Engineering nanomedicines using stimuli-responsive biomaterials.

Engineering nanomedicines using stimuli-responsive biomaterials.
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DOI:
10.1016/j.addr.2012.01.003
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发表时间:
2012-08
影响因子:
16.1
通讯作者:
DeSimone, Joseph M.
DeSimone, Joseph M.
中科院分区:
医学1区
文献类型:
--
作者:
Wang, Yapei;Byrne, James D.;Napier, Mary E.;DeSimone, Joseph M.

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设计粒子的能力有可能改变新药物和诊断方法的创造范式。完全控制颗粒特征,如尺寸、形状、机械性能和表面化学,可以实现快速转化并促进美国食品和药物管理局 (FDA) 批准用于治疗癌症、传染病、糖尿病和许多其他重大疾病的颗粒技术。结合自然和人工外部刺激来触发药物释放,可以精确控制给定环境中药物的释放曲线。在本文中,我们研究了几种易于扩展的自上而下的方法,用于制造形状特定的颗粒,利用刺激响应生物材料来控制药物输送。特别关注非润湿模板中的粒子复制 (PRINT®) 技术以及新型触发释放合成和天然聚合物的应用。
The ability to engineer particles has the potential to shift the paradigm in the creation of new medicines and diagnostics. Complete control over particle characteristics, such as size, shape, mechanical property, and surface chemistry, can enable rapid translation and facilitate the US Food and Drug Administration (FDA) approval of particle technologies for the treatment of cancer, infectious diseases, diabetes, and a host of other major illnesses. The incorporation of natural and artificial external stimuli to trigger the release of drugs enables exquisite control over the release profiles of drugs in a given environment. In this article, we examine several readily scalable top-down methods for the fabrication of shape-specific particles that utilize stimuli-responsive biomaterials for controlled drug delivery. Special attention is given to Particle Replication In Nonwetting Templates (PRINT®) technology and the application of novel triggered-release synthetic and natural polymers.
由于异常高的化学治疗载荷,有效的工程PLGA纳米颗粒。
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