Although herb medicines have become the major source for new drug discovery, many of them are largely under-explored due to the purity-activity relationship. Efficient identification of bioactive compounds in conventional stepwise separation and isolation has not yet been elucidated. Therefore, we proposed a new separation strategy for holism understanding of herb pharmacology using molecularly imprinted polymers (MIPs). Astragali Radix (AR), important in traditional Chinese medicine, was chosen in this study for multicomponent knockout followed by bioactivity evaluation. We prepared calycosin molecularly imprinted polymers (calycosin-MIPs) which could selectively recognize flavonoid aglycons in AR. The molecular selectivity of calycosin-MI...
<p>The standard procedures for the identification, authentication, and quality control of medi...
In this review, we report a new reverse approach (from finding bioactive molecules to separating tar...
Astragali Radix (AR), a Chinese materia medica (CMM) known as Huangqi, is an important medicine pres...
A new straightforward approach to extract active components from Chinese traditional herb was report...
Species misidentification and adulteration are major concerns in authenticating herbal medicines. Ra...
Species misidentification and adulteration are major concerns in authenticating herbal medicines. Ra...
In this work, synergism and antagonism among active ingredients of traditional Chinese medicine (TCM...
Molecular imprinting technique is becoming an appealing and prominent strategy to synthesize materia...
A molecularly imprinted polymer (MIP) was prepared using (E)-piceatannol, a natural potential anti-e...
Molecularly imprinted polymers (MIPs) represent a new class of materials possessing high selectivity...
Astragali Radix (AR), a Chinese materia medica (CMM) known as Huangqi, is an important medicine pres...
Astragali Radix (AR) is a widely used “Qi-invigorating” herb in China for its tonic effe...
Master's thesis in Biological ChemistryAbstract Introduction Over the past decade, the worldwi...
Astragali Radix (AR) is a widely used “Qi-invigorating” herb in China for its tonic effe...
Abstract Introduction Over the past decade, the worldwide consumption and sales of Traditional Ch...
<p>The standard procedures for the identification, authentication, and quality control of medi...
In this review, we report a new reverse approach (from finding bioactive molecules to separating tar...
Astragali Radix (AR), a Chinese materia medica (CMM) known as Huangqi, is an important medicine pres...
A new straightforward approach to extract active components from Chinese traditional herb was report...
Species misidentification and adulteration are major concerns in authenticating herbal medicines. Ra...
Species misidentification and adulteration are major concerns in authenticating herbal medicines. Ra...
In this work, synergism and antagonism among active ingredients of traditional Chinese medicine (TCM...
Molecular imprinting technique is becoming an appealing and prominent strategy to synthesize materia...
A molecularly imprinted polymer (MIP) was prepared using (E)-piceatannol, a natural potential anti-e...
Molecularly imprinted polymers (MIPs) represent a new class of materials possessing high selectivity...
Astragali Radix (AR), a Chinese materia medica (CMM) known as Huangqi, is an important medicine pres...
Astragali Radix (AR) is a widely used “Qi-invigorating” herb in China for its tonic effe...
Master's thesis in Biological ChemistryAbstract Introduction Over the past decade, the worldwi...
Astragali Radix (AR) is a widely used “Qi-invigorating” herb in China for its tonic effe...
Abstract Introduction Over the past decade, the worldwide consumption and sales of Traditional Ch...
<p>The standard procedures for the identification, authentication, and quality control of medi...
In this review, we report a new reverse approach (from finding bioactive molecules to separating tar...
Astragali Radix (AR), a Chinese materia medica (CMM) known as Huangqi, is an important medicine pres...