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C Meredith

Showing results (161-170 of 242) with videos related to

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Molecular Microbiology|May 5, 2021
Spatial regulation of protein A in Staphylococcus aureusRan Zhang, Mac A Shebes, Kelvin Kho, et al.
Archives of Toxicology. Supplement. = Archiv Fur Toxikologie. Supplement|January 27, 1998
Immunotoxicology: extrapolation from animal to man--estimation of the immunotoxicologic risk associated with TBTO exposureH Van Loveren, W Slob, R J Vandebriel, et al.
Biochemistry|February 5, 2011
The Japanese mutant Aβ (ΔE22-Aβ(1-39)) forms fibrils instantaneously, with low-thioflavin T fluorescence: seeding of wild-type Aβ(1-40) into atypical fibrils by ΔE22-Aβ(1-39)Adam L Cloe, Joseph P R O Orgel, Joseph R Sachleben, et al.
Journal of Immunology (Baltimore, Md. : 1950)|June 8, 2001
Pharmacokinetic differences between a T cell-tolerizing and a T cell-activating peptideS Weijzen, S C Meredith, M P Velders, et al.
Journal of Bacteriology|January 9, 2023
A Copper-Responsive Two-Component System Governs Lipoprotein Remodeling in Listeria monocytogenesGloria Komazin, Amena A Rizk, Krista M Armbruster, et al.
Journal of Neuroscience Research|June 15, 1997
Association of c-fos mRNA expression and excitotoxicity in primary cultures of mouse neocortical and cerebellar neuronsR Griffiths, C Malcolm, L Ritchie, et al.
BMC Genomics|April 19, 2015
A new platform for ultra-high density Staphylococcus aureus transposon librariesMarina Santiago, Leigh M Matano, Samir H Moussa, et al.
Science (New York, N.Y.)|October 14, 2006
A mutant chaperone converts a wild-type protein into a tumor-specific antigenAndrea Schietinger, Mary Philip, Barbara A Yoshida, et al.
Cell|September 17, 2013
Molecular structure of β-amyloid fibrils in Alzheimer's disease brain tissueJun-Xia Lu, Wei Qiang, Wai-Ming Yau, et al.
Neuromuscular Disorders : NMD|April 30, 1999
Autosomal dominant distal myopathy not linked to the known distal myopathy lociK J Felice, C Meredith, N Binz, et al.
Pageof 25

Showing results (161-170 of 242) with videos related to

Sort By:
Pageof 25
Molecular Microbiology|May 5, 2021
Spatial regulation of protein A in Staphylococcus aureusRan Zhang, Mac A Shebes, Kelvin Kho, et al.
Archives of Toxicology. Supplement. = Archiv Fur Toxikologie. Supplement|January 27, 1998
Immunotoxicology: extrapolation from animal to man--estimation of the immunotoxicologic risk associated with TBTO exposureH Van Loveren, W Slob, R J Vandebriel, et al.
Biochemistry|February 5, 2011
The Japanese mutant Aβ (ΔE22-Aβ(1-39)) forms fibrils instantaneously, with low-thioflavin T fluorescence: seeding of wild-type Aβ(1-40) into atypical fibrils by ΔE22-Aβ(1-39)Adam L Cloe, Joseph P R O Orgel, Joseph R Sachleben, et al.
Journal of Immunology (Baltimore, Md. : 1950)|June 8, 2001
Pharmacokinetic differences between a T cell-tolerizing and a T cell-activating peptideS Weijzen, S C Meredith, M P Velders, et al.
Journal of Bacteriology|January 9, 2023
A Copper-Responsive Two-Component System Governs Lipoprotein Remodeling in Listeria monocytogenesGloria Komazin, Amena A Rizk, Krista M Armbruster, et al.
Journal of Neuroscience Research|June 15, 1997
Association of c-fos mRNA expression and excitotoxicity in primary cultures of mouse neocortical and cerebellar neuronsR Griffiths, C Malcolm, L Ritchie, et al.
BMC Genomics|April 19, 2015
A new platform for ultra-high density Staphylococcus aureus transposon librariesMarina Santiago, Leigh M Matano, Samir H Moussa, et al.
Science (New York, N.Y.)|October 14, 2006
A mutant chaperone converts a wild-type protein into a tumor-specific antigenAndrea Schietinger, Mary Philip, Barbara A Yoshida, et al.
Cell|September 17, 2013
Molecular structure of β-amyloid fibrils in Alzheimer's disease brain tissueJun-Xia Lu, Wei Qiang, Wai-Ming Yau, et al.
Neuromuscular Disorders : NMD|April 30, 1999
Autosomal dominant distal myopathy not linked to the known distal myopathy lociK J Felice, C Meredith, N Binz, et al.
Pageof 25