首页> 美国卫生研究院文献>Acta Pharmaceutica Sinica. B >Surface modification of PGP for a neutrophil–nanoparticle co-vehicle to enhance the anti-depressant effect of baicalein
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Surface modification of PGP for a neutrophil–nanoparticle co-vehicle to enhance the anti-depressant effect of baicalein

机译:PGP用于中性粒细胞-纳米颗粒联合载体的表面修饰以增强黄ical素的抗抑郁作用

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摘要

Exploiting cells as vehicles combined with nanoparticles combined with therapy has attracted increasing attention in the world recently. Red blood cells, leukocytes and stem cells have been used for tumor immunotherapy, tissue regeneration and inflammatory disorders, and it is known that neutrophils can accumulate in brain lesions in many brain diseases including depression. N-Acetyl Pro–Gly–Pro (PGP) peptide shows high specific binding affinity to neutrophils through the CXCR2 receptor. In this study, PGP was used to modify baicalein-loaded solid lipid nanoparticles (PGP-SLNs) to facilitate binding to neutrophils in vivo. Brain-targeted delivery to the basolateral amygdala (BLA) was demonstrated by enhanced concentration of baicalein in the BLA. An enhanced anti-depressant effect was observed in vitro and in vivo. The mechanism involved inhibition of apoptosis and a decrease in lactate dehydrogenase release. Behavioral evaluation carried out with rats demonstrated that anti-depression outcomes were achieved. The results indicate that PGP-SLNs decrease immobility time, increase swimming time and climbing time and attenuate locomotion in olfactory-bulbectomized (OB) rats. In conclusion, PGP modification is a strategy for targeting the brain with a cell–nanoparticle delivery system for depression therapy.
机译:利用细胞作为结合纳米颗粒与疗法相结合的载体的方法最近引起了世界的关注。红细胞,白细胞和干细胞已用于肿瘤免疫疗法,组织再生和炎症性疾病,众所周知,嗜中性粒细胞可以在包括抑郁症在内的许多脑部疾病的脑部病变中蓄积。 N-乙酰Pro-Gly-Pro(PGP)肽通过CXCR2受体对嗜中性粒细胞显示出高特异性结合亲和力。在这项研究中,PGP用于修饰黄ba素负载的固体脂质纳米颗粒(PGP-SLNs),以促进在体内与中性粒细胞的结合。黄ical苷在BLA中的浓度增加证明了脑靶向递送至基底外侧杏仁核(BLA)。在体外和体内观察到增强的抗抑郁作用。该机制涉及细胞凋亡的抑制和乳酸脱氢酶释放的减少。对大鼠进行的行为评估表明,已实现抗抑郁效果。结果表明,PGP-SLNs减少了嗅球切除(OB)大鼠的不动时间,增加了游泳时间和攀爬时间并减弱了运动能力。总之,PGP修饰是一种通过细胞-纳米颗粒输送系统靶向大脑的抑郁症治疗策略。

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