EP1575867A2

Peptide nanostructures, methods for their preparation and use

Abstract

A tubular or spherical nanostructure composed of a plurality of peptides, wherein each of the plurality of peptides includes no more than 4 amino acids and whereas at least one of the 4 amino acids is an aromatic amino acid.

Term

Term ended

Projected expiry passed 9 December 2023, 2.8 years ago.

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223 claims: 25 independent, 198 dependent

  1. 1
    Claims of equivalent WO 2004052773 A2 WHAT IS CLAIMED IS:1. A tubular or spherical nanostructure composed of a plurality of peptides, wherein each of said plurality of peptides includes no more than 4 amino acids and whereas at least one of said 4 amino acids is an aromatic amino acid.
  2. 10
    A nanostructure composed of a plurality of polyaromatic peptides.
  3. 13
    A method of generating a tubular or spherical nanostructure, the method comprising incubating a plurality of peptide molecules under conditions which favor formation of the tubular or spherical nanostructure, wherein each of said peptide molecules includes no more than 4 amino acids and whereas at least one of said 4 amino acids is an aromatic amino acid.
  4. 23
    A field emitter device, comprising an electrode and a nanostructure being composed of a plurality of peptides, said electrode and said nanostructure being designed and constructed such that when an electrical field is formed therebetween, electrons are emitted from said nanostructure, wherein each of said plurality of peptides of said nanostructure includes no more than 4 amino acids and wherein at least one of said 4 amino acids is an aromatic amino acid.
  5. 31
    A device for obtaining information from a nanoscale environment, the device comprising:(a) a nanostructure capable of collecting signals from the nanoscale environment, said nanostructure being composed of a plurality of peptides each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid;and (b) a detection system capable of interfacing with said nanostructure and receiving said signals thus obtaining information from the nanoscale environment;and
  6. 42
    An apparatus for electron emission lithography, comprising:(a) an electron emission source being at a first electrical potential, said electron emission source including at least one nanostructure being composed of a plurality of peptides each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid;and (b) an electrically conducting mounting device being in a second electrical potential, said second electrical potential being different than said first electrical potential;wherein a difference between said second electrical potential and said first electrical potential is selected such that electrons are emitted from said electron emission source, and impinge on said mounting device to thereby perform a lithography process on a sample mounted on said mounting device.
  7. 50
    A memory cell, comprising:(a) an electrode;and (b) a nanostructure composed of a plurality of peptides each including no more than 4 amino acids at least one of which being an aromatic amino acid, said nanostructure being capable of assuming one of at least two states;said nanostructure and said electrode being designed and constructed such that when electrical current flows through said electrode, said nanostructure transforms from a first state of said at least to states to a second state of said at least to states.
  8. 58
    A mechanical transmission device, comprising a first nanostructure and a second nanostructure, said first and said second nanostructure being operatively associated thereamongst such that a motion of said first nanostructure generates a motion of said second nanostructure, wherein at least one of said first and said second nanostructures is composed of a plurality of peptides each includes no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid.
  9. 65
    A nanoscale mechanical device, comprising at least one nanostructure designed and configured for grabbing and/or manipulating nanoscale objects, wherein said at least one nanostructures is composed of a plurality of peptides each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid.
  10. 74
    An electronic switching or amplifying device comprising a source electrode, a drain electrode, a gate electrode and a channel, wherein at least one of said gate electrode and said channel comprises a nanostructure being composed of a plurality of peptides each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid.
  11. 84
    An electronic inverter having a first switching device and a second switching device, each of said first switching device and said first switching device comprising a source electrode, a drain electrode, a gate electrode and a channel, such that said drain electrode of said first switching device is electrically communicating with said source electrode of said second switching device, wherein at least one of said gate electrode and said channel comprises a nanostructure being composed of a plurality of peptides each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid.
  12. 94
    A composition, comprising a polymer and a nanostructure, said nanostructure being composed of a plurality of peptides, each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid.
  13. 101
    A composition comprising a matrix and a plurality of nanostructures dispersed throughout said matrix, said nanostructure being composed of a plurality of peptides, each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid.
  14. 111
    A nanofluid comprising nanostructures suspended in a fluid, wherein at least a portion of said nanostructures is composed of a plurality of peptides, each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid.
  15. 118
    A heat transfer device, comprising a nanofluid and a channel for holding said nanofluid, said nanofluid comprising nanostructures suspended in a fluid, wherein at least a portion of said nanostructures is composed of a plurality of peptides, each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid, said nanofluid and said channel being designed and constructed such that heat is carried by said nanostructures from a first end of said channel to a second end thereof.
  16. 128
    A method of emitting electrons, the method forming an electric field near a nanostructure being composed of a plurality of peptides, such that electrons are emitted therefrom, wherein each of said plurality of peptides of said nanostructure includes no more than 4 amino acids and wherein at least one of said 4 amino acids is an aromatic amino acid.
  17. 135
    A method of obtaining information from a nanoscale environment, the method comprising:(a) collecting signals from the nanoscale environment using a nanostructure, said nanostructure being composed of a plurality of peptides each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid;and (b) receiving said signals from said nanostructure, thus obtaining information from the nanoscale environment.
  18. 146
    A method of electron emission lithography, the method comprising:(a) using an electron emission source for emitting electrons, said electron emission source including at least one nanostructure being composed of a plurality of peptides each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid;and (b) collecting said electrons on an electrically conducting mounting device, thereby performing a lithography process on a sample mounted on said mounting device.
  19. 154
    A method of recording binary information, the binary information being composed of a first type of datum and a second type of datum, the method comprising using a plurality of nanostructure each capable of assuming one of two states, wherein a first state of said two states correspond to the first type of datum and said second state of said two states correspond to the second type of datum;wherein each of said plurality of nanostructures is composed of a plurality of peptides each including no more than 4 amino acids at least one of which being an aromatic amino acid.
  20. 161
    A method of transmitting mechanical motion, the method comprising:(a) providing a first nanostructure and a second nanostructure, at least one of said first and said second nanostructures is composed of a plurality of peptides each includes no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid;and (b) generating a motion of said first nanostructure such that said motion of said first nanostructure generates a motion of said second nanostructure.
  21. 168
    A method of grabbing and/or manipulating nanoscale objects, the method comprising:(a) providing at least one nanostructure composed of a plurality of peptides each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid;and (b) using said at least one nanostructure for grabbing and/or manipulating the nanoscale objects.
  22. 177
    A method of transferring heat, the method comprising:(a) providing a channel filled with a nanofluid comprising nanostructures suspended in a fluid, wherein at least a portion of said nanostructures is composed of a plurality of peptides, each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid;and (b) placing said channel in proximity to a heat source such that said nanofluid transfers heat from a first end of said channel to a second end thereof.
  23. 187
    A composition comprising:(i) a tubular or spherical nanostructure being composed of a plurality of peptides, wherein each of said plurality of peptides includes no more than 4 amino acids and whereas at least one of said 4 amino acids is an aromatic amino acid;and (ii) an agent being attached to said tubular or spherical nanostructure.
  24. 201
    A composition for modulated delivery of a chemical to a predetermined location, the composition comprising:a plurality of nanoshells, said nanoshells having a nanostructure core surrounded by a conductive shell being capable of converting incident radiation into heat energy, said nanostructure core being composed of a plurality of peptides, each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid;and a medium comprising the chemical and a thermally responsive material in thermal contact with said nanoshells.
  25. 211
    A method for inducing localized hyperthermia in a cell or tissue of an individual, the method comprising:delivering a plurality of nanoshells, each having a nanostructure core and a conductive shell and being capable of converting incident radiation into heat energy, said nanostructure core is composed of a plurality of peptides, each including no more than 4 amino acids, wherein at least one of said 4 amino acids is an aromatic amino acid;and exposing said nanoshells to said incident radiation to thereby convert said incident radiation into said heat energy.
Independent claims25