keyword
https://read.qxmd.com/read/38296644/chemotherapeutics-loaded-poly-dopamine-core-shell-nanoparticles-for-breast-cancer-treatment
#21
JOURNAL ARTICLE
Miranda Steeves, Diego Combita, William Whelan, Marya Ahmed
Chemophotothermal therapy is an emerging treatment for metastatic and drug resistant cancer anomalies. Among various photothermal agents tested, polydopamine provides an excellent biocompatible alternative that can be used to develop novel drug delivery carriers for cancer treatment. This study explores the synthesis of starch encapsulated, polydopamine coated core-shell nanoparticles, in a one pot synthesis approach and by surfactant free approach. The nanoparticles produced are embellished with polymeric stealth coatings and are tested for their physiological stability, photothermal properties, and drug delivery in metastatic triple negative breast cancer cell (TNBC) lines...
January 31, 2024: Journal of Pharmacology and Experimental Therapeutics
https://read.qxmd.com/read/38291883/highly-resilient-noncovalently-associated-hydrogel-adhesives-for-wound-sealing-patch
#22
JOURNAL ARTICLE
Gi-Yeon Han, Ji-Yong Park, Jong-Ho Back, Mo-Beom Yi, Hyun-Joong Kim
The development of hydrogel adhesives with high mechanical resilience and toughness remains a challenging task. Hydrogels must exhibit high mechanical resilience to withstand the inevitable movement of the human body while simultaneously demonstrating strong wet tissue adhesion and appropriate toughness to hold and seal damaged tissues. However, tissue adhesion, toughness, and mechanical resilience are typically negatively correlated. Therefore, this paper proposes a highly resilient double-network (DN) hydrogel wound-sealing patch that exhibits a well-balanced combination of tissue adhesion, toughness, and mechanical resilience...
January 30, 2024: Advanced Healthcare Materials
https://read.qxmd.com/read/38279254/silver-and-antimicrobial-polymer-nanocomplexes-to-enhance-biocidal-effects
#23
JOURNAL ARTICLE
Diana Pereira, Susana Ferreira, Gloria Belén Ramírez-Rodríguez, Nuno Alves, Ângela Sousa, Joana F A Valente
Antimicrobial resistance has become a major problem over the years and threatens to remain in the future, at least until a solution is found. Silver nanoparticles (Ag-NPs) and antimicrobial polymers (APs) are known for their antimicrobial properties and can be considered an alternative approach to fighting resistant microorganisms. Hence, the main goal of this research is to shed some light on the antimicrobial properties of Ag-NPs and APs (chitosan (CH), poly-L-lysine (PLL), ε-poly-L-lysine (ε-PLL), and dopamine (DA)) when used alone and complexed to explore the potential enhancement of the antimicrobial effect of the combination Ag-NPs + Aps...
January 19, 2024: International Journal of Molecular Sciences
https://read.qxmd.com/read/38251178/correction-li-et-al-fabrication-of-poly-dopamine-poly-lactic-acid-co-glycolic-acid-nanohybrids-for-cancer-therapy-via-a-triple-collaboration-strategy-nanomaterials-2023-13-1447
#24
Yunhao Li, Yujuan Gao, Zian Pan, Fan Jia, Chenlu Xu, Xinyue Cui, Xuan Wang, Yan Wu
The authors regret that, in the published article [...].
January 16, 2024: Nanomaterials
https://read.qxmd.com/read/38244309/an-antifouling-electrochemical-aptasensor-based-on-a-polydopamine-polyzwitterion-copolymer-for-tetracycline-analysis
#25
JOURNAL ARTICLE
Qiyue Wu, Meirong Niu, Dabing Ren, Lunzhao Yi, Kun Ge, Ying Gu
Matrix interference resulting from the nonspecific adsorption of non-target components, particularly proteins (fouling), onto sensor surfaces poses a persistent challenge in electrochemical detection of food hazards. The development of antifouling sensor surfaces presents a viable approach to mitigate nonspecific adsorption. In this study, a novel antifouling electrochemical aptasensor, utilizing a zwitterionic polymer, was developed for the sensitive, accurate, and selective detection of tetracycline (TC) in milk...
January 4, 2024: Talanta
https://read.qxmd.com/read/38240342/wound-microenvironment-regulatory-poly-l-glutamic-acid-composite-hydrogels-containing-metal-ion-coordinated-nanoparticles-for-effective-hemostasis-and-wound-healing
#26
JOURNAL ARTICLE
Yanzheng Chen, Xueliang Zhang, Qing Wang, Chang Du, Chang-Ming Dong
Regulating the wound microenvironment to promote proliferation, vascularization, and wound healing is challenging for hemostats and wound dressings. Herein, polypeptide composite hydrogels have been simply fabricated by mixing a smaller amount of metal ion-coordinated nanoparticles into dopamine-modified poly(L-glutamic acid) (PGA), which had a microporous size of 10-16 μm, photothermal conversion ability, good biocompatibility, and multiple biological activities. In vitro scratch healing of fibroblast L929 cells and the tube formation of HUVECs provide evidence that the PGA composite hydrogels could promote cell proliferation, migration, and angiogenesis with the assistance of mild photothermia...
January 19, 2024: Biomaterials Science
https://read.qxmd.com/read/38237945/sprayable-zwitterionic-antibacterial-hydrogel-with-high-mechanical-resilience-and-robust-adhesion-for-joint-wound-treatment
#27
JOURNAL ARTICLE
Qinsheng Hu, Yangrui Du, Yangjing Bai, Dandan Xing, Shiying Lang, Kaijun Li, Xinyun Li, Yong Nie, Gongyan Li
Wound healing in movable parts, including joints and neck, remains a critical challenge due to frequent motions and poor flexibility of dressings, which may lead to mismatching of mechanical properties and poor fitting between dressings and wounds, thus increasing the risk of bacterial infection. Hence, this study proposed a sprayable zwitterionic antibacterial hydrogel with outstanding flexibility and desirable adhesion. This hydrogel precursor was fabricated by combining zwitterionic sulfobetaine methacrylate (SBMA) with poly(sulfobetaine methacrylate-co-dopamine methacrylamide)-modified silver nanoparticles (PSBDA@AgNPs) through robust electrostatic interactions...
January 18, 2024: Macromolecular Rapid Communications
https://read.qxmd.com/read/38212854/mussel-inspired-electroactive-antibacterial-and-antioxidative-composite-membranes-with-incorporation-of-gold-nanoparticles-and-antibacterial-peptides-for-enhancing-skin-wound-healing
#28
JOURNAL ARTICLE
Yongkang Dong, Zheng Wang, Jiapeng Wang, Xuedi Sun, Xiaoyu Yang, Guomin Liu
Large skin wounds are one of the most important health problems in the world. Skin wound repair and tissue regeneration are complex processes involving many physiological signals, and effective wound healing remains an enormous clinical challenge. Therefore, there is an urgent need for a strategy to rapidly kill bacteria, promote cell proliferation and accelerate wound healing. At present, electrical stimulation (ES) is often used in the clinical treatment of skin wounds and can simulate the endogenous biological current of the body and accelerate the repair process of skin wounds...
January 11, 2024: Journal of Biological Engineering
https://read.qxmd.com/read/38182401/a-novel-self-assembled-dual-emissive-ratiometric-fluorescent-nanoprobe-for-alkaline-phosphatase-sensing
#29
JOURNAL ARTICLE
Zhixuan Han, Nan Wang, Yuntai Lv, Qingjie Fu, Guannan Wang, Xingguang Su
BACKGROUND: Alkaline phosphatase (ALP) is widely found in various organs and tissues of the human body which could assist in the verification of the presence of various diseases through its content in the blood. In the past few years, many analytical methods for ALP activity assays have been explored. However, a simple and economical method with high sensitivity and specificity also remains great challenge. Therefore, the development of sensitive and efficient approach for ALP analysis is of great significance in biomedical studies...
January 25, 2024: Analytica Chimica Acta
https://read.qxmd.com/read/38146181/influence-of-dopamine-methacrylamide-on-swelling-behavior-and-nanomechanical-properties-of-pnipam-microgels
#30
JOURNAL ARTICLE
Sandra Forg, Xuhong Guo, Regine von Klitzing
The combination of the catechol-containing comonomer dopamine methacrylamide (DMA) with stimuli-responsive poly( N -isopropylacrylamide) (PNIPAM) microgels bears a huge potential in research and for applications due to the versatile properties of catechols. This research gives the first detailed insights into the influence of DMA on the swelling of PNIPAM microgels and their nanomechanical properties. Dynamic light scattering measurements showed that DMA decreases the volume phase transition temperature and completion temperature due to its higher hydrophobicity when compared to NIPAM, while sharpening the transition...
December 25, 2023: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38131328/enhancing-targeted-therapy-in-hepatocellular-carcinoma-through-a-ph-responsive-delivery-system-folic-acid-modified-polydopamine-paclitaxel-loaded-poly-3-hydroxybutyrate-co-3-hydroxyvalerate-nanoparticles
#31
JOURNAL ARTICLE
Mingfang Wu, Qi Wang, Yaya Peng, Xiaohui Liang, Xiaofeng Lv, Siying Wang, Chen Zhong
Currently, there is an inherent contradiction between the multifunctionality and excellent biocompatibility of anticancer drug nanocarriers, which limits their application. Therefore, to overcome this limitation, we aimed to develop a biocompatible drug delivery system for the treatment of hepatocellular carcinoma (HCC). In this study, we employed poly(3-hydroxybutyrate- co -3-hydroxyvalerate) (PHBV) as the fundamental framework of the nanocarrier and utilized the emulsion solvent evaporation method to fabricate nanoparticles loaded with paclitaxel (PTX), known as PTX-PHBV NPs...
December 22, 2023: Molecular Pharmaceutics
https://read.qxmd.com/read/38109414/a-4d-printed-adhesive-thermo-contractile-and-degradable-hydrogel-for-diabetic-wound-healing
#32
JOURNAL ARTICLE
Zhe Lu, Jingjing Cui, Fukang Liu, Chen Liang, Shiwei Feng, Yongding Sun, Weizi Gao, Yunlong Guo, Biao Zhang, Wei Huang
Chronic wound healing remains a substantial clinical challenge. Current treatments are often either prohibitively expensive or insufficient in meeting the various requirements needed for effective diabetic wound healing. A 4D printing multifunctional hydrogel dressing is reported here, which aligns perfectly with wounds owning various complex shapes and depths, promoting both wound closure and tissue regeneration. The hydrogel is prepared via digital light process (DLP) 3D printing of the mixture containing N-isopropylacrylamide (NIPAm), curcumin-loaded Pluronic F127 micelles (Cur-PF127), and poly(ethylene glycol) diacrylate-dopamine (PEGDA575-Do), a degradable crosslinker...
December 18, 2023: Advanced Healthcare Materials
https://read.qxmd.com/read/38099260/an-active-site-anchoring-strategy-for-the-preparation-of-pbo-fiber-derived-carbon-catalyst-towards-an-efficient-oxygen-reduction-reaction-and-zinc-air-batteries
#33
JOURNAL ARTICLE
Weihua Zhong, Zuoxu Xiao, Yunjun Luo, Dianbo Zhang, Xiangdong Chen, Jinwang Bai
In order to promote the wide application of clean energy-fuel cells, it is urgent to develop transition metal-based high-efficiency oxygen reduction reaction (ORR) catalytic materials with a low cost and available rich raw material resources to replace the currently used precious metal platinum-based catalytic materials. Herein, a novel 'active-site-anchoring' strategy was developed to synthesize highly-activated carbon-based ORR catalysts. Firstly, poly( p -phenylene benzobisoxazole) (PBO) fiber with a stable chemical structure was selected as the main precursor, and iron was complexed on its surface, and then poly-dopamine (PDA) was coated on the surface of PBO-Fe to form a PBO-Fe-PDA composite structure...
December 8, 2023: RSC Advances
https://read.qxmd.com/read/38098133/mechanically-reinforced-and-injectable-universal-adhesive-based-on-a-pei-paa-alg-dual-network-hydrogel-designed-by-topological-entanglement-and-catechol-chemistry
#34
JOURNAL ARTICLE
Buyun Chen, Dandan Zhu, Qiang Li, Chenhao Wang, Jiahua Cui, Zhen Zheng, Xinling Wang
Universal adhesion of hydrogels to diverse materials is essential to their extensive applications. Unfortunately, tough adhesion of wet surfaces remains an urgent challenge so far, requiring robust cohesion strength for effective stress dissipation. In this work, a dual-network hydrogel polyethylenimine-poly(acrylic acid)/alginate (PEI-PAA/Alg) with excellent mechanical strength is realized via PEI-PAA complex and calcium alginate coordination for universal adhesion by the synergistic effort of topological entanglement and catechol chemistry...
December 14, 2023: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38042126/synthesis-spectroscopy-band-gap-energy-and-electrical-conductivity-of-poly-dopamine-co-aniline-copolymer
#35
JOURNAL ARTICLE
Merve Hercan Mammad, Mustafa Gülfen, Uğursoy Olgun, Abdil Özdemir
Copolymerization is used to improve the solubility and processability of polymers and copolymers includes the individual properties of homopolymer. In this study, the poly(dopamine-co-aniline) (poly(DA-co-ANI) copolymer was synthesized and the UV-vis. absorption, optical band gap energy, fluorescence, FT-IR, SEM-EDS, MALDI-TOF-MS, XRD and electrical conductivity have been investigated. The obtained results for the poly(DA-co-ANI) copolymer were compared with the PDA and PANI homopolymers. It was observed that the poly(DA-co-ANI copolymer is soluble easily in NMP and DMF solvents...
November 29, 2023: Spectrochimica Acta. Part A, Molecular and Biomolecular Spectroscopy
https://read.qxmd.com/read/37978859/polycaprolactone-based-scaffolds-for-guided-tissue-regeneration-in-periodontal-therapy-a-systematic-review
#36
REVIEW
Florencia Antunovic, Felipe Tolosa, Catherine Klein, René Ocaranza
BACKGROUND: Polycaprolactone (PCL) is a highly recognized synthetic polymer for its biocompatibility, ease of fabrication and mechanical strength in bone tissue engineering. Its applications have extended broadly, including regeneration of oral and maxillofacial lost tissues. Its usefulness has brought attention of researchers to regenerate periodontal lost tissues, including alveolar bone, periodontal ligament and cementum. The aim of this systematic review was to obtain an updated analysis of the contribution of PCL-based scaffolds in the alveolar bone regeneration process...
2023: Journal of Applied Biomaterials & Functional Materials
https://read.qxmd.com/read/37959700/nature-inspired-biomolecular-corona-based-on-poly-caffeic-acid-as-a-low-potential-and-time-stable-glucose-biosensor
#37
JOURNAL ARTICLE
Maria Kuznowicz, Artur Jędrzak, Teofil Jesionowski
Herein, we present a novel biosensor based on nature-inspired poly(caffeic acid) (PCA) grafted to magnetite (Fe3 O4 ) nanoparticles with glucose oxidase (GOx) from Aspergillus niger via adsorption technique. The biomolecular corona was applied to the fabrication of a biosensor system with a screen-printed electrode (SPE). The obtained results indicated the operation of the system at a low potential (0.1 V). Then, amperometric measurements were performed to optimize conditions like various pH and temperatures...
October 26, 2023: Molecules: a Journal of Synthetic Chemistry and Natural Product Chemistry
https://read.qxmd.com/read/37939758/universal-adhesion-using-mussel-foot-protein-inspired-hydrogel-with-dynamic-interpenetration-for-topological-entanglement
#38
JOURNAL ARTICLE
Buyun Chen, Dandan Zhu, Ruixin Zhu, Chenhao Wang, Jiahua Cui, Zhen Zheng, Xinling Wang
Achieving adhesion of hydrogels to universal materials with desirable strength remains a challenge despite emerging application of hydrogels. Herein we present a mussel foot protein (Mfp) inspired polyelectrolyte hydrogel of poly(ethylenimine)/poly(acrylic acid)-dopamine (PEI/PAADA) developed for universal tough adhesion. The highly-concentrated electrostatic and hydrogen-bonding interactions in PEI/PAADA hydrogel resulted in a tensile strength, strain at break, and toughness of 0.297 MPa, 2784 % and 5...
November 6, 2023: International Journal of Biological Macromolecules
https://read.qxmd.com/read/37931325/conjugated-polyelectrolyte-containing-a-high-density-of-pendant-phenylboronic-acid-groups-for-dopamine-detection
#39
REVIEW
Ying Hong, Yuchen Weng, Qin Wu, Lu-Yue Qi, Li-Juan Fan
A fluorescent sensing system based on a conjugated polyelectrolyte was constructed to detect dopamine (DA) in complex samples. The conjugated polymer PFPE-PBA with poly[fluorenyl- alt - p -phenyleneethynylene] (PFPE) as the backbone and carrying four pendant phenylboronic acid (PBA) groups in each repeat unit was synthesized. PFPE-PBA was found to have good solubility in polar solvents. After optimization, glycine-NaOH at pH 10 was selected as the buffer, and the solvent composition of the system was set to methanol/water (9/1 by volume)...
November 6, 2023: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/37916920/adhesive-flexible-and-fast-degradable-3d-printed-wound-dressings-with-a-simple-composition
#40
JOURNAL ARTICLE
Yu Hu, Hao Tang, Nan Xu, Xiaowo Kang, Weijun Wu, Chuhan Shen, Junsheng Lin, Yinyin Bao, Xingyu Jiang, Zhi Luo
3D printing technology has revolutionized the field of wound dressings, offering tailored solutions with mechanical support to facilitate wound closure. In addition to personalization, the intricate nature of the wound healing process requires wound dressing materials with diverse properties, such as moisturization, flexibility, adhesion, anti-oxidation and degradability. Unfortunately, current materials used in digital light processing (DLP) 3D printing have been inadequate in meeting these crucial criteria...
November 2, 2023: Advanced Healthcare Materials
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