首页> 外文期刊>Journal of the American Chemical Society >Self-Assembly of siRNA/PEG-b-Catiomer at Integer Molar Ratio into 100 nm-Sized Vesicular Polyion Complexes (siRNAsomes) for RNAi and Codelivery of Cargo Macromolecules
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Self-Assembly of siRNA/PEG-b-Catiomer at Integer Molar Ratio into 100 nm-Sized Vesicular Polyion Complexes (siRNAsomes) for RNAi and Codelivery of Cargo Macromolecules

机译:siRNA / PEG-b-Catiomer的整数摩尔比自组装为100 nm尺寸的囊泡性聚离子复合物(siRNAsomes),用于RNAi和货物大分子的代码传递。

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摘要

Vesicular polyion complexes (PICs) were fabricated through self-assembly of rigid cylindrical molecules, small interfering RNAs (siRNAs), with flexible block catiomers of poly(ethylene glycol) (2 kDa) and cationic polyaspartamide derivative (70 units) bearing a 5-aminopentyl side chain. 100 nm-sized siRNA-assembled vesicular PICs, termed siRNAsomes, were fabricated in specific mixing ranges between siRNA and block catiomer. The siRNAsome membrane was revealed to consist of PIC units fulfilling a simple molar ratio (1:2 or 2:3) of block catiomer and siRNA. These ratios correspond to the minimal integer molar ratio to maximally compensate the charge imbalance of PIC, because the numbers of charges per block catiomer and siRNA are +70 and -40, respectively. Accordingly, the zeta-potentials of siRNAsomes prepared at 1:2 and 2:3 were negative and positive, respectively. Cross-section transmission electron microscopic observation clarified that the membrane thicknesses of 1:2 and 2:3 siRNAsomes were 11.0 and 17.2 nm, respectively. Considering that a calculated long-axial length of siRNA is 5.9 nm, these thickness values correspond to the membrane models of two (11.8 nm) and three (17.7 nm) tandemly aligned siRNAs associating with one and two block catiomers, respectively. For biological application, siRNAsomes were stabilized through membrane-cross-linking with glutaraldehyde. The positively charged and cross-linked siRNAsome facilitated siRNA internalization into cultured cancer cells, eliciting significant gene silencing with negligible cytotoxicity. The siRNAsome stably encapsulated dextran as a model cargo macromolecule in the cavity by simple vortex mixing. Confocal laser scanning microscopic observation displayed that both of the payloads were internalized together into cultured cells. These results demonstrate the potential of siRNAsomes as a versatile platform for codelivery of siRNA with other cargo macromolecules.
机译:通过刚性圆柱分子,小干扰RNA(siRNA)的自组装,带有聚乙二醇(2 kDa)和阳离子聚天冬酰胺衍生物(70单位)的柔性嵌段阳离子异构体(70个单位)的自组装来制造水泡状聚离子复合物(PIC),其5-氨基戊基侧链。在siRNA和嵌段双链体之间的特定混合范围内制造了100 nm大小的siRNA组装小泡PIC,称为siRNAsome。 siRNAsome膜被揭示为由PIC单元组成,该PIC单元满足嵌段对映异构体和siRNA的简单摩尔比(1:2或2:3)。这些比率对应于最小整数摩尔比率,以最大程度地补偿PIC的电荷不平衡,因为每个嵌段链聚体和siRNA的电荷数分别为+70和-40。因此,以1:2和2:3制备的siRNA体的ζ电位分别为负和正。横截面透射电子显微镜观察表明,1:2和2:3 siRNA体的膜厚度分别为11.0 nm和17.2 nm。考虑到计算得出的siRNA的长轴长度为5.9 nm,这些厚度值分别对应于两个(11.8 nm)和三个(17.7 nm)串联排列的siRNA的膜模型,这些siRNA分别与一个和两个嵌段型异构体相关。对于生物学应用,siRNA体通过与戊二醛的膜交联而稳定。带正电荷且交联的siRNAsome有助于siRNA内化到培养的癌细胞中,引起显着的基因沉默,细胞毒性可忽略不计。 siRNAsome通过简单的涡旋混合将葡聚糖稳定地封装在模腔中,作为模型货物大分子。共聚焦激光扫描显微镜观察显示,两种有效载荷都被内化到培养细胞中。这些结果证明了siRNAsomes作为与其他货物大分子一起siRNA编码递送的通用平台的潜力。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2019年第8期|3699-3709|共11页
  • 作者单位

    Univ Tokyo, Grad Sch Engn, Dept Mat Engn, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1138656, Japan|Korea Inst Sci & Technol, Biomed Res Inst, Ctr Theragnosis, Hwarangno 14 Gil 5, Seoul 136791, South Korea;

    Univ Tokyo, Grad Sch Engn, Dept Mat Engn, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1138656, Japan;

    Univ Tokyo, Grad Sch Engn, Dept Bioengn, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1138656, Japan;

    Univ Tokyo, Grad Sch Engn, Dept Bioengn, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1138656, Japan;

    Kawasaki Inst Ind Promot, Innovat Ctr NanoMed, Kawasaki Ku, 3-25-14 Tonomachi, Kawasaki, Kanagawa 2100821, Japan;

    Univ Tokyo, Grad Sch Med, Ctr Dis Biol & Integrat Med, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1130033, Japan;

    Univ Tokyo, Grad Sch Med, Ctr Dis Biol & Integrat Med, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1130033, Japan;

    Univ Tokyo, Grad Sch Engn, Dept Mat Engn, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1138656, Japan;

    Kyushu Univ, Fac Engn, Dept Appl Chem, Nishi Ku, 744 Moto Oka, Fukuoka, Fukuoka 8190395, Japan|Kyushu Univ, Ctr Mol Syst, Nishi Ku, 744 Moto Oka, Fukuoka, Fukuoka 8190395, Japan;

    Kawasaki Inst Ind Promot, Innovat Ctr NanoMed, Kawasaki Ku, 3-25-14 Tonomachi, Kawasaki, Kanagawa 2100821, Japan|Univ Tokyo, Policy Alternat Res Inst, Bunkyo Ku, 7-3-1 Hongo, Tokyo 1130033, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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