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nikon inverted light microscope  (Nikon)


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    Structured Review

    Nikon nikon inverted light microscope
    Nikon Inverted Light Microscope, supplied by Nikon, used in various techniques. Bioz Stars score: 99/100, based on 14721 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/inverted+light+microscope/Inverted+Microscopes/pmc13044501-63-18-22
    Average 99 stars, based on 14721 article reviews
    nikon inverted light microscope - by Bioz Stars, 2026-09
    99/100 stars

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    Related Articles

    Light Microscopy:

    Article Title: Tailoring Bioink Properties via Nanofibrous Polyelectrolyte Complexes of Distinct Polymeric Classes for Cartilage Tissue Engineering.
    Article Snippet: Cartilage is a specialized connective tissue with limited self-regenerative ability, and current cartilage-related trauma treatments often fail to achieve consistent healing.. Developing bioinks that closely mimic the native physical, mechanical, and biological microenvironment of cartilage is a critical challenge in tissue engineering.. Here, we present a systematic study on the development of composite bioinks reinforced with nanofibrous polyelectrolyte complexes (PECs) derived from various categories of biopolymers: proteins (gelatin), mucopolysaccharides (chondroitin sulfate), and polysaccharides (alginate) in combination with chitosan.

    Article Title: Decoding Geniposide's Mechanism: From miR-208a-3p/SMAD5 Modulation To Osteoblast Proliferation and Differentiation.
    Article Snippet: Geniposide (GEN), primarily extracted from the Gardenia jasminoides Ellis, was investigated in this study for its molecular mechanisms in regulating osteoblast proliferation and differentiation and in promoting tibial fracture (TF) healing.. A TF mouse model was established and fracture healing was assessed by biomechanical examination and hematoxylin-eosin (H&E) staining.. The effects of GEN on MC3T3-E1 cell proliferation, apoptosis, differentiation and its regulation of miR-208a-3p/SMAD5 axis were analyzed.

    Article Title: Role and mechanism of tetrahedral DNA nanostructures in the repair of urethral injury in rats
    Article Snippet: Samples were subsequently embedded in paraffin (Shanghai Huayong Paraffin Co., Ltd.) and sectioned at a thickness of 5 μm using a rotary microtome [HistoCore MULTICUT; cat. no. 149MULTIGC1; Leica Biosystems Co., Ltd.]. .. For H&E staining, paraffin-embedded sections were deparaffinized with xylene and rehydrated through descending concentrations of ethanol, followed by staining with hematoxylin solution (cat. no. G1004-100ML; Wuhan Servicebio Technology Co., Ltd.) at room temperature for 5 min, rinsed with running water, and counterstained with eosin staining solution (cat. no. G1108; Beijing Solarbio Science & Technology Co., Ltd.) at room temperature for 1–2 min. After dehydration and clearing with xylene, the sections were mounted using neutral resin mounting medium (cat. no. WG10004160; Wuhan Servicebio Technology Co., Ltd.) and histological images were captured using an inverted light microscope (TS2; Nikon Corporation). ..

    Article Title: Investigating the crystalline structure and structural heterogeneity of starch granules using polarization-based quantitative phase microscopy.
    Article Snippet: A thorough understanding of starch structure from crystal distribution level is crucial for production, processing, and application of starch.. In this study, we utilized a custom-built polarization-based quantitative phase microscopy based on digital holography as well as a multimodal polarization microscope to investigate the crystalline structure of starch granules at the level of the Maltese cross.. Through quantitative analysis, we observed that crystalline regions are distributed on both sides of the granules, with non-crystalline material extending radially in between, with amylose playing a significant role in disrupting this crystal alignment.

    Article Title: STAT1 accelerates cutaneous melanoma progression through TUBB4A expression regulation
    Article Snippet: After 24 h-incubation at 37°C, migrated cells were fixed with 4% paraformaldehyde (cat. no. J19943.K2; Thermo Fisher Scientific, Inc.) for 15 min at 25°C, stained with 0.1% crystal violet solution (cat. no. C3886; MilliporeSigma; Merck KGaA) for 30 min at 25°C and washed with PBS (cat. no. 10010-023; Thermo Fisher Scientific, Inc.). .. Migrated cells were visualized under an inverted light microscope (Nikon Corporation) for analysis. .. The number of migrated cells was quantified using ImageJ software (Version 1.53e, National Institutes of Health).


    Article Title: Discovery of anti-adipogenic acetylenic acids from Malaina oleifera seed meal.
    Article Snippet: Eight previously undescribed acetylenic acids (1–8) and one known acetylenic acid (9) were firstly isolated from Malania oleifera seed meal.. The absolute configurations were determined by extensive spectral analysis, the bulkiness rule, and NMR calculations.. All compounds were evaluated for their inhibitory effects on lipid accumulation in oleic acid (OA)-induced 3T3-L1 cells.

    Microscopy:

    Article Title: Tailoring Bioink Properties via Nanofibrous Polyelectrolyte Complexes of Distinct Polymeric Classes for Cartilage Tissue Engineering.
    Article Snippet: Cartilage is a specialized connective tissue with limited self-regenerative ability, and current cartilage-related trauma treatments often fail to achieve consistent healing.. Developing bioinks that closely mimic the native physical, mechanical, and biological microenvironment of cartilage is a critical challenge in tissue engineering.. Here, we present a systematic study on the development of composite bioinks reinforced with nanofibrous polyelectrolyte complexes (PECs) derived from various categories of biopolymers: proteins (gelatin), mucopolysaccharides (chondroitin sulfate), and polysaccharides (alginate) in combination with chitosan.

    Imaging:

    Article Title: Tailoring Bioink Properties via Nanofibrous Polyelectrolyte Complexes of Distinct Polymeric Classes for Cartilage Tissue Engineering.
    Article Snippet: Cartilage is a specialized connective tissue with limited self-regenerative ability, and current cartilage-related trauma treatments often fail to achieve consistent healing.. Developing bioinks that closely mimic the native physical, mechanical, and biological microenvironment of cartilage is a critical challenge in tissue engineering.. Here, we present a systematic study on the development of composite bioinks reinforced with nanofibrous polyelectrolyte complexes (PECs) derived from various categories of biopolymers: proteins (gelatin), mucopolysaccharides (chondroitin sulfate), and polysaccharides (alginate) in combination with chitosan.

    Software:

    Article Title: Tailoring Bioink Properties via Nanofibrous Polyelectrolyte Complexes of Distinct Polymeric Classes for Cartilage Tissue Engineering.
    Article Snippet: Cartilage is a specialized connective tissue with limited self-regenerative ability, and current cartilage-related trauma treatments often fail to achieve consistent healing.. Developing bioinks that closely mimic the native physical, mechanical, and biological microenvironment of cartilage is a critical challenge in tissue engineering.. Here, we present a systematic study on the development of composite bioinks reinforced with nanofibrous polyelectrolyte complexes (PECs) derived from various categories of biopolymers: proteins (gelatin), mucopolysaccharides (chondroitin sulfate), and polysaccharides (alginate) in combination with chitosan.

    Staining:

    Article Title: Decoding Geniposide's Mechanism: From miR-208a-3p/SMAD5 Modulation To Osteoblast Proliferation and Differentiation.
    Article Snippet: Geniposide (GEN), primarily extracted from the Gardenia jasminoides Ellis, was investigated in this study for its molecular mechanisms in regulating osteoblast proliferation and differentiation and in promoting tibial fracture (TF) healing.. A TF mouse model was established and fracture healing was assessed by biomechanical examination and hematoxylin-eosin (H&E) staining.. The effects of GEN on MC3T3-E1 cell proliferation, apoptosis, differentiation and its regulation of miR-208a-3p/SMAD5 axis were analyzed.

    Article Title: Role and mechanism of tetrahedral DNA nanostructures in the repair of urethral injury in rats
    Article Snippet: Samples were subsequently embedded in paraffin (Shanghai Huayong Paraffin Co., Ltd.) and sectioned at a thickness of 5 μm using a rotary microtome [HistoCore MULTICUT; cat. no. 149MULTIGC1; Leica Biosystems Co., Ltd.]. .. For H&E staining, paraffin-embedded sections were deparaffinized with xylene and rehydrated through descending concentrations of ethanol, followed by staining with hematoxylin solution (cat. no. G1004-100ML; Wuhan Servicebio Technology Co., Ltd.) at room temperature for 5 min, rinsed with running water, and counterstained with eosin staining solution (cat. no. G1108; Beijing Solarbio Science & Technology Co., Ltd.) at room temperature for 1–2 min. After dehydration and clearing with xylene, the sections were mounted using neutral resin mounting medium (cat. no. WG10004160; Wuhan Servicebio Technology Co., Ltd.) and histological images were captured using an inverted light microscope (TS2; Nikon Corporation). ..

    Starch:

    Article Title: Investigating the crystalline structure and structural heterogeneity of starch granules using polarization-based quantitative phase microscopy.
    Article Snippet: A thorough understanding of starch structure from crystal distribution level is crucial for production, processing, and application of starch.. In this study, we utilized a custom-built polarization-based quantitative phase microscopy based on digital holography as well as a multimodal polarization microscope to investigate the crystalline structure of starch granules at the level of the Maltese cross.. Through quantitative analysis, we observed that crystalline regions are distributed on both sides of the granules, with non-crystalline material extending radially in between, with amylose playing a significant role in disrupting this crystal alignment.



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