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Journal of Medicinal Chemistry
|
October 1, 1987
Plant antitumor agents. 25. Total synthesis and antileukemic activity of ring A substituted camptothecin analogues. Structure-activity correlations
M C Wani, A W Nicholas, G Manikumar, et al.
Archives of Biochemistry and Biophysics
|
September 25, 1999
Human DNA topoisomerase I: quantitative analysis of the effects of camptothecin analogs and the benzophenanthridine alkaloids nitidine and 6-ethoxydihydronitidine on DNA topoisomerase I-induced DNA strand breakage
J A Holden, M E Wall, M C Wani, et al.
Journal of Natural Products
|
July 1, 1989
Plant antimutagens, 6. Intricatin and intricatinol, new antimutagenic homoisoflavonoids from Hoffmanosseggia intricata
M E Wall, M C Wani, G Manikumar, et al.
Journal of Natural Products
|
November 1, 1988
Plant antimutagenic agents, 4. Isolation and structure elucidation of maesol, an inactive constituent of Maesa spp
M E Wall, M C Wani, K Gaetano, et al.
Journal of Medicinal Chemistry
|
March 1, 1990
Plant antitumor agents. 29. Synthesis and biological activity of ring D and ring E modified analogues of camptothecin
A W Nicholas, M C Wani, G Manikumar, et al.
Journal of Natural Products
|
November 1, 1988
Plant antimutagenic agents, 3. Coumarins
M E Wall, M C Wani, G Manikumar, et al.
Journal of Natural Products
|
November 1, 1988
Plant antimutagenic agents, 2. Flavonoids
M E Wall, M C Wani, G Manikumar, et al.
Journal of Natural Products
|
July 1, 1989
Plant antimutagenic agents, 5. Isolation and structure of two new isoflavones, fremontin and fremontone from Psorothamnus fremontii
G Manikumar, K Gaetano, M C Wani, et al.
Molecular Pharmacology
|
January 29, 2000
7- and 10-substituted camptothecins: dependence of topoisomerase I-DNA cleavable complex formation and stability on the 7- and 10-substituents
B Vladu, J M Woynarowski, G Manikumar, et al.
Cancer Chemotherapy and Pharmacology
|
October 29, 2000
Camptothecin analogues with enhanced antitumor activity at acidic pH
D J Adams, M W Dewhirst, J L Flowers, et al.
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Search research articles
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Showing results (1-10 of 19) with videos related to
Sort By:
Page
of 2
Journal of Medicinal Chemistry
|
October 1, 1987
Plant antitumor agents. 25. Total synthesis and antileukemic activity of ring A substituted camptothecin analogues. Structure-activity correlations
M C Wani, A W Nicholas, G Manikumar, et al.
Archives of Biochemistry and Biophysics
|
September 25, 1999
Human DNA topoisomerase I: quantitative analysis of the effects of camptothecin analogs and the benzophenanthridine alkaloids nitidine and 6-ethoxydihydronitidine on DNA topoisomerase I-induced DNA strand breakage
J A Holden, M E Wall, M C Wani, et al.
Journal of Natural Products
|
July 1, 1989
Plant antimutagens, 6. Intricatin and intricatinol, new antimutagenic homoisoflavonoids from Hoffmanosseggia intricata
M E Wall, M C Wani, G Manikumar, et al.
Journal of Natural Products
|
November 1, 1988
Plant antimutagenic agents, 4. Isolation and structure elucidation of maesol, an inactive constituent of Maesa spp
M E Wall, M C Wani, K Gaetano, et al.
Journal of Medicinal Chemistry
|
March 1, 1990
Plant antitumor agents. 29. Synthesis and biological activity of ring D and ring E modified analogues of camptothecin
A W Nicholas, M C Wani, G Manikumar, et al.
Journal of Natural Products
|
November 1, 1988
Plant antimutagenic agents, 3. Coumarins
M E Wall, M C Wani, G Manikumar, et al.
Journal of Natural Products
|
November 1, 1988
Plant antimutagenic agents, 2. Flavonoids
M E Wall, M C Wani, G Manikumar, et al.
Journal of Natural Products
|
July 1, 1989
Plant antimutagenic agents, 5. Isolation and structure of two new isoflavones, fremontin and fremontone from Psorothamnus fremontii
G Manikumar, K Gaetano, M C Wani, et al.
Molecular Pharmacology
|
January 29, 2000
7- and 10-substituted camptothecins: dependence of topoisomerase I-DNA cleavable complex formation and stability on the 7- and 10-substituents
B Vladu, J M Woynarowski, G Manikumar, et al.
Cancer Chemotherapy and Pharmacology
|
October 29, 2000
Camptothecin analogues with enhanced antitumor activity at acidic pH
D J Adams, M W Dewhirst, J L Flowers, et al.
Page
of 2