4.6 Article

Multicompartment vectors as novel drug delivery systems: selective activation of Tγδ lymphocytes after zoledronic acid delivery

期刊

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.nano.2010.10.003

关键词

Nanovectors; Polyelectrolyte-niosome complexes; Zoledronic acid; T gamma delta lymphocytes; HIV therapy

资金

  1. MIUR (Italian Department for Education and Scientific Research)
  2. FILAS

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Multicompartment nanoscopic carriers can be easily assembled by inducing the aggregation of anionic hybrid niosomes by means of cationic biocompatible polyelectrolytes. The resulting vesicle clusters, whose size and overall net charge can be easily controlled by varying the polyelectrolyte-to-particle charge ratio, show an interesting potential for multidrug delivery. In this article we provide strong evidence for their effective use in vitro as multicompartment vectors selectively directed toward monocyte/macrophage cells, showing that the monocyte/macrophage-mediated activation of T gamma delta lymphocytes induced by zoledronic acid is enhanced by a factor 10(3) when the zoledronic acid is intracellularly delivered through these carriers. Furthermore, the multicompartment epsilon-polylysine niosome clusters, with their intrinsic selectivity toward macrophages, appear particularly suitable for implementing therapeutic strategies against chronically infected macrophages. From the Clinical Editor: epsilon-polylysine niosome clusters, with their intrinsic selectivity toward macrophages, offer the potential for multidrug delivery. The effectiveness of aminobisphosphonate zoledronate is demonstrated to enhance the recruitment of T gamma delta lymphocytes by macrophages by 2 orders of magnitude, suggesting a new therapeutic strategy for addressing pathologies featuring chronically infected macrophages. (C) 2011 Elsevier Inc. All rights reserved.

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