Wednesday, April 23, 2014
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GeneNet Human 50K Plasmid siRNA Library in pSIF1-H1-copGFP
GeneNet Human 50K Plasmid siRNA Library in pSIF1-H1-Puro
GeneNet Human 50K siRNA Library in pSIF1-H1-copGFP
GeneNet Human 50K siRNA Library in pSIF1-H1-Puro
GeneNet Mouse 40K Plasmid siRNA Library in pSIF1-H1-Puro
GeneNet Mouse 40K Plasmid siRNA Library in pSIH1-H1-Puro
GeneNet Mouse 40K siRNA Library in pSIF1-H1-Puro
GeneNet Mouse 40K siRNA Library in pSIH1-H1-Puro
Showing Results 1 - 8 of 8
Unexpected Protein Partnership has Implications for Cancer Treatment
Scientists have identified a macrophage that works together in response to cancer drugs to increase inflammation in a way that may alter tumor growth.
Targeting Cancer with a Triple Threat
MIT chemists design nanoparticles that can deliver three cancer drugs at a time.
Breakthrough Profiling Technology to Improve Cancer Treatment on a Personalized Basis
New research paper published in the peer reviewed journal PLOS ONE.
Blocking DNA Repair Mechanisms Could Improve Brain Cancer Therapy
The findings were published April 7 in Nature Communications.
Study Identifies Growth Factor Receptors That May Prompt the Spread of Lung Cancer
Preventing lung cancers from metastasizing to other parts of the body could provide benefit for patients against the leading cause of cancer death.
Cancer’s Thirst For Copper Can Be Targeted
Drugs used to block copper absorption for a rare genetic condition may find an additional use as a treatment for certain types of cancer.
Improvement to Radiation Therapy for Deadly Brain Cancer
UT Southwestern Medical Center researchers have demonstrated in both cancer cell lines and in mice that blocking critical DNA repair mechanisms could improve the effectiveness of radiation therapy for highly fatal brain tumors called glioblastomas.
Some Long Non-Coding RNAs Are Conventional After All
Researchers have used ribosome profiling to identify several hundred long non-coding RNAs that may give rise to small peptides.
Obesity Primes the Colon for Cancer, According to NIH Study
The study appeared online April 1 in the journal Cell Metabolism.
Entirely Novel Strategy to Molecular Anticancer Therapy Tricks Malignant Cells
New drug prevents tumour growth by inhibiting the nucleotide sanitizing enzyme MTH1.
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