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Immunological memory for HIV-1 induced in rabbits by immune poly(A)+ RNA
1Departamento de Morfologia, Faculdade de Odontologia de Ribeirão Preto, Universidade de São Paulo, Brasil.
New Zealand rabbits were used to demonstrate the in vitro and in vivo transfer of reactivity, including immunological memory, to a synthetic peptide corresponding to residues 586-606 of the gp-160 protein of human immunodeficiency virus (HIV-1). The transfer were mediated by immune poly (A)+ RNA from lymphoid organs (spleen and mesenteric nodules) harvested after immunization of a sheep with the peptide (8 subcutaneous injections plus glucan and complete Freund's adjuvant using a total of 1750 micrograms peptide). Immunological reactivity was detected by the leukocyte adherence inhibition (LAI) test for cellular immunity. A dose of 150 micrograms poly(A)- RNA ml-1 10(7) leukocytes-1 or 2.0 micrograms poly(A)+ RNA ml-1 10(7) leukocytes-1 was used for in vitro transfer. For in vivo transfer the recipient rabbits received 3,000 micrograms poly(A)- RNA or 20 micrograms poly(A)+ RNA. The mean non-adherence index (NAI) obtained in vitro was 10 +/- 7 for leukocytes treated with poly(A)-RNA and 60 +/- 10 leukocytes treated with poly(A)+ RNA. The poly(A)+ RNA fraction induced a primary-like response and memory cells in vivo. The poly(A)-RNA fraction had no effect. Since sheep are refractory to, and rabbits are sensitive to HIV-1, we suggest the use of this animal model for testing the immunomodulating effect of anti-HIV-1 immune poly(A)+ RNA.
New Zealand rabbits were used to demonstrate the in vitro and in vivo transfer of reactivity, including immunological memory, to a synthetic peptide corresponding to residues 586-606 of the gp-160 protein of human immunodeficiency virus (HIV-1). The transfer were mediated by immune poly (A)+ RNA from lymphoid organs (spleen and mesenteric nodules) harvested after immunization of a sheep with the peptide (8 subcutaneous injections plus glucan and complete Freund's adjuvant using a total of 1750 micrograms peptide). Immunological reactivity was detected by the leukocyte adherence inhibition (LAI) test for cellular immunity. A dose of 150 micrograms poly(A)- RNA ml-1 10(7) leukocytes-1 or 2.0 micrograms poly(A)+ RNA ml-1 10(7) leukocytes-1 was used for in vitro transfer. For in vivo transfer the recipient rabbits received 3,000 micrograms poly(A)- RNA or 20 micrograms poly(A)+ RNA. The mean non-adherence index (NAI) obtained in vitro was 10 +/- 7 for leukocytes treated with poly(A)-RNA and 60 +/- 10 leukocytes treated with poly(A)+ RNA. The poly(A)+ RNA fraction induced a primary-like response and memory cells in vivo. The poly(A)-RNA fraction had no effect. Since sheep are refractory to, and rabbits are sensitive to HIV-1, we suggest the use of this animal model for testing the immunomodulating effect of anti-HIV-1 immune poly(A)+ RNA.