首页 | 本学科首页   官方微博 | 高级检索  
     检索      


An integrated semiconductor device enabling non-optical genome sequencing
Authors:Rothberg Jonathan M  Hinz Wolfgang  Rearick Todd M  Schultz Jonathan  Mileski William  Davey Mel  Leamon John H  Johnson Kim  Milgrew Mark J  Edwards Matthew  Hoon Jeremy  Simons Jan F  Marran David  Myers Jason W  Davidson John F  Branting Annika  Nobile John R  Puc Bernard P  Light David  Clark Travis A  Huber Martin  Branciforte Jeffrey T  Stoner Isaac B  Cawley Simon E  Lyons Michael  Fu Yutao  Homer Nils  Sedova Marina  Miao Xin  Reed Brian  Sabina Jeffrey  Feierstein Erika  Schorn Michelle  Alanjary Mohammad  Dimalanta Eileen  Dressman Devin  Kasinskas Rachel  Sokolsky Tanya  Fidanza Jacqueline A  Namsaraev Eugeni
Institution:Ion Torrent by Life Technologies, Suite 100, 246 Goose Lane, Guilford, Connecticut 06437, USA. Jonathan.Rothberg@Lifetech.com
Abstract:The seminal importance of DNA sequencing to the life sciences, biotechnology and medicine has driven the search for more scalable and lower-cost solutions. Here we describe a DNA sequencing technology in which scalable, low-cost semiconductor manufacturing techniques are used to make an integrated circuit able to directly perform non-optical DNA sequencing of genomes. Sequence data are obtained by directly sensing the ions produced by template-directed DNA polymerase synthesis using all-natural nucleotides on this massively parallel semiconductor-sensing device or ion chip. The ion chip contains ion-sensitive, field-effect transistor-based sensors in perfect register with 1.2 million wells, which provide confinement and allow parallel, simultaneous detection of independent sequencing reactions. Use of the most widely used technology for constructing integrated circuits, the complementary metal-oxide semiconductor (CMOS) process, allows for low-cost, large-scale production and scaling of the device to higher densities and larger array sizes. We show the performance of the system by sequencing three bacterial genomes, its robustness and scalability by producing ion chips with up to 10 times as many sensors and sequencing a human genome.
Keywords:
本文献已被 PubMed 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号