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The metabolic conversion of nucleoside analogues into their triphosphates often proceeds insufficiently. Rate-limitations can be at the mono-, but also at the di- and triphosphorylation steps. We developed a nucleoside triphosphate (NTP) delivery system (TriPPPro-approach). In this approach, NTPs are masked by two bioreversible units at the γ-phosphate. Using a procedure involving H-phosphonate chemistry, a series of derivatives bearing approved, as well as potentially antivirally active, nucleoside analogues was synthesized. The enzyme-triggered delivery of NTPs was demonstrated by pig liver esterase, in human T-lymphocyte cell extracts and by a polymerase chain reaction using a prodrug of thymidine triphosphate. The TriPPPro-compounds of some HIV-inactive nucleoside analogues showed marked anti-HIV activity. For cellular uptake studies, a fluorescent TriPPPro-compound was prepared that delivered the triphosphorylated metabolite to intact CEM cells.
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Tristan Gollnest
Universität Hamburg
Thiago Dinis de Oliveira
Universität Hamburg
Anna Rath
Hospital of the Brothers of St. John of God
Angewandte Chemie International Edition
KU Leuven
Universität Hamburg
Rega Institute for Medical Research
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Gollnest et al. (Wed,) studied this question.
synapsesocial.com/papers/6a130cf106ed52b5c2c0fd68 — DOI: https://doi.org/10.1002/anie.201511808