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首页> 外文期刊>Pharmaceutics >Nanogel: A Versatile Nano-Delivery System for Biomedical Applications
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Nanogel: A Versatile Nano-Delivery System for Biomedical Applications

机译:Nanogel:用于生物医学应用的多功能纳米输送系统

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摘要

Nanogel-based nanoplatforms have become a tremendously promising system of drug delivery. Nanogels constructed by chemical crosslinking or physical self-assembly exhibit the ability to encapsulate hydrophilic or hydrophobic therapeutics, including but not limited to small-molecule compounds and proteins, DNA/RNA sequences, and even ultrasmall nanoparticles, within their 3D polymer network. The nanosized nature of the carriers endows them with a specific surface area and inner space, increasing the stability of loaded drugs and prolonging their circulation time. Reactions or the cleavage of chemical bonds in the structure of drug-loaded nanogels have been shown to trigger the controlled or sustained drug release. Through the design of specific chemical structures and different methods of production, nanogels can realize diverse responsiveness (temperature-sensitive, pH-sensitive and redox-sensitive), and enable the stimuli-responsive release of drugs in the microenvironments of various diseases. To improve therapeutic outcomes and increase the precision of therapy, nanogels can be modified by specific ligands to achieve active targeting and enhance the drug accumulation in disease sites. Moreover, the biomembrane-camouflaged nanogels exhibit additional intelligent targeted delivery features. Consequently, the targeted delivery of therapeutic agents, as well as the combinational therapy strategy, result in the improved efficacy of disease treatments, though the introduction of a multifunctional nanogel-based drug delivery system.
机译:基于纳米凝胶的纳米纳薄形成是一种极大的吸毒系统。由化学交联或物理自组装构建的纳米凝块表现出封装亲水或疏水治疗剂的能力,包括但不限于其3D聚合物网络内的小分子化合物和蛋白质,DNA / RNA序列,甚至超超纳米颗粒。载体的纳米化性质与特定的表面积和内部空间赋予它们,增加了装载药物的稳定性并延长了它们的循环时间。已经显示出药物纳米凝胶结构中化学键的反应或切割,以引发受控或持续的药物释放。通过设计特定的化学结构和不同的生产方法,纳米凝胶可以实现各种反应性(温度敏感,pH敏感和氧化氢敏感),并使药物在各种疾病的微环境中促进刺激响应释放。为了改善治疗结果并增加治疗的精度,纳米凝胶可以通过特定配体修饰,以实现活性靶向并增强疾病部位的药物积累。此外,生物膜 - 伪装纳米电池表现出额外的智能靶向递送特征。因此,治疗剂的靶向递送以及组合治疗策略,导致疾病治疗的疗效提高,尽管引入了多功能纳米凝胶的药物递送系统。

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