Claims
- 1. A construct comprising a base material and a polyhydroxyalkanoate, wherein at least a part of the base material is coated with the polyhyroxyalkanoate, and the polyhydroxyalkanoate comprises a 3-hydroxyalkanoic acid unit other than 3-hydroxypropionic acid unit, 3-hydroxy-n-butyric acid unit, and 3-hydroxy-n-valeric acid unit.
- 2. The construct according to claim 1, wherein said polyhydroxyalkanoate is a polyhydroxyalkanoate comprises at least one selected from the group consisting of monomer units represented by a chemical formula [1] to a chemical formula [10]:
- 3. The construct according to claim 1, wherein at least part of said polyhydroxyalkanoate is chemically modified.
- 4. The construct according to claim 3, wherein said chemical modification is a graft chain.
- 5. The construct according to claim 4, wherein said graft chain is introduced by chemically modifying a monomer unit having an epoxy group of the polyhydroxyalkanoate.
- 6. The construct according to claim 4, wherein said graft chain is made with a compound having an amino group.
- 7. The construct according to claim 6, wherein said compound having an amino group is a terminal amino-modified compound.
- 8. The construct according to claim 7, wherein said terminal amino-modified compound is selected from the group consisting of polyvinylamine, polyethyleneimine, and terminal amino-modified polysiloxane.
- 9. The construct according to claim 3, wherein at least a part of said polyhydroxyalkanoate is crosslinked.
- 10. The construct according to claim 9, wherein said polyhydroxyalkanoate is crosslinked between monomer units having an epoxy group.
- 11. The construct according to claim 1, wherein said base material is a particle.
- 12. The construct according to claim 11, wherein said base material contains a colorant.
- 13. The construct according to claim 12, wherein said colorant contains a pigment.
- 14. The construct according to claim 12, wherein said colorant contains a dye.
- 15. The construct according to claim 11, wherein said base material is a pigment.
- 16. The construct according to claim 1, wherein said base material is a plate or a film.
- 17. The construct according to claim 11, wherein said polyhydroxyalkanoate is made with a composition of monomer units varying in an outward direction of said construct.
- 18. The construct according to claim 16, wherein said polyhydroxyalkanoate is made with a monomer composition varying in a direction perpendicular to a surface of said construct.
- 19. The construct according to claim 1, wherein a molecular weight of said polyhydroxyalkanoate is 1,000 to 10,000,000.
- 20. The construct according to claim 19, wherein a molecular weight of said polyhydroxyalkanoate is 3,000 to 1,000,000.
- 21. The construct according to claim 1, wherein a polyhydroxyalkanoate synthetase is immobilized to said base material.
- 22. A method for making a construct comprising the steps of:
immobilizing a medium chain length polyhydroxyalkanoate synthetase to a base material, and reacting 3-hydroxyacyl coenzymes A with the synthetase to synthesize a polyhydroxyalkanoate and to coat at least a part of said base material with the polyhdroxyalkanoate.
- 23. The method for making a construct according to claim 22, wherein said polyhydroxyalkanoate comprises at least a monomer unit selected from the group consisting of monomer units represented by chemical formulas [1] to [10], and said monomer units are derived from corresponding 3-hydroxyacyl coenzyme As represented by chemical formulas [11] to [20] in this order:
- 24. The method for making a construct according to claim 22, further comprising a step of chemically modifying at least a part of said polyhydroxyalkanoate coating the base material.
- 25. The method for making a construct according to claim 24, wherein said step of chemically modifying is a step of adding a graft chain to at least a part of said polyhydroxyalkanoate.
- 26. The method for making a construct according to claim 25, wherein said step of adding the graft chain is a step of reacting at least a part of said polyhydroxyalkanoate with a compound having a reactive functional group at a terminus thereof.
- 27. The method for making a construct according to claim 24, wherein said step of chemically modifying is a step of crosslinking at least a part of said hydroxyalkanoate.
- 28. The method for making a construct according to claim 27, wherein said crosslinking step is a step of reacting at least a part of said polyhydroxyalkanoate with a crosslinking agent.
- 29. The method for making a construct according to claim 28, wherein said crosslinking agent is selected from the group consisting of a diamine compound, succinic anhydride, and 2-methyl-4-methylimidazole.
- 30. The method for making a construct according to claim 29, wherein said diamine compound is hexamethylenediamine.
- 31. The method for making a construct according to claim 27, wherein said crosslinking step is a step of irradiating said polyhydroxyalkanoate with an electron beam.
- 32. The method for making a construct according to claim 22, further comprising a step of changing the 3-hydroxyacyl coenzymes A in composition with time to change said polyhydroxyalkanoate in composition of monomer units along an inside-to-outside direction of said construct.
- 33. The method for making a construct according to claim 22, wherein said polyhydroxyalkanoate synthetase is produced by using a microorganism having a production capability of the synthetase.
- 34. The method for making a construct according to claim 22, wherein said polyhydroxyalkanoate synthetase is produced by a transformant into which a gene participating in the production capability of the synthetase has been introduced.
- 35. The method for making a construct according to claim 34, wherein said gene is obtained from a microorganism having a production capability of a polyhydroxyalkanoate synthetase.
- 36. The method for making a construct according to claim 33, wherein the microorganism is Pseudomonas sp.
- 37. The method for making a construct according to claim 36, wherein the microorganism of Pseudomonas sp. is selected from the group consisting of Pseudomonas putida P91, FERM BP-7373, Pseudomonas cichorii H45, FERM BP-7374, Pseudomonas cichorii YN2, FERM BP-7375, and Pseudomonas jessenii P161, FERM BP-7376.
- 38. The method for making a construct according to claim 33, wherein the microorganism is Burkholderia sp.
- 39. The method for making a construct according to claim 38, wherein said microorganism of Burkholderia sp. is selected from the group consisting of Burkholderia sp. OK3, FERM P-17370 and Burkholderia sp. OK4, FERM P-17371.
- 40. The method for making a construct according to claim 34, wherein the transformant having a production capability of said polyhydroxyalkanoate synthetase is Escherichia coli.
- 41. A toner, comprising:
a base material containing a pigment; and polyhydroxyalkanoate comprising a 3-hydroxyalkanoic acid unit other than 3-hydroxypropionic acid unit, 3-hyrodxy-n-butyric acid unit, and 3-hydroxy-n-valeric acid unit, wherein said base material is coated at least partly with the polyhydroxyalkanoate.
- 42. A recording medium, comprising:
a base material in a plate or film form; and polyhydroxyalkanoate containing a 3-hydroxyalkanoic acid unit other than 3-hydroxypropionic acid unit, 3-hyroxy-n-butyric acid unit, and 3-hydroxy-n-valeric acid unit, wherein said base material is coated at least partly with the polyhydroxyalkanoate.
- 43. A method for making a toner, comprising the steps of:
preparing a particulate base material; coating at least part of said base material with a polyhyroxyalkanoate to obtain a particulate construct; and making a toner using said particulate construct.
- 44. A method for making a recording medium, comprising the steps of:
preparing a base material in a plate or film form; and coating at least part of said base material with a polyhydroxyalkanoate to manufacture a flat construct.
- 45. An image forming method comprising the step of applying a toner according to claim 41 to a recording medium.
- 46. An image forming apparatus comprising means for forming an image by applying a toner according to claim 41 to a recording medium.
- 47. Electrostatic charge image developing toner comprising at least a colorant of which at least a part thereof is covered with polyhydroxyalkanoate constituting a first resin component, and binder resin constituting a second resin component.
- 48. Electrostatic charge image developing toner according to claim 47, wherein said colorant contains a pigment.
- 49. Electrostatic charge image developing toner according to claim 47 or 48, wherein said polyhydroxyalkanoate includes at least one selected from the group consisting of monomer units represented by the following formulas (23) to (32):
- 50. Electrostatic charge image developing toner according to claim 47, wherein said polyhydroxyalkanoate has a number average molecular weight within a range from 1,000 to 10,000,000.
- 51. Electrostatic charge image developing toner according to claim 47, wherein the monomer unit composition of said polyhydroxyalkanoate changes in a direction from the inner side to the outer side of said colorant.
- 52. Electrostatic charge image developing toner according to any of claim 47, wherein at least a part of said polyhydroxyalkanoate is chemically modified polyhydroxyalkanoate.
- 53. Electrostatic charge image developing toner according to claim 52, wherein said chemically modified polyhydroxyalkanoate includes at least a graft chain.
- 54. Electrostatic charge image developing toner according to claim 53, wherein said graft chain is a graft chain formed by chemical modification of polyhydroxyalkanoate at least including a monomer unit having an epoxy group.
- 55. Electrostatic charge image developing toner according to claim 53, wherein said graft chain is a graft chain of a compound having an amino group.
- 56. Electrostatic charge image developing toner according to claim 55, wherein said compound having amino group is a terminal amino-modified compound.
- 57. Electrostatic charge image developing toner according to claim 52, wherein at least a part of said polyhydroxyalkanoate is crosslinked polyhydroxyalkanoate.
- 58. Electrostatic charge image developing toner according to claim 57, wherein said crosslinked polyhydroxyalkanoate is crosslinked from polyhydroxyalkanoate at least including a monomer unit having an epoxy group.
- 59. An image forming method including at least a step of externally applying a voltage to a charging member thereby charging an electrostatic latent image bearing member, a step of forming an electrostatic charge image on the charged electrostatic latent image bearing member, a development step of developing the electrostatic charge image with electrostatic charge image developing toner thereby forming a toner image on the electrostatic latent image bearing member, a transfer step of transferring the toner image on the electrostatic latent image bearing member onto a recording material, and a fixation step of heat fixing the toner image on the recording material, the method comprising the use of the electrostatic charge image developing toner according to claim 47.
- 60. An image forming method including at least a step of externally applying a voltage to a charging member thereby charging an electrostatic latent image bearing member, a step of forming an electrostatic charge image on the charged electrostatic latent image bearing member, a development step of developing the electrostatic charge image with electrostatic charge image developing toner thereby forming a toner image on the electrostatic latent image bearing member, a first transfer step of transferring the toner image on the electrostatic latent image bearing member onto an intermediate transfer member, a second transfer step of transferring the toner image on the intermediate transfer member onto a recording material, and a fixation step of heat fixing the toner image on the recording material, the method comprising the use of the electrostatic charge image developing toner according to claim 47.
- 61. An image forming apparatus at least including means for externally applying a voltage to a charging member thereby charging an electrostatic latent image bearing member, means for forming an electrostatic charge image on the charged electrostatic latent image bearing member, development means for developing the electrostatic charge image with electrostatic charge image developing toner thereby forming a toner image on the electrostatic latent image bearing member, transfer means for transferring the toner image on the electrostatic latent image bearing member onto a recording material, and fixation means for heat fixing the toner image on the recording material, the apparatus comprising the use of the electrostatic charge image developing toner according to claim 47.
- 62. An image forming apparatus at least including means for externally applying a voltage to a charging member thereby charging an electrostatic latent image bearing member, means for forming an electrostatic charge image on the charged electrostatic latent image bearing member, development means for developing the electrostatic charge image with electrostatic charge image developing toner thereby forming a toner image on the electrostatic latent image bearing member, first transfer means for transferring the toner image on the electrostatic latent image bearing member onto an intermediate transfer member, second transfer means for transferring the toner image on the intermediate transfer member onto a recording material, and fixation means for heat fixing the toner image on the recording material, the apparatus comprising the use of the electrostatic charge image developing toner according to claim 47.
- 63. A method for producing electrostatic charge image developing toner including a colorant obtained by covering at least a part of the surface of a coloring agent with polyhydroxyalkanoate constituting a first resin component, the method comprising execution of a polyhydroxyalkanoate synthesizing reaction utilizing 3-hydroxyacyl CoA as the substrate in the presence of a polyhydroxyalkanoate synthesizing enzyme fixed on the surface of a coloring agent dispersed in aqueous medium to cover at least a part of the surface of said coloring agent with polyhydroxyalkanoate thereby producing said colorant.
- 64. A method for producing electrostatic charge image developing toner according to claim 63, wherein said polyhydroxyalkanoate includes at least one selected from the group consisting of monomer units represented by the following formulas (23) to (32), and the respectively corresponding 3-hydroxyacyl coenzyme A is any of those represented by the chemical formulas (33) to (42):
- 65. A method for producing electrostatic charge image developing toner according to claim 63, wherein the composition of said 3-hydroxyacyl coenzyme A is changed in time to change the 3-hydroxyalkanoic acid unit composition of said polyhydroxyalkanoate in a direction from the inner side to the outer side of said colorant.
- 66. A method for producing electrostatic charge image developing toner according to claim 63, further comprising a step of applying chemical modification in at least a part of polyhydroxyalkanoate covering said colorant.
- 67. A method for producing electrostatic charge image developing toner according to claim 66, wherein said step of applying chemical modification is a step of adding a graft chain in at least a part of polyhydroxyalkanoate.
- 68. A method for producing electrostatic charge image developing toner according to claim 67, wherein the step of adding said graft chain is a step of reacting at least a part of polyhydroxyalkanoate with a compound having a reactive functional group at the end.
- 69. A method for producing electrostatic charge image developing toner according to claim 66, wherein the step of applying said chemical modification is a step of crosslinking at least a part of polyhydroxyalkanoate.
- 70. A method for producing electrostatic charge image developing toner according to claim 69, wherein said crosslinking step is a step of irradiating polyhydroxyalkanoate with an electron beam.
- 71. A method for producing electrostatic charge image developing toner according to claim 63, wherein said polyhydroxyalkanoate synthesizing enzyme is a polyhydroxyalkanoate synthesizing enzyme produced by microorganisms having ability of producing said enzyme, or a transformant obtained by introducing a gene relating to said producing ability into host microorganisms.
- 72. A method for producing electrostatic charge image developing toner according to claim 71, wherein said microorganisms having the ability of producing said polyhydroxyalkanoate synthesizing enzyme are those of Pseudomonas sp.
- 73. A method for producing electrostatic charge image developing toner according to claim 71, wherein said microorganisms having the ability of producing said polyhydroxyalkanoate synthesizing enzyme are those of Burkholderia sp.
- 74. A method for producing electrostatic charge image developing toner according to claim 71, wherein said microorganisms having the ability of producing said polyhydroxyalkanoate synthesizing enzyme are those of Alcaligenes sp.
- 75. A method for producing electrostatic charge image developing toner according to claim 71, wherein said microorganisms having the ability of producing said polyhydroxyalkanoate synthesizing enzyme are those of Ralstonia sp.
- 76. A method for producing electrostatic charge image developing toner according to claim 71, wherein the host microorganisms for the transformant having the ability for producing said polyhydroxyalkanoate synthesizing enzyme are Escherichia coli.
Priority Claims (4)
| Number |
Date |
Country |
Kind |
| 131694/2001 |
Apr 2001 |
JP |
|
| 133728/2001 |
Apr 2001 |
JP |
|
| 208704/2001 |
Jul 2001 |
JP |
|
| 210021/2001 |
Jul 2001 |
JP |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part of U.S. application Ser. No. 10/133,404 and a continuation-in-part of U.S. application Ser. No. 10/133,670, both filed on Apr. 29, 2002, the contents of which are incorporated herein by reference.
Continuation in Parts (2)
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Number |
Date |
Country |
| Parent |
10133404 |
Apr 2002 |
US |
| Child |
10827670 |
Apr 2004 |
US |
| Parent |
10133670 |
Apr 2002 |
US |
| Child |
10827670 |
Apr 2004 |
US |