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ATCC
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ATCC
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FUJIFILM
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Image Search Results
Journal: Stem cells (Dayton, Ohio)
Article Title: Depletion of Collagen IX Alpha1 Impairs Myeloid Cell Function.
doi: 10.1002/stem.2892
Figure Lengend Snippet: Figure 4. Bacterial clearance experiments in Col9a1(−/−) mice. Two-month-old WT and Col9a1(−/−) (KO) mice were infected with Listeria monocytogenes (~5.6 × 105 cfu/mouse). (A): Behavioral changes and (B) differences in survival were monitored (n = 10 mice per geno- type). (C): Bacterial load in the spleen (left) and liver (right) from 2-month-old mice 24 hours after infection with 1.1 × 105 Listeria was determined by blood agar assays (n = 8 mice per genotype). (D): Serum levels of cytokines were analyzed using flow cytometry-based multiplex cytokine assays (n = 11 mice per genotype). Statistics: unpaired two-tailed Student’s t test, p < .05 (*). Mean values and SDs are given. (E): Bone marrow-substituted WT mice that received cells from 2-month-old WT or Col9a1(−/−) (KO) mice were infected with decreasing concentrations of Listeria (left-center-right: 1 × 104 cfu (WT n = 6, Col9a1(−/−) n = 5), 3.3 × 103 cfu (WT n = 6, Col9a1(−/−)
Article Snippet: For in vivo infection experiments single colonies of
Techniques: Infection, Cytometry, Multiplex Assay, Two Tailed Test
Journal: RSC Advances
Article Title: Ductile keratin films from deep eutectic solvent-fractionated feathers
doi: 10.1039/d1ra05123g
Figure Lengend Snippet: SEM images of the films made of the high M w keratin fraction with (a) 15 and (b) 30 wt% glycerol concentrations, the (c) film made of low M w keratin fraction with 30 wt% glycerol, and the films made of the (d–f) high and (g–i) low M w keratin fractions and plasticised with 30 wt% glycerol and cross-linked with glutar aldehyde (GA) at pH (d and g) 12 and (e and h) 9 as well as with (f and i) 1.4-butanediol diglycidyl ether (BDE) at pH 9.5.
Article Snippet:
Techniques:
Journal: RSC Advances
Article Title: Ductile keratin films from deep eutectic solvent-fractionated feathers
doi: 10.1039/d1ra05123g
Figure Lengend Snippet: Mechanical properties of the keratin films made of the high and low M w keratin fractions plasticised with glycerol and cross-linked with glutaraldehyde (GA) at pH 12 and 9 as well as with 1.4-butanediol diglycidyl ether (BDE) at pH 9.5.
Article Snippet:
Techniques:
Journal: RSC Advances
Article Title: Ductile keratin films from deep eutectic solvent-fractionated feathers
doi: 10.1039/d1ra05123g
Figure Lengend Snippet: Water vapour permeability (WVP) of the keratin films made of the high and low M w keratin fractions, plasticised with glycerol and cross-linked with glutaraldehyde (GA) at pH 12 and 9 as well as with 1.4-butanediol diglycidyl ether (BDE) at pH 9.5.
Article Snippet:
Techniques: Permeability
Journal: RSC Advances
Article Title: Ductile keratin films from deep eutectic solvent-fractionated feathers
doi: 10.1039/d1ra05123g
Figure Lengend Snippet: Solubility, swelling, and water contact angles for the glycerol plasticised keratin films prepared from the high M w keratin fraction with and without cross-linking. The films are cross-linked with glutar aldehyde (GA) at pH 12 and pH 9 and with 1.4-butanediol diglycidyl ether (BDE) at pH 9.5
Article Snippet:
Techniques: Solubility
Journal: Gels
Article Title: Effect of Protonated Media on Dye Diffusion in Chitosan–Cellulose-Based Cryogel Beads
doi: 10.3390/gels11100770
Figure Lengend Snippet: ( a ) Synthesized Ch-C-EGDE cryogel beads in water, ( b ) SEM micrograph of cryogel beads at 30×, ( c ) SEM micrograph of cryogel beads at 600×.
Article Snippet: The solutions were prepared using the following reagents and materials: industrial-grade chitosan (Ch) from Alimentos America (Guadalajara, Mexico; lot K1202029; 84.54% degree of deacetylation, Mv = 82 682.5 g·mol −1 ); microgranular cellulose (C) from Sigma–Aldrich (St. Louis, MO, USA); and
Techniques: Synthesized
Journal: Gels
Article Title: Effect of Protonated Media on Dye Diffusion in Chitosan–Cellulose-Based Cryogel Beads
doi: 10.3390/gels11100770
Figure Lengend Snippet: Determination of the point of zero charge (PZC) in the cryogel Ch-C-EGDE.
Article Snippet: The solutions were prepared using the following reagents and materials: industrial-grade chitosan (Ch) from Alimentos America (Guadalajara, Mexico; lot K1202029; 84.54% degree of deacetylation, Mv = 82 682.5 g·mol −1 ); microgranular cellulose (C) from Sigma–Aldrich (St. Louis, MO, USA); and
Techniques:
Journal: Gels
Article Title: Effect of Protonated Media on Dye Diffusion in Chitosan–Cellulose-Based Cryogel Beads
doi: 10.3390/gels11100770
Figure Lengend Snippet: Spectrum of cryogel Ch-C-EGDE via FTIR infrared spectroscopy.
Article Snippet: The solutions were prepared using the following reagents and materials: industrial-grade chitosan (Ch) from Alimentos America (Guadalajara, Mexico; lot K1202029; 84.54% degree of deacetylation, Mv = 82 682.5 g·mol −1 ); microgranular cellulose (C) from Sigma–Aldrich (St. Louis, MO, USA); and
Techniques: Spectroscopy
Journal: Gels
Article Title: Effect of Protonated Media on Dye Diffusion in Chitosan–Cellulose-Based Cryogel Beads
doi: 10.3390/gels11100770
Figure Lengend Snippet: Adsorption kinetic data for each dye in Ch-C-EGDE cryogel at 303.15 K.
Article Snippet: The solutions were prepared using the following reagents and materials: industrial-grade chitosan (Ch) from Alimentos America (Guadalajara, Mexico; lot K1202029; 84.54% degree of deacetylation, Mv = 82 682.5 g·mol −1 ); microgranular cellulose (C) from Sigma–Aldrich (St. Louis, MO, USA); and
Techniques: Adsorption
Journal: Gels
Article Title: Effect of Protonated Media on Dye Diffusion in Chitosan–Cellulose-Based Cryogel Beads
doi: 10.3390/gels11100770
Figure Lengend Snippet: Data of the adsorption isotherm of each dye in Ch-C-EGDE cryogel at 303.15 K.
Article Snippet: The solutions were prepared using the following reagents and materials: industrial-grade chitosan (Ch) from Alimentos America (Guadalajara, Mexico; lot K1202029; 84.54% degree of deacetylation, Mv = 82 682.5 g·mol −1 ); microgranular cellulose (C) from Sigma–Aldrich (St. Louis, MO, USA); and
Techniques: Adsorption
Journal: Gels
Article Title: Effect of Protonated Media on Dye Diffusion in Chitosan–Cellulose-Based Cryogel Beads
doi: 10.3390/gels11100770
Figure Lengend Snippet: The pH influence on dye desorption in a single-component Ch-C-EGDE cryogel system.
Article Snippet: The solutions were prepared using the following reagents and materials: industrial-grade chitosan (Ch) from Alimentos America (Guadalajara, Mexico; lot K1202029; 84.54% degree of deacetylation, Mv = 82 682.5 g·mol −1 ); microgranular cellulose (C) from Sigma–Aldrich (St. Louis, MO, USA); and
Techniques:
Journal: Gels
Article Title: Effect of Protonated Media on Dye Diffusion in Chitosan–Cellulose-Based Cryogel Beads
doi: 10.3390/gels11100770
Figure Lengend Snippet: Dye desorption kinetics in a single-component Ch-C-EGDE cryogel system.
Article Snippet: The solutions were prepared using the following reagents and materials: industrial-grade chitosan (Ch) from Alimentos America (Guadalajara, Mexico; lot K1202029; 84.54% degree of deacetylation, Mv = 82 682.5 g·mol −1 ); microgranular cellulose (C) from Sigma–Aldrich (St. Louis, MO, USA); and
Techniques:
Journal: Gels
Article Title: Effect of Protonated Media on Dye Diffusion in Chitosan–Cellulose-Based Cryogel Beads
doi: 10.3390/gels11100770
Figure Lengend Snippet: Tests of the Ch-C-EGDE cryogel reuse cycle for dye FD&C yellow 5.
Article Snippet: The solutions were prepared using the following reagents and materials: industrial-grade chitosan (Ch) from Alimentos America (Guadalajara, Mexico; lot K1202029; 84.54% degree of deacetylation, Mv = 82 682.5 g·mol −1 ); microgranular cellulose (C) from Sigma–Aldrich (St. Louis, MO, USA); and
Techniques:
Journal: Gels
Article Title: Effect of Protonated Media on Dye Diffusion in Chitosan–Cellulose-Based Cryogel Beads
doi: 10.3390/gels11100770
Figure Lengend Snippet: Diagram of the synthesis of cryogel Ch-C-EGDE: ( a ) Preparation of gel with chitosan and acetic acid 0.4 M. Addition of cellulose in a ratio of 1.9:1. Binding with EGDE covalent crosslinker. ( b ) Dripping in liquid air. ( c ) Freeze-drying process at 0.008 mbar and 188 K for 24 h. ( d ) Cryogel washing in distilled water until the pH of the water is neutral.
Article Snippet: The solutions were prepared using the following reagents and materials: industrial-grade chitosan (Ch) from Alimentos America (Guadalajara, Mexico; lot K1202029; 84.54% degree of deacetylation, Mv = 82 682.5 g·mol −1 ); microgranular cellulose (C) from Sigma–Aldrich (St. Louis, MO, USA); and
Techniques: Binding Assay