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Stimuli-responsive chitosan-based nanocarriers for cancer therapy

机译:基于刺激性壳聚糖的纳米载体用于癌症治疗

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摘要

>Introduction: Stimuli-responsive nanocarriers offer unique advantages over the traditional drug delivery systems (DDSs) in terms of targeted drug delivery and on-demand release of cargo drug molecules. Of these, chitosan (CS)-based DDSs offer several advantages such as high compatibility with biological settings. >Methods: In this study, we surveyed the literature in terms of the stimuli-responsive nanocarriers and discussed the most recent advancements in terms of CS-based nanosystems and their applications in cancer therapy and diagnosis. >Results: These advanced DDSs are able to release the entrapped drugs in response to a specific endogenous stimulus (e.g., pH, glutathione concentration or certain enzymes) or exogenous stimulus (e.g., temperature, light, ultrasound, and magnetic field) at the desired time and target site. Dual-responsive nanocarriers by the combination of different stimuli have also been developed as efficient and improved DDSs. Among the stimuli-responsive nanocarriers, CS-based DDSs offer several advantages, including biocompatibility and biodegradability, antibacterial activity, ease of modification and functionalization, and non-immunogenicity. They are as one of the most ideal smart multifunction DDSs. >Conclusion: The CS-based stimuli-responsive multifunctional nanosystems (NSs) offer unique potential for the targeted delivery of anticancer agents and provide great potential for on-demand and controlled-release of anticancer agents in response to diverse external/internal stimuli.
机译:>简介:刺激性纳米载体在靶向药物递送和按需释放药物分子方面,相对于传统药物递送系统(DDS)具有独特的优势。其中,基于壳聚糖(CS)的DDS具有许多优势,例如与生物环境的高度相容性。 >方法:在这项研究中,我们从刺激响应纳米载体的角度对文献进行了调查,并讨论了基于CS的纳米系统及其在癌症治疗和诊断中的应用方面的最新进展。 >结果:这些先进的DDS能够响应特定的内源性刺激(例如pH,谷胱甘肽浓度或某些酶)或外源性刺激(例如温度,光,超声和磁场)在所需的时间和目标位置。通过不同刺激的组合,双响应纳米载体也已被开发为有效和改进的DDS。在刺激响应性纳米载体中,基于CS的DDS具有多种优势,包括生物相容性和生物降解性,抗菌活性,易于修饰和功能化以及非免疫原性。它们是最理想的智能多功能DDS之一。 >结论:基于CS的刺激响应多功能纳米系统(NSs)为靶向抗癌药提供了独特的潜力,并为按需释放和控制释放的抗癌药提供了巨大的潜力,以应对多种变化外部/内部刺激。

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