The RTI-NPP group has been involved for 35 years in a search for natural products with anti- cancer activity based on the philosophy that secondary metabolites of plant, murine, or fungal origin may have valuable anti- cancer activity. Early studies resulted in isolation of camptothecin and taxol now in extensive clinical use, directly or as analogs, in anti-cancer chemotherapy. RTI wishes to continue this long-term effort as part of a consortium response to an NCI National Cooperative Natural Product rug Discovery Groups (NCNPDDG) Grant Application involving the University of Illinois at Chicago (UIC), Bristol-Myers Squib (BMS), and the Research Triangle Institute (RTI). RTI will receive samples of crude extracts from UIC process them for consolidation into 96-well mother plates. Daughter plates will be prepared and shipped to BMS for inclusion in their anti-cancer test battery. Active extracts will undergo bioassay- guided fractionation at RTI suing the same BMS assay(s) that identified the activity. The structure of pure compounds will be obtained utilizing all modern methods including UV, IRF, MS, LC-MS, NMR, and X-Ray.. When large quantities of active plants are collected and assigned to RTI, quantities of plant sample up to 10-20 kg will be extracted and fractionated. Pure samples thus obtained will be supplied as requested by the Principal Investigator for in vivo evaluations at RTI (Topo I and Topo II inhibition), UIC or BMS. In this manner RTI and its consortium partners, UIC and BMS hype to make a major contribution to cancer chemotherapy. The functional bioassays used at RTI to fractionate active crude extracts will be essentially those currently used in Oncology Drug Discovery at BMS. These include, but are not limited to, cell cycle and signal transduction targets known to be involved in cancer growth and inhibitors of angiogenesis. RTI has the facilities to establish these assays and provide the sample throughput necessary to conduct the timely bioassay- guided fractionation of the crude extracts. Pure compounds will also be evaluated for their ability to inhibit topoisomerase I.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Program--Cooperative Agreements (U19)
Project #
5U19CA052956-13
Application #
6591263
Study Section
Project Start
2002-05-15
Project End
2003-04-30
Budget Start
Budget End
Support Year
13
Fiscal Year
2002
Total Cost
Indirect Cost
Name
University of Illinois at Chicago
Department
Type
DUNS #
121911077
City
Chicago
State
IL
Country
United States
Zip Code
60612
Li, Jie; Pan, Li; Deng, Ye et al. (2013) Sphenostylisins A-K: bioactive modified isoflavonoid constituents of the root bark of Sphenostylis marginata ssp. erecta. J Org Chem 78:10166-77
Ren, Yulin; Acuña, Ulyana Muñoz; Jiménez, Francisco et al. (2012) Cytotoxic and NF-?B inhibitory sesquiterpene lactones from Piptocoma rufescens. Tetrahedron 68:2671-2678
Pan, Li; Chai, Hee-Byung; Kinghorn, Alan Douglas (2012) Discovery of new anticancer agents from higher plants. Front Biosci (Schol Ed) 4:142-56
Pan, Li; Yong, Yeonjoong; Deng, Ye et al. (2012) Isolation, structure elucidation, and biological evaluation of 16,23-epoxycucurbitacin constituents from Eleaocarpus chinensis. J Nat Prod 75:444-52
Ren, Yulin; Matthew, Susan; Lantvit, Daniel D et al. (2011) Cytotoxic and NF-?B inhibitory constituents of the stems of Cratoxylum cochinchinense and their semisynthetic analogues. J Nat Prod 74:1117-25
Kinghorn, A Douglas; Pan, Li; Fletcher, Joshua N et al. (2011) The relevance of higher plants in lead compound discovery programs. J Nat Prod 74:1539-55
Deng, Ye; Chin, Young-Won; Chai, Hee-Byung et al. (2011) Phytochemical and Bioactivity Studies on Constituents of the Leaves of Vitex Quinata. Phytochem Lett 4:213-217
Gupta, Sneha V; Sass, Ellen J; Davis, Melanie E et al. (2011) Resistance to the translation initiation inhibitor silvestrol is mediated by ABCB1/P-glycoprotein overexpression in acute lymphoblastic leukemia cells. AAPS J 13:357-64
Pan, Li; Chai, Heebyung; Kinghorn, A Douglas (2010) The continuing search for antitumor agents from higher plants. Phytochem Lett 3:1-8
Pan, Li; Lantvit, Daniel D; Riswan, Soedarsono et al. (2010) Bioactivity-guided isolation of cytotoxic sesquiterpenes of Rolandra fruticosa. Phytochemistry 71:635-40

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