Chongwei Shi Advances Genetic Research Through DNA Microarray Technology Principles and Applications
A recent study highlights how DNA microarray technology enables high-throughput gene analysis, supporting variation detection, expression ...
Most pharmaceuticals sold today have their origin in a biochemistry laboratory. Drug discovery has traditionally started with a biochemical pathway implicated in a pathophysiological process. An ...
Students model how scientists use DNA microarrays to determine levels of gene expression in breast cancer patients, and then choose treatments based on what they learn. Normal-functioning DNA codes ...
Edited by B Jordan Springer-Verlag, Heidelberg. 2001; 140 pp. £30.00, paperback. ISBN 3-540-41508-4. The heady euphoria of the late nineties, promising that DNA microarrays would be ubiquitous tools ...
A standard Internet protocol that checks errors made during email transmissions has now inspired a revolutionary method to transform DNA microarray analysis, a common technology used to understand ...
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 ...
An international research team led by the University of Vienna has succeeded in developing a new version of RNA building blocks with higher chemical reactivity and photosensitivity. This can ...
Comparative genomic hybridization (CGH) was developed to identify pathogenic DNA copy-number changes (e.g., duplications, deletions) on a genome-wide scale, and to map these changes to genomic ...
The human genome project was undertaken to determine the human DNA sequence and analyze variation among individuals. To make use of this information, tools were developed that could collect and ...
Processes Involved in Using DNA Microarray Instrumentation in Protein Microarray Workflow Protein microarrays offer the ability to measure protein expression and antibody binding in a high-throughput ...
The Global Gene Expression Market is estimated to be valued at USD 16.56 Bn in 2025 and is expected to reach USD 23.61 Bn by 2032, exhibiting a compound annual growth rate (CAGR) of 5.2% from 2025 to ...
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