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241
Image_2_A Shift in Myeloid Cell Phenotype via Down Regulation of Siglec-1 in Island Macrophages of Bone Marrow Is Associated With Decreased Late Erythroblasts Seen in Anemia of Cri...
Published 2019“…There were more (2.5-fold) EEBs and less LEBs (2.4-fold) per million TBM cells in B; with a corresponding decrease in Siglec-1 and Ly6G expressions in EBIMØ associated with EEB. …”
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242
Osteogenic differentiation of mesenchymal stem cells is enhanced in a 45S5-supplemented β-TCP composite scaffold: an <i>in-vitro</i> comparison of Vitoss and Vitoss BA - Fig 3
Published 2019“…<p><b>3D-mCT reconstruction and 2D-mCT slice of one representative Vitoss (a, b) and Vitoss BA scaffold (c, d). …”
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The I827K substitution destabilizes the 3D fold of E6AP<sup>C-lobe</sup> (residues 761–875).
Published 2020“…<p>(A) The assigned <sup>1</sup>H-<sup>15</sup>N-HSQC spectrum of 3.5 mM human E6AP catalytic C-lobe (residues 761–875) using the one-letter amino acid code and residue number according to the human E6AP sequence. …”
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Talin concentration at muscle attachment sites increases 5-fold during attachment maturation.
Published 2019“…Note that the concentration increases about 2-fold from 20 h to 24 h APF and 5-fold to 30 h APF. …”
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Upcycling of Postconsumer Recyclate Polypropylene into Low Warping and High Toughness 3D Printable Filaments
Published 2025“…Incorporation of poly(butylene adipate-<i>co</i>-terephthalate) (PBAT) along with maleic anhydride grafted polypropylene (MAPP) in specific proportions led to a significant enhancement in mechanical properties, miscibility, crystallization behavior, and 3D printability. rPP/PBAT blends with 20 wt % PBAT and 10 wt % MAPP exhibited a 62-fold enhancement in elongation at break over rPP (from 1.88 to 118.29%) and a 72-fold increase in toughness (from 2 to 143.60 kJ/m<sup>3</sup>) with almost similar tensile strength. …”
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257
Upcycling of Postconsumer Recyclate Polypropylene into Low Warping and High Toughness 3D Printable Filaments
Published 2025“…Incorporation of poly(butylene adipate-<i>co</i>-terephthalate) (PBAT) along with maleic anhydride grafted polypropylene (MAPP) in specific proportions led to a significant enhancement in mechanical properties, miscibility, crystallization behavior, and 3D printability. rPP/PBAT blends with 20 wt % PBAT and 10 wt % MAPP exhibited a 62-fold enhancement in elongation at break over rPP (from 1.88 to 118.29%) and a 72-fold increase in toughness (from 2 to 143.60 kJ/m<sup>3</sup>) with almost similar tensile strength. …”
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