$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Microchip method for the enrichment of specific DNA sequences 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • C12Q-001/68
  • C07H-021/04
출원번호 US-0593345 (1996-01-29)
발명자 / 주소
  • Mirzabekov Andrei Darievich,RUX
  • Lysov Yuri Petrovich,RUX
  • Shick Valentine Vladimirovich
  • Dubiley Svetlana Alekseevna,RUX
출원인 / 주소
  • University of Chicago
대리인 / 주소
    Cherskov & Flaynik
인용정보 피인용 횟수 : 83  인용 특허 : 2

초록

A method for enriching specific genetic material sequences is provided, whereby oligonucleotide molecules complementary to the desired genetic material is first used to isolate the genetic material from a first source of genomic material. Then the genetic material is used as a label to isolate simil

대표청구항

[ The embodiment of the invention in which an exclusive property or privilege is claimed is defined as follows:] [1.] A method for enriching specific genetic sequences, comprising:a) immobilizing a first set of oligonucleotide molecules at a plurality of positions on a first gel substrate, said firs

이 특허에 인용된 특허 (2)

  1. Brenner Sydney (Cambridge GB2), DNA sequencing by stepwise ligation and cleavage.
  2. Okano Kazunori (Shiki JPX) Kambara Hideki (Hachiouji JPX), Separation of polynucleotides using supports having a plurality of electrode-containing cells.

이 특허를 인용한 특허 (83)

  1. Kayyem,Jon Faiz; O'Connor,Stephen D., AC/DC voltage apparatus for detection of nucleic acids.
  2. Blackburn, Gary; Irvine, Bruce D.; Kayyem, Jon Faiz; Sheldon, III, Edward Lewis; Terbrueggen, Robert H., Amplification of nucleic acids with electronic detection.
  3. Kayyem,Jon Faiz; Bamdad,Cynthia, Amplification of nucleic acids with electronic detection.
  4. Rothberg,Jonathan M.; Bader,Joel S.; Dewell,Scott B.; McDade,Keith; Simpson,John W.; Berka,Jan; Colangelo,Christopher M.; Weiner,Michael P., Apparatus and method for sequencing a nucleic acid.
  5. Blackburn, Gary; Creager, Stephen E.; Fraser, Scott; Irvine, Bruce D.; Meade, Thomas J.; O'Connor, Stephen J.; Terbrueggen, Robert H.; Vielmetter, Jost G.; Welch, Thomas W., Binding acceleration techniques for the detection of analytes.
  6. Blackburn,Gary; Vielmetter,Jost G.; Kayyem,Jon Faiz, Binding acceleration techniques for the detection of analytes.
  7. Schaefer, Ernst J., Cardiovascular disease risk assessment.
  8. Ray,Jill M.; Heiland,Teri; Carey,Indira, Combinatorial oligonucleotide PCR.
  9. MacLeod Michael C. ; Aldaz C. Marcelo ; Gaddis Sara S., Combinatorial oligonucleotide PCR: a method for rapid, global expression analysis.
  10. MacLeod,Michael C.; Aldaz,C. Marcelo; Gaddis,Sara S., Combinatorial oligonucleotide PCR: a method for rapid, global expression analysis.
  11. Stojdl, David F., Compositions and methods for glioblastoma treatment.
  12. Schaefer, Ernst J.; Polisecki, Eliana, Compositions and methods for treating and preventing coronary heart disease.
  13. Kayyem,Jon Faiz; O'Connor,Stephen D., Compositions for the electronic detection of analytes utilizing monolayers.
  14. Kayyem,Jon Faiz; O'Connor,Stephen D., Compositions for the electronic detection of analytes utilizing monolayers.
  15. Matson, Robert S., Conductive microplate.
  16. Kayyem,Jon Faiz; O'Connor,Stephen D.; Gozin,Michael; Yu,Changjun; Meade,Thomas J., Conductive oligomers attached to electrodes and nucleoside analogs.
  17. Meade Thomas J., Detection of analytes using reorganization energy.
  18. Meade, Thomas J., Detection of analytes using reorganization energy.
  19. Meade, Thomas J., Detection of analytes using reorganization energy.
  20. Meade, Thomas J., Detection of analytes using reorganization energy.
  21. Meade, Thomas J., Detection of analytes using reorganization energy.
  22. Meade, Thomas J., Detection of analytes using reorganization energy.
  23. Meade,Thomas J., Detection of analytes using reorganization energy.
  24. Meade,Thomas J., Detection of analytes using reorganization energy.
  25. Bamdad, Cynthia C.; Mucic, Robert C., Detection of target analytes using particles and electrodes.
  26. Bamdad, Cynthia C.; Mucic, Robert C., Detection of target analytes using particles and electrodes.
  27. Bamdad, Cynthia C.; Mucic, Robert C., Detection of target analytes using particles and electrodes.
  28. Blackburn,Gary; Duong,Hau H.; Grodzinski,Piotr; Kayyem,Jon Faiz; O'Connor,Stephen D.; Pietri,Robert; Terbrueggen,Robert Henry; Zenhausern,Frederic; Olsen,Gary T., Devices and methods for biochip multiplexing.
  29. Duong,Hau H.; Blackburn,Gary; Kayyem,Jon F.; O'Connor,Stephen D.; Olsen,Gary T.; Pietri,Robert; Terbrueggen,Robert H., Devices and methods for biochip multiplexing.
  30. Link, Emma; Parish, Sarah; Collins, Rory; Lathrop, Mark, Diagnostic methods.
  31. Schaefer, Ernst J., Driving patient compliance with therapy.
  32. Jon F. Kayyem ; Stephen D. O'Connor ; Michael Gozin ; Changjun Yu, Electrodes linked via conductive oligomers to nucleic acids.
  33. Kayyem,Jon F.; O'Connor,Stephen D.; Gozin,Michael; Yu,Changjun; Meade,Thomas J., Electrodes linked via oligomers to nucleic acids.
  34. Kayyem,Jon F.; O'Connor,Stephen D.; Gozin,Michael; Yu,Changjun; Meade,Thomas J., Electronic transfer moieties attached to peptide nucleic acids.
  35. Mason, Hugh; Arntzen, Charles; Rosenthal, Sun Hee; Winkle, Sean; Diamos, Andrew, Geminiviral vector for expression of rituximab.
  36. Kirn, David; Bell, John; Breitbach, Caroline; Moon, Anne; Hwang, Tae-Ho; Lee, Yu Kyoung; Kim, Mi-kyung, Generation of antibodies to tumor antigens and generation of tumor specific complement dependent cytotoxicity by administration of oncolytic vaccinia virus.
  37. Shi, Chunnian, Inhibition of mismatch hybridization by a universal competitor DNA.
  38. Meade Thomas J. ; Kayyem Jon F., Metallic solid supports modified with nucleic acids.
  39. Meade,Thomas J.; Kayyem,Jon F., Metallic solid supports modified with nucleic acids.
  40. Hoeffler, Warren, Method for determining transcription factor activity and its technical uses.
  41. Rothberg Jonathan M. ; Bader Joel S., Method of sequencing a nucleic acid.
  42. Rothberg,Jonathan M.; Bader,Joel S.; Dewell,Scott B.; McDade,Keith; Simpson,John W.; Berka,Jan; Colangelo,Christopher M., Method of sequencing a nucleic acid.
  43. Rothberg,Jonathan M.; Bader,Joel S.; Dewell,Scott B.; McDade,Keith; Simpson,John W.; Berka,Jan; Colangelo,Christopher M., Method of sequencing a nucleic acid.
  44. Rothberg,Jonathan M.; Bader,Joel S.; Dewell,Scott B.; McDade,Keith; Simpson,John W.; Berka,Jan; Colangelo,Christopher M., Method of sequencing a nucleic acid.
  45. Kirn, David; Thorne, Steve H., Methods and compositions concerning poxviruses and cancer.
  46. Spies, Thomas; Spies, Veronika, Methods and compositions involving NKG2D inhibitors and cancer.
  47. Garcia, Joe G. N., Methods and compositions involving PBEF inhibitors for lung inflammation conditions and diseases.
  48. Asztalos, Bela F.; Schaefer, Ernst J., Methods for determining LDL cholesterol treatment.
  49. Asztalos, Bela F.; Schaefer, Ernst J., Methods for separation and immuno-detection of biomolecules, and apparatus related thereto.
  50. Leamon, John H.; Lohman, Kenton L.; Rothberg, Jonathan M.; Weiner, Michael P., Methods of amplifying and sequencing nucleic acids.
  51. Leamon, John H.; Lohman, Kenton L.; Rothberg, Jonathan M.; Weiner, Michael P., Methods of amplifying and sequencing nucleic acids.
  52. Leamon, John H.; McDade, Keith E.; Fierro, Joseph M.; Knight, James R.; Charumilind, Jaran; Myers, Jr., Eugene W.; Simpson, John W.; Volkmer, Greg A., Methods of amplifying and sequencing nucleic acids.
  53. Leamon,John H.; Lohman,Kenton L.; Rothberg,Jonathan M.; Weiner,Michael P., Methods of amplifying and sequencing nucleic acids.
  54. Perrin, Steven; Call, Kathy; Connolly, Timothy, Microarray-based subtractive hybridzation.
  55. Anderson,N. Leigh; Anderson,Norman G.; Braatz,James A., Microarrays and their manufacture by slicing.
  56. Tyvoll,David; Childers,Winthrop D., Microfluidic system for analyzing nucleic acids.
  57. Kayyem, Jon Faiz, Microfluidic systems in the electrochemical detection of target analytes.
  58. Bajic, Vladimir; Kaur, Mandeep, Molecular biomarker set for early detection of ovarian cancer.
  59. Bajic, Vladimir; Kaur, Mandeep, Molecular biomarker set for early detection of ovarian cancer.
  60. Bamdad, Cynthia C.; Sigal, George B.; Strominger, Jack L.; Whitesides, George M., Molecular recognition at surfaces derivatized with self-assembled monolayers.
  61. Meade Thomas J. ; Kayyem Jon Faiz ; Fraser Scott E., Nucleic acid mediated electron transfer.
  62. Meade, Thomas J.; Kayyem, Jon Faiz; Fraser, Scott E., Nucleic acid mediated electron transfer.
  63. Bell, John C.; Stojdl, David F., Oncolytic rhabdovirus.
  64. Bell, John C.; Stojdl, David F., Oncolytic rhabdovirus.
  65. Kirn, David, Oncolytic vaccinia virus cancer therapy.
  66. Kirn, David; Breitbach, Caroline, Oncolytic vaccinia virus combination cancer therapy.
  67. Kirn, David; Breitbach, Caroline, Oncolytic vaccinia virus combination cancer therapy.
  68. Strizhkov, Boris; Tillib, Sergei; Mikhailovich, Vladimir; Mirzabekov, Andrei, PCR amplification on microarrays of gel immobilized oligonucleotides.
  69. Sucharov, Carmen; Bristow, Michael; Taylor, Matthew; Slavov, Dobromir, Polymorphisms in the PDE3A gene.
  70. Okano, Kazunori; Kambara, Hideki; Uematsu, Chihiro; Matsunaga, Hiroko; Irie, Takashi; Kajiyama, Tomoharu; Yasuda, Kenji, Polynucleotide chip probe and polynucleotide detection method.
  71. Okano Kazunori,JPX ; Kambara Hideki,JPX ; Uematsu Chihiro,JPX ; Matsunaga Hiroko,JPX ; Irie Takashi,JPX ; Kajiyama Tomoharu,JPX ; Yasuda Kenji,JPX, Polynucleotide probe chip and polynucleotide detection method.
  72. Blackburn, Gary; Creager, Stephen E.; Fraser, Scott; Irvine, Bruce D.; Meade, Thomas J.; O'Connor, Stephen D.; Terbrueggen, Robert H.; Vielmetter, Jost G.; Welch, Thomas W., Printed circuit boards with monolayers and capture ligands.
  73. Gelbart,Richard; Powrie,Don L.; Swanson,Paul David, Programmable multiplexed active biologic array.
  74. Duong, Hau H.; O'Connor, Stephen D.; Terbrueggen, Robert H.; Kayyem, Jon Faiz; Olsen, Gary T.; Litvack, Daniel A.; Gonzalez, Javier, Signal detection techniques for the detection of analytes.
  75. Umek, Robert M.; Blackburn, Gary; Irvine, Bruce D.; Terbrueggen, Robert; Yu, Changjun; Vielmetter, Jost G., Signal detection techniques for the detection of analytes.
  76. Little, Roger G., Surface activated biochip.
  77. Choong, Vi-En; Maracas, George N., System and method for detecting molecules using an active pixel sensor.
  78. Kirn, David, Systemic treatment of metastatic and/or systemically-disseminated cancers using GM-CSF-expressing poxviruses.
  79. Kayyem, Jon Faiz, Tissue collection devices containing biosensors.
  80. Kayyem, Jon Faiz, Use of microfluidic systems in the electrochemical detection of target analytes.
  81. Kayyem, Jon Faiz, Use of microfluidic systems in the electrochemical detection of target analytes.
  82. Kayyem, Jon Faiz, Use of microfluidic systems in the electrochemical detection of target analytes.
  83. Kayyem, Jon Faiz, Use of microfluidic systems in the electrochemical detection of target analytes.
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로