides, benzyl alcohol glycosides, cyanogenic glycosides, flavonoids, gallic acids, methylparabens, and cuminol glycosides. The ability of CCS to remove ("knockout") PACs completely resolved challenges with baselines that plague NMR and UHPLC analyses and produce inaccurate integral and AUC quantitation, respectively. NMR analysis of the non-PAC fractions enabled unambiguous identification of metabolites and their characteristic resonances for subsequent multitarget absolute quantification by qHNMR using a single, nonidentical internal calibrant (IC). An orthogonal LC-MS/MS method validated the gravimetric nature of the CCS-qHNMR analytical tandem. Underlying this LC-based cross-validation, comprehensive phytochemical isolation and characterization established 19 single-compound reference standards that represented all ten metabolite classes. Finally, quantum mechanical H iterative Full Spin Analysis (HiFSA) of each standard provided a blueprint for future structural dereplication, identification, and quantification of marker constituents. The combination of two gravimetric analytical methods, loss-free CCS and IC-qHNMR, realizes the first chemical standardization of a botanical material that comprehensively captures a metabolome and permits absolute quantification.
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http://dx.doi.org/10.1021/acs.analchem.1c01554 | DOI Listing |
J Chromatogr A
October 2025
Biothermodynamics, TUM School of Life Sciences, Technical University of Munich, 85354 Freising, Germany. Electronic address:
In liquid-liquid chromatography (LLC), the volume of the stationary phase and the contact area between the mobile and stationary phases depend on the mobile phase flow rate and rotational speed (i.e., the g-force) applied to keep the liquid stationary phase in the column while pumping the mobile phase.
View Article and Find Full Text PDFJ Chromatogr A
October 2025
Renewable Resources and Enabling Sciences Center, National Renewable Energy Laboratory, Golden, CO 80401, USA. Electronic address:
Counter-current chromatography (CCC) is a separation technique that utilizes immiscible solvent pairs as stationary and mobile phases, which imparts numerous benefits compared to solid-liquid chromatography including the ability to treat either the more-dense or less-dense solvent layer as the mobile phase. Multi-dual mode (MDM) is a CCC elution mode capable of improving the separation of closely eluting compounds by alternating upper- and lower-layer solvent flows in opposing directions within the same separation. While some effort has been made to model MDM, implementation of these models in experimental design has yet to be widely adopted.
View Article and Find Full Text PDFJ Sep Sci
August 2025
College of Pharmaceutical Science, Zhejiang University of Technology, Hangzhou, China.
Comprehensive two-dimensional reverse phase countercurrent chromatography (CCC)×high performance liquid chromatography (HPLC) was investigated for chemical profiling and identification of bioactive components with anti-inflammatory activities for a traditional Chinese medicine formula, Hongteng Baijiang decoction (HBD), for the first time. Anti-inflammatory activity of different extractions from HBD were evaluated. Two-dimensional contour plots for CCC×HPLC were obtained after comprehensive separation was completed.
View Article and Find Full Text PDFSci Adv
August 2025
Department of Physics, University of Massachusetts, Amherst, MA 01003, USA.
Waiting in a line (or a queue) is an unavoidable social interaction that occurs frequently in public spaces. Despite its wide prevalence and rich parametric variability, few studies have addressed the risks of airborne infection while waiting in a line. Here, we use a combination of laboratory experiments and direct numerical simulations to assess the flow patterns in a simplified waiting line setting.
View Article and Find Full Text PDFJ Chromatogr A
September 2025
CC Biotech LLC, 15 Taft Ct. #243, Rockville, MD, 20850-5318, USA. Electronic address:
In 1968 Yoichiro Ito came to the National Institutes of Health as an accomplished biomedical engineer having embarked on developing separation devices for blood cells. An early device for measuring blood fragility was produced in Japan and two early coil planet centrifuges were built. Ito remained at the NIH for over 50 years and accomplished many innovations in instrument design for partition chromatography, achieving high efficiency separation of all types of molecules.
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