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具有不同嵌段排列的黏液穿透星形赖氨酸/肌氨酸多肽的酶促降解和质粒 DNA 复合的系统研究。

Systematic Study of Enzymatic Degradation and Plasmid DNA Complexation of Mucus Penetrating Star-Shaped Lysine/Sarcosine Polypept(o)ides with Different Block Arrangements.

机构信息

Department of Chemistry, RCSI University of Medicine and Health Sciences, 123 St. Stephens Green, Dublin, D02YN77, Ireland.

School of Pharmacy and Biomolecular Sciences, RCSI University of Medicine and Health Sciences, Dublin, D02YN77, Ireland.

出版信息

Macromol Biosci. 2022 Aug;22(8):e2200175. doi: 10.1002/mabi.202200175. Epub 2022 Jun 16.

DOI:10.1002/mabi.202200175
PMID:35634688
Abstract

8-Arm star polypep(o)ides comprising cationic polylysine and hydrophilic polysarcosine blocks with a degree of polymerization (DP) of 30 per block are synthesized. Two different block sequences with polylysine as the inner and polysarcosine as the outer block and vice versa are obtained in addition to a statistical copolymer. Analysis of the enzymatic hydrolysis by the proteolytic enzyme trypsin demonstrates a strong dependence on structural arrangements. While polypept(o)ide disintegration is detectible after 24 h by Size Exclusion Chromatography (SEC), significant hydrolysis of the lysine blocks is only monitored after 48 h by fluorescamine labeling of the produced lysine and clearly accelerated in structures with more accessible polylysine blocks. All structures are capable of complexing plasmid DNA and form gene nanomedicines at sizes around or below 200 nm as determined by Dynamic Light Scattering (DLS), Nanoparticle Tracking Analysis (NTA), and Transition Electron Microscopy (TEM). The polyplex formation is slightly enhanced for both block structures over the random copolypept(o)ide. Moreover, it is demonstrated that the polyplexes can transport through mucus. The results highlight the importance of structural control in compartmentalized polymeric gene vector candidates with hydrophilic domains for potential mucosal delivery.

摘要

8 臂星形多肽由阳离子聚赖氨酸和亲水性聚肌氨酸组成,每个嵌段的聚合度(DP)为 30。除了统计共聚物之外,还获得了两种不同的嵌段序列,其中聚赖氨酸为内嵌段,聚肌氨酸为外嵌段,反之亦然。用蛋白水解酶胰蛋白酶进行的酶水解分析表明,结构排列有很强的依赖性。虽然通过尺寸排阻色谱(SEC)在 24 小时后可检测到多肽的解体,但只有在用荧光胺标记产生的赖氨酸并在具有更多可及的聚赖氨酸嵌段的结构中才能监测到赖氨酸嵌段的明显水解48 小时后。所有结构都能够与质粒 DNA 络合,并通过动态光散射(DLS)、纳米颗粒跟踪分析(NTA)和透射电子显微镜(TEM)确定在 200nm 左右或以下的尺寸形成基因纳米药物。与随机共聚多肽相比,两种嵌段结构都略微增强了聚多肽的形成。此外,还证明了这些聚集体可以穿透粘液。这些结果强调了在具有亲水区的分隔式聚合基因载体候选物中进行结构控制的重要性,以用于潜在的粘膜递药。

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