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synthetic hydroxyapatite ha beads  (Bio-Rad)


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    Structured Review

    Bio-Rad synthetic hydroxyapatite ha beads
    Mean (%) and standard deviation (SD) of triplicate measures of adhesion of Streptococcus mutans , Lactobacillus gasseri , and Scardovia wiggsiae to saliva-coated <t> hydroxyapatite </t> (child whole saliva and adult parotid saliva) and percentage difference (% diff) of adhesion after exposure to eight oral nutritional supplements (ONS) or 0.5% fat bovine milk.
    Synthetic Hydroxyapatite Ha Beads, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 1336 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/ceramic+hydroxyapatite+beads/pmc10969058-97-4-13?v=Bio-Rad
    Average 96 stars, based on 1336 article reviews
    synthetic hydroxyapatite ha beads - by Bioz Stars, 2026-07
    96/100 stars

    Images

    1) Product Images from "Exploring the Possible Impact of Oral Nutritional Supplements on Children’s Oral Health: An In Vitro Investigation"

    Article Title: Exploring the Possible Impact of Oral Nutritional Supplements on Children’s Oral Health: An In Vitro Investigation

    Journal: Dentistry Journal

    doi: 10.3390/dj12030078

    Mean (%) and standard deviation (SD) of triplicate measures of adhesion of Streptococcus mutans , Lactobacillus gasseri , and Scardovia wiggsiae to saliva-coated  hydroxyapatite  (child whole saliva and adult parotid saliva) and percentage difference (% diff) of adhesion after exposure to eight oral nutritional supplements (ONS) or 0.5% fat bovine milk.
    Figure Legend Snippet: Mean (%) and standard deviation (SD) of triplicate measures of adhesion of Streptococcus mutans , Lactobacillus gasseri , and Scardovia wiggsiae to saliva-coated hydroxyapatite (child whole saliva and adult parotid saliva) and percentage difference (% diff) of adhesion after exposure to eight oral nutritional supplements (ONS) or 0.5% fat bovine milk.

    Techniques Used: Standard Deviation

    Bacterial adhesion change (%) following the addition of eight oral nutritional supplements (ONSs) and 0.5% fat bovine milk to saliva-coated hydroxyapatite. Negative values indicate binding inhibition and positive values increased binding.
    Figure Legend Snippet: Bacterial adhesion change (%) following the addition of eight oral nutritional supplements (ONSs) and 0.5% fat bovine milk to saliva-coated hydroxyapatite. Negative values indicate binding inhibition and positive values increased binding.

    Techniques Used: Binding Assay, Inhibition



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    Mean (%) and standard deviation (SD) of triplicate measures of adhesion of Streptococcus mutans , Lactobacillus gasseri , and Scardovia wiggsiae to saliva-coated <t> hydroxyapatite </t> (child whole saliva and adult parotid saliva) and percentage difference (% diff) of adhesion after exposure to eight oral nutritional supplements (ONS) or 0.5% fat bovine milk.
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    Bio-Rad c biorad s chttm ceramic hydroxyapatite beads
    Mean (%) and standard deviation (SD) of triplicate measures of adhesion of Streptococcus mutans , Lactobacillus gasseri , and Scardovia wiggsiae to saliva-coated <t> hydroxyapatite </t> (child whole saliva and adult parotid saliva) and percentage difference (% diff) of adhesion after exposure to eight oral nutritional supplements (ONS) or 0.5% fat bovine milk.
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    Bio-Rad hydroxyapatite beads
    Figure 2. Confocal microscopy Z-stack imaging to visualize C. albicans adhering to saliva-coated beads. The C. albicans SC5314 cells that attached to <t>hydroxyapatite</t> beads were stained with NR. Confocal images were captured with a Zeiss LSCM780 laser scanning microscope. Scale-bar: 20 µm. (A) Bead that had been incubated with C. albicans SC5314 cells at OD600nm = 1, (B) Bead that had been incubated with C. albicans SC5314 cells at OD600nm = 0.1.
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    Bio-Rad hydroxyapatite ha beads
    Figure 2. Confocal microscopy Z-stack imaging to visualize C. albicans adhering to saliva-coated beads. The C. albicans SC5314 cells that attached to <t>hydroxyapatite</t> beads were stained with NR. Confocal images were captured with a Zeiss LSCM780 laser scanning microscope. Scale-bar: 20 µm. (A) Bead that had been incubated with C. albicans SC5314 cells at OD600nm = 1, (B) Bead that had been incubated with C. albicans SC5314 cells at OD600nm = 0.1.
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    Image Search Results


    Mean (%) and standard deviation (SD) of triplicate measures of adhesion of Streptococcus mutans , Lactobacillus gasseri , and Scardovia wiggsiae to saliva-coated  hydroxyapatite  (child whole saliva and adult parotid saliva) and percentage difference (% diff) of adhesion after exposure to eight oral nutritional supplements (ONS) or 0.5% fat bovine milk.

    Journal: Dentistry Journal

    Article Title: Exploring the Possible Impact of Oral Nutritional Supplements on Children’s Oral Health: An In Vitro Investigation

    doi: 10.3390/dj12030078

    Figure Lengend Snippet: Mean (%) and standard deviation (SD) of triplicate measures of adhesion of Streptococcus mutans , Lactobacillus gasseri , and Scardovia wiggsiae to saliva-coated hydroxyapatite (child whole saliva and adult parotid saliva) and percentage difference (% diff) of adhesion after exposure to eight oral nutritional supplements (ONS) or 0.5% fat bovine milk.

    Article Snippet: Briefly, 5 mg of synthetic hydroxyapatite (HA) beads (Macro-Prep Ceramic Hydroxyapatite Type II, BioRad, CA, USA) were placed in each well of a 96-well round-bottom microtiter plate (Nunclon Surface, NUNC, Roskilde, Denmark).

    Techniques: Standard Deviation

    Bacterial adhesion change (%) following the addition of eight oral nutritional supplements (ONSs) and 0.5% fat bovine milk to saliva-coated hydroxyapatite. Negative values indicate binding inhibition and positive values increased binding.

    Journal: Dentistry Journal

    Article Title: Exploring the Possible Impact of Oral Nutritional Supplements on Children’s Oral Health: An In Vitro Investigation

    doi: 10.3390/dj12030078

    Figure Lengend Snippet: Bacterial adhesion change (%) following the addition of eight oral nutritional supplements (ONSs) and 0.5% fat bovine milk to saliva-coated hydroxyapatite. Negative values indicate binding inhibition and positive values increased binding.

    Article Snippet: Briefly, 5 mg of synthetic hydroxyapatite (HA) beads (Macro-Prep Ceramic Hydroxyapatite Type II, BioRad, CA, USA) were placed in each well of a 96-well round-bottom microtiter plate (Nunclon Surface, NUNC, Roskilde, Denmark).

    Techniques: Binding Assay, Inhibition

    Figure 2. Confocal microscopy Z-stack imaging to visualize C. albicans adhering to saliva-coated beads. The C. albicans SC5314 cells that attached to hydroxyapatite beads were stained with NR. Confocal images were captured with a Zeiss LSCM780 laser scanning microscope. Scale-bar: 20 µm. (A) Bead that had been incubated with C. albicans SC5314 cells at OD600nm = 1, (B) Bead that had been incubated with C. albicans SC5314 cells at OD600nm = 0.1.

    Journal: Journal of oral microbiology

    Article Title: Candida albicans Bgl2p, Ecm33p, and Als1p proteins are involved in adhesion to saliva-coated hydroxyapatite.

    doi: 10.1080/20002297.2021.1879497

    Figure Lengend Snippet: Figure 2. Confocal microscopy Z-stack imaging to visualize C. albicans adhering to saliva-coated beads. The C. albicans SC5314 cells that attached to hydroxyapatite beads were stained with NR. Confocal images were captured with a Zeiss LSCM780 laser scanning microscope. Scale-bar: 20 µm. (A) Bead that had been incubated with C. albicans SC5314 cells at OD600nm = 1, (B) Bead that had been incubated with C. albicans SC5314 cells at OD600nm = 0.1.

    Article Snippet: Hydroxyapatite beads (Micro-Prep Ceramic Hydroxyapatite Type I 80 μm diameter, Bio-Rad) were suspended in KCl buffer, washed with distilled water 10 times, and dried in an oven at 60°C for 48 h. Adhesion assays were performed as described previously [4].

    Techniques: Confocal Microscopy, Imaging, Staining, Laser-Scanning Microscopy, Incubation