Examples of using Microarray technology in English and their translations into Portuguese
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SuperSAGE has been combined with high-throughput microarray technology to increase the power of the method further.
The genotyping was performed through a pcr multiplex technique associated with dna microarray technology, beadchip¿.
Microarray technology has allowed identification of the transcriptomic signature of the window of receptivity window of implantation WOI.
This functional genomic approach is based on dna microarray technology and on the use of bioinformatics for analyzing the data.
ArrayGenius, Biomind's flagship product,is an enterprise system for large scale analysis of gene expression data generated by microarray technology.
Other investigations have used a microarray technology to compare gene expression levels after the administration of endotoxin.
In the attempt to improve response predictive model accuracy to neoadjuvant chemotherapy,analyses using cDNA microarray technology were conducted.
It is widely recognized that microarray technology may be limited by cost and that the quality of the transcript remains relatively unknown.
Those 77 lymph nodes were analyzed for the presence of micrometastases using a combination of tissue microarray technology and immunohistochemical staining.
The advantage of microarray technology is that multiple reactions can be performed at a time with the ability to easily visualize positive interactions.
Using CK7, we detected micrometastases in 28% of the patients, compared with 39% for AE1/AE3 and33% for chromogranin A. The diagnostic efficiency was increased by combining tissue microarray technology and immunohistochemical staining.
Our study showed the value of combining tissue microarray technology and immunohistochemical staining to detect occult micrometastatic tumor cells in lymph nodes.
The microarray technology has been changing the traditional manner of conducting research because it allows relevant questions to be addressed through an integral perspective, favoring new paradigms.
We have demonstrated that, in 50% of the patients with NSCLC evaluated in the present study,the combined use of tissue microarray technology and immunohistochemical staining to detect occult tumor cells in regional lymph nodes changed the staging status.
This study used the microarray technology and qrt-pcr to assess comparative expression of micrornas in cell lines of human mammary carcinoma after treatment with the drug cediranib.
In conclusion, larger randomized, prospective studies are needed in order to determine the accuracy of andvalidate the combined use of tissue microarray technology and immunohistochemical staining as an alternative method of detecting occult micrometastatic tumor cells in pN0 NSCLC lymph nodes.
By combining tissue microarray technology and immunohistochemical staining, we identified occult micrometastatic tumor cells in pN0 lymph nodes in 50% of the patients with completely resected NSCLC tumors.
New sections were made from the original blocks of each patient by the tissue microarray technology, to be submitted to the application of p53 and p16immunomarkers, by hand, at the Experimental Pathology Laboratory PUCPR.
In experiments using microarray technology, which provides global view of gene expression(gene expression profiles), genes and/or metabolic pathways have of interest have been identified for further study.
The presence of cytokeratins or chromogranin A-positive cells in lymph node sections,which was determined using tissue microarray technology, was accepted as evidence of the presence of micrometastatic tumor cells, even when only a single cytokeratin or a single chromogranin A protein positive cell was detected.
The recent development of tissue microarray technology has enabled researchers to conduct retrospective studies using archival, formalin-fixed, paraffin-embedded tissues.
In order to identify changes in gene expression,we used analytical methods such as microarray technology and calculating the pearson correlation coefficient, where it was possible to observe increases or decreases in gene expression and also the magnitude of change. furthermore.
Microarray technologies involve(1) a functional capture agent,(2) surface chemistry, and(3) generation of high efficiency throughput methods.
Purpose: The purpose of this book is to provide a thorough understanding of the technology of microarrays and to evaluate their usefulness in developing new approaches to biomedical problem-solving.
The different forms of microarray technologies, such as protein microarray and peptide microarray are analytical tools for proteomics research that facilitate drug discovery and have diagnostic applications.