Stedman's Medical Dictionary, 27th Edition, Lippincott Williams & Wilkins 2000, www.pdrel.com/pdr/.* |
Theiler, M. and Smith, H.H. (1937), “The effect of prolonged cultivation in vitro upon the pathogenicity of yellow fever virus”, J. Exp. Med. 65:767-786. |
Rice, C.M.; Lenches, E.; Eddy, S.R.; Shin, S.J.; Sheets, R.L. and Strauss, J.H. (1985), “Nucleotide sequence of yellow fever virus; implications for flavivirus gene expession and evolution”. Science 229:726-733. |
Despres, P.; Cahour, A.; Dupuy, A.; Deubel, V.; Bouloy, M. Digoutte, J.P.; Girard, M. 91987), “High genetic stability of the coding region for the structural proteins of yellow fever strain 17D”, J. Gn. Virol. 68:2245-2247. |
Duarte dos Santos, C.N., Post, P.R., Carvalho, R. Ferreira, I.I., Rice, C.M., Galler, R. (1995). Complete nucleotide sequenxe of yellow fever virus vaccine strains 17DD and 17D-213. Virus Research 35:35-41. |
Hahn, C.S.; Dalrympie, J.M.; Strquss, J.H. and Rice, C.M. (1987). “Comparison of the Virulent Asibi strain of yellow fever virus with the 17D vaccine strain derived from it”. Proc. Natl. Acad. Sci. USA 84:2029-2033. |
Rey, F.A.; Heinz F.X.; Mandl, C.; Kunz, C and Harrison, S.C. (1995), “The envelope glycoprotein from tick-borne encephalitis vius at 2A resolution”. Nature 375:291-298. |
Mandl, M.W.; Guirakhoo, F.; Holzmann, H.; Heinz, F.X. and Kunz, C. (1989). “Antigenic structure of the flavivirus envelope E protein at the molecular level using tick-borne encephalitis virus as a model”. J. Virol. 63:564-571. |
Lepiniec, L.; Dalgamo, L.; Huong, V.T.Q.; Monath, T.P.; Digoutte, J.P. and Deubel, V. 91994). “Geographic distribution and evolution of yellow fever viruses based on direct sequencing of genomic DNA fragments”, J. Gn. Virol. 75-417-423. |
Lobigs, M.; Usha, R.; Nesterowicz, A.; Marschall, I.D.; Weir, R.C. and Dalgamo, L. 9199). “host cell selection of Murray valley encephalitis virus variants altered at an RGD sequence in the envelope protein and in mouse neurovirulence”. Virology. 176:587-595. |
Sumiyoshi, H.; Hoke, C.H. and Trent, D.W. 91992). “Infectious Japanese encephalitis virus RNA can be synthesized from in vitro-ligated cDNA templates”. J. Virol. 66:54255431. |
Sumiyoshi, H.; Tignor, G.H., and Shope, R.E. (1995). “Characterization of a highly attenuated Japanese encephalitis virus generated from molecularly coned cDNA”. J. Infect. Dis. 171-1144-1151. |
Holland, J.; spindler, K.; Horodyski, H.; Grabau, e.; Nichol, S. and VandePol, S. (1982), “Rapid eveolution of RNA genomes”. Science. 215:1577-1585. |
Racaniello, V.R.; and Baltimore, d. (1981)I. “Cloned Poliovirus complementary DNA is infectious in mammalian cells”. Science. 214:916-919. |
Melton, D.A.; Krieg, P.A.; Rabagliati, M.R.; Maniatis, T.; Zinn, K. and Green, M.R. 91984). Efficient in vitro synthesis of biologically active RNA and RNA hybridizatrion probes from plasmids containing a bacteriophage SP6 promoter. Nucl. Acids. Res. 12:7035-2056. |
Lai, C.J.; Zhao, B.; Hori, H. and Bray, M. (1991). “Infectious RNA transcribed from stably cloned full-length cDNA of dengue type 4 virus”. Proc. Natl. Acad. Sci. USA 88:5139-5143. |
Rice, C.M.; Grakoui, A.; Galler, R. and Chambers, T. (1989). “Transcription of infectious yelow fever RNA from full-length cDNA templates produced by in vitro ligation”. The New Biologist. 1:285-296. |
Marchevsky, R.S.; Mariano, J.; Ferreira, V.S.; Almeida, E.; Cerqueira, J.J.; Carvalho, R.; Pissumo, J.W., Travassos da Rosa, A.P.A.A Simoes, M.C.; Santos, C.N.D.; Ferreira, I.I.; Mulyaert, I.R.; Mann, G.F.; Rice, C.M. and Galler, R. 91995). “Phenotypic analysis of y ellow fever virus derived from complementary DNA”. Am. J. Trop. Med. Hyg. 52(1):75-80. |
Schoub, B.D.; Dommann, C.J.; Johnson, S.; Downie, C. and Patel, P.L. (1990). “Encephalitis in a 13-year old boy following 17D YF vaccine”. J. Infection 21:105-106. |
Merlo, C., Steffen, R.; Landis, T., Tsai, T. and Karabatsos, N. 91993). “Possible association of encephalitis and a 17D YF vaccination in a 29-year old traveller”. Vaccine. 11:691. |
Fox, J.P.; Lennette, E.H.; Manso, c. and Souza Aguiar, J.r. 91942). Encephalitis in man following vaccination with yellow fever 17d virus. Am. J.Hyg,. 36:17-142. |
Fox, J.P.; and Penna, H.A. 91943). Behavior of 17D yellow fever virus in Rhesus monkeys. Relation to substrain, dose and neural of extraneural inoculation.: Am.J. Hyg. 38:52-172. |
Post, P.R.; Duare dos Santos, C.N.; Carvalho, R.; Cruz, A.C.R.; Rice, c.M. and Galler, R. (1992). “Heterogeneity in envelope protein sequence and N-linked glycosylation among yellow fever vaccine strains”. Virology. 188:160-167. |
Konarska, M.M.; Padgett, R.A., Sharp, P.A. 91984). “Recognition of cap structure in splicing in vitro of mRNA precursors”. Cell. 38:731-736. |
Rice, C.M.; Lenches, E.M.; Eddy, S.r.; Shin, S.J.; sheets, R.L. and Strauss, J.H. 91985). “Nucleotide sequence of yellow fever virus: implications for flavivirus gene expression and evolution”. Science. 229-726-633. |