While microarray technology is broadening its applications in genomics and proteomics, the technique remains a vibrant contributor in the area of gene expression. Much of the overall developmental ...
Phase I and Pharmacologic Study of Oral ZD9331, A Novel Nonpolyglutamated Thymidylate Synthase Inhibitor, in Adult Patients With Solid Tumors ABSTRACT: Aberrant gene expression is critical for tumor ...
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Indero announces breakthrough method for early-phase evaluation of topical drugs using quantitative gene expression
Indero is proud to announce the successful completion of an internally funded study that introduces a novel approach to ...
Phase I Study of Adoptive T-Cell Therapy Using Antigen-Specific CD8+ T Cells for the Treatment of Patients With Metastatic Melanoma Two hundred fifty-one neuroblastoma specimens were analyzed using a ...
Researchers at the Jackson Laboratory (JAX), the Broad Institute of MIT and Harvard, and Yale University, have used artificial intelligence (AI) to design thousands of new DNA switches that can ...
DNA methylation is a key epigenome component that helps dictate how genes are expressed, contributing to normal cell and tissue differentiation during development, as well as the process of biological ...
A newly developed mouse model enables real-time visualization of RNA Polymerase II (RNAP2) during DNA transcription, as ...
Explore CRISPR technology explained, gene editing science, DNA modification, and genetic engineering ethics—discover how ...
Epigenetics is a rapidly growing field of study that focuses on the heritable changes in gene expression that occur without alterations to the underlying DNA sequence. These changes are caused by ...
Epigenetics is the study of various heritable alterations that control gene expression without changing the DNA sequence. 1 The name epigenetics comes from the Greek prefix “epi”, which means on top ...
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