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Dual Peptide Nucleic Acid- and Peptide-Functionalized Shell Cross-Linked Nanoparticles Designed to Target mRNA toward the Diagnosis and Treatment of Acute Lung Injury

机译:靶向核酸的双肽核酸和肽功能化壳交联纳米颗粒,用于急性肺损伤的诊断和治疗

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In this work, multifunctional biosynthetic hybrid nanostruc-tures were prepared and studied for their potential utility in the recognition and inhibition of mRNA sequences for inducible nitric oxide synthase (iNOS), which are overexpressed at sites of inflammation, such as in cases of acute lung injury. Shell cross-linked knedel-like polymer nanoparticles (SCKs) that present peptide nucleic acids, for binding to complementary mRNAs, and cell penetrating peptides (CPPs), to gain cell entry, along with fluorescent labels and sites for radiolabeling, were prepared by a series of robust, efficient, and versatile synthetic steps that proceeded from monomers to polymers to functional nanoparticles. Amphiphilic block graft copolymers having combinations of methoxy- and thioacetyl-terminated poIy(ethyIene glycol) (PEG) and DOTA-lysine units grafted from the backbone of poly(acrylic acid) (PAA) and extending with a backbone segment of poly(octadecyl acrylate-co-decyl acrylate) (P(ODA-co-DA)) were prepared by a combination of reversible addition-fragmentation chain transfer (RAFT) polymerization and chemical modification reactions, which were then used as the building blocks for the formation of well-defined SCKs decorated with reactive thiols accessible to the surface. Fluorescent labeling with Alexa Fluor 633 hydrazide was then accomplished by amidation with residual acrylic acid residues within the SCK shells. Finally, the PNAs and CPP units were covalently conjugated to the SCKs via Michael addition of thiols on the SCKs to maleimide units on the termini of PNAs and CPPs. Confirmation of the ability of the PNAs to bind selectively to the target iNOS mRNAs when tethered to the SCK nanoparticles was determined by in vitro competition experiments. When attached to the SCKs having a hydrodynamic diameter of 60 ± 16 nm, the K_d values of the PNAs were ca. an order of magnitude greater than the free PNAs, while the mismatched PNA showed no significant binding.
机译:在这项工作中,准备了多功能生物合成杂化纳米结构,并研究了其在识别和抑制可诱导型一氧化氮合酶(iNOS)mRNA序列中的潜在用途,该结构在炎症位点过表达,例如在急性肺中受伤。壳交联的类似于互补mRNA的肽核酸和细胞穿透肽(CPPs)以获得细胞进入的肽核酸的核状聚合物类纳米颗粒(SCKs)的制备,包括荧光标记和放射性标记位。从单体到聚合物再到功能性纳米粒子的一系列稳健,高效和通用的合成步骤。两性嵌段接枝共聚物,具有甲氧基和硫乙酰基封端的聚乙二醇(PEG)和DOTA-赖氨酸单元的组合,这些单元是从聚丙烯酸(PAA)的主链接枝并延伸至聚十八烷基丙烯酸酯的主链段的通过可逆加成-断裂链转移(RAFT)聚合和化学改性反应的组合制备丙烯酸-共丙烯酸癸酯(P(ODA-co-DA)),然后将其用作井形成的基础定义的SCK,表面装饰有反应性硫醇。然后通过酰胺化SCK壳内残留的丙烯酸残基,完成Alexa Fluor 633酰肼的荧光标记。最后,通过将SCK上的硫醇迈克尔加成到PNA和CPP末端的马来酰亚胺单元上,将PNA和CPP单元共价结合到SCK上。通过体外竞争实验确定了PNA束缚在SCK纳米粒子上时选择性结合靶iNOS mRNA的能力。当连接到流体动力学直径为60±16 nm的SCK时,PNA的K_d值为ca。比游离PNA大一个数量级,而错配的PNA则没有明显的结合。

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