白文静, 郭蓉, 熊淋, 朱冷静, 李嘉欣, 王雅施, 李曼, 何勤. 膜仿生纳米载体在肺部疾病靶向治疗中应用研究进展J. 药学学报, 2024, 59(10): 2730-2740. DOI: 10.16438/j.0513-4870.2023-1205
引用本文: 白文静, 郭蓉, 熊淋, 朱冷静, 李嘉欣, 王雅施, 李曼, 何勤. 膜仿生纳米载体在肺部疾病靶向治疗中应用研究进展J. 药学学报, 2024, 59(10): 2730-2740. DOI: 10.16438/j.0513-4870.2023-1205
BAI Wen-jing, GUO Rong, XIONG Lin, ZHU Leng-jing, LI Jia-xin, WANG Ya-shi, LI Man, HE Qin. Research progress on the application of membrane biomimetic nanocarriers in targeted therapy of lung diseasesJ. Acta Pharmaceutica Sinica, 2024, 59(10): 2730-2740. DOI: 10.16438/j.0513-4870.2023-1205
Citation: BAI Wen-jing, GUO Rong, XIONG Lin, ZHU Leng-jing, LI Jia-xin, WANG Ya-shi, LI Man, HE Qin. Research progress on the application of membrane biomimetic nanocarriers in targeted therapy of lung diseasesJ. Acta Pharmaceutica Sinica, 2024, 59(10): 2730-2740. DOI: 10.16438/j.0513-4870.2023-1205

膜仿生纳米载体在肺部疾病靶向治疗中应用研究进展

Research progress on the application of membrane biomimetic nanocarriers in targeted therapy of lung diseases

  • 摘要: 肺部疾病是人类健康的主要威胁之一, 目前针对肺部疾病的临床治疗药物普遍存在肺部递送效率低、清除速率快及毒副作用明显等问题。近年来, 膜仿生纳米载体受到越来越多的关注, 因其具有靶向性高、循环时间长、生物相容性好和免疫逃逸能力强等优势, 已成为肺部疾病靶向治疗的一大研究热点。本文综述了膜仿生纳米粒的主要制备方法、不同细胞来源的膜仿生纳米载体的特点及其在肺部疾病靶向治疗中的应用; 此外, 结合不同膜的性质特点分别讨论其缺点, 并讨论当前的技术局限性及未来的展望, 为膜仿生纳米载体的设计及其在肺部疾病治疗中的潜在应用提供参考。

     

    Abstract: Pulmonary disease is one of the major threats to human health. However, the current clinical treatment drugs for lung diseases generally have problems such as low lung delivery efficiency, fast clearance rate and obvious toxic side effects. Recently, membrane biomimetic nanocarriers have attracted more and more attention. Due to their advantages of high targeting, long cycle time, good biocompatibility and strong immune escape ability, membrane biomimetic nanocarriers have become a major research hotspot in targeted therapy of lung diseases. In this review, we discuss the main preparation methods of membrane biomimetic nanoparticles, the characteristics of membrane biomimetic nanocarriers from different cell sources and their application in the targeted therapy of lung diseases. At the same time, according to the characteristics of different membranes, the shortcomings, current technical limitations and future prospects are discussed. This review is expected to provide references for the design of membrane biomimetic nanocarriers and their potential applications in the treatment of lung diseases.

     

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