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Dive into the research topics where Palani Kumaresan is active.

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Featured researches published by Palani Kumaresan.


Analytical Chemistry | 2008

High-throughput single copy DNA amplification and cell analysis in engineered nanoliter droplets.

Palani Kumaresan; Chaoyong James Yang; Samantha A. Cronier; Robert Blazej; Richard A. Mathies

A high-throughput single copy genetic amplification (SCGA) process is developed that utilizes a microfabricated droplet generator (microDG) to rapidly encapsulate individual DNA molecules or cells together with primer functionalized microbeads in uniform PCR mix droplets. The nanoliter volume droplets uniquely enable quantitative high-yield amplification of DNA targets suitable for long-range sequencing and genetic analysis. A hybrid glass-polydimethylsiloxane (PDMS) microdevice assembly is used to integrate a micropump into the microDG that provides uniform droplet size, controlled generation frequency, and effective bead incorporation. After bulk PCR amplification, the droplets are lysed and the beads are recovered and rapidly analyzed via flow cytometry. DNA targets ranging in size from 380 to 1139 bp at single molecule concentrations are quantitatively amplified using SCGA. Long-range sequencing results from beads each carrying approximately 100 amol of a 624 bp product demonstrate that these amplicons are competent for achieving attomole-scale Sanger sequencing from a single bead and for advancing pyrosequencing read-lengths. Successful single cell analysis of the glyceraldehyde 3 phosphate dehydrogenase (GAPDH) gene in human lymphocyte cells and of the gyr B gene in bacterial Escherichia coli K12 cells establishes that SCGA will also be valuable for performing high-throughput genetic analysis on single cells.


Proceedings of the National Academy of Sciences of the United States of America | 2006

Microfabricated bioprocessor for integrated nanoliter-scale Sanger DNA sequencing

Robert Blazej; Palani Kumaresan; Richard A. Mathies


Archive | 2005

Microfabricated integrated dna analysis system

Richard A. Mathies; Robert Blazej; Chung Liu; Palani Kumaresan; Stephanie H. I. Yeung


Archive | 2007

Inline-injection microdevice and microfabricated integrated dna analysis system using same

Richard A. Mathies; Robert Blazej; Palani Kumaresan


Archive | 2008

Microfabricated droplet generator for single molecule/cell genetic analysis in engineered monodispersed emulsions

Richard A. Mathies; Palani Kumaresan; Chaoyang Yang; Robert Blazej


Analytical Chemistry | 2007

Inline injection microdevice for attomole-scale sanger DNA sequencing.

Robert Blazej; Palani Kumaresan; Samantha A. Cronier; Richard A. Mathies


Archive | 2008

Microfabricated dropley generator

Richard A. Mathies; Palani Kumaresan; Chaoyang Yang; Robert Blazej


International Journal of Computer Integrated Manufacturing | 2005

Implementation of draft-angle, mould-machining capabilities in an automated CAD/CAM pipeline

Palani Kumaresan; Paul K. Wright


Archive | 2007

Microdispositif à injection en ligne et système d'analyse d'adn intégré micro-usiné faisant intervenir ce microdispositif

Richard A. Mathies; Robert Blazej; Palani Kumaresan


Archive | 2005

Systeme d'analyse d'adn integre, microfabrique

Richard A. Mathies; Robert Blazej; Chung Liu; Palani Kumaresan; Stephanie H. I. Yeung

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Robert Blazej

University of California

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Chung Liu

University of California

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Chaoyang Yang

University of California

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Paul K. Wright

University of California

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