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inverted epifluorescence microscope eclipse te2000-s  (Nikon)


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    Nikon inverted epifluorescence microscope eclipse te2000-s
    Inverted Epifluorescence Microscope Eclipse Te2000 S, supplied by Nikon, 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/inverted+epifluorescence+microscope+eclipse+te2000-s/pm40246594-121-14-18
    Average 90 stars, based on 1 article reviews
    inverted epifluorescence microscope eclipse te2000-s - by Bioz Stars, 2026-10
    90/100 stars

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    Related Articles

    Staining:

    Article Title: Antifungal efficiency and cytocompatibility of polymethyl methacrylate modified with zinc dimethacrylate
    Article Snippet: After rinsing with deionized water, the specimens with adhered C. albicans biofilms were stained with the LIVE/DEAD Yeast Viability kit (L7009, Thermo Fisher Scientific Inc, USA), followed by rinsing with deionized water to remove unnecessary fluorescence dye. .. The stained specimens were examined using an inverted epifluorescence microscope (Eclipse TE2000-S, Nikon, USA). .. The biofilm-coated specimens (n = 5 per group) were employed to observe C. albicans adhesion population and biofilm morphology by SEM (Phenom ProX, Thermo Fisher Scientific Inc, USA).

    Article Title: Ionic Liquid-Based Silane for SiO 2 Nanoparticles: A Versatile Coupling Agent for Dental Resins.
    Article Snippet: .. An inverted epifluorescence microscope (Eclipse TE2000-S, Nikon, Melville, NY, USA) was used at 483 nm to excite SYTO9 (staining of live bacteria) and at 535 nm to excite propidium iodide (staining dead bacteria). ..

    Article Title: Novel antibacterial low-shrinkage-stress resin-based cement.
    Article Snippet: Objective: A low-shrinkage-stress resin-based cement with antibacterial properties could be beneficial to create a cement with lower stress at the tooth-restoration interface, which could help to enhance the longevity of the fixed dental restoration by reducing microleakage and recurrent caries.. To date, there has been no report on the development of a low-shrinkage-stress and bio-interactive cement.. Therefore, the objectives of this study were to develop a novel low-shrinkage-stress resin-based cement containing dimethylaminohexadecyl methacrylate (DMAHDM) and investigate the mechanical and antibacterial properties for the first time. https://doi.org/10.1016/j.dental.2022.08.005 0109-5641/© 2022 The Academy of Dental Materials.

    Article Title: Novel rechargeable nanostructured calcium phosphate crown cement with long-term ion release and antibacterial activity to suppress saliva microcosm biofilms.
    Article Snippet: Objective: Resin cements with remineralizing and antibacterial properties are favorable for inhibition of caries.. The objectives of this study were: (1) to investigate the capability of the novel dimethylaminohexadecyl-methacrylate (DMAHDM) and nano-sized amorphous calcium phosphate (NACP) containing cement to reduce saliva microcosm biofilm, and (2) to investigate the long-term ion release, recharge, and re-release of DMAHDM-NACP cement.. Methods: Pyromellitic glycerol dimethacrylate (PMGDM) and ethoxylated bisphenol-A-dimethacrylate (EBPADMA) were used to make PEHB monomer.

    Article Title: Novel protein-repellent and antibacterial polymethyl methacrylate dental resin in water-aging for 6 months.
    Article Snippet: .. The stained disks were examined using an inverted epifluorescence microscope (Eclipse TE2000-S, Nikon, Melville, NY, USA). ..

    Article Title: Effects of thermal cycling on mechanical and antibacterial durability of bioactive low-shrinkage-stress nanocomposite.
    Article Snippet: Objectives: Recent studies developed low-shrinkage-stress composite with remineralizing and antibacterial properties to combat secondary caries and increase restoration longevity.. However, their long-term durability in thermal cycling is unclear.. The objectives of this study were to develop an antibacterial, remineralizing and lowshrinkage-stress composite, and to investigate its durability in thermal cycling for 20,000 cycles, equivalent to two years of clinical life.

    Inverted Epifluorescence:

    Article Title: Antifungal efficiency and cytocompatibility of polymethyl methacrylate modified with zinc dimethacrylate
    Article Snippet: After rinsing with deionized water, the specimens with adhered C. albicans biofilms were stained with the LIVE/DEAD Yeast Viability kit (L7009, Thermo Fisher Scientific Inc, USA), followed by rinsing with deionized water to remove unnecessary fluorescence dye. .. The stained specimens were examined using an inverted epifluorescence microscope (Eclipse TE2000-S, Nikon, USA). .. The biofilm-coated specimens (n = 5 per group) were employed to observe C. albicans adhesion population and biofilm morphology by SEM (Phenom ProX, Thermo Fisher Scientific Inc, USA).

    Article Title: Ionic Liquid-Based Silane for SiO 2 Nanoparticles: A Versatile Coupling Agent for Dental Resins.
    Article Snippet: .. An inverted epifluorescence microscope (Eclipse TE2000-S, Nikon, Melville, NY, USA) was used at 483 nm to excite SYTO9 (staining of live bacteria) and at 535 nm to excite propidium iodide (staining dead bacteria). ..

    Article Title: Dental adhesives incorporated with alkyl trimethyl ammonium bromide-loaded titanium oxide nanotubes for sustained bioactive and anti-biofilm protection.
    Article Snippet: Objectives: This study aimed to formulate experimental dental adhesives with alkyl trimethyl ammonium bromide-loaded titanium oxide nanotubes (ntTiO2/ATAB) and evaluated their physicochemical properties, antimicrobial activity, mineral deposition, and cytotoxicity.. Methods: ntTiO2/ATAB was synthesized, characterized, and added into an experimental adhesive resin.. The filler ntTiO2/ATAB was added at 1, 2.5, and 5 wt% (G1 %, G2.5 %, G5 %) in the adhesive.

    Article Title: Novel antibacterial low-shrinkage-stress resin-based cement.
    Article Snippet: Objective: A low-shrinkage-stress resin-based cement with antibacterial properties could be beneficial to create a cement with lower stress at the tooth-restoration interface, which could help to enhance the longevity of the fixed dental restoration by reducing microleakage and recurrent caries.. To date, there has been no report on the development of a low-shrinkage-stress and bio-interactive cement.. Therefore, the objectives of this study were to develop a novel low-shrinkage-stress resin-based cement containing dimethylaminohexadecyl methacrylate (DMAHDM) and investigate the mechanical and antibacterial properties for the first time. https://doi.org/10.1016/j.dental.2022.08.005 0109-5641/© 2022 The Academy of Dental Materials.

    Article Title: Novel rechargeable nanostructured calcium phosphate crown cement with long-term ion release and antibacterial activity to suppress saliva microcosm biofilms.
    Article Snippet: Objective: Resin cements with remineralizing and antibacterial properties are favorable for inhibition of caries.. The objectives of this study were: (1) to investigate the capability of the novel dimethylaminohexadecyl-methacrylate (DMAHDM) and nano-sized amorphous calcium phosphate (NACP) containing cement to reduce saliva microcosm biofilm, and (2) to investigate the long-term ion release, recharge, and re-release of DMAHDM-NACP cement.. Methods: Pyromellitic glycerol dimethacrylate (PMGDM) and ethoxylated bisphenol-A-dimethacrylate (EBPADMA) were used to make PEHB monomer.

    Article Title: Novel protein-repellent and antibacterial polymethyl methacrylate dental resin in water-aging for 6 months.
    Article Snippet: .. The stained disks were examined using an inverted epifluorescence microscope (Eclipse TE2000-S, Nikon, Melville, NY, USA). ..

    Bacteria:

    Article Title: Ionic Liquid-Based Silane for SiO 2 Nanoparticles: A Versatile Coupling Agent for Dental Resins.
    Article Snippet: .. An inverted epifluorescence microscope (Eclipse TE2000-S, Nikon, Melville, NY, USA) was used at 483 nm to excite SYTO9 (staining of live bacteria) and at 535 nm to excite propidium iodide (staining dead bacteria). ..

    Article Title: Novel antibacterial low-shrinkage-stress resin-based cement.
    Article Snippet: Objective: A low-shrinkage-stress resin-based cement with antibacterial properties could be beneficial to create a cement with lower stress at the tooth-restoration interface, which could help to enhance the longevity of the fixed dental restoration by reducing microleakage and recurrent caries.. To date, there has been no report on the development of a low-shrinkage-stress and bio-interactive cement.. Therefore, the objectives of this study were to develop a novel low-shrinkage-stress resin-based cement containing dimethylaminohexadecyl methacrylate (DMAHDM) and investigate the mechanical and antibacterial properties for the first time. https://doi.org/10.1016/j.dental.2022.08.005 0109-5641/© 2022 The Academy of Dental Materials.

    Fluorescence:

    Article Title: Novel antibacterial low-shrinkage-stress resin-based cement.
    Article Snippet: Objective: A low-shrinkage-stress resin-based cement with antibacterial properties could be beneficial to create a cement with lower stress at the tooth-restoration interface, which could help to enhance the longevity of the fixed dental restoration by reducing microleakage and recurrent caries.. To date, there has been no report on the development of a low-shrinkage-stress and bio-interactive cement.. Therefore, the objectives of this study were to develop a novel low-shrinkage-stress resin-based cement containing dimethylaminohexadecyl methacrylate (DMAHDM) and investigate the mechanical and antibacterial properties for the first time. https://doi.org/10.1016/j.dental.2022.08.005 0109-5641/© 2022 The Academy of Dental Materials.



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