吕风梅, 梁会敏, 随力, 刘哲鹏*. 细胞穿膜肽修饰的缩宫素脂质体的制备及经鼻入脑的靶向性研究J. 药学学报, 2022,57(2): 500-506. doi: 10.16438/j.0513-4870.2021-0856
引用本文: 吕风梅, 梁会敏, 随力, 刘哲鹏*. 细胞穿膜肽修饰的缩宫素脂质体的制备及经鼻入脑的靶向性研究J. 药学学报, 2022,57(2): 500-506. doi: 10.16438/j.0513-4870.2021-0856
LÜ Feng-mei, LIANG Hui-min, SUI Li, LIU Zhe-peng*. Preparation of oxytocin liposomes modified by cell penetrating peptides and evaluation on brain targeting efficiency via intranasal deliveryJ. Acta Pharmaceutica Sinica, 2022,57(2): 500-506. doi: 10.16438/j.0513-4870.2021-0856
Citation: LÜ Feng-mei, LIANG Hui-min, SUI Li, LIU Zhe-peng*. Preparation of oxytocin liposomes modified by cell penetrating peptides and evaluation on brain targeting efficiency via intranasal deliveryJ. Acta Pharmaceutica Sinica, 2022,57(2): 500-506. doi: 10.16438/j.0513-4870.2021-0856

细胞穿膜肽修饰的缩宫素脂质体的制备及经鼻入脑的靶向性研究

Preparation of oxytocin liposomes modified by cell penetrating peptides and evaluation on brain targeting efficiency via intranasal delivery

  • 摘要: 以逆向蒸发法制备脂质体(liposomes,LPs)包载水溶性多肽药物缩宫素(oxytocin,OT)以制备缩宫素脂质体(OT@LPs),并以阳离子型细胞膜穿透性寡肽-八聚精氨酸(arginine octamer,R8)进行表面修饰得细胞穿膜肽R8修饰的缩宫素脂质体(OT@LPs-R8)以赋予脂质体黏膜黏附性,并初步评价其鼻腔给药后脑内递药特性。结果表明,OT@LPs-R8形态圆整,粒径分布在110.2±7.3 nm,表面电位高达+18 mV,载药量为(62.17±1.88)%,包封率为(5.85±0.72)%,在鼻黏液中稳定,且对鼻黏膜无刺激性,鼻腔给药后可显著延长滞留性,增强脑内分布。动物实验符合复旦大学实验动物科学部关于动物实验伦理的规定,并在通过复旦大学动物伦理委员会审查后进行。本研究表明,鼻腔给予OT@LPs-R8能够促进缩宫素由鼻直接入脑,有望成为向脑内递送缩宫素的新型载体。

     

    Abstract: The water-soluble polypeptide drug oxytocin was encapsulated in liposomes by reverse-phase evaporation vesicle method to obtain oxytocin loaded liposomes (OT@LPs) which was further modified with cationic cell penetrating peptide-arginine octamer (R8) to get R8 modified oxytocin loaded liposomes (OT@LPs-R8) which showed enhanced mucoadhesive. The brain targeting efficiency was evaluated preliminarily after nasal administration. OT@LPs-R8 showed a round shape with a particle size distribution of 110.2±7.3 nm, a surface potential as high as +18 mV, a drug loading (62.17±1.88)%, an encapsulation rate (5.85±0.72)%, and stood stable in nasal mucus. After nasal administration, it could significantly prolong the retention and enhance the distribution in the brain with no irritation to the nasal mucosa. The animal experiment in line with the regulations of the Department of Laboratory Animal Science of Fudan University on the ethics of animal experiments had been carried out after passing the review of the Animal Ethics Committee of Fudan University. The results showed nasal administration of OT@LPs-R8 could promote oxytocin directly into the brain from the nose which expected to become a new carrier for delivery of oxytocin to the brain.

     

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