首页> 外文期刊>Molecular pharmaceutics >Synthesis, characterization, and gene delivery of poly-L-lysine octa(3-aminopropyl)silsesquioxane dendrimers: nanoglobular drug carriers with precisely defined molecular architectures.
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Synthesis, characterization, and gene delivery of poly-L-lysine octa(3-aminopropyl)silsesquioxane dendrimers: nanoglobular drug carriers with precisely defined molecular architectures.

机译:聚-L-赖氨酸八(3-氨基丙基)倍半硅氧烷树状大分子的合成,表征和基因传递:具有精确定义的分子结构的纳米球药物载体。

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Macromolecules with defined nanosizes--nanoglobules--were synthesized and characterized as novel drug carriers with precise molecular architectures. Poly-L-lysine dendrimers with a cubic octa(3-aminopropyl)silsesquioxane (OAS) core, (L-lysine 8-OAS, (L-lysine) 16-(L-lysine) 8-OAS, (L-lysine) 32-(L-lysine) 16-(L-lysine) 8-OAS, and (L-lysine) 64-(L-lysine) 32-(L-lysine) 16-(L-lysine) 8-OAS, were divergently synthesized by solution phase peptide chemistry in good yield and purity. Matrix-assisted laser desorption time of flight (MALDI-TOF) mass spectrometry showed complete substitution of the surface amino groups of lower generation dendrimers during synthesis, as well as precisely defined molecular architectures of the nanoglobules. The structures of the nanoglobules were further characterized by (1)H- and (13)C-NMR and 2D-NMR (correlation spectroscopy (COSY) and pulsed-field-gradient heteronuclear multiple quantum correlation (gHMQC)) spectroscopy. The (1)H-NMR spectroscopy revealed that the nanoglobules had a relatively rigid molecular architecture. Cytotoxicity studies showed that these nanoglobules exhibited a size-dependent toxicity, but it was much lower than that of linear poly-L-lysine. Preliminary in vitro nucleic acid delivery studies have shown that these globular dendrimers can efficiently deliver plasmid DNA to MDA-MB-231 cells. These nanoglobules hold much promise as safe drug carriers with precisely defined molecular architecture.
机译:具有确定的纳米尺寸的大分子-纳米球-已合成并表征为具有精确分子结构的新型药物载体。具有立方八(3-氨基丙基)倍半硅氧烷(OAS)核心,(L-赖氨酸8-OAS,(L-赖氨酸)16-(L-赖氨酸)8-OAS,(L-赖氨酸)核的聚L-赖氨酸树状聚合物分别是32-(L-赖氨酸)16-(L-赖氨酸)8-OAS和(L-赖氨酸)64-(L-赖氨酸)32-(L-赖氨酸)16-(L-赖氨酸)8-OAS。通过溶液相肽化学发散合成,具有良好的收率和纯度;基质辅助激光解吸飞行时间(MALDI-TOF)质谱显示,在合成过程中,低代树状聚合物的表面氨基被完全取代,并且分子结构精确定义通过(1)H-和(13)C-NMR和2D-NMR(相关光谱(COSY)和脉冲场梯度异核多量子相关性(gHMQC))光谱进一步表征了纳米球的结构。 。(1)H-NMR光谱显示纳米球具有相对刚性的分子结构,细胞毒性研究表明这些纳米球表现出大小依赖性的毒素。城市,但远低于线性聚L-赖氨酸。初步的体外核酸递送研究表明,这些球状树状聚合物可以有效地将质粒DNA递送至MDA-MB-231细胞。这些纳米球有望成为具有精确定义的分子结构的安全药物载体。

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