Claims
- 1. An immortal cell line derived from grouper which is susceptible to aquatic viruses.
- 2. The immortal cell line of claim 1, wherein said grouper is Epinephelus coioides.
- 3. The immortal cell line of claim 2, which is ATCC deposit No. ______.
- 4. The immortal cell line of claim 3, wherein said cell line is derived from grouper fin tissue.
- 5. The immortal cell line according to claim 4, wherein said cell line is susceptible to and mass produces a virus.
- 6. The immortal cell line according to claim 5, wherein said virus is selected from the group consisting of Birnaviridae, Herpesviridae, Reoviridae, and Nodaviridae.
- 7. The immortal cell line according to claim 6, wherein said Birnaviridae is Infectious Pancreatic Necrosis Virus (IPNV).
- 8. The immortal cell line according to claim 6, wherein said Herpesviridae is Eel Herpes Virus Formosa (EHVF).
- 9. The immortal cell line according to claim 6, wherein said Reoviridae is Hard Clam Reovirus (HCRV).
- 10. The immortal cell line according to claim 6, wherein said Nodaviridae is a fish nodavirus which is selected from the group consisting of Nervous Necrosis Virus (NNV), Fish Encephalitis Virus (EFV), Piscine Neuropathy Nodavirus (PNN), Grouper Nervous_Necrosis Virus (GNNV), Stripped Jack Nervous Necrosis Virus (SJNNV), Tiger Puffer Nervous Necrosis Virus (TPNNV), Berfin Flounder Nervous Necrosis Virus (BFNNV) and Red Spotted Grouper Nervous Necrosis Virus (RGNNV).
- 11. A method for establishing an immortal cell line comprising:
establishing a primary cell culture by placing cells released from fin tissue of Epinephelus coioides in a tissue culture flask until a monolayer of cells is formed; subculturing and maintaining said monolayer of cells in a media suitable for cell subculturing; and monitoring the transformation of said subcultured cells which is characterized by susceptibility to aquatic viruses.
- 12. A method for growing a virus comprising the steps of:
inoculating said virus into an established cell culture comprising the immortal cell line according to claim 1; and incubating said cell culture in a nutrient medium suitable for growth and replication of said virus.
- 13. The method for growing a virus according to claim 12, wherein said virus is selected from the group consisting of Birnaviridae, Herpesviridae, Reoviridae, and Nodaviridae.
- 14. The method for growing a virus according to claim 13, wherein said Birnaviridae is Infectious Pancreatic Necrosis Virus (IPNV).
- 15. The method for growing a virus according to claim 13, wherein said Herpesviridae is Eel Herpes Virus Formosa (EHVF).
- 16. The method for growing a virus according to claim 13, wherein said Reoviridae is Hard Clam Reovirus (HCRV).
- 17. The method for growing a virus according to claim 13, wherein said Nodaviridae is a fish nodavirus which is selected from the group consisting of Nervous Necrosis Virus (NNV), Fish Encephalitis Virus (EFV), Piscine Neuropathy Nodavirus (PNN), Grouper Nervous Necrosis Virus (GNNV), Stripped Jack Nervous Necrosis Virus (SJNNV), Tiger Puffer Nervous Necrosis Virus (TPNNV), Berfin Flounder Nervous Necrosis Virus (BFNNV) and Red Spotted Grouper Nervous Necrosis Virus (RGNNV).
- 18. A method for mass producing a virus comprising:
inoculating the virus in the established cell culture comprising the immortal cell line as claimed in claim 1;incubating said cell culture in a nutrient medium suitable for growth and replication of said virus until an appearance of cytopathic effects (CPE); and harvesting said virus from said cell line.
- 19. A method for purifying a virus comprising:
oculating the virus into an established cell culture comprising the immortal cell line as claimed in claim 1;incubating said cell culture in a nutrient medium suitable for growth and replication of said virus until an appearance of cytopathic effects (CPE); harvesting said virus from said cell line; and purifying said virus using a density gradient centrifugation.
- 20. The method for purifying a virus according to claim 19, wherein said density gradient centrifugation is a CsCl density gradient centrifugation.
- 21. The method for purifying a virus according to claim 19, wherein said virus is NNV, and wherein said NNV has a buoyant density of approximately 1.34 g/ml in CsCl.
- 22. A method for detecting a virus in an immortal cell line comprising:
observing a development of cytopathic effects (CPE) in an established cell culture comprising the immortal cell line according to claim 1 under a microscope.
- 23. The method for detecting a virus in an immortal cell line according to claim 22, further comprising the steps of:
fixing said cell line in glutaraldehyde and osmium tetraoxide; detecting viral particles in an ultrathin section of said fixed cell line under an electron microscope.
- 24. A method for detecting NNV in an immortal cell line comprising:
observing a development of cytopathic effects (CPE) in an established cell culture comprising the cell line according to claim 1 under a microscope; extracting a viral RNA from the cell culture; and amplifying said viral RNA by PCR method using a reverse primer having the DNA sequence of SEQ ID NO. 1 and a forward primer having the DNA sequence of SEQ ID NO. 2 .
- 25. A method for detecting NNV in an immortal cell line comprising:
observing a development of cytopathic effects (CPE) in en established cell culture comprising the cell line according to claim 1 under a microscope; extracting a viral protein from the cell line; electrophoresizing said viral protein in an SDS-polyacrylamide gel; and analyzing said polyacrylamide gel by western immunoblot using an anti-NNV serum.
- 26. A method for detecting NNV in an immortal cell line comprising:
observing a development of cytopathic effects (CPE) in an established cell culture comprising the cell line according to claim 1 under a microscope; extracting NNV protein from said cell line; and detecting NNV using ELISA.
- 27. A method for detecting NNV in an immortal cell line comprising:
fixing said cell line according to claim 1 in formalin; adding a mouse anti-NNV antibody serum to the cell line; and staining said cell line with flouroscein isothiocynate (FITC) conjugated goat anti-mouse antibody.
- 28. An anti-NNV antibody comprising:
an anti-NNV serum which is produced by administering an effective amount of NNV which is purified according to claim 21 to a suitable animal to stimulate the immunoresponse of said animal.
- 29. The anti-NNV antibody according to claim 28, wherein said antibody is a monoclonal antibody.
- 30. A method for preparing an anti-NNV antibody comprising:
injecting an effective amount of NNV which is purified according to claim 21 to a suitable animal to stimulate an immunoresponse; and collecting and purifying a serum from said animal.
- 31. A vaccine for protecting fish against NNV infection comprising:
an immunogenically effective amount of killed NNV which is purified according to claim 21.
- 32. The vaccine according to claim 31, further comprising one or more materials selected from the group consisting of adjuvants, plasticizers, pharmaceutical excipients, carriers, diluents, binders, lubricants, glidants, and aesthetic compounds.
- 33. The vaccine according to claim 31, wherein said vaccine is orally administered.
- 34. The vaccine according to claim 33, wherein said orally administered vaccine further comprises an enteric coating, and wherein said enteric coating is impervious to dissolution in the stomachs of fish.
- 35. The vaccine according to claim 31, wherein said vaccine is provided by injection.
- 36. A method for protecting fish against NNV infection comprising:
providing a vaccine produced according to claim 31 to a fish.
RELATED APPLICATION
[0001] This application claims the priority of U.S. Provisional Application No. 60/110,699, filed on Dec. 3, 1998, which is incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60110699 |
Dec 1998 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09450696 |
Nov 1999 |
US |
Child |
09998212 |
Dec 2001 |
US |