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Recent advances in dendrimer-based nanovectors for tumor-targeted drug and gene delivery

机译:基于树状聚合物的纳米载体用于肿瘤靶向药物和基因递送的最新进展

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Advances in the application of nanotechnology in medicine have given rise to multifunctional smart nanocarriers that can be engineered with tunable physicochemical characteristics to deliver one or more therapeutic agent(s) safely and selectively to cancer cells, including intracellular organelle-specific targeting. Dendrimers having properties resembling biomolecules, with well-defined 3D nanopolymeric architectures, are emerging as a highly attractive class of drug and gene delivery vector. The presence of numerous peripheral functional groups on hyperbranched dendrimers affords efficient conjugation of targeting ligands and biomarkers that can recognize and bind to receptors overexpressed on cancer cells for tumor-cell-specific delivery. The present review compiles the recent advances in dendrimer-mediated drug and gene delivery to tumors by passive and active targeting principles with illustrative examples.
机译:纳米技术在医学中的应用进展产生了多功能智能纳米载体,可以对其进行设计,使其具有可调节的理化特性,以安全,选择性地将一种或多种治疗剂递送至癌细胞,包括细胞内细胞器特异性靶向。具有与生物分子相似的特性的树状聚合物,具有定义明确的3D纳米聚合物结构,正成为一类非常有吸引力的药物和基因传递载体。超支化树状聚合物上大量外围功能基团的存在提供了靶向配体和生物标记物的有效缀合,这些配体可以识别并结合在癌细胞上过表达的受体以用于肿瘤细胞特异性递送。本文通过被动和主动靶向原理,结合示例性实例,汇总了树状聚合物介导的药物和基因向肿瘤的递送方面的最新进展。

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