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Rigorous recognition mode analysis of molecularly imprinted polymers—Rational design, challenges, and opportunities
Y Liu, L Wang, H Li, L Zhao, Y Ma, Y Zhang… - Progress in polymer …, 2024 - Elsevier
Supramolecular chemistry now presents an elaborate „enabling tool “that offers exciting
opportunities for novel functional material design. One of the areas to benefit from recent …
opportunities for novel functional material design. One of the areas to benefit from recent …
Molecularly imprinted polymers: antibody mimics for bioimaging and therapy
Molecularly imprinted polymers (MIPs) are tailor-made chemical receptors that recognize
and bind target molecules with a high affinity and selectivity. MIPs came into the spotlight in …
and bind target molecules with a high affinity and selectivity. MIPs came into the spotlight in …
Molecularly imprinted polymers as synthetic antibodies for protein recognition: the next generation
Molecularly imprinted polymers (MIPs) are chemical antibody mimics obtained by
nanomoulding the 3D shape and chemical functionalities of a desired target in a synthetic …
nanomoulding the 3D shape and chemical functionalities of a desired target in a synthetic …
A review: Development and application of surface molecularly imprinted polymers toward amino acids, peptides, and proteins
W Zhang, Y Zhang, R Wang, P Zhang, Y Zhang… - Analytica Chimica …, 2022 - Elsevier
Molecularly imprinted polymers (MIPs) have received wide interests in the bioanalysis field
as “artificial antibodies”. They can mimic biological receptors by selectively recognizing and …
as “artificial antibodies”. They can mimic biological receptors by selectively recognizing and …
Boronate affinity materials for separation and molecular recognition: structure, properties and applications
Boronate affinity materials, as unique sorbents, have emerged as important media for the
selective separation and molecular recognition of cis-diol-containing compounds. With the …
selective separation and molecular recognition of cis-diol-containing compounds. With the …
Synthesis and applications of boronate affinity materials: from class selectivity to biomimetic specificity
Z Liu, H He - Accounts of chemical research, 2017 - ACS Publications
Conspectus Due to the complexity of biological systems and samples, specific capture and
targeting of certain biomolecules is critical in much biological research and many …
targeting of certain biomolecules is critical in much biological research and many …
Review on molecularly imprinted polymers with a focus on their application to the analysis of protein biomarkers
Molecularly imprinted polymers (MIPs) are a type of artificial polymer, which have
complementary cavities that are designed to bind a specific target molecule with a high …
complementary cavities that are designed to bind a specific target molecule with a high …
Molecularly imprinted polymer nanoparticles: an emerging versatile platform for cancer therapy
Molecularly imprinted polymers (MIPs) are chemically synthesized affinity materials with
tailor‐made binding cavities complementary to the template molecules in shape, size, and …
tailor‐made binding cavities complementary to the template molecules in shape, size, and …
Bioinspired and biomimetic micro-and nanostructures in biomedicine
AP Johnson, C Sabu, KP Nivitha, R Sankar… - Journal of Controlled …, 2022 - Elsevier
Bioinspired and biomimetic micro-and nanostructures have a high significance in the field of
biomedicine. In this review, the possible applications of these micro-and nanostructures that …
biomedicine. In this review, the possible applications of these micro-and nanostructures that …
Recent advances in molecular imprinting technology: current status, challenges and highlighted applications
L Chen, S Xu, J Li - Chemical Society Reviews, 2011 - pubs.rsc.org
Molecular imprinting technology (MIT) concerns formation of selective sites in a polymer
matrix with the memory of a template. Recently, molecularly imprinted polymers (MIPs) have …
matrix with the memory of a template. Recently, molecularly imprinted polymers (MIPs) have …