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    Analysis of the binding site of NagS and activity of NagS mutants. por Chao Li (145513)

    Publicado 2025
    “...<p><b>(a)</b> NagS active site with bound GlcNAc-6P (gray carbons), protein residues are coloured with pale blue and yellow carbons to indicate the 2 monomers forming the active site. 2|Fo|-|Fc| electron density contoured at 1.2 σ is shown as cyan mesh. ...”
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    Development of High-Flexural-Strength Titanium/Hydroxyapatite Biocomposites via Cold Spray Deposition with Titanium and Niobium Bond Coats por Fatemeh Andami (22677082)

    Publicado 2025
    “...Furthermore, thermal spray-based methods involve melting the powders, which typically degrade the biomaterial’s characteristics. ...”
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    Development of High-Flexural-Strength Titanium/Hydroxyapatite Biocomposites via Cold Spray Deposition with Titanium and Niobium Bond Coats por Fatemeh Andami (22677082)

    Publicado 2025
    “...Furthermore, thermal spray-based methods involve melting the powders, which typically degrade the biomaterial’s characteristics. ...”
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    Development of High-Flexural-Strength Titanium/Hydroxyapatite Biocomposites via Cold Spray Deposition with Titanium and Niobium Bond Coats por Fatemeh Andami (22677082)

    Publicado 2025
    “...Furthermore, thermal spray-based methods involve melting the powders, which typically degrade the biomaterial’s characteristics. ...”
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    Development of High-Flexural-Strength Titanium/Hydroxyapatite Biocomposites via Cold Spray Deposition with Titanium and Niobium Bond Coats por Fatemeh Andami (22677082)

    Publicado 2025
    “...Furthermore, thermal spray-based methods involve melting the powders, which typically degrade the biomaterial’s characteristics. ...”
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    Development of High-Flexural-Strength Titanium/Hydroxyapatite Biocomposites via Cold Spray Deposition with Titanium and Niobium Bond Coats por Fatemeh Andami (22677082)

    Publicado 2025
    “...Furthermore, thermal spray-based methods involve melting the powders, which typically degrade the biomaterial’s characteristics. ...”
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    Table 1_Single-cell transcriptome analysis reveals elongation and ossification characteristics of antlers.doc por Ruobing Han (8460432)

    Publicado 2025
    “...Introduction<p>Antlers are specialized bony appendages in mammals that exhibit the remarkable ability to periodically regenerate from the pedicles and then rapidly elongate to form bone. Previous studies have demonstrated that this intricate and precise biological process involves the coordination of multiple cell types, whose understanding is central to a wide range of research areas, particularly those investigating bone growth and mineralization. ...”
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    Table 3_Single-cell transcriptome analysis reveals elongation and ossification characteristics of antlers.xlsx por Ruobing Han (8460432)

    Publicado 2025
    “...Introduction<p>Antlers are specialized bony appendages in mammals that exhibit the remarkable ability to periodically regenerate from the pedicles and then rapidly elongate to form bone. Previous studies have demonstrated that this intricate and precise biological process involves the coordination of multiple cell types, whose understanding is central to a wide range of research areas, particularly those investigating bone growth and mineralization. ...”
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    Table 2_Single-cell transcriptome analysis reveals elongation and ossification characteristics of antlers.xlsx por Ruobing Han (8460432)

    Publicado 2025
    “...Introduction<p>Antlers are specialized bony appendages in mammals that exhibit the remarkable ability to periodically regenerate from the pedicles and then rapidly elongate to form bone. Previous studies have demonstrated that this intricate and precise biological process involves the coordination of multiple cell types, whose understanding is central to a wide range of research areas, particularly those investigating bone growth and mineralization. ...”
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