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1 fection with thousands of RNAi reagents on a microarray slide.
2 ention of a pathologist reviewing the tissue microarray slide.
3 ety, and then spotted on streptavidin-coated microarray slides.
4 done using 16K Operon 70-mer oligonucleotide microarray slides.
5 he PDC-E2 inner lipoyl domain and spotted on microarray slides.
6 l on several commercial and in-house printed microarray slides.
7 ccessful spotting and hybridization on whole microarray slides.
8 ts, it is often desirable to strip and reuse microarray slides.
9 ciencies for arrays fabricated on commercial microarray slides.
10 archiving 349 distinct probes on 1488 tissue microarray slides.
12 probes attached to amine-reactive commercial microarray slides and complementary DNA target hybridiza
13 nut allergens (Ara h 1-11) were spotted onto microarray slides, and patients' samples were tested for
19 in an immunohistochemical analysis of tissue microarray slides containing NSCLC specimens (n = 300) a
21 nal antibodies (mAbs) in capturing toxins on microarray slides even when the pAbs and mAbs had simila
22 mercial polyacrylamide-based, amine-reactive microarray slides, immobilized in both macrospot and mic
24 ovary and follicle RNA were cohybridized on microarray slides (n = 90) containing 4608 follicle-deri
25 yzing differential hybridization on a single microarray slide, one can detect changes in mRNA express
27 " in which mammalian cells are cultured on a microarray slide spotted with different shRNAs in a tran
28 e most common type of grouping the probes on microarray slides, there is another microarray technolog
29 ng) that allows to process a wide variety of microarray slides with different parameters of grid and