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We further demonstrate how sector specific recognition enables growing crystals to separate molecules from complex solutions.
Magnetic carriers are an effective option to withdraw selected target molecules from complex mixtures or to immobilize enzymes.
Chromatographic separation of molecules from complex mixtures is an important analytical technique.
In general, a pattern at the micro- to nanoscales would allow to fragmentize, separate, or select the desired molecules from complex mixture.
Biological affinity chromatography combined with advanced detectors has the advantages of high throughput and good selectivity, which is widely used for screening bioactive molecules from complex matrixes and also for studying binding interactions between molecules and specific receptors.
A rapid and sensitive analytical system such as high-performance liquid chromatography/ion trap tandem mass spectrometry (HPLC/IT-MS/MS) was applied to identify both large and small molecules from complex biological systems [ 27].
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Immunoprecipitates were incubated for 24 h to enable the potential release of molecules from complexes, while they were kept at 4°C to prevent enzymatic autodegradation.
Our work not only starts new applications of SiO2@Au nanoshells in mass spectrometry, but also contributes to advanced analysis of either a group of small molecules or one target small molecule from complex bio-samples in a pre-designed manner for bio-diagnostics.
Purifications of bioactive molecules from the complex crude plant or animal extracts were made possible with the use of biorefinery and bioconversion techniques.
The magnetic properties of this nanocomposite enable simple separation of targeted molecules from a complex matrix while the silver acts as a platform for surface-enhanced Raman scattering (SERS).
Stimuli responsive polymers (SRPs) with ion exchange functional groups can be used to selectively capture and release charged molecules from a complex mixture using physical stimuli to trigger conformational transitions in the polymer.
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