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载有去辛酰化生长素释放肽的聚合物囊泡,用于将治疗剂和成像剂递送至脑组织中。

Polymersomes conjugated with des-octanoyl ghrelin for the delivery of therapeutic and imaging agents into brain tissues.

机构信息

Institute of Biomedical Engineering, College of Medicine and College of Engineering, National Taiwan University, Taipei, Taiwan; Biomedical Technology and Device Research Labs, Industrial Technology Research Institute, Hsinchu, Taiwan.

Institute of Biomedical Engineering, College of Medicine and College of Engineering, National Taiwan University, Taipei, Taiwan.

出版信息

Biomaterials. 2014 Feb;35(6):2051-65. doi: 10.1016/j.biomaterials.2013.11.051. Epub 2013 Dec 7.

Abstract

The effective protection of the blood-brain barrier (BBB) from tight junctions and efflux transport systems ultimately results in the limited entry of 95% of drug/gene candidates, which are potentially beneficial for central nervous system (CNS) diseases. In order to enhance the brain-specific delivery, in this study we developed a targeting carrier system, which consists of poly(carboxyl ethylene glycol-g-glutamate)-co-poly(distearin-g-glutamate) (CPEGGM-PDSGM) polymersomes with the conjugation of des-octanoyl ghrelin. Des-octanoyl ghrelin across the BBB was reported to be unidirectional (blood-to-brain direction). However, there is no report about the conjugation of des-octanoyl ghrelin to a drug carrier system to confer the BBB targeting property through des-octanoyl ghrelin binding sites mediated endocytosis. To qualitatively and quantitatively investigate this carrier's properties, coumarin 6, Cy5.5 and met-enkephalin were individually encapsulated in these polymersomes. The experimental results showed that the cellular uptake was significantly higher for des-octanoyl ghrelin-conjugated polymersomes (GPs) than unconjugated polymersomes when co-incubated with the BBB cells. In addition, an enhanced accumulation in brain together with a reduced accumulation in liver and spleen was observed in animal study, indicating better brain selectivity for the GPs. In a hot-plate test, a significant inhibition of nociceptive response could be achieved for an intravenous injection of GPs encapsulated with met-enkephalin. The overall results demonstrated that GPs own a great potential for targeting delivery of drug across the BBB to treat CNS diseases.

摘要

有效的保护血脑屏障(BBB)免受紧密连接和外排转运系统的影响,最终导致 95%的药物/基因候选物的进入受限,这些候选物对中枢神经系统(CNS)疾病具有潜在的益处。为了增强脑特异性递药,本研究开发了一种靶向载体系统,该系统由聚(羧乙基乙二醇-谷氨酸)-共-聚(二硬脂酰基谷氨酸)(CPEGGM-PDSGM)聚合物囊泡与去辛酰化生长激素释放肽(des-octanoyl ghrelin)的缀合组成。已报道去辛酰化生长激素释放肽可单向(从血液到大脑方向)穿过血脑屏障。然而,目前尚无关于将去辛酰化生长激素缀合到药物载体系统上,通过去辛酰化生长激素结合位点介导的内吞作用赋予 BBB 靶向特性的报道。为了定性和定量研究该载体的性质,将香豆素 6、Cy5.5 和 Met-脑啡肽分别包封在这些聚合物囊泡中。实验结果表明,当与 BBB 细胞共孵育时,与未缀合的聚合物囊泡相比,去辛酰化生长激素缀合的聚合物囊泡(GPs)的细胞摄取明显更高。此外,在动物研究中观察到脑内的积累增加,而肝和脾中的积累减少,表明 GPs 具有更好的脑选择性。在热板试验中,静脉注射包封 Met-脑啡肽的 GPs 可显著抑制痛觉反应。总的来说,这些结果表明 GPs 具有穿过 BBB 靶向递药治疗 CNS 疾病的巨大潜力。

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