Paclitaxel: What has been done and the challenges remain ahead

纳米载体 紫杉醇 药代动力学 医学 药品 药物输送 固体脂质纳米粒 临床试验 药理学 纳米技术 重症监护医学 癌症 材料科学 内科学
作者
Ezequiel Bernabeu,Maximiliano Cagel,Eduardo Lagomarsino,Marcela A. Morettón,Diego A. Chiappetta
出处
期刊:International Journal of Pharmaceutics [Elsevier BV]
卷期号:526 (1-2): 474-495 被引量:348
标识
DOI:10.1016/j.ijpharm.2017.05.016
摘要

In recent years, the nanotechnology has offered researchers the opportunity to solve the problems caused by the vehicle of the standard and first formulation of paclitaxel (Taxol®), while maximizing the proven antineoplastic activity of the drug against many solid tumors. Hence, different types of nanocarriers have been employed to improve the efficacy, safety, physicochemical properties and pharmacokinetic/pharmacodynamic profile of this drug. To date, paclitaxel is the unique drug that is marketed in three different nanoplatforms for its parenteral delivery: polymeric nanoparticles (Abraxane®), liposomes (Lipusu®), and polymeric micelles (Genexol®, Nanoxel® and Paclical®). Indeed, a fourth nanocarrier might be available soon, because phase III studies of Opaxio™, a polymeric-conjugated, are near completion. Furthermore, other several nanoformulations are currently in various stages of clinical trials. Therefore, it is only through the critical analysis of clinical evidence from these studies that we can get a more concrete idea of what has been achieved with pharmaceutical nanotechnology so far. This review attempts to summarize current information available regarding the clinical status and the physicochemical characteristic of different nanocarriers for paclitaxel delivery in cancer therapy. We present an overview of the preclinical and clinical data of these systems including their pharmacokinetics, dose and administration, adverse events and clinical efficacy.

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