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Synergistic action by multi-targeting compounds produces a potent compound combination for human NSCLC both in vitro and in vivo
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Document Date: 2014-03-20 11:10:32


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File Size: 3,98 MB

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City

Shanghai / Santa Clara / Jinan / Beijing / San Jose / St. Louis / /

Company

Life Technologies Inc. / Agilent Technologies / Millipore / Sigma-Aldrich / Promega Biotech CO. Ltd / PerkinElmer / Macmillan Publishers Limited / /

Country

United States / China / /

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Event

FDA Phase / /

Facility

Shandong University / laboratory Animals / /

IndustryTerm

ml tubulin solution / cancer therapy / cancer treatment / chemical structures / subsequent data processing / chemicals reagents / potential applications / /

MedicalCondition

paclitaxel-sensitive lung cancer / mice showing tumors / human lung cancer H460/TaxR / Disease membrane potential / non-small cell lung cancer / cancers / tumor / multi-factorial diseases / Cancer / tumors / Disease / NSCLC / subcutaneous tumors / Cancer Lung cancer / human cancer / drug-resistant cancers / synergistic cancer / tumor necrosis / mean tumor / lung cancer / diseases / AIDS / H460/TaxR xenograft tumors / Human lung tumor / immunodeficiency syndrome / /

MedicalTreatment

combination chemotherapy / chemotherapy / radiotherapy / surgery / cancer therapy / anticancer drug combinations / /

Organization

School of Pharmaceutical Sciences / Shandong University / Jinan / MADD / Committee on the Ethics / /

Person

Shanda Nanlu / /

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Position

*Corresponding author / representative / /

Product

penicillin / Gleevec / Iressa / paclitaxel / M-16 / dimethyl sulfoxide / Taxol / Tarceva / Quick Amp Labeling / /

ProvinceOrState

Shandong / South Dakota / /

Technology

hybridization / Biotechnology / polymerization / html / Human genome / apoptosis / DNA Chip / Amp Labeling protocol / gene expression / chemotherapy / treating cancer / drug development / /

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http /

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