Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata

Wu, T.-S. ; Huang, S.-C. ; Wu, P. ; Lee, K.-H.

Amsterdam : Elsevier
ISSN:
0960-894X
Source:
Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
Topics:
Chemistry and Pharmacology
Medicine
Type of Medium:
Electronic Resource
URL:
_version_ 1798292138028433409
autor Wu, T.-S.
Huang, S.-C.
Wu, P.
Lee, K.-H.
autorsonst Wu, T.-S.
Huang, S.-C.
Wu, P.
Lee, K.-H.
book_url http://linkinghub.elsevier.com/retrieve/pii/S0960-894X(01)80397-8
datenlieferant nat_lic_papers
fussnote A new carbazolequinone alkaloid, clausenaquinone-A, has been isolated from the stem bark of Clausena excavata. The structure has been established from spectral data and total synthesis. Clausenaquinone-A shows potent inhibitory activity of the rabbit platelet aggregation as well as cytotoxicity in HCT-8, RPMI-7951, and TE671 tumor cells. | A new carbazolequinone alkaloid, clausenaquinone-A, has been isolated from the stem bark of Clausena excavata. The structure has been established from spectral data and total synthesis. Clausenaquinone-A shows potent inhibitory activity of the rabbit platelet aggregation as well as cytotoxicity in HCT-8, RPMI-7951, and TE671 tumor cells.
hauptsatz hsatz_simple
identnr NLZ176500448
issn 0960-894X
journal_name Bioorganic & Medicinal Chemistry Letters
materialart 1
package_name Elsevier
publikationsort Amsterdam
publisher Elsevier
reference 4 (1994), S. 2395-2398
search_space articles
shingle_author_1 Wu, T.-S.
Huang, S.-C.
Wu, P.
Lee, K.-H.
shingle_author_2 Wu, T.-S.
Huang, S.-C.
Wu, P.
Lee, K.-H.
shingle_author_3 Wu, T.-S.
Huang, S.-C.
Wu, P.
Lee, K.-H.
shingle_author_4 Wu, T.-S.
Huang, S.-C.
Wu, P.
Lee, K.-H.
shingle_catch_all_1 Wu, T.-S.
Huang, S.-C.
Wu, P.
Lee, K.-H.
Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata
0960-894X
0960894X
Elsevier
shingle_catch_all_2 Wu, T.-S.
Huang, S.-C.
Wu, P.
Lee, K.-H.
Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata
0960-894X
0960894X
Elsevier
shingle_catch_all_3 Wu, T.-S.
Huang, S.-C.
Wu, P.
Lee, K.-H.
Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata
0960-894X
0960894X
Elsevier
shingle_catch_all_4 Wu, T.-S.
Huang, S.-C.
Wu, P.
Lee, K.-H.
Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata
0960-894X
0960894X
Elsevier
shingle_title_1 Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata
shingle_title_2 Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata
shingle_title_3 Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata
shingle_title_4 Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata
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source_archive Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
timestamp 2024-05-06T08:43:44.251Z
titel Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata
titel_suche Structure and synthesis of clausenaquinone-a. A novel carbazolequinone alkaloid and bioactive principle from clausena excavata
A new carbazolequinone alkaloid, clausenaquinone-A, has been isolated from the stem bark of Clausena excavata. The structure has been established from spectral data and total synthesis. Clausenaquinone-A shows potent inhibitory activity of the rabbit platelet aggregation as well as cytotoxicity in HCT-8, RPMI-7951, and TE671 tumor cells. | A new carbazolequinone alkaloid, clausenaquinone-A, has been isolated from the stem bark of Clausena excavata. The structure has been established from spectral data and total synthesis. Clausenaquinone-A shows potent inhibitory activity of the rabbit platelet aggregation as well as cytotoxicity in HCT-8, RPMI-7951, and TE671 tumor cells.
topic V
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uid nat_lic_papers_NLZ176500448