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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Structural tuning of oligonucleotides for enhanced blood circulation properties of unit polyion complexes prepared from two-branched poly (ethylene glycol)-block-poly(L-lysine)
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Structural tuning of oligonucleotides for enhanced blood circulation properties of unit polyion complexes prepared from two-branched poly (ethylene glycol)-block-poly(L-lysine)

机译:寡核苷酸的结构调整,用于增强由两支化聚(乙二醇)制备的单位聚硫代络合物的血液循环性能 - Block-poly(L-赖氨酸)

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Downsizing nanocarriers is a promising strategy for systemically targeting fibrotic cancers, such as pancreatic cancer, owing to enhanced tissue permeability. We recently developed a small oligonucleotide nanocarrier called a unit polyion complex (uPIC) using a single oligonucleotide molecule and one or two molecule(s) of two-branched poly(ethylene glycol)-b-poly(L-lysine) (bPEG-PLys). The uPIC is a dynamic polyion-pair equilibrated with free bPEG-PLys, and thus, is highly stabilized in the presence of excess amounts of free bPEG-PLys in the bloodstream. However, the dynamic polyion-pairing behavior of uPICs needs to be further investigated for longevity in the bloodstream, especially under lower amounts of free bPEG-PLys. Herein, the polyion-pairing behavior of uPICs was investigated by highlighting oligonucleotide stability and negative charge number. To this end, small interfering RNA (siRNA) and antisense oligonucleotides (ASO) were chemically modified to acquire nuclease resistance, and the ASO was hybridized with complementary RNA (cRNA) to form a hetero-duplex oligonucleotide (HDO) with twice the negative charges. While all oligonucleotides similarly formed sub-20 nm-sized uPICs from a single oligonucleotide molecule, the association number of bPEG-PLys (AN(bPEG-PLys)) in uPICs varied based on the negative charge number of oligonucleotides (N-), that is, AN(bPEG-PLys )= similar to 2 at N- = similar to 40 (i.e., siRNA and HDO) and AN(bPEG-PLys) = similar to 1 at N- = 20 (i.e., ASO), presumably because of the balanced charge neutralization between the oligonucleotide and bPEG-PLys with a positive charge number (N+) of similar to 20. Ultimately, the uPICs prepared from the chemically modified oligonucleotide with higher negative charges showed considerably longer blood retention than those from the control oligonucleotides without chemical modifications or with lower negative charges. The difference in the blood circulation properties of uPICs was more pronounced under lower amounts of free bPEG-PLys. These results demonstrate that the chemical modification and higher negative charge in oligonucleotides facilitated the polyion-pairing between the oligonucleotide and bPEG-PLys under harsh biological conditions, facilitating enhanced blood circulation of uPICs.
机译:由于组织通透性增强,缩小纳米载体的尺寸对于系统性靶向纤维化癌症(如胰腺癌)是一种很有前途的策略。我们最近开发了一种称为单位多离子复合物(uPIC)的小型寡核苷酸纳米载体,使用单个寡核苷酸分子和一个或两个双支化聚(乙二醇)-b-聚赖氨酸(bPEG-PLys)分子。uPIC是一种动态多离子对,与游离bPEG-PLys平衡,因此在血液中存在过量的游离bPEG-PLys时高度稳定。然而,为了延长UPIC在血液中的寿命,需要进一步研究UPIC的动态多离子配对行为,尤其是在游离bPEG PLY含量较低的情况下。在此,通过强调寡核苷酸稳定性和负电荷数,研究了UPIC的多离子配对行为。为此,对小干扰RNA(siRNA)和反义寡核苷酸(ASO)进行化学修饰以获得核酸酶抗性,并将ASO与互补RNA(cRNA)杂交以形成带两倍负电荷的异源双链寡核苷酸(HDO)。虽然所有寡核苷酸类似地从单个寡核苷酸分子中形成小于20 nm大小的UPIC,但UPIC中bPEG-PLys(AN(bPEG-PLys))的结合数根据寡核苷酸(N-)的负电荷数而变化,即AN(bPEG-PLys)=类似于N-=2,类似于40(即siRNA和HDO),AN(bPEG-PLys)=类似于1,类似于N-=20(即ASO),可能是因为寡核苷酸和bPEG PLY之间的平衡电荷中和,正电荷数(N+)类似于20。最终,由带较高负电荷的化学修饰寡核苷酸制备的UPIC显示出比未经化学修饰或带较低负电荷的对照寡核苷酸制备的UPIC更长的血液滞留时间。在较低的游离bPEG PLY量下,UPIC血液循环特性的差异更为明显。这些结果表明,在恶劣的生物条件下,化学修饰和寡核苷酸中较高的负电荷促进了寡核苷酸和bPEG PLY之间的多离子配对,促进了UPIC的血液循环。

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