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Gagan A Pandya

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Recent Articles
1.
Pandya G, McEllistrem M, Venepally P, Holmes M, Jarrahi B, Sanka R, et al.
PLoS One . 2011 Jan; 6(1):e15950. PMID: 21264340
Background: While the pneumococcal protein conjugate vaccines reduce the incidence in invasive pneumococcal disease (IPD), serotype replacement remains a major concern. Thus, serotype-independent protection with vaccines targeting virulence genes, such...
2.
Bucasas K, Pandya G, Pradhan S, Fleischmann R, Peterson S, Belmont J
BMC Genet . 2009 Dec; 10:85. PMID: 20021669
Background: Whole genome amplification (WGA) offers new possibilities for genome-wide association studies where limited DNA samples have been collected. This study provides a realistic and high-precision assessment of WGA DNA...
3.
Pandya G, Holmes M, Petersen J, Pradhan S, Karamycheva S, Wolcott M, et al.
BMC Microbiol . 2009 Oct; 9:213. PMID: 19811647
Background: A low genetic diversity in Francisella tularensis has been documented. Current DNA based genotyping methods for typing F. tularensis offer a limited and varying degree of subspecies, clade and...
4.
Kwon K, Grose C, Pieper R, Pandya G, Fleischmann R, Peterson S
BMC Biotechnol . 2009 Aug; 9:72. PMID: 19698181
Background: In the postgenomic era, high throughput protein expression and protein microarray technologies have progressed markedly permitting screening of therapeutic reagents and discovery of novel protein functions. Hexa-histidine is one...
5.
Pandya G, Holmes M, Sunkara S, Sparks A, Bai Y, Verratti K, et al.
Nucleic Acids Res . 2007 Nov; 35(21):e148. PMID: 18006572
DNA resequencing arrays enable rapid acquisition of high-quality sequence data. This technology represents a promising platform for rapid high-resolution genotyping of microorganisms. Traditional array-based resequencing methods have relied on the...