Claims
- 1. An isolated proliferation factor, wherein said proliferation factor is obtained from the UCHT1 rat thyroid cell line, or a biologically active fragment, analogue, or derivative thereof.
- 2. The proliferation factor of claim 1, wherein said proliferation factor is within the range of about 30 kD to about 100 kD in size.
- 3. The proliferation factor of claim 1, wherein said proliferation factor retains its proliferation-inducing activity at a fraction concentration of about 40% as determined by acetone precipitation.
- 4. The proliferation factor of claim 1, wherein said proliferation factor increases the division rate of a cell contacted with said proliferation factor to at least once every 24 hours.
- 5. The proliferation factor of claim 1, wherein the UCHT1 rat thyroid cell line exhibits the pro-proliferative properties of the cell line of deposit number DSM ACC2535.
- 6. A UCHT1 rat thyroid cell line, wherein said cell line increases the proliferation potential of a target cell contacted with cells of said UCHT1 rat thyroid cell line.
- 7. The cell line of claim 6, wherein said UCHT1 rat thyroid cell line has the proliferation-inducing properties of the cell line of deposit number DSM ACC2535.
- 8. A composition comprising a factor obtained from a UCHT1 rat thyroid cell line, wherein said factor induces the proliferation of cells contacted with said factor.
- 9. The composition of claim 8, wherein said factor is within the range of about 30 kD to about 100 kD in size.
- 10. The composition of claim 8, wherein said factor retains its proliferation-inducing activity at a fraction concentration of about 40% as determined by acetone precipitation.
- 11. The composition of claim 8, wherein said composition further comprises culture medium.
- 12. The composition of claim 11, wherein said culture medium has been conditioned with cells of the UCHT1 rat thyroid cell line from which said factor has been obtained.
- 13. The composition of claim 8, wherein said UCHT1 rat thyroid cell line has the pro-proliferative properties of the cell line of deposit number DSM ACC2535.
- 14. A method for inducing proliferation of cells comprising providing a factor obtainable from a UCHT1 rat thyroid cell line and contacting one or more target cells with the factor, wherein the factor induces the proliferation of the one or more target cells.
- 15. The method of claim 14, wherein the factor is within the range of about 30 kD to about 100 kD in size.
- 16. The method of claim 14, wherein said proliferation factor retains its proliferation-inducing activity at a fraction concentration of about 40% as determined by acetone precipitation.
- 17. The method of claim 14, wherein the UCHT1 rat thyroid cell line has the proliferation-inducing properties of the cell line of deposit number DSM ACC2535.
- 18. The method of claim 14, wherein said contacting causes the one or more target cells to divide at a rate of at least once every 24 hours.
- 19. The method of claim 14, wherein the one or more target cells are selected from the group consisting of stem cells, blast cells, cloned cells, precursor cells, and differentiated cells.
- 20. The method of claim 14, wherein the one or more target cells are obtained from a source selected from the group consisting of ectoderm, mesoderm, and endoderm.
- 21. The method of claim 14, wherein the one or more target cells are secretory cells.
- 22. The method of claim 14, wherein the one or more target cells are trophic factor-producing cells.
- 23. The method of claim 14, wherein the one or more target cells are selected from the group consisting of blast cells, cloned cells, fertilized ova, placental cells, keratinocytes, basal epidermal cells, hair shaft cells, hair-root sheath cells, surface epithelial cells, basal epithelial cells, urinary epithelial cells, salivary gland cells, mucous cells, serous cells, von Ebner's gland cells, mammary gland cells, lacrimal gland cells, ceruminous gland cells, eccrine sweat gland cells, apocrine sweat gland cells, Moll gland cells, sebaceous gland cells, Bowman's gland cells, Brunner's gland cells, seminal vesicle cells, prostate gland cells, bulbourethral gland cells, Bartholin's gland cells, Littré gland cells, uterine endometrial cells, goblet cells of the respiratory or digestive tracts, mucous cells of the stomach, zymogenic cells of the gastric gland, oxyntic cells of the gastric gland, insulin-producing β cells, glucagon-producing α cells, somatostatin-producing δ cells, pancreatic polypeptide-producing cells, pancreatic ductal cells, Paneth cells of the small intestine, type II pneumocytes of the lung, Clara cells of the lung, anterior pituitary cells, intermediate pituitary cells, posterior pituitary cells, hormone secreting cells of the gut or respiratory tract, thyroid gland cells, parathyroid gland cells, adrenal gland cells, gonad cells, juxtaglomerular cells of the kidney, macula densa cells of the kidney, peripolar cells of the kidney, mesangial cells of the kidney, brush border cells of the intestine, striated duct cells of exocrine glands, gall bladder epithelial cells, brush border cells of the proximal tubule of the kidney, distal tubule cells of the kidney, nonciliated cells of ductulus efferens, epididymal principal cells, epididymal basal cells, hepatacytes, fat cells, type I pneumocytes, pancreatic duct cells, nonstriated duct cells of the sweat gland, nonstriated duct cells of the salivary gland, nonstriated duct cells of the mammary gland, parietal cells of the kidney glomerulus, podocytes of the kidney glomerulus, cells of the thin segment of the loop of Henle, collecting duct cells, duct cells of the seminal vesicle, duct cells of the prostate gland, vascular endothelial cells, synovial cells, serosal cells, squamous cells lining the perilymphatic space of the ear, cells lining the endolymphatic space of the ear, choroids plexus cells, squamous cells of the pia-arachnoid, ciliary epithelial cells of the eye, corneal endothelial cells, ciliated cells having propulsive function, ameloblasts, planum semilunatum cells of the vestibular apparatus of the ear, interdental cells of the organ of Corti, fibroblasts, pericytes of blood capillaries, nucleus pulposus cells of the intervertebral disc, cementoblasts, cementocytes, odontoblasts, odontocytes, chondrocytes, osteoblasts, osteocytes, osteoprogenitor cells, hyalocytes of the vitreous body of the eye, stellate cells of the perilymphatic space of the ear, skeletal muscle cells, heart muscle cells, smooth muscle cells, myoepithelial cells, red blood cells, megakaryocytes, monocytes, connective tissue macrophages, Langerhan's cells, osteoclasts, dendritic cells, microglial cells, neutrophils, eosinophils, basophils, mast cells, plasma cells, helper T cells, suppressor T cells, killer T cells, immunoglobulin M, immunoglobulin G, immunoglobulin A, immunoglobulin E, killer cells, rod cells, cone cells, inner hair cells of the organ of Corti, outer hair cells of the organ of Corti, type I hair cells of the vestibular apparatus of the ear, type II cells of the vestibular apparatus of the ear, type II taste bud cells, olfactory neurons, basal cells of olfactory epithelium, type I carotid body cells, type II carotid body cells, Merkel cells, primary sensory neurons specialized for touch, primary sensory neurons specialized for temperature, primary neurons specialized for pain, proprioceptive primary sensory neurons, cholinergic neurons of the autonomic nervous system, adrenergic neurons of the autonomic nervous system, peptidergic neurons of the autonomic nervous system, inner pillar cells of the organ of Corti, outer pillar cells of the organ of Corti, inner phalangeal cells of the organ of Corti, outer phalangeal cells of the organ of Corti, border cells, Hensen cells, supporting cells of the vestibular apparatus, supporting cells of the taste bud, supporting cells of olfactory epithelium, Schwann cells, satellite cells, enteric glial cells, neurons of the central nervous system, astrocytes of the central nervous system, oligodendrocytes of the central nervous system, anterior lens epithelial cells, lens fiber cells, melanocytes, retinal pigmented epithelial cells, iris pigment epithelial cells, oogonium, oocytes, spermatocytes, spermatogonium, ovarian follicle cells, Sertoli cells, and thymus epithelial cells, or combinations thereof.
- 24. The method of claim 14, wherein the one or more target cells are selected from the group consisting of bone marrow cells, Sertoli cells, hepatocytes, retinal cells, thyroid cells, parathyroid cells, pancreatic cells, pituitary cells, cardiac muscle cells, skeletal muscle cells, rod cells, cone cells, hair cells, neutrophils, GABAergic neurons, cholinergic neurons, dopaminergic neurons, serotonergic neurons, astrocytes, oligodendrocytes, and neuroendocrine chromaffin cells, or combinations thereof.
- 25. The method of claim 14, wherein the one or more target cells are genetically modified cells.
- 26. The method of claim 14, wherein the one or more target cells are selected from the group consisting of embryonic stem cells, adult stem cells, blast cells, cloned cells, and fertilized ova.
- 27. The method of claim 14, wherein the one or more target cells are mammalian cells.
- 28. The method of claim 14, wherein the one or more target cells are human cells.
- 29. The method of claim 14, wherein following said contacting with the factor, the one or more target cells are induced to cease proliferation by interrupting contact between the factor and the one or more target cells.
- 30. The method of claims 29, wherein said interrupting comprises removing the one or more target cells from contact with the factor or removing the factor from contact with the one or more cells.
- 31. The method of claim 14, wherein following said contacting with the factor, the one or more target cells are induced to cease proliferation by differentiating the one or more target cells.
- 32. The method of claim 31, wherein said differentiating comprises contacting the one or more target cells with a differentiation agent.
- 33. The method of claim 32, wherein the differentiation agent is selected from the group consisting of hormonal supplements, putrescin-transferrin, forskolin, dibutyryl adenosine-3′,5′-cyclic monophosphate (cAMP), retinoic acid, laminin, fibronectin, collagen, and MATRIGEL.
- 34. The method of claim 31, wherein said differentiating comprises depriving the one or more target cells of contact with serum.
- 35. The method of claim 14, wherein the one or more target cells produce a biomolecule, and wherein said method further comprises harvesting the biomolecule from the one or more target cells following said contacting.
- 36. A method for proliferating cells by contacting one or more target cells with conditioned medium prepared by the UCHT1 rat thyroid cell line, wherein the conditioned medium increases the proliferation potential of the one or more target cells.
- 37. A method for producing a continuous cell line, said method comprising providing a factor obtainable from a UCHT1 rat thyroid cell line and contacting one or more target cells with the factor for a period of time sufficient to immortalize the one or more target cells, wherein the factor increases the proliferation potential of the one or more target cells such that the one or more target cells proliferate indefinitely.
- 38. The method of claim 37, wherein the period of time is within the range of about 1 month to about 8 months.
- 39. The method of claim 37, wherein said contacting comprises culturing the one or more target cells in culture medium containing the factor.
- 40. The method of claim 37, wherein said contacting comprises culturing the one or more target cells in medium conditioned with cells from the UCHT1 rat thyroid cell line.
- 41. The method of claim 37, wherein the UCHT1 rat thyroid cell line has the proliferation-inducing properties of the cell line of deposit number DSM ACC2535.
- 42. The method of claim 37, wherein the one or more target cells are selected from the group consisting of stem cells, precursor cells, differentiated cells, blast cells, cloned cells, and fertilized ova.
- 43. The method of claim 37, wherein the one or more target cells are obtained from a source selected from the group consisting of ectoderm, mesoderm, and endoderm.
- 44. The method of claim 37, wherein the one or more target cells are secretory cells.
- 45. The method of claim 37, wherein the one or more target cells are trophic factor-producing cells.
- 46. The method of claim 37, wherein the one or more target cells are selected from the group consisting of blast cells, cloned cells, fertilized ova, placental cells, keratinocytes, basal epidermal cells, hair shaft cells, hair-root sheath cells, surface epithelial cells, basal epithelial cells, urinary epithelial cells, salivary gland cells, mucous cells, serous cells, von Ebner's gland cells, mammary gland cells, lacrimal gland cells, ceruminous gland cells, eccrine sweat gland cells, apocrine sweat gland cells, Moll gland cells, sebaceous gland cells, Bowman's gland cells, Brunner's gland cells, seminal vesicle cells, prostate gland cells, bulbourethral gland cells, Bartholin's gland cells, Littré gland cells, uterine endometrial cells, goblet cells of the respiratory or digestive tracts, mucous cells of the stomach, zymogenic cells of the gastric gland, oxyntic cells of the gastric gland, insulin-producing β cells, glucagon-producing α cells, somatostatin-producing δ cells, pancreatic polypeptide-producing cells, pancreatic ductal cells, Paneth cells of the small intestine, type II pneumocytes of the lung, Clara cells of the lung, anterior pituitary cells, intermediate pituitary cells, posterior pituitary cells, hormone secreting cells of the gut or respiratory tract, thyroid gland cells, parathyroid gland cells, adrenal gland cells, gonad cells, juxtaglomerular cells of the kidney, macula densa cells of the kidney, peripolar cells of the kidney, mesangial cells of the kidney, brush border cells of the intestine, striated duct cells of exocrine glands, gall bladder epithelial cells, brush border cells of the proximal tubule of the kidney, distal tubule cells of the kidney, nonciliated cells of ductulus efferens, epididymal principal cells, epididymal basal cells, hepatacytes, fat cells, type I pneumocytes, pancreatic duct cells, nonstriated duct cells of the sweat gland, nonstriated duct cells of the salivary gland, nonstriated duct cells of the mammary gland, parietal cells of the kidney glomerulus, podocytes of the kidney glomerulus, cells of the thin segment of the loop of Henle, collecting duct cells, duct cells of the seminal vesicle, duct cells of the prostate gland, vascular endothelial cells, synovial cells, serosal cells, squamous cells lining the perilymphatic space of the ear, cells lining the endolymphatic space of the ear, choroids plexus cells, squamous cells of the pia-arachnoid, ciliary epithelial cells of the eye, corneal endothelial cells, ciliated cells having propulsive function, ameloblasts, planum semilunatum cells of the vestibular apparatus of the ear, interdental cells of the organ of Corti, fibroblasts, pericytes of blood capillaries, nucleus pulposus cells of the intervertebral disc, cementoblasts, cementocytes, odontoblasts, odontocytes, chondrocytes, osteoblasts, osteocytes, osteoprogenitor cells, hyalocytes of the vitreous body of the eye, stellate cells of the perilymphatic space of the ear, skeletal muscle cells, heart muscle cells, smooth muscle cells, myoepithelial cells, red blood cells, megakaryocytes, monocytes, connective tissue macrophages, Langerhan's cells, osteoclasts, dendritic cells, microglial cells, neutrophils, eosinophils, basophils, mast cells, plasma cells, helper T cells, suppressor T cells, killer T cells, immunoglobulin M, immunoglobulin G, immunoglobulin A, immunoglobulin E, killer cells, rod cells, cone cells, inner hair cells of the organ of Corti, outer hair cells of the organ of Corti, type I hair cells of the vestibular apparatus of the ear, type II cells of the vestibular apparatus of the ear, type II taste bud cells, olfactory neurons, basal cells of olfactory epithelium, type I carotid body cells, type II carotid body cells, Merkel cells, primary sensory neurons specialized for touch, primary sensory neurons specialized for temperature, primary neurons specialized for pain, proprioceptive primary sensory neurons, cholinergic neurons of the autonomic nervous system, adrenergic neurons of the autonomic nervous system, peptidergic neurons of the autonomic nervous system, inner pillar cells of the organ of Corti, outer pillar cells of the organ of Corti, inner phalangeal cells of the organ of Corti, outer phalangeal cells of the organ of Corti, border cells, Hensen cells, supporting cells of the vestibular apparatus, supporting cells of the taste bud, supporting cells of olfactory epithelium, Schwann cells, satellite cells, enteric glial cells, neurons of the central nervous system, astrocytes of the central nervous system, oligodendrocytes of the central nervous system, anterior lens epithelial cells, lens fiber cells, melanocytes, retinal pigmented epithelial cells, iris pigment epithelial cells, oogonium, oocytes, spermatocytes, spermatogonium, ovarian follicle cells, Sertoli cells, and thymus epithelial cells, or combinations thereof.
- 47. The method of claim 37, wherein the one or more target cells are selected from the group consisting of bone marrow cells, Sertoli cells, hepatocytes, retinal cells, thyroid cells, parathyroid cells, pancreatic cells, pituitary cells, cardiac muscle cells, skeletal muscle cells, rod cells, cone cells, hair cells, neutrophils, GABAergic neurons, cholinergic neurons, dopaminergic neurons, serotonergic neurons, astrocytes, oligodendrocytes, and neuroendocrine chromaffin cells, or combinations thereof.
- 48. The method of claim 37, wherein the one or more target cells are genetically modified cells.
- 49. The method of claim 37, wherein the one or more target cells are embryonic stem cells or adult stem cells.
- 50. The method of claim 37, wherein the one or more target cells are mammalian cells.
- 51. The method of claim 37, wherein the one or more target cells are human cells.
- 52. The method of claim 37, wherein the one or more target cells produce a biomolecule, and wherein said method further comprises harvesting the biomolecule from the one or more target cells following said contacting.
- 53. The method of claim 37, wherein following said contacting the one or more target cells with the factor for a period of time within the range of about 1 month to about 8 months, the one or more target cells are induced to cease proliferation by differentiating the one or more target cells.
- 54. The method of claim 53, wherein said differentiating comprises contacting the one or more target cells with a differentiation agent.
- 55. The method of claim 54, wherein the differentiation agent is selected from the group consisting of hormonal supplements, putrescin-transferrin, forskolin, dibutyryl adenosine-3′,5′-cyclic monophosphate (cAMP), retinoic acid, laminin, fibronectin, collagen, and MATRIGEL.
- 56. The method of claim 53, wherein said differentiating comprises depriving the one or more target cells of contact with serum.
- 57. A method for producing a continuous cell line by contacting one or more target cells with conditioned medium prepared by the UCHT1 rat thyroid cell line for a period of time within the range of about 1 month to about 8 months, wherein the conditioned medium increases the proliferation potential of the one or more target cells such that the one or more target cells proliferate indefinitely.
- 58. A method for transplanting cells to a patient in need thereof, said method comprising administering a plurality of cells to the patient, wherein the plurality of cells have been proliferated by contacting the plurality of cells with a factor obtainable from a UCHT1 rat thyroid cell line, wherein the factor increases the proliferation potential of the plurality of cells.
- 59. The method of claim 58, wherein the plurality of cells are administered as one or more grafts selected from the group consisting of autografts, syngeneic grafts, allografts, and xenografts.
- 60. The method of claim 58, wherein the plurality of cells have been induced to cease proliferation prior to said administering.
- 61. The method of claim 60, wherein the plurality of cells are induced to cease proliferation by interrupting contact between the factor and the one or more target cells.
- 62. The method of claim 61, wherein said interrupting comprises removing the plurality of cells from contact with the factor or removing the factor from contact with the plurality of cells.
- 63. The method of claim 58, wherein the plurality of cells have been contacted with the factor for a period of time sufficient to immortalize the plurality of cells and wherein the plurality of cells are then induced to cease proliferation by differentiating the plurality of cells prior to said administering.
- 64. The method of claim 63, wherein said differentiating comprises contacting the plurality of cells with a differentiation agent.
- 65. The method of claim 64, wherein the differentiation agent is selected from the group consisting of hormonal supplements, putrescin-transferrin, forskolin, dibutyryl adenosine-3′,5′-cyclic monophosphate (cAMP), retinoic acid, laminin, fibronectin, collagen, and MATRIGEL.
- 66. The method of claim 63, wherein said differentiating comprises depriving the plurality of cells of contact with serum.
- 67. The method of claim 63, wherein said differentiating comprises contacting the plurality of cells with a support comprising MATRIGEL.
- 68. The method of claim 58, wherein the plurality of cells are selected from the group consisting of blast cells, cloned cells, fetal cells, embryonic cells, neonatal cells, adolescent cells, adult cells, stem cells, precursor cells, and differentiated cells.
- 69. The method of claim 58, wherein the plurality of cells are obtained from a source selected from the group consisting of ectoderm, mesoderm, and endoderm.
- 70. The method of claim 58, wherein the plurality of cells are secretory cells.
- 71. The method of claim 58, wherein the plurality of cells are trophic factor-producing cells.
- 72. The method of claim 58, wherein the plurality of cells are selected from the group consisting of blast cells, cloned cells, fertilized ova, placental cells, keratinocytes, basal epidermal cells, hair shaft cells, hair-root sheath cells, surface epithelial cells, basal epithelial cells, urinary epithelial cells, salivary gland cells, mucous cells, serous cells, von Ebner's gland cells, mammary gland cells, lacrimal gland cells, ceruminous gland cells, eccrine sweat gland cells, apocrine sweat gland cells, Moll gland cells, sebaceous gland cells, Bowman's gland cells, Brunner's gland cells, seminal vesicle cells, prostate gland cells, bulbourethral gland cells, Bartholin's gland cells, Littré gland cells, uterine endometrial cells, goblet cells of the respiratory or digestive tracts, mucous cells of the stomach, zymogenic cells of the gastric gland, oxyntic cells of the gastric gland, insulin-producing β cells, glucagon-producing α cells, somatostatin-producing δ cells, pancreatic polypeptide-producing cells, pancreatic ductal cells, Paneth cells of the small intestine, type II pneumocytes of the lung, Clara cells of the lung, anterior pituitary cells, intermediate pituitary cells, posterior pituitary cells, hormone secreting cells of the gut or respiratory tract, thyroid gland cells, parathyroid gland cells, adrenal gland cells, gonad cells, juxtaglomerular cells of the kidney, macula densa cells of the kidney, peripolar cells of the kidney, mesangial cells of the kidney, brush border cells of the intestine, striated duct cells of exocrine glands, gall bladder epithelial cells, brush border cells of the proximal tubule of the kidney, distal tubule cells of the kidney, nonciliated cells of ductulus efferens, epididymal principal cells, epididymal basal cells, hepatacytes, fat cells, type I pneumocytes, pancreatic duct cells, nonstriated duct cells of the sweat gland, nonstriated duct cells of the salivary gland, nonstriated duct cells of the mammary gland, parietal cells of the kidney glomerulus, podocytes of the kidney glomerulus, cells of the thin segment of the loop of Henle, collecting duct cells, duct cells of the seminal vesicle, duct cells of the prostate gland, vascular endothelial cells, synovial cells, serosal cells, squamous cells lining the perilymphatic space of the ear, cells lining the endolymphatic space of the ear, choroids plexus cells, squamous cells of the pia-arachnoid, ciliary epithelial cells of the eye, corneal endothelial cells, ciliated cells having propulsive function, ameloblasts, planum semilunatum cells of the vestibular apparatus of the ear, interdental cells of the organ of Corti, fibroblasts, pericytes of blood capillaries, nucleus pulposus cells of the intervertebral disc, cementoblasts, cementocytes, odontoblasts, odontocytes, chondrocytes, osteoblasts, osteocytes, osteoprogenitor cells, hyalocytes of the vitreous body of the eye, stellate cells of the perilymphatic space of the ear, skeletal muscle cells, heart muscle cells, smooth muscle cells, myoepithelial cells, red blood cells, megakaryocytes, monocytes, connective tissue macrophages, Langerhan's cells, osteoclasts, dendritic cells, microglial cells, neutrophils, eosinophils, basophils, mast cells, plasma cells, helper T cells, suppressor T cells, killer T cells, immunoglobulin M, immunoglobulin G, immunoglobulin A, immunoglobulin E, killer cells, rod cells, cone cells, inner hair cells of the organ of Corti, outer hair cells of the organ of Corti, type I hair cells of the vestibular apparatus of the ear, type II cells of the vestibular apparatus of the ear, type II taste bud cells, olfactory neurons, basal cells of olfactory epithelium, type I carotid body cells, type II carotid body cells, Merkel cells, primary sensory neurons specialized for touch, primary sensory neurons specialized for temperature, primary neurons specialized for pain, proprioceptive primary sensory neurons, cholinergic neurons of the autonomic nervous system, adrenergic neurons of the autonomic nervous system, peptidergic neurons of the autonomic nervous system, inner pillar cells of the organ of Corti, outer pillar cells of the organ of Corti, inner phalangeal cells of the organ of Corti, outer phalangeal cells of the organ of Corti, border cells, Hensen cells, supporting cells of the vestibular apparatus, supporting cells of the taste bud, supporting cells of olfactory epithelium, Schwann cells, satellite cells, enteric glial cells, neurons of the central nervous system, astrocytes of the central nervous system, oligodendrocytes of the central nervous system, anterior lens epithelial cells, lens fiber cells, melanocytes, retinal pigmented epithelial cells, iris pigment epithelial cells, oogonium, oocytes, spermatocytes, spermatogonium, ovarian follicle cells, Sertoli cells, and thymus epithelial cells, or combinations thereof.
- 73. The method of claim 58, wherein the plurality of cells are selected from the group consisting of bone marrow cells, Sertoli cells, hepatocytes, retinal cells, thyroid cells, parathyroid cells, pancreatic cells, pituitary cells, cardiac muscle cells, skeletal muscle cells, rod cells, cone cells, hair cells, neutrophils, GABAergic neurons, dopaminergic neurons, cholinergic neurons, serotonergic neurons, astrocytes, oligodendrocytes, and neuroendocrine chromaffin cells, or combinations thereof.
- 74. The method of claim 58, wherein the plurality of cells are genetically modified cells.
- 75. The method of claim 58, wherein the plurality of cells are selected from the group consisting of embryonic stem cells, adult stem cells, blast cells, cloned cells, and fertilized ova.
- 76. The method of claim 58, wherein the plurality of cells are mammalian cells.
- 77. The method of claim 58, wherein the plurality of cells are cells selected from the group consisting of human, rat, bovine, porcine, dog, cat, goat, chicken, and fish.
- 78. The method of claim 58, wherein the plurality of cells are human cells.
- 79. The method of claim 58, wherein the patient is a mammal.
- 80. The method of claim 58, wherein the patient is human.
- 81. The method of claim 58, wherein the UCHT1 rat thyroid cell line has the pro-proliferative properties of the cell line of deposit number DSM ACC2535.
- 82. The method of claim 58, wherein the plurality of cells do not contain an oncogene.
- 83. The method of claim 58, wherein the plurality of cells are non-tumorgenic in vivo.
- 84. The method of claim 58, wherein the plurality of cells comprise a first type of cells and a second type of cells, wherein the second type of cells are immunoprotective cells that confer an immunoprotective benefit to the first type of cells after the first type of cells and the second type of cells are administered to the patient.
- 85. The method of claim 84, wherein the immunoprotective cells are selected from the group consisting of Sertoli cells, ovarian stromal cells, lumbar disc cells, and cells genetically modified to produce Fas ligand.
- 86. The method of claim 85, wherein the patient is suffering from a pathological condition.
- 87. The method of claim 86, wherein the pathological condition is associated with cell death, cell loss, or cell dysfunction.
- 88. The method of claim 86, wherein the pathological condition is selected from the group consisting of cancer, neurodegenerative disease, diabetes, and trauma.
- 89. The method of claim 87, wherein the pathological condition is selected from the group consisting of burn, head trauma, spinal cord injury, stroke, myocardial infarction, arthrosis, Parkinson's disease, Alzheimer's disease, Huntington's disease, Tourette's syndrome, multiple sclerosis, amyotrophic lateral sclerosis, Addison's disease, pituitary insufficiency, liver failure, inflammatory arthropathy, neuropathic pain, blindness, and hearing loss.
- 90. The method of claim 58, wherein the plurality of cells are administered to the patient by a route selected from the group consisting of intravascularly, intracranially, intracerebrally, intramuscularly, intradermally, intravenously, intraocularly, orally, nasally, topically, and by open surgical procedure.
- 91. The method of claim 58, wherein the plurality of cells are administered to the patient with a pharmaceutically acceptable carrier.
- 92. A method for determining the effect of an agent on one or more cells, said method comprising providing a factor obtainable from a UCHT1 rat thyroid cell line, contacting the one or more cells with the factor, exposing the one or more cells to an agent to be tested, and determining the effect of the agent on the one or more cells, wherein the factor increases the proliferation potential of the one or more cells.
- 93. The method of claim 92, wherein said exposing comprises contacting the one or more cells to the agent to be tested.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] The present application claims the benefit of priority of U.S. Provisional Application Serial No. 60/355,157, filed Feb. 8, 2002, which is hereby incorporated by reference herein in its entirety, including any figures, tables, nucleic acid sequences, amino acid sequences, or drawings.
Provisional Applications (1)
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Number |
Date |
Country |
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60355157 |
Feb 2002 |
US |