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Dawley Inc silver nanoparticles ag nps
Silver Nanoparticles Ag Nps, supplied by Dawley Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/silver+nanoparticles+ag+nps/silver+nanoparticles/pm40023356-350-0-8
Average 90 stars, based on 1 article reviews
silver nanoparticles ag nps - by Bioz Stars, 2026-09
90/100 stars

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Article Title: Harnessing the human microbiome and its impact on immuno-oncology and nanotechnology for next-generation cancer therapies.
Article Snippet: The integration of microbiome research and nanotechnology represents a significant advancement in immunooncology, potentially improving the effectiveness of cancer immunotherapies.. Recent studies highlight the influential role of the human microbiome in modulating immune responses, presenting new opportunities to enhance immune checkpoint inhibitors (ICIs) and other cancer therapies.. Nanotechnology offers precise drug delivery and immune modulation capabilities, minimizing off-target effects while maximizing therapeutic outcomes.

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Article Title: Harnessing the human microbiome and its impact on immuno-oncology and nanotechnology for next-generation cancer therapies.
Article Snippet: The integration of microbiome research and nanotechnology represents a significant advancement in immunooncology, potentially improving the effectiveness of cancer immunotherapies.. Recent studies highlight the influential role of the human microbiome in modulating immune responses, presenting new opportunities to enhance immune checkpoint inhibitors (ICIs) and other cancer therapies.. Nanotechnology offers precise drug delivery and immune modulation capabilities, minimizing off-target effects while maximizing therapeutic outcomes.



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Synthesis methods of copper and copper oxide nanoparticles. Classification of synthesis methods into Top-Down (physical, toxic) and Bottom-Up (chemical, toxic; biological, non-toxic) approaches. Physical methods involve breaking bulk materials into nanoparticles, while chemical and biological methods build nanoparticles from molecular precursors. Biological methods offer a green alternative using plant extracts, algae, fungi, and bacteria.

Journal: Biotechnology Reports

Article Title: Biogenic copper and copper oxide nanoparticles to combat multidrug-resistant Staphylococcus aureus : Green synthesis, mechanisms, resistance, and future perspectives

doi: 10.1016/j.btre.2025.e00896

Figure Lengend Snippet: Synthesis methods of copper and copper oxide nanoparticles. Classification of synthesis methods into Top-Down (physical, toxic) and Bottom-Up (chemical, toxic; biological, non-toxic) approaches. Physical methods involve breaking bulk materials into nanoparticles, while chemical and biological methods build nanoparticles from molecular precursors. Biological methods offer a green alternative using plant extracts, algae, fungi, and bacteria.

Article Snippet: Another study reported by Stavinskaya et al. [ ] explores the influence of temperature on the green synthesis of silver nanoparticles (Ag-NPs) using Vitex agnus-castus extract.

Techniques: Algae, Bacteria

Biogenic synthesis of copper nanoparticles using different plant parts and algae. Schematic of green synthesis using plant/algae extracts. Extracted bioactive compounds react with a copper precursor for nanoparticle formation, followed by centrifugation and drying to obtain biogenic copper nanoparticles.

Journal: Biotechnology Reports

Article Title: Biogenic copper and copper oxide nanoparticles to combat multidrug-resistant Staphylococcus aureus : Green synthesis, mechanisms, resistance, and future perspectives

doi: 10.1016/j.btre.2025.e00896

Figure Lengend Snippet: Biogenic synthesis of copper nanoparticles using different plant parts and algae. Schematic of green synthesis using plant/algae extracts. Extracted bioactive compounds react with a copper precursor for nanoparticle formation, followed by centrifugation and drying to obtain biogenic copper nanoparticles.

Article Snippet: Another study reported by Stavinskaya et al. [ ] explores the influence of temperature on the green synthesis of silver nanoparticles (Ag-NPs) using Vitex agnus-castus extract.

Techniques: Algae, Centrifugation

Biogenic synthesis of copper nanoparticles using fungi and bacteria species. Bacterial/fungal cultures are grown, incubated, and filtered to obtain a cell-free extract. The addition of a copper precursor enables nanoparticle biosynthesis, followed by centrifugation, ultrasonic treatment, and drying to obtain biogenic copper nanoparticles.

Journal: Biotechnology Reports

Article Title: Biogenic copper and copper oxide nanoparticles to combat multidrug-resistant Staphylococcus aureus : Green synthesis, mechanisms, resistance, and future perspectives

doi: 10.1016/j.btre.2025.e00896

Figure Lengend Snippet: Biogenic synthesis of copper nanoparticles using fungi and bacteria species. Bacterial/fungal cultures are grown, incubated, and filtered to obtain a cell-free extract. The addition of a copper precursor enables nanoparticle biosynthesis, followed by centrifugation, ultrasonic treatment, and drying to obtain biogenic copper nanoparticles.

Article Snippet: Another study reported by Stavinskaya et al. [ ] explores the influence of temperature on the green synthesis of silver nanoparticles (Ag-NPs) using Vitex agnus-castus extract.

Techniques: Bacteria, Incubation, Centrifugation

Biogenic synthesis graphic representation mode of action of copper nanoparticles. Mechanisms of Cu/CuO nanoparticle (Cu-NPs/CuO—NPs) action in bacteria: (1) Disruption of biofilm, cell wall, and plasma membrane; (2) Damage to DNA; (3) Interference with transcription; (4) Protein denaturation; (5) Disruption of signaling pathways; (6) Induction of reactive oxygen species (ROS) via damage to proton influx pumps.

Journal: Biotechnology Reports

Article Title: Biogenic copper and copper oxide nanoparticles to combat multidrug-resistant Staphylococcus aureus : Green synthesis, mechanisms, resistance, and future perspectives

doi: 10.1016/j.btre.2025.e00896

Figure Lengend Snippet: Biogenic synthesis graphic representation mode of action of copper nanoparticles. Mechanisms of Cu/CuO nanoparticle (Cu-NPs/CuO—NPs) action in bacteria: (1) Disruption of biofilm, cell wall, and plasma membrane; (2) Damage to DNA; (3) Interference with transcription; (4) Protein denaturation; (5) Disruption of signaling pathways; (6) Induction of reactive oxygen species (ROS) via damage to proton influx pumps.

Article Snippet: Another study reported by Stavinskaya et al. [ ] explores the influence of temperature on the green synthesis of silver nanoparticles (Ag-NPs) using Vitex agnus-castus extract.

Techniques: Bacteria, Disruption, Clinical Proteomics, Membrane, Protein-Protein interactions