Capillary electrophoresis (CE) has a wide range of applications in analytical fields due to its advantages of low sample consumption, short separation time, and high separation efficiency. The cathodic electroosmotic flow (EOF) and single electrophoretic separation mechanism are not optimal for many CE applications. Hence, the use of an unmodified fused-silica capillary leads to insufficient separation performance that cannot meet the requirements for various complex sample systems, especially neutral and chiral compounds. Therefore, it is necessary to introduce various capillary modification strategies in CE so that its potential for practical application can be expanded. Mussel-inspired polydopamine (PDA) and PDA-derived coating materials have fascinating advantages such as simple surface coating procedures, strong surface adhesiveness, good chemical stability, latent reactivity with many functionalized molecules, and good biocompatibility. Thus, they have been widely utilized in different research fields, including catalysis, sensing, water treatment, sample pretreatment, biomedicine, chromatographic separation, and CE. The preparation of PDA coatings is simple as it involves physical adsorption, and the obtained surface adhesive coatings possess good stability similar to covalently bonded coatings. Therefore, PDA and PDA-derived coatings are well suited for the modification of fused-silica capillaries. More importantly, the PDA coating can be utilized as an intermediate reaction platform for diverse subsequent surface modification because of its strong surface adhesive property and strong latent reactivity with many functionalized molecules (such as polymers, proteins, and nanomaterials). Consequently, various chromatographic retention mechanisms can be introduced on the inner wall of the capillary, thereby contributing to the fabrication of multi-functional PDA-based stationary phases for CEC. Owing to these outstanding advantages, researchers are paying increasing attention to the great application potential of PDA and PDA-derived coatings in CEC. In this paper, recent advances in the methods for preparing PDA coatings, especially the recently developed fabrication strategies and various applications of PDA-modified silica capillary in open tubular-capillary electrochromatography (OT-CEC) and capillary electrochromatography monolithic columns, are summarized and discussed. Furthermore, the application prospects of PDA-based coating materials in CEC are prospected in this review. Although PDA and PDA-derived coating materials are seeing widespread utilization in field of CEC, researchers have still not reached a definite conclusion regarding the PDA formation and coating mechanisms, and further investigation is needed in this direction. The PDA coatings formed using existing methods are generally thin. In the early stage, many studies adopted the strategy of repeated coating to improve the coating effect of PDA in capillaries, but this method was found to be time-consuming and less efficient. In order to improve the preparation efficiency of PDA-modified CEC columns, many researchers have focused on fast deposition induced by a strong oxidant to obtain PDA-coated columns. However, the controllability of the PDA coating obtained by this method is poor. Thus, it is necessary to further explore new preparation strategies for PDA-coated CEC capillaries with better reproducibility and stronger operability. On the other hand, although a strategy for directly synthesizing functional PDA-coated CEC columns in the organic phase has been proposed, its application potential in CEC remains to be further explored. In addition, the PDA coating itself has poor porosity and a small specific surface area, which may be significantly improved by modifying the coating on the porous monolithic column surface. However, there has been limited research on the use of PDA coatings in monolithic columns, and their application potential remains to be expanded. With in-depth research into the formation mechanism and preparation methodologies of PDA coatings, PDA, which is a highly malleable biomimetic material, will play a more important role in advances in the fields of CE and CEC.
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http://dx.doi.org/10.3724/SP.J.1123.2020.03004 | DOI Listing |
Int J Pharm
January 2025
Key Laboratory of Modern Preparation of TCM, Ministry of Education, Jiangxi University of Chinese Medicine, Nanchang 330004 China; School of Pharmaceutics, China Pharmaceutical University, 639 Longmian Avenue, Nanjing 211198 China. Electronic address:
The combination of chemotherapy and photothermal therapy not only improves the therapeutic effect but also limits the side effects of drugs. Herein, a multi-responsive dual-modality bone-targeted drug delivery vehicle for the treatment of osteosarcoma was designed by utilizing alendronate sodium as a bone-targeting ligand for the targeted delivery of doxorubicin (DOX) loaded polydopamine nanoparticles (PDA NPs) coated with γ-polyglutamic acid (APC@PDA/DOX NPs). The average size of spherical NPs was 140.
View Article and Find Full Text PDFColloids Surf B Biointerfaces
December 2024
College of Chemical Engineering, Xinjiang Normal University, 102 Xinyi Road, Urumqi 830054, P.R. China. Electronic address:
Infection and insufficient osseointegration are the primary factors leading to the failure of titanium-based implants. Surface coating modifications that combine both antibacterial and osteogenic properties are commonly employed strategies. However, the challenge of achieving rapid antibacterial action and consistent osteogenesis with these coatings remains unresolved.
View Article and Find Full Text PDFSci Rep
January 2025
Key Laboratory for Information System of Mountainous Area and Protection of Ecological Environment of Guizhou Province, Guizhou Normal University, Guian, 550025, China.
Removal of accumulated dyes from the environment water bodies is essential to prevent further harm to humans. The development and design of new alternative nanoadsorbents that can conveniently, quickly, and efficiently improve the adsorption and removal efficiency of dyes from wastewater remains a huge challenge. An amorphous TiO with a magnetic core-shell-shell structure (FeO@PDA@a-TiO, denoted as FPaT) was constructed through a series of steps.
View Article and Find Full Text PDFLangmuir
January 2025
School of Environment and Safety Engineering, North University of China, Taiyuan 030051, China.
An ammonium perchlorate (AP) composite system with double-coating encapsulation based on the interfacial polymerization behavior of dopamine (DA) in Pickering emulsions was designed to enhance the combustion performance of HTPB-based propellants. The composite system proved highly effective in mitigating the agglomeration issues associated with iron oxide nanoparticles (FeO NPs) as catalysts, with the AP exhibiting superior performance compared to the composite comprising pure FeO NPs. The results of the thermal decomposition experiments showed that the HTD temperature of AP@PDA@FeO was reduced to 318.
View Article and Find Full Text PDFMacromol Rapid Commun
January 2025
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University, Shanghai, 201620, China.
Functional fibrous membranes with high mechanical properties are intensively developed for different application fields. In this study, to enhance moisture and air permeability without compromising mechanical strength, a facile float-surface modification strategy is employed to fabricate Janus fibrous membranes with distinct hydrophobicity/hydrophilicity using the high-density polyethylene (HDPE) fibrous membranes. By coating one side of the HDPE fibrous membranes with polydopamine (PDA) and a superhydrophilic polyelectrolyte, the obtained Janus HDPE fibrous membranes demonstrate an excellent water transmission rate (577.
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