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1.
J Virol Methods ; 127(1): 40-5, 2005 Jul.
Article in English | MEDLINE | ID: mdl-15893564

ABSTRACT

In this report, we present a fast, reliable and easy to perform method to quantify infectious titers of recombinant AAV-2 (rAAV-2) particles using the LightCycler technology, which is independent from the therapeutic transgene and without the presence of a marker gene. The method is based on the life cycle of AAV-2: after infection of the host cell, the single stranded (ss) AAV-2 genome is converted into a double stranded (ds) form. Following infection with rAAV-2, HeLa cells were lysed and ssDNA of transcriptionally inactive particles were efficiently removed by ssDNA-specific S1 nuclease digestion. The remaining viral dsDNA can be quantified by quantitative real-time PCR (qPCR). For validation of the new method, rAAV-2 preparations were analyzed by two other standard methods for titration of infectious particles in parallel, i.e. the infectious center assay (ICA) as well as flow cytometry using GFP as a marker. Comparing the infectious titers of 40 different AAV-2 fractions assessed by qPCR with the titers determined by FACS analysis a significant correlation (r=0.87, p<0.001) with a mean ratio of the titers assessed by qPCR and FACS of 1.92 (S.D.+/-1.59) was found. Further, the titers of seven rAAV-2 fractions using qPCR and ICA covering 5 log ranges were compared and a significant correlation was found between the results (r=0.80, p<0.001) with a mean ratio of 3.38 (S.D.+/-1.79), respectively.


Subject(s)
Dependovirus/isolation & purification , Genetic Vectors/isolation & purification , Polymerase Chain Reaction/methods , Cell Line , DNA, Single-Stranded/analysis , DNA, Single-Stranded/metabolism , DNA, Viral/analysis , DNA, Viral/metabolism , Dependovirus/genetics , Dependovirus/metabolism , Genetic Vectors/genetics , Humans , Polymerase Chain Reaction/standards , Reproducibility of Results , Single-Strand Specific DNA and RNA Endonucleases , Virus Replication
2.
Virology ; 308(1): 64-73, 2003 Mar 30.
Article in English | MEDLINE | ID: mdl-12706090

ABSTRACT

Old world hantaviruses, causing hemorrhagic fever with renal syndrome (HFRS), still present a public health problem in Asia and Eastern Europe. The majority of cases has been recorded in China. The aim of our study was to generate human recombinant neutralizing antibodies to a hantavirus by phage display technology. To preserve the structural identity of viral protein, the panning procedure was performed on native Hantaan (HTN) (76-118) virus propagated in Vero-E6 cells. In total, five complete human recombinant IgG antibodies were produced in a baculovirus expression system. All of them were able to completely neutralize HTN, and Seoul (SEO) virus in a plaque reduction neutralization test (PRNT). Three of these antibodies could also completely neutralize Dobrava (DOB) virus but not Puumala (PUU) virus. All antibodies bind to Hantaan virus G2 protein localized in the virus envelope. The sequence areas within the HTN (76-118)-G2 protein detected by five selected antibodies were mapped using peptide scans. Two partial epitopes, 916-KVMATIDSF-924 and 954-LVTKDIDFD-963, were recognized, which presumably are of paramount importance for docking of the virus to host cell receptors. A consensus motif 916-KVXATIXSF-924 could be identified by mutational analysis. The neutralizing antibodies to the most widely distributed hantaviruses causing HFRS might be promising candidates for the development of an agent for prevention and treatment of HFRS in patients.


Subject(s)
Antibodies, Viral/immunology , Hantaan virus/immunology , Viral Envelope Proteins/immunology , Amino Acid Sequence , Animals , Antibodies, Viral/biosynthesis , Antibodies, Viral/genetics , Antibody Specificity , Baculoviridae/metabolism , Binding Sites, Antibody/genetics , Chlorocebus aethiops , Consensus Sequence , Epitope Mapping , Epitopes/genetics , Genetic Vectors , Hantaan virus/genetics , Humans , Immunoglobulin G/biosynthesis , Immunoglobulin G/immunology , Molecular Sequence Data , Neutralization Tests , Peptide Library , Recombinant Proteins/immunology , Sequence Alignment , Vero Cells , Viral Envelope Proteins/genetics
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