keyword
https://read.qxmd.com/read/38667539/graphene-in-3d-bioprinting
#1
REVIEW
Rahul Patil, Stella Alimperti
Three-dimensional (3D) bioprinting is a fast prototyping fabrication approach that allows the development of new implants for tissue restoration. Although various materials have been utilized for this process, they lack mechanical, electrical, chemical, and biological properties. To overcome those limitations, graphene-based materials demonstrate unique mechanical and electrical properties, morphology, and impermeability, making them excellent candidates for 3D bioprinting. This review summarizes the latest developments in graphene-based materials in 3D printing and their application in tissue engineering and regenerative medicine...
March 25, 2024: Journal of Functional Biomaterials
https://read.qxmd.com/read/38662219/constructing-a-3d-ion-transport-channel-based-cnf-composite-film-with-an-intercalated-structure-for-superior-performance-flexible-supercapacitors
#2
JOURNAL ARTICLE
Chunxia Yan, Fangyue Cheng, Jie Guan, Zhimao Li, Can Wang, Nannan Chen, Chunzu Cheng, Feijun Wang, Ziqiang Shao
The weak stiffness, huge thickness, and low specific capacitance of commonly utilized flexible supercapacitors hinder their great electrochemical performance. Learning from a biomimetic interface strategy, we design flexible film electrodes based on functional intercalated structures with excellent electrochemical properties and mechanical flexibility. A composite film with high strength and flexibility is created using graphene (reduced graphene oxide (rGO)) as the plane layer, layered double metal hydroxide (LDH) as the support layer, and cellulose nanofiber (CNF) as the connection agent and flexible agent...
April 25, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38657216/effect-of-antimicrobial-agent-coating-on-physicochemical-and-biologic-properties-of-implant-abutments-a-systematic-review
#3
JOURNAL ARTICLE
Murilo Rodrigues de Campos, Andréa Cândido Dos Reis
PURPOSE: To analyze the effectiveness of coating of abutments with antimicrobial agents and their influence on the physicochemical and biologic properties of the coated materials. MATERIALS AND METHODS: This work was registered in Open Science Framework (osf.io/6tkcp) and followed the PRISMA protocols. A search of two independent reviewers of articles published up to October 29, 2021, was performed in the Embase, PubMed, Science Direct, and Scopus databases. RESULTS: The databases found a total of 1,474 references...
April 24, 2024: International Journal of Oral & Maxillofacial Implants
https://read.qxmd.com/read/38656754/teicoplanin-decorated-reduced-graphene-oxide-incorporated-silk-protein-hybrid-hydrogel-for-accelerating-infectious-diabetic-wound-healing-and-preventing-diabetic-foot-osteomyelitis
#4
JOURNAL ARTICLE
Bianza Moise Bakadia, Ruizhu Zheng, Abeer Ahmed Qaed Ahmed, Zhijun Shi, Bakamona Lina Babidi, Sun Tun, Ying Li, Guang Yang
Developing hybrid hydrogel dressings with anti-inflammatory, antioxidant, angiogenetic, and antibiofilm activities with higher bone tissue penetrability to accelerate diabetic wound healing and prevent diabetic foot osteomyelitis (DFO) is highly desirable in managing diabetic wounds. Herein, the glycopeptide teicoplanin is used for the first time as a green reductant to chemically reduce graphene oxide (GO). The resulting teicoplanin-decorated reduced graphene oxide (rGO) is incorporated into a mixture of silk proteins (SP) and crosslinked with genipin to yield a physicochemically crosslinked rGO-SP hybrid hydrogel...
April 24, 2024: Advanced Healthcare Materials
https://read.qxmd.com/read/38651800/bioinspired-carbonized-polymer-microspheres-for-full-color-whispering-gallery-mode-emission-for-white-light-emission-unclonable-anticounterfeiting-and-chemical-sensing-applications
#5
JOURNAL ARTICLE
Barun Kumar Barman, David Hernández-Pinilla, Thang Duy Dao, Kenzo Deguchi, Shinobu Ohki, Kenjiro Hashi, Atsushi Goto, Tsuyoshi Miyazaki, Karuna Kar Nanda, Tadaaki Nagao
Light-element-based fluorescent materials, colloidal graphene quantum dots, and carbon dots (CDs) have sparked an immense amount of scientific interest in the past decade. However, a significant challenge in practical applications has emerged concerning the development of solid-state fluorescence (SSF) materials. This study addresses this knowledge gap by exploring the unexplored photonic facets of C-based solid-state microphotonic emitters. The proposed synthesis approach focuses on carbonized polymer microspheres (CPMs) instead of conventional nanodots...
April 23, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38646931/advances-in-nanotechnology-for-improving-the-targeted-delivery-and-activity-of-amphotericin-b-2011-2023-a-systematic-review
#6
REVIEW
Tahereh Zadeh Mehrizi, Nariman Mossafa, Mohammad Vodjgani, Hasan Ebrahimi Shahmabadi
Amphotericin B (AmB) is a broad-spectrum therapeutic and effective drug, but it has serious side effects of toxicity and solubility. Therefore, reducing its toxicity should be considered in therapeutic applications. Nanotechnology has paved the way to improve drug delivery systems and reduce toxicity. The present study, for the first time, comprehensively reviews the studies from 2011 to 2023 on reducing the in vitro toxicity of AmB. The findings showed that loading AmB with micellar structures, nanostructured lipid carriers, liposomes, emulsions, poly lactide-co-glycolide acid, chitosan, dendrimers, and other polymeric nanoparticles increases the biocompatibility and efficacy of the drug and significantly reduces toxicity...
April 22, 2024: Nanotoxicology
https://read.qxmd.com/read/38645584/study-of-mechanical-property-and-biocompatibility-of-graphene-oxide-meo-2-ma-hydrogel-scaffold-for-wound-healing-application
#7
JOURNAL ARTICLE
Anh Hue Luong, Dwita Istiqomah, Wei-Chih Lin
Wound healing is a complex biological process crucial for restoring tissue integrity and preventing infections. The development of advanced materials that facilitate and expedite the wound-healing process has been a focal point in biomedical research. In this study, we aimed to enhance the wound-healing potential of hydrogel scaffolds by incorporating graphene oxide and poly (ethylene glycol) methyl ether methacrylate (MEO2 MA). Various masses of graphene oxide were added to MEO2 MA hydrogels via free radical polymerisation...
May 2024: Biomedical Engineering Letters
https://read.qxmd.com/read/38638320/graphene-oxide-%C3%AE%C2%B5-poly-l-lysine-self-assembled-functionalized-coatings-improve-the-biocompatibility-and-antibacterial-properties-of-titanium-implants
#8
JOURNAL ARTICLE
Xiaoxiao You, Zhongke Wang, Li Wang, Youbo Liu, Hongmei Chen, Xiaorong Lan, Ling Guo
The construction of an antibacterial biological coating on titanium surface plays an important role in the long-term stability of oral implant restoration. Graphene oxide (GO) has been widely studied because of its excellent antibacterial properties and osteogenic activity. However, striking a balance between its biological toxicity and antibacterial properties remains a significant challenge with GO. ε-poly-L-lysine (PLL) has broad-spectrum antibacterial activity and ultra-high safety performance. Using Layer-by-layer self-assembly technology (LBL), different layers of PLL/GO coatings and GO self-assembly coatings were assembled on the surface of titanium sheet...
2024: Frontiers in Bioengineering and Biotechnology
https://read.qxmd.com/read/38634639/lanthanum-iii-hydroxide-nanoparticles-and-polyethyleneimine-functionalized-graphene-quantum-dot-nanocomposites-in-photosensitive-silicon-heterojunctions
#9
JOURNAL ARTICLE
Aslıhan Anter, Elif Orhan, Murat Ulusoy, Barış Polat, Mustafa Yıldız, Arun Kumar, Antonio Di Bartolomeo, Enver Faella, Maurizio Passacantando, Jinshun Bi
Lanthanides are largely used in optoelectronics as dopants to enhance the physical and optical properties of semiconducting devices. In this study, lanthanum(III)hydroxide nanoparticles (La(OH)3 NPs) are used as a dopant of polyethylenimine (PEI)-functionalized nitrogen (N)-doped graphene quantum dots ( PEI-N GQDs ). The La(OH) 3 NPs-doped PEI-N GQDs nanocomposites are prepared from La(NO)3 in a single step by a green novel method and are characterized by Fourier-transform infrared spectroscopy (FT-IR), ultraviolet-visible spectroscopy (UV-vis), X-ray photoelectron spectroscopy (XPS), and transmission electron microscopy (TEM)...
April 18, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38629300/enhanced-electron-transfer-efficiency-of-fructose-dehydrogenase-onto-roll-to-roll-thermal-stamped-laser-patterned-reduced-graphene-oxide-films
#10
JOURNAL ARTICLE
Davide Paolini, Flavio Della Pelle, Annalisa Scroccarello, Filippo Silveri, Paolo Bollella, Giovanni Ferraro, Eole Fukawa, Yohei Suzuki, Keisei Sowa, Luisa Torsi, Dario Compagnone
Herein, a strategy to stamp laser-produced reduced graphene oxide (rGO) onto flexible polymers using only office-grade tools, namely, roll-to-roll thermal stamping, is proposed, proving for the first time its effectiveness for direct bioelectrocatalysis. This straightforward, scalable, and low-cost approach allows us to overcome the limits of the integration of laser-induced rGO-films in bioanalytical devices. Laser-produced rGO has been thermally stamped (TS) onto different polymeric substrates (PET, PVC, and EVA) using a simple roll-laminator; the obtained TS-rGO films have been compared with the native rGO (untransferred) via morphochemical and electrochemical characterization...
April 17, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38629219/injectable-in-situ-gelling-methylcellulose-based-hydrogels-for-bone-tissue-regeneration
#11
JOURNAL ARTICLE
Lorenzo Bonetti, Silvia Borsacchi, Alessandra Soriente, Alberto Boccali, Lucia Calucci, Maria Grazia Raucci, Lina Altomare
Injectable bone substitutes (IBSs) represent a compelling choice for bone tissue regeneration, as they can be exploited to optimally fill complex bone defects in a minimally invasive manner. In this context, in situ gelling methylcellulose (MC) hydrogels may be engineered to be free-flowing injectable solutions at room temperature and gels upon exposure to body temperature. Moreover, incorporating a suitable inorganic phase can further enhance the mechanical properties of MC hydrogels and promote mineralization, thus assisting early cell adhesion to the hydrogel and effectively guiding bone tissue regeneration...
April 17, 2024: Journal of Materials Chemistry. B, Materials for Biology and Medicine
https://read.qxmd.com/read/38626838/polyvinyl-alcohol-chitosan-quaternary-ammonium-salt-composite-hydrogel-with-directional-macroporous-structure-for-photothermal-synergistic-antibacterial-and-wound-healing-promotion
#12
JOURNAL ARTICLE
Xianyu Lan, Hang Yang, Yuzhu Xiong, Guanyue Zeng, Fuping Dong
After skin tissue trauma, wound infections caused by bacteria posed a great threat to skin repair. However, resistance to antibiotics, the current treatment of choice for bacterial infections, greatly affected the efficiency of anti-infection and wound healing. Therefore, there has been a critical need for the development of novel antimicrobial materials and advanced therapeutic methods to aid in skin repair. In this paper, rGO-PDA@ZIF-8 nanofillers were prepared by coating graphene oxide (GO) with dopamine (DA), followed by in situ growth of zeolite imidazolate framework-8 (ZIF-8)...
April 14, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38626779/mussel-shell-derived-pro-regenerative-scaffold-with-conductive-porous-multi-scale-patterned-microenvironment-for-spinal-cord-injury-repair
#13
JOURNAL ARTICLE
Wenming Yin, Chang Yang, Dan Liu, Shuhan Cha, Liu Cai, Genlan Ye, Xiaoping Song, Jifeng Zhang, Xiaozhong Qiu
It is well-established that multi-scale porous scaffolds can guide axonal growth and facilitate functional restoration after spinal cord injury (SCI). In this study, we developed a novel mussel shell-inspired conductive scaffold for SCI repair with ease of production, multi-scale porous structure, high flexibility, and excellent biocompatibility. By utilizing the reducing properties of polydopamine, non-conductive graphene oxide (GO) was converted into conductive reduced graphene oxide (rGO) and crosslinked in situ within the mussel shells...
April 16, 2024: Biomedical Materials
https://read.qxmd.com/read/38619731/compounding-methylene-blue-with-selenium-decorated-graphene-quantum-dots-to-improve-singlet-oxygen-production-for-photodynamic-therapy-application
#14
JOURNAL ARTICLE
Ammar Khorshidi, Ali Bahari, Vaheed Fallah Hamidabadi
Graphene quantum dots (GQDs) are known as suitable material to be applied in different fields such as photodynamic therapy (PDT). Herein, GQDs were synthesized by the pyrolysis method and then decorated with selenium (Se). Afterward, they were combined with methylene blue (MB) to increase singlet oxygen generation as well as to apply them more effectively in the PDT method. Furthermore, GQDs were investigated by transmission electron microscope (TEM), photoluminescence spectrum (PL), Fourier-transform infrared spectroscopy (FTIR), field emission scanning electron microscope (FESEM), reactive oxygen species (ROS) measurement, and cytotoxicity measurement...
April 15, 2024: Journal of Fluorescence
https://read.qxmd.com/read/38619237/correction-to-suspended-graphene-oxide-nanoparticle-for-accelerated-multilayer-osteoblast-attachment
#15
(no author information available yet)
No abstract text is available yet for this article.
April 15, 2024: Journal of Biomedical Materials Research. Part A
https://read.qxmd.com/read/38616703/microwave-assisted-hydrothermal-synthesis-of-na-3-v-2-po-4-2-f-3-nanocuboid-reduced-graphene-oxide-as-an-ultrahigh-rate-and-superlong-lifespan-cathode-for-fast-charging-sodium-ion-batteries
#16
JOURNAL ARTICLE
Jieduo Guan, Shilin Zhou, Jiajie Zhou, Fangdan Wu, Xiaoyan Shi, Junling Xu, Lianyi Shao, Zhiqiang Luo, Zhipeng Sun
Na3 V2 (PO4 )2 F3 (NVPF) has been regarded as a favorable cathode for sodium-ion batteries (SIBs) due to its high voltage and stable structure. However, the limited electronic conductivity restricts its rate performance. NVPF@reduced graphene oxide (rGO) was synthesized by a facile microwave-assisted hydrothermal approach with subsequent calcination to shorten the hydrothermal time. NVPF nanocuboids with sizes of 50-150 nm distributed on rGO can be obtained, delivering excellent electrochemical performance such as a longevity life (a high capacity retention of 85...
April 15, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38615809/comparison-of-developmental-toxicity-of-graphene-oxide-and-graphdiyne-to-zebrafish-larvae
#17
JOURNAL ARTICLE
Wanyan Wu, Weichao Zhao, Chaobo Huang, Yi Cao
Graphdiyne (GDY) is a new member of family of carbon-based 2D nanomaterials (NMs), but the environmental toxicity is less investigated compared with other 2D NMs, such as graphene oxide (GO). In this study, we compared with developmental toxicity of GO and GDY to zebrafish larvae. It was shown that exposure of zebrafish embryos from 5 h post fertilization to GO and GDY for up to 5 days decreased hatching rate and induced morphological deformity. Behavioral tests indicated that GO and GDY treatment led to hyperactivity of larvae...
April 12, 2024: Comparative Biochemistry and Physiology. Toxicology & Pharmacology: CBP
https://read.qxmd.com/read/38611741/an-electrochemical-immunosensor-based-on-chitosan-graphene-nanosheets-for-aflatoxin-b1-detection-in-corn
#18
JOURNAL ARTICLE
Shuai Zhang, Caizhang Wu, Zhike Zhao, Kun Xu
We reported a highly efficient electrochemical immunosensor utilizing chitosan-graphene nanosheets (CS-GNs) nanocomposites for the detection of aflatoxin B1 (AFB1 ) in corn samples. The CS-GNs nanocomposites, serving as a modifying layer, provide a significant specific surface area and biocompatibility, thereby enhancing both the electron transfer rate and the efficiency of antibody immobilization. The electrochemical characterization was conducted utilizing both differential pulse voltammetry (DPV) and electrochemical impedance spectroscopy (EIS)...
March 25, 2024: Molecules: a Journal of Synthetic Chemistry and Natural Product Chemistry
https://read.qxmd.com/read/38607101/transferable-g-au-film-for-constructing-a-variety-of-sers-substrates
#19
JOURNAL ARTICLE
Xinyu Zhang, Xin Cai, Naiqiang Yin, Yingying Wang, Yang Jiao, Chundong Liu
Surface-enhanced Raman scattering (SERS), as one of the most powerful analytical methods, undertakes important inspection tasks in various fields. Generally, the performance of an SERS-active substrate relies heavily on its structure, which makes it difficult to integrate multiple-functional detectability on the same substrate. To address this problem, here we designed and constructed a film of graphene/Au nanoparticles (G/Au film) through a simple method, which can be conveniently transferred to different substrates to form various composite SERS substrates subsequently...
March 25, 2024: Nanomaterials
https://read.qxmd.com/read/38606967/enhancing-efficiency-and-stability-in-carbon-based-perovskite-solar-cells-by-double-passivation-with-ultralow-cost-coal-derived-graphene-and-its-derivatives
#20
JOURNAL ARTICLE
Ke Zhao, QiXu Hu, Jianzhao Cao, Ying Qi, Peng Wei, Yanyan Lu, Jian Cheng, Yahong Xie
Coal-derived carbon nanomaterials possess numerous superior features compared to other classic carbon, such as readily accessible surfaces, tunable pore structure, and facile and precise surface functionalization. Therefore, the controllable preparation of coal-derived carbon nanomaterials is anticipated to be of great significance for the performance improvement and commercialization process of carbon-based perovskite solar cells (C-PSCs). In this study, we successfully synthesized highly stable and commercially valuable graphene oxide (GO) and reduced graphene oxide (rGO) utilizing coal...
April 12, 2024: ACS Applied Materials & Interfaces
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