4.8 Review

Zwitterionic Biomaterials

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Shengwei Xiao et al.

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Mixed-charge pseudo-zwitterionic copolymer brush as broad spectrum antibiofilm coating

Yang Wu et al.

Summary: This study demonstrates the effectiveness of a novel mixed-charge copolymer brush coating in combating biofilm formation, outperforming traditional zwitterionic polymers. By utilizing oppositely charged monomers, a greater than 99% reduction in biofilm formation was achieved against various bacteria in vitro, with excellent long-term efficacy in murine infection models. These findings suggest the potential of combining readily available singly charged monomers for potent antibiofilm applications.

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Ionic conductive hydrogels with long-lasting antifreezing, water retention and self-regeneration abilities

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Summary: Conductive hydrogels face issues of water freezing, water loss, and inability to self-regenerate, but the introduction of highly hydratable lithium chloride has led to the development of a novel ionic conductive hydrogel with antifreezing, water retention, and self-regeneration abilities. This hydrogel can withstand ultralow temperatures for extended periods and rapidly self-regenerate even in dehydrated states.

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Machine Learning-Enabled Repurposing and Design of Antifouling Polymer Brushes

Yonglan Liu et al.

Summary: This study developed a data-driven, machine learning workflow combined with a benchmark dataset to discover the antifouling property of existing polymer brushes and design new ones. The resulting machine learning models showed reliability, predictivity, and established composition-structure-property relationships.

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A water-triggered highly self-healable elastomer with enhanced mechanical properties achieved using localized zwitterionic assemblies

Jungsoon Kang et al.

Summary: This study demonstrates the synthesis of a water-triggered highly self-healable elastomer with excellent optical and mechanical properties through localized zwitterionic assemblies using a newly proposed blending method. The elastomer with localized zwitterionic clusters shows superior self-healing efficiency under both dry and wet conditions compared with conventional nonionic elastomers and ionic elastomers with randomly distributed ions. These properties are attributed to the unique intermolecular network resulting from strong interactions between localized zwitterionic clusters.

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Nonspecific Binding-Fundamental Concepts and Consequences for Biosensing Applications

Andreas Frutiger et al.

Summary: The differentiation between specific and nonspecific binding in molecular interactions has been achieved in nature through precise control of biomolecules. However, artificial biosensors have struggled to overcome this issue. Through theoretical models and classification frameworks, it is possible to gain a better understanding and optimize the performance of biosensors, while exploring ways to address the challenge of nonspecific binding.

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Cartilage lamina splendens inspired nanostructured coating for biomaterial lubrication

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Summary: A nanostructured film based on hyaluronic acid and glutathione was proposed to enhance lubrication between cartilage and PCU. The coating of HADN-Glu effectively protected cartilage and exhibited successful grafting onto the PCU surface, enabling enhanced lubrication for potential implant design.

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Marine antifouling coatings with surface topographies triggered by phase segregation

Xin Su et al.

Summary: Marine biofouling is a widespread and longstanding challenge, and new coating technologies can effectively address this issue. Surface structure designs triggered by phase segregation can endow coatings with antifouling properties and reduce the driving forces for marine organism adsorption.

JOURNAL OF COLLOID AND INTERFACE SCIENCE (2021)

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Multifunctional filtration membrane with anti-viscous-oils-fouling capacity and selective dyes adsorption ability for complex wastewater remediation

Liang Zhou et al.

Summary: This study presents a simple method to fabricate multifunctional filtration membranes (MFMs) with super-hydrophilic/underwater super-oleophobic performance for purifying oil-in-water emulsions. The MFM shows strong chemical and physical resistance, as well as the ability to adsorb soluble dyes and metallic ions, making it ideal for treating complex wastewater.

JOURNAL OF HAZARDOUS MATERIALS (2021)

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Zwitterionic hydrogel-coated heart valves with improved endothelialization and anti-calcification properties

Yu Luo et al.

Summary: In this study, modified bioprosthetic heart valves with enhanced endothelial cell affinity were developed to improve biocompatibility and anti-calcification properties. After 30 days of subcutaneous implantation, the improved valves showed reduced immune response and calcification compared to traditional BHVs.

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Skin-like mechanoresponsive self-healing ionic elastomer from supramolecular zwitterionic network

Wei Zhang et al.

Summary: The stretchable ionic elastomer demonstrated in the study exhibits high stretchability, immense strain-stiffening, good self-healing ability, excellent elasticity, high transparency, anti-freezing properties, water reprocessibility, and easy-to-peel adhesion, making it very promising for use in wearable electronic sensors for human-machine interfacing.

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Summary: Redox phospholipid polymers composed of ferrocene or quinone units were prepared as anticancer redox polymers, which can disrupt intracellular redox state and selectively suppress the viability of cancer cells based on their reactivity with intracellular redox species and O-2. The redox potential of the polymers plays a critical role in determining the impact on the viability of human cancer and normal cells.

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Summary: The COHGs fabricated in this study exhibit excellent mechanical properties and low-swellable behavior in water or oil, thanks to the synergistic collaboration of covalent linkages, electrostatic interaction, and hydrogen bonding. The amphiphilic heteronetworks possess switchable surface wettability in response to different solvents, and strong wet adhesion to various surfaces, making them ideal for practical applications. The elastic surfaces combined with amphiphilic and zwitterionic features show remarkable fouling resistance and recyclable utilization, presenting a promising approach for the development of high-performance and ecofriendly antifouling materials.

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Yan Li et al.

Summary: The study utilized charge-switchable zwitterionic polycarboxybetaine (PCB) to load insulin and form PCB/insulin (PCB/INS) particles, which showed an opening effect on intestinal epithelium, increasing the intestinal permeability of insulin and enhancing the antidiabetic efficacy after oral administration.

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Bioinspired zwitterionic polyphosphoester modified porous silicon nanoparticles for efficient oral insulin delivery

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Summary: The study showed that zwitterionic polyphosphoester modified porous silicon nanoparticles play an important role in oral delivery of protein or peptide drugs, enhancing mucus permeability and cellular internalization.

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Bifunctional polymer brush-grafted coronary stent for anticoagulation and endothelialization

Tianyu Zhu et al.

Summary: A bifunctional polymer brush-grafted coronary stent was developed to address clinical complications such as delayed endothelialization, late thrombosis and restenosis. The coating demonstrated good anticoagulant property and significant endothelialization effect, potentially offering a solution to post-operative side effects associated with restenosis and late stent thrombosis.

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Zwitterionic electrospun PVDF fibrous membranes with a well-controlled hydration for diabetic wound recovery

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