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nextseq500系统揭示疾病机制-NextSeq500System.PDF
June 2015
Unraveling Disease Mechanisms With The
®
NextSeq 500 System
Researchers at the Icahn School of Medicine at Mount Sinai are studying mtDNA, piRNA, and
TCR repertoire diversity to unlock the secrets of cancer, infertility, and autoimmune disease.
Introduction The chair of genetics at Mount Sinai Hospital recruited me 5 years ago
to build upon the strictly computational work that I had been doing
Extensive research is focused on how human genome aberrations
at Cold Spring Harbor. When I made the move, they were thinking
contribute to the onset and progression of disease. Structural
of starting a sequencing program and the responsibility for setting it
variations, gene mutations, deletions, and insertions have all been
up fell into my hands. I hired a technician and together we learned
found to play a role. Yet up until recently, researchers have been
a lot about sequencing systems and workflows as we established
limited in studying how genetic changes in the DNA or RNA driving
the laboratory.
specific biological subsystems might be involved in disease onset
and progression.
Q: How are your team’s research goals intertwined with the
An innovative research team at the Icahn School of Medicine at Mount development of new sequencing metho
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