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Biotechniques
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September 1, 1996
Simultaneous detection of microorganisms in soil suspension based on PCR amplification of bacterial 16S rRNA fragments
D P McGregor, S Forster, J Steven, et al.
FEMS Immunology and Medical Microbiology
|
March 17, 1999
The SCID/Beige mouse as a model to investigate protection against Yersinia pestis
M Green, D Rogers, P Russell, et al.
Biophysical Journal
|
November 27, 2001
Probing molecular interactions in intact antibody: antigen complexes, an electrospray time-of-flight mass spectrometry approach
M A Tito, J Miller, N Walker, et al.
Journal of Medical Microbiology
|
July 24, 2007
Polysaccharides and virulence of Burkholderia pseudomallei
M Sarkar-Tyson, J E Thwaite, S V Harding, et al.
Soft Matter
|
August 26, 2015
Clostridium perfringensα-toxin interaction with red cells and model membranes
S A Jewell, R W Titball, J Huyet, et al.
FEBS Letters
|
May 4, 2001
Tyrosine 331 and phenylalanine 334 in Clostridium perfringens alpha-toxin are essential for cytotoxic activity
M Jepson, H L Bullifent, D Crane, et al.
Microbial Pathogenesis
|
February 13, 2001
Characterization of the lipopolysaccharide of Yersinia pestis
J L Prior, P G Hitchen, D E Williamson, et al.
Acta Crystallographica. Section D, Biological Crystallography
|
October 15, 2010
Comparison of a nontoxic variant of Clostridium perfringens α-toxin with the toxic wild-type strain
S G Vachieri, G C Clark, A Alape-Girón, et al.
Infection and Immunity
|
February 1, 1989
Molecular cloning and nucleotide sequence of the alpha-toxin (phospholipase C) of Clostridium perfringens
R W Titball, S E Hunter, K L Martin, et al.
The Journal of Biological Chemistry
|
September 12, 1998
UDP-glucose deficiency causes hypersensitivity to the cytotoxic effect of Clostridium perfringens phospholipase C
M Flores-Díaz, A Alape-Girón, R W Titball, et al.
Page
of 12
Search research articles
Search
Showing results (91-100 of 111) with videos related to
Sort By:
Page
of 12
Biotechniques
|
September 1, 1996
Simultaneous detection of microorganisms in soil suspension based on PCR amplification of bacterial 16S rRNA fragments
D P McGregor, S Forster, J Steven, et al.
FEMS Immunology and Medical Microbiology
|
March 17, 1999
The SCID/Beige mouse as a model to investigate protection against Yersinia pestis
M Green, D Rogers, P Russell, et al.
Biophysical Journal
|
November 27, 2001
Probing molecular interactions in intact antibody: antigen complexes, an electrospray time-of-flight mass spectrometry approach
M A Tito, J Miller, N Walker, et al.
Journal of Medical Microbiology
|
July 24, 2007
Polysaccharides and virulence of Burkholderia pseudomallei
M Sarkar-Tyson, J E Thwaite, S V Harding, et al.
Soft Matter
|
August 26, 2015
Clostridium perfringensα-toxin interaction with red cells and model membranes
S A Jewell, R W Titball, J Huyet, et al.
FEBS Letters
|
May 4, 2001
Tyrosine 331 and phenylalanine 334 in Clostridium perfringens alpha-toxin are essential for cytotoxic activity
M Jepson, H L Bullifent, D Crane, et al.
Microbial Pathogenesis
|
February 13, 2001
Characterization of the lipopolysaccharide of Yersinia pestis
J L Prior, P G Hitchen, D E Williamson, et al.
Acta Crystallographica. Section D, Biological Crystallography
|
October 15, 2010
Comparison of a nontoxic variant of Clostridium perfringens α-toxin with the toxic wild-type strain
S G Vachieri, G C Clark, A Alape-Girón, et al.
Infection and Immunity
|
February 1, 1989
Molecular cloning and nucleotide sequence of the alpha-toxin (phospholipase C) of Clostridium perfringens
R W Titball, S E Hunter, K L Martin, et al.
The Journal of Biological Chemistry
|
September 12, 1998
UDP-glucose deficiency causes hypersensitivity to the cytotoxic effect of Clostridium perfringens phospholipase C
M Flores-Díaz, A Alape-Girón, R W Titball, et al.
Page
of 12