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作 者:姚岑超 王珩 张大宏[2] YAO Cenchao;WANG Heng;ZHANG Dahong(The Second Clinical Medical College,Zhejiang Chinese Medical University,Hangzhou 310053,China;Department of Urology,Zhejiang Provincial People’s Hospital,Hangzhou 310014,China)
机构地区:[1]浙江中医药大学第二临床医学院,杭州310053 [2]浙江省人民医院泌尿外科,杭州310014
出 处:《中国现代应用药学》2024年第19期2724-2734,共11页Chinese Journal of Modern Applied Pharmacy
摘 要:传统药物的局限和纳米药物的兴起推动了仿生纳米医学的发展,细胞膜纳米技术是仿生纳米医学领域的一种新型技术,它将纳米核心颗粒包裹在所提取的细胞膜中,这种结构保留了源细胞的表面特性,具有靶向运输能力强、血液循环时间长和免疫逃避等优势,因此细胞膜纳米技术在仿生医学领域的应用越来越广泛。目前研究较多的有红细胞膜、白细胞膜、血小板膜、肿瘤细胞膜、干细胞膜以及细菌外膜囊泡等,每种膜都有着自己独特的优势,并且在药物递送、免疫调节、抗肿瘤治疗和疫苗制备等领域都有着较大的发掘潜力。The limitation of traditional drugs and the rise of nano medicines drive the development of bionanomedicine.The technology of cell membrane camflouged nanoparticles is a new type of research in the field of bionanomedicine,it encapsulates the nanocore particles in the extracted cell membrane,this structure retains the surface properties of the source cell,which has the advantages of strong target transport ability,long blood circulation time,and immune evasion.Therefore,the nanotechnology of cell membrane is increasingly used in the medical field.Currently,the most studied ones are erythrocyte membrane,leukocyte membrane,platelet membrane,tumor cell membrane,stem cell membrane,and bacterial outer membrane vesicles.Each membrane has its unique advantages and has a large potential to be explored in areas such as drug delivery,immunomodulation,antitumor therapy,and vaccine preparation.
分 类 号:R945[医药卫生—微生物与生化药学]
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