Claims
- 1. A method of growing primordial germ cells from a non-rodent animal species, comprising plating a composition comprising primordial germ cells from an embryo of said non-rodent animal species on feeder cells, said feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor.
- 2. A method of growing primordial germ cells from a non-rodent animal species, comprising plating a composition comprising primordial germ cells from an embryo of said non-rodent animal species on STO feeder cells, said STO feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor.
- 3. A method of growing primordial germ cells from a non-rodent animal species, comprising plating a composition comprising primordial germ cells from an embryo of said non-rodent animal species on feeder cells, said feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor, said culture medium including no exogenously added soluble stem cell factor.
- 4. A method of growing primordial germ cells from a non-rodent animal species, comprising plating a composition comprising primordial germ cells from an embryo of said non-rodent animal species on feeder cells, said feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor, said culture medium including no exogenously added leukemia inhibitory factor.
- 5. A method of growing primordial germ cells from a non-rodent animal species, comprising plating a composition comprising primordial germ cells from an embryo of said non-rodent animal species on feeder cells, said feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor, said culture medium including no exogenously added soluble stem cell factor or leukemia inhibitory factor.
- 6. A method of growing primordial germ cells from a non-rodent animal species, comprising plating a composition comprising primordial germ cells from an embryo of said non-rodent animal species on feeder cells other than S1/S14 or S1-m220, said feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor.
- 7. A method of growing primordial germ cells from a non-rodent animal species, comprising plating a composition comprising primordial germ cells from an embryo of said non-rodent animal species on feeder cells other than S1/S14 or S1-m220, said feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor, said culture medium including no exogenously added soluble stem cell factor or leukemia inhibitory factor.
- 8. The method of claim 1, wherein said composition comprising primordial germ cells is isolated from an embryo of said non-rodent animal species.
- 9. The method of claim 8, wherein said composition comprising primordial germ cells is isolated by a process comprising the steps of:
a) removing the genital ridge from said embryo; b) disrupting said genital ridge in an appropriate solution, thereby releasing primordial germ cells; and c) collecting said primordial germ cells, to provide said composition comprising primordial germ cells.
- 10. The method of claim 1, wherein said primordial germ cells comprise at least a first exogenous DNA segment.
- 11. The method of claim 1, wherein said feeder cells are STO cells.
- 12. The method of claim 1, wherein said culture medium comprises basic fibroblast growth factor at a concentration of between about 5 ng/ml and about 100 μg/ml.
- 13. The method of claim 1, wherein said culture medium further comprises an effective amount of uteroferrin.
- 14. The method of claim 13, wherein said culture medium comprises uteroferrin at a concentration of between about 1 ng/mA and about 100 μg/ml.
- 15. The method of claim 1, wherein said culture medium further comprises an effective amount of α2-macroglobulin.
- 16. The method of claim 15, wherein said culture medium comprises α2-macroglobulin at a concentration of between about 10 ng/ml and about 10 μg/ml.
- 17. The method of claim 1, wherein said culture medium firther comprises an effective amount of leukemia inhibitory factor.
- 18. The method of claim 17, wherein said culture medium comprises leukemia inhibitory factor at a concentration of between about 5 ng/ml and about 100 μg/ml.
- 19. The method of claim 1, wherein said culture medium further comprises an effective amount of soluble stem cell factor.
- 20. The method of claim 19, wherein said culture medium comprises soluble stem cell factor at a concentration of between about 1 ng/ml and about 100 μg/ml.
- 21. The method of claim 1, wherein said culture medium further comprises an effective amount of amino acids non-essential to said non-rodent animal.
- 22. The method of claim 21, wherein said culture medium comprises amino acids non-essential to said non-rodent animal at a concentration of between about 10 nM and about 250 nM.
- 23. The method of claim 1, wherein said culture medium further comprises an effective amount of L-glutamine.
- 24. The method of claim 23, wherein said culture medium comprises L-glutamine at a concentration of between about 0.1 mM and about 50 mM.
- 25. The method of claim 1, wherein said culture medium further comprises an effective amount of β-mercaptoethanol.
- 26. The method of claim 25, wherein said culture medium comprises β-mercaptoethanol at a concentration of between about 1 μM and about 1 mM.
- 27. The method of claim 1, wherein said culture medium comprises Dulbecco's modified Eagle's media or Ham's F10 media.
- 28. The method of claim 1, wherein said culture medium comprises Dulbecco's modified Eagle's media at about 50% volume/volume and Ham's F10 media at about 50% volume/volume.
- 29. The method of claim 1, wherein said culture medium comprises an effective amount of basic fibroblast growth factor and an effective amount of at least one of uteroferrin, α2-macroglobulin, leukemia inhibitory factor, soluble stem cell factor, amino acids non-essential to said non-rodent animal, L-glutamine or β-mercaptoethanol.
- 30. The method of claim 29, wherein said culture medium comprises an effective amount of basic fibroblast growth factor and a combined effective amount of at least two of uteroferrin, α2-macroglobulin, leukemia inhibitory factor, soluble stem cell factor, amino acids non-essential to said non-rodent animal, L-glutamine or β-mercaptoethanol.
- 31. The method of claim 30, wherein said culture medium comprises an effective amount of basic fibroblast growth factor and a combined effective amount of at least three of uteroferrin, α2-macroglobulin, leukemia inhibitory factor, soluble stem cell factor, amino acids non-essential to said non-rodent animal, L-glutamine or β-mercaptoethanol.
- 32. The method of claim 31, wherein said culture medium comprises an effective amount of basic fibroblast growth factor and a combined effective amount of uteroferrin,5941 α2-macroglobulin and leukemia inhibitory factor.
- 33. The method of claim 32, wherein said culture medium comprises basic fibroblast growth factor at a concentration of between about 5 ng/ml and about 100 μg/ml, uterofernin at a concentration of between about 1 ng/ml and about 100 μg/ml, α2-macroglobulin at a concentration of between about 10 ng/ml and about 10 μg/ml and leukemia inhibitory factor at a concentration of between about 5 ng/ml and about 100 μg/ml.
- 34. The method of claim 1, wherein said medium comprises:
a) between about 5 ng/ml and about 100 μg/ml of basic fibroblast growth factor; b) between about 1 ng/ml and about 100 μg/ml of uteroferrin; c) between about 10 ng/ml and about 10 μg/ml of α2-macroglobulin; d) between about 5 ng/ml and about 100 μg/ml of leukemia inhibitory factor; e) between about 1 ng/ml and about 100 μg/ml of soluble stem cell factor; f) between about 10 nM and about 250 nM of non-essential amino acids; g) between about 0.1 mM and about 50 mM of L-glutamine; h) between about 1 μM and about 1 mM of β-mercaptoethanol; i) about 50% volume/volume of Dulbecco's modified Eagle's media; and j) about 50% volume/volume of Ham's F10 media.
- 35. The method of claim 1, wherein the plated primordial germ cells are maintained in an undifferentiated state for between about 2 passages and about 14 passages.
- 36. The method of claim 1, wherein said primordial germ cells are bovine, ovine, porcine or caprine primordial germ cells.
- 37. The method of claim 36, wherein said primordial germ cells are porcine primordial germ cells.
- 38. A method of preparing a primordial germ cell-derived cell line from a non-rodent animal species, comprising:
a) plating a composition comprising primordial germ cells on feeder cells, said feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor; and b) culturing said plated primordial germ cells for a period of time effective to provide a primordial germ cell-derived cell line of said non-rodent animal species.
- 39. A method of preparing primordial germ cells of a non-rodent animal species that contain a selected DNA segment, comprising:
a) introducing said selected DNA segment into a composition comprising primordial germ cells from said non-rodent animal species to obtain candidate primordial germ cells that contain said selected DNA segment; and b) plating said candidate primordial germ cells that contain said selected DNA segment on feeder cells, said feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor, to obtain said primordial germ cells of said non-rodent animal species that contain said selected DNA segment.
- 40. The method of claim 39, further comprising culturing said primordial germ cells that contain said selected DNA segment for between about 2 and about 14 passages.
- 41. The method of claim 39, wherein said selected DNA segment is introduced into said primordial germ cells by electroporation, particle bombardment or viral transformation.
- 42. The method of claim 39, wherein said selected DNA segment comprises at least a first coding region encoding a selected protein.
- 43. The method of claim 42, wherein said first coding region encodes a selected marker protein.
- 44. The method of claim 43, wherein said first coding region encodes green fluorescent protein.
- 45. The method of claim 42, wherein said first coding region encodes a protein listed in Table 3 or Table 4.
- 46. The method of claim 42, wherein said selected DNA segment further comprises at least a second coding region encoding a selected protein.
- 47. The method of claim 46, wherein said first coding region encodes a selected protein and said second coding region encodes a selected marker protein.
- 48. The method of claim 39, wherein said DNA segment is operatively positioned under the control of a promoter that expresses said DNA segment in said primordial germ cells.
- 49. The method of claim 48, wherein said promoter is a CMV, Oct-4 or pgk promoter.
- 50. The method of claim 39, wherein said selected DNA segment is operatively positioned in reverse orientation under the control of a promoter, wherein said promoter directs the expression of an antisense product.
- 51. The method of claim 39, wherein said DNA segment further comprises two selected DNA regions that flank said DNA segment, thereby directing the homologous recombination of said DNA segment into genomic DNA of said non-rodent animal species.
- 52. The method of claim 51, wherein said selected DNA regions comprise genomic DNA from said non-rodent animal species.
- 53. The method of claim 52, wherein said selected DNA regions comprise genomic DNA from the Oct-4 gene.
- 54. The method of claim 51, wherein said DNA segment further comprises two selected DNA sequences that flank said DNA segment, thereby directing excision of said DNA segment under appropriate conditions.
- 55. The method of claim 54, wherein said selected DNA sequences are loxP sites.
- 56. The method of claim 39, wherein primordial germ cells are bovine, ovine, porcine or caprine primordial germ cells.
- 57. The method of claim 56, wherein said primordial germ cells are porcine primordial germ cells.
- 58. A method of producing a transgenic non-rodent animal comprising:
a) introducing a selected DNA segment into a composition comprising primordial germ cells from said non-rodent animal to obtain candidate primordial germ cells that contain said selected DNA segment; b) plating said candidate primordial germ cells that contain said selected DNA segment on feeder cells, said feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor, to obtain primordial germ cells of said non-rodent animal that contain said selected DNA segment; and c) generating a transgenic non-rodent animal from said primordial germ cells of a non-rodent animal that contain said selected DNA segment, wherein said selected DNA segment is contained and expressed in somatic and germ cells of said non-rodent animal.
- 59. The method of claim 58, wherein said composition comprising primordial germ cells contains cultured cells from a primordial germ cell-derived cell line.
- 60. The method of claim 58, wherein said transgenic non-rodent animal is generated by a method comprising injecting said primordial germ cells of said non-rodent animal species that contain said selected DNA segment into a blastocyst from said non-rodent animal species.
- 61. The method of claim 58, wherein said transgenic non-rodent animal is generated by a method comprising:
(a) injecting said primordial germ cells of said non-rodent animal species that contain said selected DNA segment into a blastocyst from said non-rodent animal species; (b) transferring said blastocyst into a synchronized recipient female of said non-rodent animal species to produce a pregnant non-rodent animal; and (c) allowing gestation in said pregnant non-rodent animal to proceed for a period of time sufficient to allow the development of a viable transgenic non-rodent animal.
- 62. The method of claim 58, wherein said transgenic non-rodent animal is generated by a method comprising isolating a nucleus from said primordial germ cells of said non-rodent animal species that contain said selected DNA segment and injecting said nucleus into an enucleated oocyte from said non-rodent animal species.
- 63. The method of claim 58, wherein said transgenic non-rodent animal is generated by a method comprising;
(a) isolating a nucleus from said primordial germ cells of said non-rodent animal species that contain said selected DNA segment and injecting said nucleus into an enucleated oocyte from said non-rodent animal species; (b) transferring said oocyte into a synchronized recipient female of said non-rodent animal species to produce a pregnant non-rodent animal; and (c) allowing gestation in said pregnant non-rodent animal to proceed for a period of time sufficient to allow the development of a viable transgenic non-rodent animal.
- 64. The method of claim 58, wherein said transgenic non-rodent animal is generated by a method comprising aggregating said primordial germ cells of said non-rodent animal species that contain said selected DNA segment with an early stage embryo of said non-rodent animal species.
- 65. The method of claim 58, wherein said transgenic non-rodent animal is generated by a method comprising:
(a) aggregating said primordial germ cells of said non-rodent animal species that contain said selected DNA segment with an early stage embryo of said non-rodent animal species; (b) transferring said embryo into a synchronized recipient female of said non-rodent animal species to produce a pregnant non-rodent animal; and (c) allowing gestation in said pregnant non-rodent animal to proceed for a period of time sufficient to allow the development of a viable transgenic non-rodent animal.
- 66. The method of claim 58, wherein said transgenic non-rodent animal is bovine, ovine, porcine or caprine.
- 67. The method of claim 66, wherein said transgenic non-rodent animal is porcine.
- 68. A method of producing a transgenic pig comprising:
a) introducing a selected DNA segment into a composition comprising porcine primordial germ cells to obtain candidate porcine primordial germ cells that contain said selected DNA segment; b) plating said candidate porcine primordial germ cells that contain said selected DNA segment on feeder cells, said feeder cells at a density of between about 2×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor, to obtain porcine primordial germ cells that contain said selected DNA segment; and c) generating a transgenic pig from said porcine primordial germ cells that contain said selected DNA segment, wherein said selected DNA segment is contained and expressed in somatic and germ cells of said transgenic pig.
- 69. A transgenic non-rodent animal prepared by a process comprising the steps of:
a) introducing a selected DNA segment into a composition comprising primordial germ cells from said non-rodent animal to obtain candidate primordial germ cells that contain said selected DNA segment; b) plating said candidate primordial germ cells that contain said selected DNA segment on feeder cells, said feeder cells at a density of between about 1.5×105 cells/cm2 and about 106 cells/cm2, in a culture medium comprising an effective amount of basic fibroblast growth factor, to obtain said primordial germ cells of a non-rodent animal that contain said selected DNA segment; and c) generating a transgenic non-rodent animal from said primordial germ cells of a non-rodent animal that contain said selected DNA segment, wherein said selected DNA segment is contained and expressed in somatic and germ cells of said non-rodent animal.
- 70. A composition comprising:
(a) primordial germ cells from a non-rodent animal species; (b) feeder cells sufficient to achieve a density of between about 1.5×105 and about 106 feeder cells/cm2; and (c) basic fibroblast growth factor in an amount effective to promote the growth and continued proliferation of said primordial germ cells.
- 71. The composition of claim 69, wherein said primordial germ cells comprise at least a first exogenous DNA segment.
- 72. The composition of claim 69, wherein said feeder cells are STO cells.
- 73. The composition of claim 69, further comprising one or more of uteroferrin, α2-macroglobulin, leukemia inhibitory factor, soluble stem cell factor, amino acids non-essential to said non-rodent animal species, L-glutamine, β-mercaptoethanol, Dulbecco's modified Eagle's media or Ham's F10 media in an amount effective to promote the growth and continued proliferation of said primordial germ cells.
- 74. The composition of claim 69, wherein said primordial germ cell is a bovine, ovine, porcine or caprine primordial germ cell.
- 75. The composition of claim 73, wherein said primordial germ cell is porcine primordial germ cell.
- 76. A kit comprising, in suitable container means:
(a) primordial germ cells from a non-rodent animal species; (b) feeder cells sufficient to achieve a density of between about 1.5×105 and about 106 feeder cells/cm2; and (c) basic fibroblast growth factor in an amount effective to promote the growth and continued proliferation of said primordial germ cells.
Parent Case Info
[0001] The present application claims the priority of co-pending U.S. Provisional Patent Applications Serial No. 60/027,338, filed Oct. 11, 1996, and Serial No. 60/046,094, filed May 9, 1997, the entire disclosures of which are incorporated herein by reference without disclaimer.
Government Interests
[0002] The U.S. government owns rights in the present invention pursuant to grant number HL 51587 from the National Institutes of Health.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60027338 |
Oct 1996 |
US |
|
60046094 |
May 1997 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
08949155 |
Oct 1997 |
US |
Child |
09819964 |
Mar 2001 |
US |