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Clinica Chimica Acta; International Journal of Clinical Chemistry
|
July 16, 1979
Use of immobilized enzymes in automated clinical analysis: determination of uric acid and glucose using immobilized enzymes in column form
J Endo, M Tabata, S Okada, et al.
Biochemical and Biophysical Research Communications
|
May 14, 1986
Ca2+-dependent cysteine proteinase, calpains I and II are not phosphorylated in vivo
Y Adachi, N Kobayashi, T Murachi, et al.
Journal of Chromatography
|
April 24, 1992
Use of various types of column reactors for flow-injection analysis
M Tabata, T Murachi, J Endo, et al.
Journal of Applied Biochemistry
|
June 1, 1984
Enzyme immunoassay of calpain I and calpastatin and its application to the analysis of human erythrocyte hemolysate
E Takano, A Kitahara, R Kannagi, et al.
Archives of Dermatological Research
|
January 1, 1988
Calpain activates two transglutaminases from porcine skin
Y Ando, S Imamura, T Murachi, et al.
Journal of Enzyme Inhibition
|
January 1, 1990
Distributional and developmental variations of multiple forms of calpastatin in mouse brain
T Hamakubo, M Ueda, E Takano, et al.
Biological Chemistry Hoppe-Seyler
|
May 1, 1988
Distribution and expression of calpastatin in human hematopoietic system cells
Y Adachi, E Takano, T Murachi, et al.
Analytical Biochemistry
|
October 1, 1983
Automated assay of creatinine in serum as simplified by the use of immobilized enzymes, creatinine deiminase, and glutamate dehydrogenase
M Tabata, T Kido, M Totani, et al.
Archives of Biochemistry and Biophysics
|
November 1, 1985
Amidase-like activity of calpain I and calpain II on substance P and its related peptides
M Hatanaka, T Sasaki, T Kikuchi, et al.
Biochemistry International
|
February 1, 1985
Evidence for heterodimeric nature of calpain molecules as studied by cross-linking modification
M Hatanaka, N Yumoto, T Sakihama, et al.
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of 13
Search research articles
Search
Showing results (51-60 of 123) with videos related to
Sort By:
Page
of 13
Clinica Chimica Acta; International Journal of Clinical Chemistry
|
July 16, 1979
Use of immobilized enzymes in automated clinical analysis: determination of uric acid and glucose using immobilized enzymes in column form
J Endo, M Tabata, S Okada, et al.
Biochemical and Biophysical Research Communications
|
May 14, 1986
Ca2+-dependent cysteine proteinase, calpains I and II are not phosphorylated in vivo
Y Adachi, N Kobayashi, T Murachi, et al.
Journal of Chromatography
|
April 24, 1992
Use of various types of column reactors for flow-injection analysis
M Tabata, T Murachi, J Endo, et al.
Journal of Applied Biochemistry
|
June 1, 1984
Enzyme immunoassay of calpain I and calpastatin and its application to the analysis of human erythrocyte hemolysate
E Takano, A Kitahara, R Kannagi, et al.
Archives of Dermatological Research
|
January 1, 1988
Calpain activates two transglutaminases from porcine skin
Y Ando, S Imamura, T Murachi, et al.
Journal of Enzyme Inhibition
|
January 1, 1990
Distributional and developmental variations of multiple forms of calpastatin in mouse brain
T Hamakubo, M Ueda, E Takano, et al.
Biological Chemistry Hoppe-Seyler
|
May 1, 1988
Distribution and expression of calpastatin in human hematopoietic system cells
Y Adachi, E Takano, T Murachi, et al.
Analytical Biochemistry
|
October 1, 1983
Automated assay of creatinine in serum as simplified by the use of immobilized enzymes, creatinine deiminase, and glutamate dehydrogenase
M Tabata, T Kido, M Totani, et al.
Archives of Biochemistry and Biophysics
|
November 1, 1985
Amidase-like activity of calpain I and calpain II on substance P and its related peptides
M Hatanaka, T Sasaki, T Kikuchi, et al.
Biochemistry International
|
February 1, 1985
Evidence for heterodimeric nature of calpain molecules as studied by cross-linking modification
M Hatanaka, N Yumoto, T Sakihama, et al.
Page
of 13