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The Smart Drug Delivery System and Its Clinical Potential

机译:智能药物输送系统及其临床潜力

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With the unprecedented progresses of biomedical nanotechnology during the past few decades, conventional drug delivery systems (DDSs) have been involved into smart DDSs with stimuli-responsive characteristics. Benefiting from the response to specific internal or external triggers, those well-defined nanoplatforms can increase the drug targeting efficacy, in the meantime, reduce side effects/toxicities of payloads, which are key factors for improving patient compliance. In academic field, variety of smart DDSs have been abundantly demonstrated for various intriguing systems, such as stimuli-responsive polymeric nanoparticles, liposomes, metals/metal oxides, and exosomes. However, these nanoplatforms are lack of standardized manufacturing method, toxicity assessment experience, and clear relevance between the pre-clinical and clinical studies, resulting in the huge difficulties to obtain regulatory and ethics approval. Therefore, such relatively complex stimulus-sensitive nano-DDSs are not currently approved for clinical use. In this review, we highlight the recent advances of smart nanoplatforms for targeting drug delivery. Furthermore, the clinical translation obstacles faced by these smart nanoplatforms have been reviewed and discussed. We also present the future directions and perspectives of stimuli-sensitive DDS in clinical applications.
机译:随着过去几十年来生物医学纳米技术的空前发展,传统的药物递送系统(DDS)已被纳入具有刺激响应特性的智能DDS中。受益于对特定内部或外部触发因素的响应,那些定义明确的纳米平台可以提高药物靶向功效,同时减少有效载荷的副作用/毒性,这是改善患者依从性的关键因素。在学术领域,对于各种有趣的系统,例如刺激响应性聚合物纳米颗粒,脂质体,金属/金属氧化物和外泌体,已经广泛证明了各种智能DDS。然而,这些纳米平台缺乏标准化的制造方法,毒性评估经验以及临床前和临床研究之间的明确关联,导致获得监管和伦理学批准的巨大困难。因此,这种相对复杂的刺激敏感的纳米DDS目前未被批准用于临床。在这篇综述中,我们重点介绍了靶向药物递送的智能纳米平台的最新进展。此外,已经审查和讨论了这些智能纳米平台面临的临床翻译障碍。我们还介绍了在临床应用中刺激敏感的DDS的未来方向和前景。

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