keyword
https://read.qxmd.com/read/38628069/endogenous-h-2-s-activated-ag-nanoparticles-embedded-in-programmed-dna-cubes-for-specific-visualization-of-colorectal-cancer-cells
#21
JOURNAL ARTICLE
Wenhui Chen, Wei Mao, Yuqi Yin, Ziyu Ma, Meiqi Song, Zixiao Ma, Tingting Li, Jia Zhu, Chang Liu, Hui Yu, Sheng Tang, Wei Shen
To avoid the unexpected aggregation and reduce the cytotoxicity of nanomaterials as optical probes in cell imaging applications, we propose a programmed DNA-cube as a carrier for silver nanoparticles (Ag NPs) to construct a specific hydrogen sulfide (H2 S) responsive platform (Ag NP@DNA-cube) for diagnosing colorectal cancer (CRC) in this study. The DNA-cube maintains good dispersion of Ag NPs while providing excellent biocompatibility. Based on the characteristic overexpression of endogenous H2 S in CRC cells, the Ag NPs are etched by H2 S within target cells into silver sulfide quantum dots, thereby selectively illuminating the target cells...
April 17, 2024: Chemical Communications: Chem Comm
https://read.qxmd.com/read/38627375/tuning-the-co-2-reduction-selectivity-of-an-immobilized-molecular-ag-complex-beyond-co
#22
JOURNAL ARTICLE
Mani Balamurugan, Jun Ho Jang, Jeong Eun Kim, Won Il Choi, Young In Jo, Sunghak Park, Elumalai Varathan, Ki Tae Nam
The electrochemical reduction of carbon dioxide (CO2 ) to produce fuels and chemicals has garnered significant attention. However, achieving control over the selectivity of the resulting products remains a challenging task, particularly within molecular systems. In this study, we employed a molecular silver complex immobilized on graphitized mesoporous carbon (GMC) as a catalyst for converting CO2 into CO, achieving an impressive selectivity of over 90% at -1.05 V vs RHE. Notably, the newly formed silver nanoparticles emerged as the active sites responsible for this high CO selectivity rather than the molecular system...
April 16, 2024: Inorganic Chemistry
https://read.qxmd.com/read/38623904/li-5-5-ps-4-5-cl-1-5-based-all-solid-state-battery-with-a-silver-nanoparticle-modified-graphite-anode-for-improved-resistance-to-overcharging-and-increased-energy-density
#23
JOURNAL ARTICLE
Bo Pang, Tianqi Yang, Zhan Wu, Zuguang Li, Zheyu Jin, Wenkui Zhang, Yang Xia, Hui Huang, Xinping He, Yongping Gan, Xinhui Xia, Jun Zhang
All-solid-state lithium batteries (ASSLBs) are attracting tremendous attention due to their improved safety and higher energy density. However, the use of a metallic lithium anode poses a major challenge due to its low stability and processability. Instead, the graphite anode exhibits high reversibility for the insertion/deinsertion of lithium ions, giving ASSLBs excellent cyclic stability but a lower energy density. To increase the energy density of ASSLBs with the graphite anode, it is necessary to lower the negative/positive (N/P) capacity ratio and to increase the charging voltage...
April 16, 2024: ACS Applied Materials & Interfaces
https://read.qxmd.com/read/38622420/improving-antifouling-performance-of-fo-membrane-by-surface-immobilization-of-silver-nanoparticles-based-on-a-tannic-acid-diethylenetriamine-precursor-layer-for-municipal-wastewater-treatment
#24
JOURNAL ARTICLE
Yan Sun, ZiXin Yong, Xiaoyang Xie, Xiangdong Ma, Changhao Xu, Bo Hu, JiaoJie He, Yuanqing Guo, Bo Bai
In this study, a facile method for multifunctional surface modification on forward osmosis (FO) membrane was constructed by surface immobilization of AgNPs based on tannic acid (TA)/diethylenetriamine (DETA) precursor layer. The cellulose triacetate (CTA) FO membranes modified by TA and DETA with different co-deposition time (6 h, 12 h, 24 h) were investigated. Results indicated that the TA/DETA (24)-Ag CTA membrane with a TA/DETA co-deposition time of 24 h was identified to be optimal, which attained more hydrophilic...
April 15, 2024: Environmental Science and Pollution Research International
https://read.qxmd.com/read/38622377/mof-based-ag-nps-co-3-o-4-nanozyme-for-colorimetric-detection-of-thiophanate-methyl-based-on-analyte-enhanced-sensing-mechanism
#25
JOURNAL ARTICLE
Yali Huang, Ting Liang, Leiwenxuan Yang, Gaohua Hu, Jianyang Zhang, Chengyin Lu, Hongping Chen, Guicen Ma
Silver nanoparticles supported on metal-organic framework (ZIF-67)-derived Co3 O4 nanostructures (Ag NPs/Co3 O4 ) were synthesized via a facile in situ reduction strategy. The resulting materials exhibited pH-switchable peroxidase/catalase-like catalytic activity. Ag NP doping greatly enhanced the catalytic activity of Ag NPs/Co3 O4 towards 3,3',5,5'-tetramethylbenzidine (TMB) oxidation and H2 O2 decomposition which were 59 times (A652 of oxTMB) and 3 times (A240 of H2 O2 ) higher than that of ZIF-67, respectively...
April 16, 2024: Mikrochimica Acta
https://read.qxmd.com/read/38621254/enhancement-of-the-rate-of-surface-reactions-by-the-elastocapillary-effect
#26
JOURNAL ARTICLE
Nitish Singh, Animangsu Ghatak
We examined the effect of deformability of a solid substrate on the kinetics of a surface reaction that occurs between chemical species present in it and a liquid dispensed on it. In particular, we have dispensed aqueous solutions of gold and silver salt as sessile drops or as a liquid pool on a cross-linked film of poly(dimethylsiloxane) (PDMS). The PDMS surface contains organosilane (SiH), which reduces the salt, producing metallic nanoparticles at the solid-liquid interface. These experiments reveal that, for a sufficiently soft solid, the reaction proceeds about three times faster in the drop mode than in the pool mode...
April 15, 2024: Langmuir: the ACS Journal of Surfaces and Colloids
https://read.qxmd.com/read/38619662/phytonano-silver-for-cosmetic-formulation-synthesis-characterization-and-assessment-of-antimicrobial-and-antityrosinase-potential
#27
JOURNAL ARTICLE
Neethu George, D Gayathri Devi
Novel formulations of silver nanoparticles remain exciting if it is applicable for cosmetic purposes. This study proposes a value-added brand-new nanomaterial for improving skin complexion by inhibiting melanin development. This work aims to develop cost effective, efficient, natural silver nanoparticles phytomediated by aqueous extract of leaf sheath scales of Cocos nucifera (Cn-AgNPs) having potential as tyrosinase inhibitors hindering melanin synthesis. The formation of Cn-AgNPs was assessed spectrophotometrically and confirmed by the sharp SPR spectrum at 425 nm...
April 15, 2024: Discov Nano
https://read.qxmd.com/read/38619424/insight-into-the-nature-of-carbon-metal-bonding-for-n-heterocyclic-carbenes-in-gold-silver-complexes-and-nanoparticles-using-dft-correlated-raman-spectroscopy-strong-evidence-for-%C3%AF-backbonding
#28
JOURNAL ARTICLE
Lucille Kuster, Marilyne Bélanger-Bouliga, Thomas E Shaw, Titel Jurca, Ali Nazemi, Mathieu Frenette
N -Heterocyclic carbenes (NHCs) have emerged as promising ligands for stabilizing metallic complexes, nanoclusters, nanoparticles (NPs) and surfaces. The carbon-metal bond between NHCs and metal atoms plays a crucial role in determining the resulting material's stability, reactivity, function, and electronic properties. Using Raman spectroscopy coupled with density functional theory calculations, we investigate the nature of carbon-metal bonding in NHC-silver and NHC-gold complexes as well as their corresponding NPs...
April 15, 2024: Nanoscale
https://read.qxmd.com/read/38619304/optimizing-wound-healing-examining-the-influence-of-biopolymers-through-a-comprehensive-review-of-nanohydrogel-embedded-nanoparticles-in-advancing-regenerative-medicine
#29
REVIEW
Mahsa Ahmadi, Mahdi Sabzini, Shima Rastgordani, Ashkan Farazin
Nanohydrogel wound healing refers to the use of nanotechnology-based hydrogel materials to promote the healing of wounds. Hydrogel dressings are made up of a three-dimensional network of hydrophilic polymers that can absorb and retain large amounts of water or other fluids. Nanohydrogels take this concept further by incorporating nanoscale particles or structures into the hydrogel matrix. These nanoparticles can be made of various materials, such as silver, zinc oxide, or nanoparticles derived from natural substances like chitosan...
April 15, 2024: International Journal of Lower Extremity Wounds
https://read.qxmd.com/read/38616743/a-green-synthesis-of-au-ag-alloy-nanoparticles-using-polydopamine-chemistry-evaluation-of-their-anticancer-potency-towards-both-mcf-7-cells-and-their-cancer-stem-cells-subgroup
#30
JOURNAL ARTICLE
Honglei Zhan, Shiyu Ding, Ruiyu Shen, Yulong Lv, Xinran Tian, Guie Liu, Chaoyue Li, Jihui Wang
BACKGROUND: Limited chemotherapy efficacy and cancer stem cells (CSCs)-induced therapeutic resistance are major difficulties for tumour treatment. Adopting more efficient therapies to eliminate bulk-sensitive cancer cells and resistant CSCs is urgently needed. METHODS: Based on the potential and functional complementarity of gold and silver nanoparticles (AuNPs or AgNPs) on tumour treatment, bimetallic NPs (alloy) have been synthesized to obtain improved or even newly emerging bioactivity from a combination effect...
April 9, 2024: Anti-cancer Agents in Medicinal Chemistry
https://read.qxmd.com/read/38615814/nanocomposite-based-on-bacterial-cellulose-and-silver-nanoparticles-improve-wound-healing-without-exhibiting-toxic-effect
#31
JOURNAL ARTICLE
Saulo Duarte Ozelin, Tábata Rodrigues Esperandim, Fernanda Gosuen Gonçalves Dias, Lucas de Freitas Pereira, Cristiane Buzatto Garcia, Thiago Olímpio de Souza, Larissa Fernandes Magalhães, Hernane da Silva Barud, Rafael Miguel Sábio, Denise Crispim Tavares
Wound healing is an important and complex process, containing a multifaceted process governed by sequential yet overlapping phases. Certain treatments can optimize local physiological conditions and improve wound healing. Silver nanoparticles (AgNP) are widely known for their antimicrobial activity. On the other hand, bacterial cellulose (BC) films have been used as a dressing that temporarily substitutes the skin, offering many advantages in optimizing wound healing, in addition to being highly biocompatible...
April 12, 2024: Journal of Pharmaceutical Sciences
https://read.qxmd.com/read/38615145/use-of-geopolymers-as-tunable-and-sustained-silver-ion-release-mediums
#32
JOURNAL ARTICLE
Ilknur Kara
Silver was incorporated up to 3.4% (w/w) into the geopolymer structure via precipitation as Ag2 O by dispersing the geopolymer powder in an aqueous solution of AgNO3 . The precipitates were mainly located in the fine pores within the nanoparticles of the geopolymer network. The fine pores enabled the formation of very fine precipitates, mainly between 2 and 5 nm. The silver-incorporated geopolymer was found to have a sustained Ag+ release that can be tuned down by a thermal treatment, e.g., calcination...
April 13, 2024: Scientific Reports
https://read.qxmd.com/read/38614183/a-nanocomposite-hydrogel-loaded-with-ag-nanoparticles-reduced-by-aloe-vera-polysaccharides-as-an-antimicrobial-multifunctional-sensor
#33
JOURNAL ARTICLE
Suijun Xiao, Yufei Lao, Hongbo Liu, Dacheng Li, Qiaoyan Wei, Liangdong Ye, Shaorong Lu
Developing high-performance hydrogels with anti-freeze, and antimicrobial properties is crucial for the practical application of flexible sensors. In this study, we prepared silver nanoparticles (AgNPs) with aloe polysaccharide (AP) as a reducing agent. Then, the AP/AgNPs were added to a system of polyvinyl alcohol and borax crosslinked in water/glycerol to obtain a multifunctional conductive hydrogel. The incorporated AgNPs improved the conductivity (0.39 S/m) and mechanical properties (elongation at break: 732...
April 11, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38614178/agnps-loaded-adenine-modified-chitosan-composite-poss-peg-hybrid-hydrogel-with-enhanced-antibacterial-and-cell-proliferation-properties-for-promotion-of-infected-wound-healing
#34
JOURNAL ARTICLE
Cong Zhou, Tao Jiang, Siju Liu, Yingjie He, Guichun Yang, Junqi Nie, Feiyi Wang, Xiaofan Yang, Zhenbing Chen, Cuifen Lu
Wound healing is a dynamic and complex process, it's urgent to develop new wound dressings with excellent performance to promote wound healing at the different stages. Here, a novel composite hydrogel dressing composed by silver nanoparticles (AgNPs) impregnated adenine-modified chitosan (CS-A) and octafunctionalized polyhedral oligomeric silsesquioxane (POSS) of benzaldehyde-terminated polyethylene glycol (POSS-PEG-CHO) solution was presented to solve the problem of wound infection. Modification of chitosan with adenine, not only can improve the water solubility of chitosan, but also introduce bioactive substances to promote cell proliferation...
April 11, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38614170/incorporating-silver-nanoparticles-into-electrospun-nanofibers-of-casein-polyvinyl-alcohol-to-develop-scaffolds-for-tissue-engineering
#35
JOURNAL ARTICLE
Nisha George, Sohini Chakraborty, N L Mary, L Suguna
Developing novel antimicrobial wound dressings that have the potential to address the challenges associated with chronic wounds is highly imperative in providing effective infection control and wound healing support. Biocompatible electrospun nanofibers with their high porosity and surface area enabling efficient drug loading and delivery have been investigated in this regard as viable candidates for chronic wound care. Here, we design Casein/Polyvinyl alcohol (CAN/PVA) nanofibers reinforced with silver nanoparticles (Ag NPs) by the electrospinning technique to develop diabetic wound healing scaffolds...
April 11, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38614166/metal-nanoparticles-decorated-mint-cellulose-acetate-composite-as-an-efficient-catalyst-for-the-reduction-of-methyl-orange
#36
JOURNAL ARTICLE
Tahani A Homdi, Taghreed M Fagieh, Kalsoom Akhtar, Esraa M Bakhsh, Abeer H Alhemadan, Sher Bahadar Khan
Water contamination caused by toxic compounds has emerged as one of the most severe challenges worldwide. Biomass-based nanocomposites offer a sustainable and renewable alternative to conventional materials. In this study, a nanocomposite of mint cellulose acetate (Mint-CA) was prepared and employed as a supportive material for Cu and Ag nanoparticles. The selectivity of CuNPs@mint-CA and AgNPs@mint-CA was assessed by comparing their performance in the reduction of various dye solutions. AgNPs@mint-CA exhibited superior catalytic performance, with a removal rate of 95...
April 11, 2024: International Journal of Biological Macromolecules
https://read.qxmd.com/read/38614005/metallic-nanoparticles-and-photosynthesis-organisms-comprehensive-review-from-the-ecological-perspective
#37
REVIEW
Yilan Zeng, Marianna Molnárová, Martin Motola
This review presents a comprehensive analysis of the ecological implications of metallic nanoparticles (MNPs) on photosynthetic organisms, particularly plants and algae. We delve into the toxicological impacts of various MNPs, including gold, silver, copper-based, zinc oxide, and titanium dioxide nanoparticles, elucidating their effects on the growth and health of these organisms. The article also summarizes the toxicity mechanisms of these nanoparticles in plants and algae from previous research, providing insight into the cellular and molecular interactions that underpin these effects...
April 12, 2024: Journal of Environmental Management
https://read.qxmd.com/read/38613947/surface-mediated-fluorescent-sensor-array-for-identification-of-gut-microbiota-and-monitoring-of-colorectal-cancer
#38
JOURNAL ARTICLE
Zhihui Liu, Meizi Zeng, Yuquan Xiao, Xiaohua Zhu, Meiling Liu, Ying Long, Haitao Li, Youyu Zhang, Shouzhuo Yao
The development of efficient, accurate, and high-throughput technology for gut microbiota sensing holds great promise in the maintenance of health and the treatment of diseases. Herein, we developed a rapid fluorescent sensor array based on surface-engineered silver nanoparticles (AgNPs) and vancomycin-modified gold nanoclusters (AuNCs@Van) for gut microbiota sensing. By controlling the surface of AgNPs, the recognition ability of the sensor can be effectively improved. The sensor array was used to successfully discriminate six gut-derived bacteria, including probiotics, neutral, and pathogenic bacteria and even their mixtures...
April 8, 2024: Talanta
https://read.qxmd.com/read/38613861/compressive-strength-and-fluoride-release-profile-of-a-glass-ionomer-cement-reinforced-with-silver-hydroxyapatite-silica-hybrid-nanoparticles-an-in-vitro-study
#39
JOURNAL ARTICLE
Elahe Chaychi Raghimi, Nazila Biglar, Somayeh Sadighian, Farzaneh Karamitanha, Aisan Nouri, Azin Nourian
OBJECTIVES: This study aimed to prepare a glass ionomer (GI) cement reinforced with silver-hydroxyapatite-silica (Ag/HA/Si) hybrid nanoparticles and assess its compressive strength and fluoride release profile. MATERIAL AND METHODS: In this in vitro, experimental study, 60 cylindrical specimens were fabricated with 4mm diameter and 6mm height in 6 groups (n=10) using BracePaste composite, GC Fuji II LC pure RMGI, and RMGI reinforced with 0.1wt%, 0.5wt%, 1wt%, and 2wt% Ag/HA/Si hybrid nanoparticles...
April 12, 2024: International Orthodontics
https://read.qxmd.com/read/38613759/entomopathogenic-fungi-based-silver-nanoparticles-a-potential-substitute-of-synthetic-insecticides-to-counter-behavioral-and-physiological-immunity-in-aedes-aegypti-mosquito-diptera-culicidae
#40
JOURNAL ARTICLE
Nasir Mehmood, Ali Hassan, Xueshan Zhong, Yongzhang Zhu, Guang Ouyang, Taqi Raza, Samta Zia, Xiaomin Chen, Qiuying Huang
Excessive use of synthetic insecticides has resulted in environmental contamination and adverse effects on humans and other non-target organisms. Entomopathogenic fungi offer eco-friendly alternatives; however, their application for pest control requires significant advancement owing to limitations like slow killing time and effectiveness only when applied in higher amounts, whereas exposure to UV radiation, high temperature, and humidity can also reduce their viability and shelf-life. The nanoparticles synthesized using fungal extracellular extracts provide a new approach to use fungal pathogens...
April 13, 2024: Environmental Science and Pollution Research International
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