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Protein microarray technologies

Haab BB Advances in protein microarray technology for protein expression and interaction profiling. Curr Opin Drug Discovery Dev 2001 4 116-123. [Pg.112]

L.O. Lomas, Protein Microarray Technology, Chap. 8, Wiley-VCH (2004). [Pg.400]

Nock, S. and Wilson, D.S., Recent developments in protein microarray technology, Angew. Chem. Int. Ed., 42, 494—500, 2003. [Pg.236]

Espina, V. Phosphoprotein stability in clinical tissue and its relevance for reverse phase protein microarray technology... [Pg.191]

Rapkiewicz A, Espina V, Zujewski JA et al (1925) The needle in the haystack application of breast fine-needle aspirate samples to quantitative protein microarray technology. Cancer 111 173-184... [Pg.213]

Kambhampati D. (2003) Protein Microarray Technology. 1 ed. Weinheim Wiley-VCH. [Pg.268]

The accuracy and the ability of DNA and protein microarray technologies to detect small differences will get better... [Pg.126]

Applications of DNA and Protein Microarray Technology DNA microarray technology can be applied for the following purposes. [Pg.131]

Kambhampati D (2004) Protein microarray technology. Wiley-VCH, Weinheim... [Pg.90]

Figure 7.2 Profiling the antibody repertoire of autoimmune patients by combining protein microarray technology with large cDNA expression libraries. In a first step, serum samples from patients were analysed onto protein arrays consisting of approximately 37,200 redundant human proteins. The data sets obtained were compared to the data sets deriving from incubations with serum of age and sex matched control persons. Figure 7.2 Profiling the antibody repertoire of autoimmune patients by combining protein microarray technology with large cDNA expression libraries. In a first step, serum samples from patients were analysed onto protein arrays consisting of approximately 37,200 redundant human proteins. The data sets obtained were compared to the data sets deriving from incubations with serum of age and sex matched control persons.
Radchuk, V., Weschke, W., Burkle, L., Kersten, B. (2004). Identification of barley CK2alpha targets by using the protein microarray technology. Phytochemistry 65, 1777-1784. [Pg.155]

DNA and protein microarray technology has revolutionized the way scientists study complex biological processes. These arrays consist of thousands of nucleic acids or proteins immobilized on a solid support. The array format allows one to rapidly evaluate interactions with a large number of molecules simultaneously. For example, one can examine the expression profiles of thousands of genes in a single experiment. [Pg.40]

Hall DA, Ptacek J, Snyder M. Protein microarray technology. 41. Mech. Ageing Dev. 2007 128 161-167. [Pg.2082]

Schaferling M, Kambhampati D. Protein microarray surface chemistry and coupling schemes. In Protein Microarray Technology. 53. Kambhampati, D, ed. 2004. Wiley-VCH Verlag GmbH KGaA, Weinheim. pp. 11-38. [Pg.2082]

Templin MF, Stoll D, Schrenk M, Traub PC, Vohringer CF, Joos TO. Protein microarray technology. Trends Biotechnol 2002 20 160-6. [Pg.242]

Bertone P, Snyder M (2005) Advances in functional protein microarray technology. FEES J 272 5400-5411... [Pg.39]

Hall, D. A., J. Ptacek, and M. Snyder. 2007. Protein microarray technology. Mech. Aging Dev. 128, 161-167. [Pg.101]

Mann CJ, Stephens SK, Burke JF (2004) Production of protein microarrays. In Kamb-hampati D (ed) Protein microarray technology. Wiley, Weinheim... [Pg.153]


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See also in sourсe #XX -- [ Pg.64 ]




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