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Nanofibers as a neural biomaterial 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • A61F-002/02
출원번호 US-0550427 (2004-03-26)
등록번호 US7993412 (2011-07-27)
국제출원번호 PCT/US2004/009104 (2004-03-26)
§371/§102 date 20061005 (20061005)
국제공개번호 WO04/096085 (2004-11-11)
발명자 / 주소
  • Webster, Thomas J.
  • McKenzie, Janice L.
출원인 / 주소
  • Purdue Research Foundation
대리인 / 주소
    Barnes & Thornburg LLP
인용정보 피인용 횟수 : 0  인용 특허 : 32

초록

Nanomaterials for neural and orthopedic prostheses are disclosed. Composite carbon nanofibers enhance neuronal growth and minimize glial scar tissue formation. Methods and compositions to promote neuronal growth and minimize scar tissue formation during prolonged monitoring and treatment of neural t

대표청구항

We claim: 1. Use of a neural implant that enhances proliferation of neural tissue and minimizes scar formation comprising:(a) obtaining a neural implantable device comprising a composite nanomaterial, said nanomaterial comprising carbon nanofiber material with nanofibers about 2 to 200 nm in width a

이 특허에 인용된 특허 (32)

  1. Robinson Joseph R. (Madison WI), Bioadhesive composition and method of treatment therewith.
  2. Chu, Benjamin; Hsiao, Benjamin S.; Fang, Dufei; Brathwaite, Collin, Biodegradable and/or bioabsorbable fibrous articles and methods for using the articles for medical applications.
  3. Chu, Benjamin; Hsiao, Benjamin S.; Hadjiargyrou, Michael; Fang, Dufei; Zong, Xinhua; Kim, Kwangsok, Cell delivery system comprising a fibrous matrix and cells.
  4. Scardino Frank L. ; Balonis Richard J., Fibrous structures containing nanofibrils and other textile fibers.
  5. Schutz, James W.; Royce, Stacee L.; Annen, Michael J.; Pieper, Jon R.; Sheely, Jeffrey D., Flexible abrasive product and method of making and using the same.
  6. Badylak Stephen F. (W. Lafayette IN) Geddes Leslie A. (W. Lafayette IN) Shelbourne K. Donald (Indianapolis IN) Lantz Gary C. (Lafayette IN) Coffey Arthur C. (Indianapolis IN), Graft for promoting autogenous tissue growth.
  7. Badylak Stephen F. (W. Lafayette IN) Geddes Leslie A. (W. Lafayette IN) Shelbourne K. Donald (Indianapolis IN) Lantz Gary C. (Lafayette IN) Coffey Arthur C. (Indianapolis IN), Graft for promoting autogenous tissue growth.
  8. Badylak Stephen F. (W. Lafayette IN) Geddes Leslie A. (W. Lafayette IN) Shelbourne K. Donald (Indianapolis IN) Lantz Gary C. (Lafayette IN) Coffey Arthur C. (Indianapolis IN), Graft for promoting autogenous tissue growth.
  9. Tormala Pertti,FIX ; Paasimaa Senja,FIX ; Antikainen Teuvo,FIX, Hernia mesh.
  10. Clapper David L., Method and implantable article for promoting endothelialization.
  11. Moriceau, Hubert; Bruel, Michel; Aspar, Bernard; Maleville, Christophe, Method for transferring a thin film comprising a step of generating inclusions.
  12. Masayuki Naya JP; Toshiaki Fukunaga JP, Method of fabricating a diffraction grating.
  13. Enoch Kim ; Younan Xia ; Milan Mrksich ; Rebecca J. Jackman ; Xiao-Mei Zhao ; Stephen P. Smith ; Mara G. Prentiss ; George M. Whitesides ; Christian Marzolin FR, Method of forming articles including waveguides via capillary micromolding and microtransfer molding.
  14. Anthony Atala, Methods and compositions for producing a fascial sling.
  15. Mattson, Mark P.; Haddon, Robert C.; Rao, Apparao M., Molecular functionalization of carbon nanotubes and use as substrates for neuronal growth.
  16. Webster Thomas J. ; Siegel Richard W. ; Bizios Rena, Nanostructured ceramics and composite materials for orthopaedic-dental implants.
  17. Arpac Ertugrul,TRX ; Krug Herbert ; Mueller Peter,DEX ; Oliveira Peter W.,DEX ; Schmidt Helmut,DEX ; Sepeur Stefan,DEX ; Werner Bettina,DEX, Nanostructured moulded bodies and layers and method for producing same.
  18. Yadav, Tapesh; Au, Ming; Miremadi, Bijan; Freim, John; Avniel, Yuval; Dirstine, Roger; Alexander, John; Franke, Evan, Nanotechnology for biomedical products.
  19. Strandjord Andrew J. (Midland MI) Yates Ronald L. (Midland MI) Perettie Donald J. (Midland MI), Optical information recording medium containing a metal alloy as a reflective material.
  20. Atushi Oda JP; Hitoshi Ishikawa JP; Satoru Toguchi JP, Organic electroluminescent device and its manufacturing process.
  21. Dee Kay C. ; Andersen Thomas T. ; Bizios Rena, Peptides for altering osteoblast adhesion.
  22. Anderson, Richard R.; Mlynarczyk, Susanna K.; Drill, Craig A., Permanent, removable tissue markings.
  23. Hain Matthew E. (New Haven CT) Liu Cheng-Kung (Norwalk CT), Polypropylene multifilament warp knitted mesh and its use in surgery.
  24. Klement Petr (Toronto CAX) Wilson Gregory J. (Toronto CAX) Yeger Herman (Richmond Hill CAX), Process for preparing biological mammalian implants.
  25. Stone Kevin R. (Mill Valley CA) Li Shu-Tung (Oakland NJ), Prosthetic articular cartilage.
  26. Berenson, Ronald; Law, Che; Bonyhadi, Mark; Saund, Narinder; Craig, Stewart; Hardwick, Alan; Kalamasz, Dale; McMillen, David, Simultaneous stimulation and concentration of cells.
  27. Wu, Steven Z.; Harish, Sameer; Sanders-Millare, Deborra; Guruwaiya, Judy A.; Mirzaee, Daryush; Hossainy, Syed; Chen, Charlene, Surface features of an implantable medical device.
  28. Davidson James A. (Germantown TN), Surface hardened biocompatible metallic medical implants.
  29. Schmitt, Peter J.; Adams, Ronald D., Thin soft tissue surgical support mesh.
  30. Badylak Stephen F. (West Lafayette IN) Geddes Leslie A. (West Lafayette IN) Lantz Gary (Lafayette IN) Coffey Arthur C. (Indianapolis IN), Tissue graft composition.
  31. Carr ; Jr. Robert M. ; Termin Paul L. ; Condon Kimberlie D., Tissue repair fabric.
  32. Oshida Yoshiki, Titanium material implants.
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