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Peptide sequences mediating tropism to intact blood-brain barrier: An in vivo biodistribution study using phage display

机译:介导嗜性至完整血脑屏障的肽序列:使用噬菌体展示的体内生物分布研究

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Peptide motifs that demonstrate tropism for the blood brain barrier (BBB) are of real translational value in developing innovative delivery strategies for biological brain targeted therapies. In vivo peptide-phage display affords peptide selection against the full complement of biological markers within the correct cellular macro- and micro-environments. Here a stringent in vivo biopanning protocol was employed in the rat aimed at identifying cyclic 7-mer peptide motifs that mediate tropism to brain microvasculature. Five rounds of biopanning identified 349 unique peptide motifs in the brain tissue gray matter compartment (microvasculature and parenchyma). While in general no consensus was evident linking peptide physico-chemical properties and brain tropism, peptides bearing c-SxTSSTx-c or c-xxxSSTx-c motifs were found to be present in high abundance. Based on amino acid frequency distribution of the 349 unique peptides sequences a theoretical 'idealized' peptide pattern, c-PP(S/P)SSST-c, could be derived. For the most abundant experimental peptide sequence found in brain tissue, c-SYTSSTM-c, an in vivo pharmacokinetic and whole body tissue biodistribution study was performed. Based upon tissue exposure data (i.e. tissue AUC(0-infinity)) the sequence c-SYTSSTM-c efficiently retargeted phage virions to the brain providing an approximate 5-fold greater (P 0.05) accumulation in brain over control phage; in all other organs no significant (P 0.05) difference in tissue tropism between c-SYTSSTM-c and control phages were evident. This peptide and more generally the peptide motifs, -SxTSSTx- or -xxxSSTx-, warrant further investigation as agents mediating sequence-dependent tropism to brain microvasculature potentially able to deliver biologic cargo to the CNS.
机译:证明血脑屏障(BBB)趋向性的肽基序在开发生物脑靶向疗法的创新递送策略中具有真正的转化价值。体内肽噬菌体展示可针对正确的细胞宏观和微观环境中的生物标记物的完整互补物进行肽选择。在这里,在大鼠中采用了严格的体内生物淘选方案,旨在鉴定介导向脑微脉管系统定向性的环状7聚体肽基序。五轮生物淘洗确定了脑组织灰质区室(微脉管系统和实质)中的349个独特的肽基序。虽然通常没有明显的共识将肽的理化性质与脑嗜性联系起来,但是发现带有c-SxTSSTx-c或c-xxxSSTx-c主题的肽存在量很高。根据349个独特肽序列的氨基酸频率分布,可以得出理论上的“理想化”肽图谱c-PP(S / P)SSST-c。对于脑组织中发现的最丰富的实验性肽序列c-SYTSSTM-c,进行了体内药代动力学和全身组织生物分布研究。根据组织暴露数据(即组织AUC(0-无穷大)),序列c-SYTSSTM-c有效地将噬菌体病毒粒子重新定向到了大脑,与对照噬菌体相比,在大脑中的蓄积增加了大约5倍(P <0.05);在所有其他器官中,c-SYTSSTM-c与对照噬菌体之间在组织嗜性方面无明显差异(P> 0.05)。该肽以及更普遍的肽基序-SxTSSTx-或-xxxSSTx-作为介导依赖于脑微脉管系统的序列依赖性嗜性的药物,可能需要进一步研究,从而有可能将生物货物递送至CNS。

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