Claims
- 1. A protein crystal growth assembly, comprising:
a crystal growth cell, comprising,
a cell body having a top side and a bottom side and a first aperture defined therethrough, said cell body having opposed first and second sides and a second aperture defined therethrough; a cell barrel disposed within said cell body, said cell barrel defining a cavity alignable with the first aperture of said cell body, said cell barrel being rotatable within the second aperture; a reservoir coupled to the bottom side of said cell body; and a cap having a top side disposed on the top side of said cell body.
- 2. A protein crystal growth assembly according to claim 1, further comprising a rotating mechanism disposed in said cell body and coupled to said cell barrel, the rotating mechanism rotating said cell barrel within the second aperture of said cell body.
- 3. A protein crystal growth assembly according to claim 2, wherein the rotating mechanism comprises a gear.
- 4. A protein crystal growth assembly according to claim 3, wherein the gear is a spur gear.
- 5. A protein crystal growth assembly according to claim 1, further comprising a protein cell insert disposed within the cavity defined by said cell barrel, said protein insert defining a well-like chamber, having an open end and a closed end, the chamber having an inner portion and an outer portion.
- 6. A protein crystal growth assembly according to claim 5, wherein said cell insert further comprises a sealing surface formed on the open end of the cavity.
- 7. A protein crystal growth assembly according to claim 6, wherein the sealing surface of said insert defines a pinning angle of about 90 degrees.
- 8. A protein crystal growth assembly according to claim 5, wherein the inner portion of said cell insert defines a tapered well-like chamber.
- 9. A protein crystal growth assembly according to claim 8, wherein the inner portion of said insert defines about a 6 degree tapered well.
- 10. A protein crystal growth assembly according to claim 5, wherein the inner portion of the well of said cell insert is formed with a high surface finish for facilitating harvesting a protein crystal growth within said cell insert.
- 11. A protein crystal growth assembly according to claim 5, wherein the inner portion of the well of said cell insert defines a volume of about 10 to 50 microliters.
- 12. A protein crystal growth assembly according to claim 5, wherein said protein cell insert is formed of an optically clear material.
- 13. A protein crystal growth assembly according to claim 5, wherein a protein crystal growth experiment within said cell insert is activated/deactivated by rotating said cell barrel.
- 14. A protein crystal growth assembly according to claim 5, wherein a protein crystal disposed within said cell insert is sealed within said cell growth assembly by rotating said cell barrel to a predetermined position.
- 15. A protein crystal growth assembly according to claim 1, further comprising a sealing member disposed on the top side of said cell body.
- 16. A protein crystal growth assembly according to claim 15, wherein said sealing member has an annular shape and is formed of a resilient material.
- 17. A protein crystal growth assembly according to claim 15, wherein said sealing member provides a seal for isolating said growth cell from a local environment.
- 18. A protein crystal growth assembly according to claim 17, wherein the local environment is a micro-gravity environment.
- 19. A protein crystal growth assembly according to claim 17, wherein the local environment is about a 1 G environment.
- 20. A protein crystal growth assembly according to claim 1, further comprising a plurality of sealing members disposed on the top side of said cell body.
- 21. A protein crystal growth assembly according to claim 15, wherein each of said plurality of sealing members have an annular shape and is formed of a resilient material.
- 22. A protein crystal growth assembly according to claim 1, wherein the top side of said cap defines a hex pattern.
- 23. A protein crystal growth assembly according to claim 1, wherein said cap is formed of an optically clear material.
- 24. A protein crystal growth assembly according to claim 23, wherein said optically clear material is a polycarbonate material.
- 25. A protein crystal growth assembly according to claim 5, wherein a protein crystal growing within said cell insert is optically viewable through said cap.
- 26. A protein crystal growth assembly according to claim 5, wherein a protein crystal growing within said cell insert is accessible through said cap.
- 27. A protein crystal growth assembly according to claim 1, further comprising a plurality of protein crystal growth cells disposed adjacent to said protein growth cell in a spaced apart relationship along a common axis of the second aperture.
- 28. A protein crystal growth assembly according to claim 27, wherein said protein crystal growth assembly includes six protein growth cells.
- 29. A protein crystal growth assembly according to claim 27, wherein said plurality of growth cells are isolated from each other.
- 30. A protein crystal growth assembly according to claim 29, further comprising a sealing member disposed between each of the plurality of said growth cells, wherein the sealing members isolate said growth cells one from the other.
- 31. A protein crystal growth assembly according to claim 30, wherein each of said sealing members has an annular shape and is formed of a resilient material.
- 32. A protein crystal growth assembly according to claim 1, wherein said reservoir comprises a barrier for preventing solutions contained therein from exiting and contacting a protein sample within said cell insert when exposed to any one of a space shuttle launch environment, space station environment, a micro-gravity environment and about a 1 G environment.
- 33. A protein crystal growth assembly according to claim 32, wherein the barrier is formed of a ultra high molecular weight polyethylene material.
- 34. A protein crystal growth assembly according to claim 33, wherein the ultra high molecular weight polyethylene material comprises CHROMEX.
- 35. A protein crystal growth assembly according to claim 1, wherein said reservoir defines a volume of about ½ milliliters.
- 36. A protein crystal growth tray assembly, comprising:
a tray adapted to hold a protein crystal growth assembly; a securing mechanism holding the protein crystal growth assembly in place in the tray; an engaging mechanism provided on said tray, said engaging mechanism coupled with the protein crystal growth assembly; and a pivot assembly coupled to said engaging mechanism for moving the protein crystal growth assembly between two positions by operation of said pivot assembly.
- 37. A protein crystal growth tray assembly according to claim 36, wherein said tray holds a plurality of protein crystal growth assemblies.
- 38. A protein crystal growth tray assembly according to claim 37, wherein said tray holds at least two hundred fifty two protein crystal growth assemblies.
- 39. A protein crystal growth tray assembly according to claim 38, wherein said tray holds at least two rows of twenty one protein crystal growth assemblies.
- 40. A protein crystal growth tray assembly according to claim 38, wherein said tray holds one thousand eight protein crystal growth cells.
- 41. A protein crystal growth tray assembly according to claim 36, wherein said securing mechanism is a lid that holds the protein crystal growth assemblies between said lid and said tray.
- 42. A protein crystal growth tray assembly according to claim 41, wherein said lid further comprises a hinge connected to the tray.
- 43. A protein crystal growth tray assembly according to claim 41, wherein said lid is secured to said tray by a fastener.
- 44. A protein crystal growth tray assembly according to claim 43, wherein said fastener is a screw.
- 45. A protein crystal growth tray assembly according to claim 36, further comprising a plurality of said engaging mechanisms.
- 46. A protein crystal growth tray assembly according to claim 45, wherein said plurality of engaging mechanisms secure a plurality of protein crystal growth assemblies disposed within said protein crystal growth tray assembly.
- 47. A protein crystal growth tray assembly according to claim 36, wherein said engaging mechanism is a rack.
- 48. A protein crystal growth tray assembly according to claim 47, wherein said rack is a geared rack coupled to a mechanism disposed on said protein crystal growth assembly for activating/deactivating the protein crystal growth assembly by operation of said pivot assembly.
- 49. A protein crystal growth tray assembly according to claim 48, wherein the mechanism disposed on said protein crystal growth assembly for activating/deactivating the protein crystal growth assembly by operation of said pivot assembly is a spur gear.
- 50. A protein crystal growth tray assembly according to claim 36, wherein a plurality of protein crystal growth assemblies can be activated/deactivated at substantially the same time by operation of said pivot assembly.
- 51. A protein crystal growth tray assembly according to claim 37, wherein twenty one protein crystal growth assemblies can be activated/deactivated at substantially the same time by operation of said pivot assembly.
- 52. A protein crystal growth tray assembly according to claim 36, further comprising a protein crystal growth assembly, wherein said protein crystal growth assembly comprises:
a crystal growth cell comprising,
a cell body having a top side and a bottom side and a first aperture defined therethrough, said cell body having opposed first and second sides and a second aperture defined therethrough; a cell barrel disposed within said cell body, said cell barrel defining a cavity alignable with the first aperture of said cell body, said cell barrel being rotatable within the second aperture; a reservoir coupled to the bottom side of said cell body; and a cap having a top side disposed on the top side of said cell body.
- 53. A protein crystal growth tray assembly according to claim 52, further comprising a plurality of protein crystal growth assemblies.
- 54. A protein crystal growth tray assembly according to claim 53, wherein said pivot assemblies engage a plurality of protein crystal growth assemblies.
- 55. A protein crystal growth tray assembly according to claim 54, wherein said pivot assemblies activate/deactivate the protein crystal growth assemblies.
- 56. A protein crystal growth tray assembly according to claim 37, further comprising forty two protein cell growth assemblies, wherein said forty two protein crystal growth assemblies weigh no more than about 3.7 lbs.
- 57. A protein crystal growth tray assembly according to claim 36, wherein said tray weighs not more than about 1.8 lbs.
- 58. A protein crystal growth tray assembly according to claim 41, wherein said lid weighs not more than about 0.5 lbs.
- 59. A protein crystal growth incubator assembly, comprising:
a housing having interior and exterior sides defining an internal storage compartment; and a stacked protein crystal growth tray configuration slideable into and out of the internal storage compartment, said stacked protein crystal growth tray configuration holding one or more protein crystal growth tray assemblies.
- 60. A protein crystal growth incubator assembly according to claim 59, wherein each of said protein crystal growth assemblies comprises:
a crystal growth cell comprising,
a cell body having a top side and a bottom side and a first aperture defined therethrough, said cell body having opposed first side a second sides and a second aperture defined therethrough; a cell barrel disposed within said cell body, said cell barrel defining a cavity alignable with the first aperture of said cell body, said cell barrel being rotatable within the second aperture; a reservoir coupled to the bottom side of said cell body; and a cap having a top side disposed on the top side of said cell body.
- 61. A protein crystal growth incubator assembly according to claim 59, further comprising slides provided within said internal storage compartment, said slides providing support surfaces for sliding said stacked protein crystal tray configuration into and out of the internal storage compartment.
- 62. A protein crystal growth incubator assembly according to claim 59, further comprising:
a retainer door assembly disposed on a front end of said housing where said stacked protein crystal growth tray configuration is slid into and out of said internal storage compartment; insulation disposed adjacent to said retainer door assembly; and a door disposed adjacent to said insulation.
- 63. A protein crystal growth incubator assembly according to claim 62, further comprising:
a control interface disposed on an exterior side of said housing, for setting experimental parameters of experiments contained within the protein crystal growth incubator assembly.
- 64. A protein crystal growth incubator assembly according to claim 62, wherein one or more slots are provided in said retainer door assembly.
- 65. A protein crystal growth incubator assembly according to claim 64, wherein said one or more slots are aligned with a protein crystal growth tray assembly activation/deactivation mechanism disposed on the protein crystal growth assembly.
- 66. A protein crystal growth incubator assembly according to claim 65, wherein said one or more slots are arranged to allow activation/deactivation of one or more protein crystal growth tray assemblies individually.
- 67. A protein crystal growth incubator assembly according to claim 59, wherein said stacked protein crystal growth tray configuration further comprises:
first and second side walls disposed opposite from each other; a rear stop disposed at a rear portion of said stacked protein crystal tray configuration; and an internal structure assembly for holding one or more of the protein crystal growth tray assemblies.
- 68. A protein crystal growth incubator assembly according to claim 67, wherein said stacked protein crystal growth tray configuration comprises four protein crystal growth tray assemblies.
- 69. A protein crystal growth incubator assembly according to claim 67, wherein said stacked protein crystal growth tray configuration comprises one thousand eight protein crystal growth cells.
- 70. A protein crystal growth incubator assembly according to claim 68, wherein each one of the four protein crystal growth tray assemblies comprises forty two protein crystal growth assemblies disposed therein.
- 71. A protein crystal growth incubator assembly according to claim 70 wherein each protein crystal growth tray assembly including the forty two protein crystal growth assemblies weighs no more than about 6 lbs.
- 72. A protein crystal growth incubator assembly according to claim 68, wherein said protein crystal growth assemblies comprise:
a crystal growth cell comprising,
a cell body having a top side and a bottom side and a first aperture defined therethrough, said cell body having opposed first and second sides and a second aperture defined therethrough; a cell barrel disposed within said cell body, said cell barrel defining a cavity alignable with the first aperture of said cell body, said cell barrel being rotatable within the second aperture; a reservoir coupled to the bottom side of said cell body; and a cap having a top side disposed on the top side of said cell body
- 73. A protein crystal growth incubator assembly according to claim 71, wherein said stacked protein crystal growth tray configuration including four protein crystal tray assemblies and wherein each protein crystal growth tray assembly is loaded with forty two protein crystal growth assemblies, has a weight of at least about 28 lbs.
- 74. A protein crystal growth incubator assembly according to claim 67, wherein an internal storage compartment of said protein crystal growth incubator assembly has a width of about 10 inches, a height of about 7 inches and a depth of about 17 inches.
- 75. A protein crystal growth command and monitoring system, comprising:
a chassis having interior and exterior sides, said chassis housing a video monitoring and translation mechanism; a protein crystal growth tray assembly having protein crystal growth assemblies disposed therein, said tray assembly arranged within the interior side of said chassis for video monitoring of the protein crystal growth cells; a video camera assembly arranged for monitoring the protein crystal growth assemblies; a translation mechanism arranged on said chassis and coupled to said video camera assembly for positioning said video camera assembly above said protein crystal tray assembly; and a controller providing control signals to said translation mechanism for controlling the translation and positioning of said video camera.
- 76. A protein crystal growth command and monitoring system according to claim 75, wherein said protein crystal growth tray assembly further comprises:
a tray adapted to hold a protein crystal growth assembly; a securing mechanism adapted for holding the protein crystal growth assembly in place in the tray; an engaging mechanism provided on said tray, said engaging mechanism coupled to the protein crystal growth assembly; and a pivot assembly coupled to said engaging mechanism for moving the protein crystal growth assembly between two positions by operation of said pivot assembly.
- 77. A protein crystal growth command and monitoring system according to claim 76, wherein the protein crystal growth assembly further comprises:
a crystal growth cell comprising,
a cell body having a top side and a bottom side and a first aperture defined therethrough, said cell body having opposed first and second sides and a second aperture defined therethrough; a cell barrel disposed within said cell body, said cell barrel defining a cavity alignable with the first aperture of said cell body, said cell barrel being rotatable within the second aperture; a reservoir coupled to the bottom side of said cell body; and a cap having a top side disposed on the top side of said cell body.
- 78. A protein crystal growth command and monitoring system according to claim 75, wherein said video camera assembly further comprises:
a video camera; a lens assembly having a base portion, said lens assembly providing a fixed focus image of a growth cell to said video camera; a light ring disposed at the base portion of said lens assembly; and a mounting assembly coupled to said translation mechanism.
- 79. A protein crystal growth command and monitoring system according to claim 78, wherein said video camera includes a charge coupled device.
- 80. A protein crystal growth command and monitoring system according to claim 78, wherein said video camera provides high resolution, color and Y/C signals to said controller.
- 81. A protein crystal growth command and monitoring system according to claim 78, wherein said camera is adapted to view a single protein crystal growth cell.
- 82. A protein crystal growth command and monitoring system according to claim 80, wherein said camera is adapted to view a single protein crystal growth cell through an optically clear cap disposed on said protein crystal growth cell.
- 83. A protein crystal growth command and monitoring system according to claim 78, wherein said light ring includes light emitting diodes.
- 84. A protein crystal growth command and monitoring system according to claim 75, wherein said translation mechanism comprises an X-Y stage.
- 85. A protein crystal growth command and monitoring system according to claim 86, wherein said translation mechanism further comprises:
an X stage motor/encoder; and a Y stage motor/encoder; said X and Y stage motor/encoders for translating said camera assembly in an X and Y direction in correspondence to signals provided by said controller.
- 86. A protein crystal growth command and monitoring system according to claim 84, further comprising a limit switch for providing a signal representative of the presence of a protein crystal growth tray assembly.
- 87. A protein crystal growth command and monitoring system according to claim 75, wherein said translation mechanism is arranged for translating said video camera assembly over an area of about 68% of a top surface area of said protein crystal growth tray assembly.
- 88. A protein crystal growth command and monitoring system according to claim 75, wherein said controller comprises:
a translation circuit, said translation circuit coupled to said translation mechanism; a video capture circuit, said video capture circuit coupled to said camera; a data storage device, said storage device coupled to said video capture circuit; an illumination circuit coupled to a light source for said video camera; and a communication circuit, for communicating information between said translation, video capture, data storage and illumination circuits and said controller, and said controller and other communication devices coupled to said protein crystal growth command and monitoring system.
- 89. A protein crystal growth command and monitoring system according to claim 88, wherein said communication circuit communicates digitized video images from anyone of a space station to a ground based station and a first ground based station to a second ground based station.
- 90. In a protein crystal growth assembly comprising a cell body having a top side and a bottom side and a first aperture defined therethrough, said cell body having opposed first and second sides and a second aperture defined therethrough; a cell barrel disposed within said cell body, said cell barrel defining a cavity alignable with the first aperture of said cell body; a reservoir coupled to the bottom side of said cell body, said cell barrel being rotatable within the second aperture; a protein cell insert disposed within the cavity of said cell barrel, said protein insert having an inner portion and an outer portion wherein the inner portion defines a well; and a cap having a top side disposed on the top side of said cell body, a method of growing protein crystals, comprising:
rotating the cell barrel to orient the growth cell in a fill/removal position; loading a premixed protein in the protein cell insert of a growth cell assembly; securing the premixed protein in the protein insert; rotating the cell barrel to a launch configuration position; at a predetermined time, rotating the cell barrel to a position to activate an experiment by placing the growth cell in a growth position; and at a second predetermined time, rotating the cell barrel to a position to deactivate the experiment by placing the growth cell in the fill/removal position.
- 91. A method according to claim 90, further comprising rotating the reservoir and removing the protein crystal.
- 92. A method according to claim 90, wherein securing the premixed protein comprises rotating the cap to form a seal against a sealing member disposed on the top side of said cell body.
Parent Case Info
[0001] This application claims the benefit of U.S. Provisional Application No. 60/095,984, filed Aug. 10, 1998, and U.S. Provisional Application No. 60/139,551, filed Jun. 16, 1999.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60095984 |
Aug 1998 |
US |
|
60139551 |
Jun 1999 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09371192 |
Aug 1999 |
US |
Child |
09965771 |
Sep 2001 |
US |