Literature DB >> 7541229

(Patho)physiologic pathways to drug targeting: artificial viral envelopes.

H Schreier1, M Ausborn, S Günther, V Weissig, R Chander.   

Abstract

The goal of this study was to exploit molecular recognition of cell surface receptors by viral surface glycoproteins as a means for the selective intracellular delivery of macromolecules. To accomplish this, artificial viral envelopes (AVE) resembling the human immunodeficiency virus-1 (HIV-1) were designed as a model system. Recombinant HIV-1 surface glycoprotein gp160 (HIV-1 rgp160) was inserted in the artificial envelope by a two-step detergent dialysis process. The artificial HIV-1 envelope recognized the CD4 cell surface receptor. FITC-dextran and ricin A were employed as model macromolecules as they cannot passively diffuse across cell membranes. Selective transfer of FITC-dextran encapsulated in HIV-1 rgp160 AVE into a CD4-positive cell line (REX-1B) versus a CD4-negative cell line (KG-1) was demonstrated. Ricin A at concentrations as low as 2 ng/ml arrested cell growth of CD4-positive MOLT-4 cells, whereas 8 ng/ml ricin A in solution had no effect on cell growth. The arrest of cell growth was reverted in the presence of excess anti-gp120 monoclonal antibody. Naked envelopes (without HIV-1 rgp160 inserted) were also found to interact with cells and transfer material, although less efficiently and in a non-specific manner. Viral mimicry using AVE may be a means for targeted intracellular delivery of peptides, proteins, enzymes, toxins, oligodeoxynucleotides, gene constructs, and other non-diffusive, labile or toxic macromolecules.

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Year:  1995        PMID: 7541229     DOI: 10.1002/jmr.300080110

Source DB:  PubMed          Journal:  J Mol Recognit        ISSN: 0952-3499            Impact factor:   2.137


  2 in total

1.  Nuclear transport of oligonucleotides in HepG2-cells mediated by protamine sulfate and negatively charged liposomes.

Authors:  C Welz; W Neuhuber; H Schreier; M Metzler; R Repp; W Rascher; A Fahr
Journal:  Pharm Res       Date:  2000-10       Impact factor: 4.200

2.  In vitro correction of cystic fibrosis epithelial cell lines by small fragment homologous replacement (SFHR) technique.

Authors:  Federica Sangiuolo; Emanuela Bruscia; Annalucia Serafino; Anna Maria Nardone; Emanuela Bonifazi; Monica Lais; Dieter C Gruenert; Giuseppe Novelli
Journal:  BMC Med Genet       Date:  2002-09-23       Impact factor: 2.103

  2 in total

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